EP2559620B1 - Method for packaging polycrystalline silicon - Google Patents
Method for packaging polycrystalline silicon Download PDFInfo
- Publication number
- EP2559620B1 EP2559620B1 EP20120179993 EP12179993A EP2559620B1 EP 2559620 B1 EP2559620 B1 EP 2559620B1 EP 20120179993 EP20120179993 EP 20120179993 EP 12179993 A EP12179993 A EP 12179993A EP 2559620 B1 EP2559620 B1 EP 2559620B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- plastic bag
- energy absorber
- filling
- polycrystalline silicon
- bag
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
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- 229910021420 polycrystalline silicon Inorganic materials 0.000 title claims description 53
- 238000000034 method Methods 0.000 title claims description 22
- 238000004806 packaging method and process Methods 0.000 title claims description 22
- 239000004033 plastic Substances 0.000 claims description 57
- 229920003023 plastic Polymers 0.000 claims description 57
- 239000006096 absorbing agent Substances 0.000 claims description 35
- XUIMIQQOPSSXEZ-UHFFFAOYSA-N Silicon Chemical compound [Si] XUIMIQQOPSSXEZ-UHFFFAOYSA-N 0.000 claims description 20
- 229910052710 silicon Inorganic materials 0.000 claims description 17
- 239000010703 silicon Substances 0.000 claims description 17
- 238000011109 contamination Methods 0.000 claims description 16
- 239000000463 material Substances 0.000 claims description 14
- 238000005303 weighing Methods 0.000 claims description 8
- -1 polyethylene Polymers 0.000 claims description 6
- 239000004698 Polyethylene Substances 0.000 claims description 5
- 239000004743 Polypropylene Substances 0.000 claims description 5
- 230000007246 mechanism Effects 0.000 claims description 5
- 229920000573 polyethylene Polymers 0.000 claims description 5
- 229920001155 polypropylene Polymers 0.000 claims description 5
- 238000000926 separation method Methods 0.000 claims description 5
- 238000003860 storage Methods 0.000 claims description 5
- 230000033001 locomotion Effects 0.000 claims description 4
- 229920000139 polyethylene terephthalate Polymers 0.000 claims description 4
- 239000005020 polyethylene terephthalate Substances 0.000 claims description 4
- 239000002131 composite material Substances 0.000 claims description 3
- 229920005591 polysilicon Polymers 0.000 description 31
- 239000012634 fragment Substances 0.000 description 17
- 239000000047 product Substances 0.000 description 13
- 229910052751 metal Inorganic materials 0.000 description 10
- 239000002184 metal Substances 0.000 description 7
- 238000003466 welding Methods 0.000 description 6
- 239000002245 particle Substances 0.000 description 4
- 238000009826 distribution Methods 0.000 description 3
- 238000005429 filling process Methods 0.000 description 3
- 150000002739 metals Chemical class 0.000 description 3
- 239000002985 plastic film Substances 0.000 description 3
- 229920006255 plastic film Polymers 0.000 description 3
- MTPVUVINMAGMJL-UHFFFAOYSA-N trimethyl(1,1,2,2,2-pentafluoroethyl)silane Chemical compound C[Si](C)(C)C(F)(F)C(F)(F)F MTPVUVINMAGMJL-UHFFFAOYSA-N 0.000 description 3
- PXHVJJICTQNCMI-UHFFFAOYSA-N Nickel Chemical compound [Ni] PXHVJJICTQNCMI-UHFFFAOYSA-N 0.000 description 2
- NRTOMJZYCJJWKI-UHFFFAOYSA-N Titanium nitride Chemical compound [Ti]#N NRTOMJZYCJJWKI-UHFFFAOYSA-N 0.000 description 2
- 239000000919 ceramic Substances 0.000 description 2
- 239000011248 coating agent Substances 0.000 description 2
- 238000000576 coating method Methods 0.000 description 2
- 239000010941 cobalt Substances 0.000 description 2
- 229910017052 cobalt Inorganic materials 0.000 description 2
- GUTLYIVDDKVIGB-UHFFFAOYSA-N cobalt atom Chemical compound [Co] GUTLYIVDDKVIGB-UHFFFAOYSA-N 0.000 description 2
- 229920001971 elastomer Polymers 0.000 description 2
- 239000004744 fabric Substances 0.000 description 2
- 239000010419 fine particle Substances 0.000 description 2
- 150000001247 metal acetylides Chemical class 0.000 description 2
- 239000005060 rubber Substances 0.000 description 2
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 1
- ZOKXTWBITQBERF-UHFFFAOYSA-N Molybdenum Chemical compound [Mo] ZOKXTWBITQBERF-UHFFFAOYSA-N 0.000 description 1
- 239000004952 Polyamide Substances 0.000 description 1
- MSAVICZWFPQFPO-UHFFFAOYSA-N acetic acid;ethene Chemical compound C=C.C=C.CC(O)=O MSAVICZWFPQFPO-UHFFFAOYSA-N 0.000 description 1
- 238000004026 adhesive bonding Methods 0.000 description 1
- UQZIWOQVLUASCR-UHFFFAOYSA-N alumane;titanium Chemical compound [AlH3].[Ti] UQZIWOQVLUASCR-UHFFFAOYSA-N 0.000 description 1
- 239000011230 binding agent Substances 0.000 description 1
- 239000013590 bulk material Substances 0.000 description 1
- 229910052799 carbon Inorganic materials 0.000 description 1
- 239000007795 chemical reaction product Substances 0.000 description 1
- 238000005253 cladding Methods 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 239000011362 coarse particle Substances 0.000 description 1
- 229920001577 copolymer Polymers 0.000 description 1
- 229910003460 diamond Inorganic materials 0.000 description 1
- 239000010432 diamond Substances 0.000 description 1
- 238000011143 downstream manufacturing Methods 0.000 description 1
- 238000009459 flexible packaging Methods 0.000 description 1
- 239000011888 foil Substances 0.000 description 1
- 229920001903 high density polyethylene Polymers 0.000 description 1
- 230000001939 inductive effect Effects 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 229910052750 molybdenum Inorganic materials 0.000 description 1
- 239000011733 molybdenum Substances 0.000 description 1
- 229920006281 multilayer packaging film Polymers 0.000 description 1
- 229910052759 nickel Inorganic materials 0.000 description 1
- 229920002647 polyamide Polymers 0.000 description 1
- 229920006149 polyester-amide block copolymer Polymers 0.000 description 1
- 239000004810 polytetrafluoroethylene Substances 0.000 description 1
- 229920001343 polytetrafluoroethylene Polymers 0.000 description 1
- 239000004814 polyurethane Substances 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 239000004065 semiconductor Substances 0.000 description 1
- 238000009958 sewing Methods 0.000 description 1
- 238000007873 sieving Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 239000006228 supernatant Substances 0.000 description 1
- 239000004753 textile Substances 0.000 description 1
- ZDHXKXAHOVTTAH-UHFFFAOYSA-N trichlorosilane Chemical compound Cl[SiH](Cl)Cl ZDHXKXAHOVTTAH-UHFFFAOYSA-N 0.000 description 1
- 239000005052 trichlorosilane Substances 0.000 description 1
- WFKWXMTUELFFGS-UHFFFAOYSA-N tungsten Chemical compound [W] WFKWXMTUELFFGS-UHFFFAOYSA-N 0.000 description 1
- 229910052721 tungsten Inorganic materials 0.000 description 1
- 239000010937 tungsten Substances 0.000 description 1
- UONOETXJSWQNOL-UHFFFAOYSA-N tungsten carbide Chemical compound [W+]#[C-] UONOETXJSWQNOL-UHFFFAOYSA-N 0.000 description 1
- 238000002604 ultrasonography Methods 0.000 description 1
- 238000011144 upstream manufacturing Methods 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B5/00—Packaging individual articles in containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, jars
- B65B5/10—Filling containers or receptacles progressively or in stages by introducing successive articles, or layers of articles
- B65B5/108—Article support means temporarily arranged in the container
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B25/00—Packaging other articles presenting special problems
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B1/00—Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
- B65B1/04—Methods of, or means for, filling the material into the containers or receptacles
- B65B1/06—Methods of, or means for, filling the material into the containers or receptacles by gravity flow
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B1/00—Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
- B65B1/30—Devices or methods for controlling or determining the quantity or quality or the material fed or filled
- B65B1/32—Devices or methods for controlling or determining the quantity or quality or the material fed or filled by weighing
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B39/00—Nozzles, funnels or guides for introducing articles or materials into containers or wrappers
- B65B39/007—Guides or funnels for introducing articles into containers or wrappers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B43/00—Forming, feeding, opening or setting-up containers or receptacles in association with packaging
- B65B43/42—Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation
- B65B43/54—Means for supporting containers or receptacles during the filling operation
- B65B43/56—Means for supporting containers or receptacles during the filling operation movable stepwise to position container or receptacle for the reception of successive increments of contents
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B43/00—Forming, feeding, opening or setting-up containers or receptacles in association with packaging
- B65B43/42—Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation
- B65B43/54—Means for supporting containers or receptacles during the filling operation
- B65B43/56—Means for supporting containers or receptacles during the filling operation movable stepwise to position container or receptacle for the reception of successive increments of contents
- B65B43/58—Means for supporting containers or receptacles during the filling operation movable stepwise to position container or receptacle for the reception of successive increments of contents vertically movable
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B43/00—Forming, feeding, opening or setting-up containers or receptacles in association with packaging
- B65B43/42—Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation
- B65B43/54—Means for supporting containers or receptacles during the filling operation
- B65B43/59—Means for supporting containers or receptacles during the filling operation vertically movable
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B55/00—Preserving, protecting or purifying packages or package contents in association with packaging
- B65B55/20—Embedding contents in shock-absorbing media, e.g. plastic foam, granular material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D81/00—Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
- B65D81/18—Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents providing specific environment for contents, e.g. temperature above or below ambient
Definitions
- the invention relates to a method for packaging polycrystalline silicon.
- Polycrystalline silicon (polysilicon) is predominantly deposited by means of the Siemens process from halosilanes such as trichlorosilane and then comminuted as little as possible in contamination into polycrystalline silicon fragments.
- the material should also be packed with low contamination before it is transported to the customer.
- polysilicon fracture for the electronics industry is in 5 kg bags with a weight tolerance of +/- max. 50 g packed.
- polysilicon breakage is in bags with a weight of 10 kg and a weight tolerance of +/- max. 100 g usual.
- Tubular bag machines which are in principle suitable for packaging of silicon fracture, are commercially available.
- a corresponding packaging machine is for example in DE 36 40 520 A1 described.
- the commercial packaging machines are to be suitably modified for the purpose of packaging polysilicon.
- EP 1 334 907 B1 a device for cost-effective fully automatic transporting, weighing, portioning, filling and packaging of a high-purity polysilicon fracture is known, comprising a polysilicon fracture chute, a polysilicon fracture weighing device connected to a hopper, baffles made of silicon, a filling device consisting of a high-purity plastic film forms a plastic bag comprising a deionizer which prevents static charge and thus particle contamination of the plastic film, a plastic bag filled with polysilicon fracture, a flowbox mounted above the conveyor trough, weighing device, filling device and sealing device, which prevents particle contamination of the polysilicon fracture , a conveyor belt with a magnetic inductive detector for the welded polysilicon filled plastic bag, wherein all components, the come in contact with the polysilicon, reinforced with silicon or clad with a highly wear-resistant plastic.
- DE 10 2007 027 110 A1 discloses a method for packaging polycrystalline silicon in which polycrystalline silicon is filled by means of a filling device into a free hanging, finished shaped bag, the filled bag being subsequently closed, characterized in that the bag is made of high purity plastic with a wall thickness of 10 to 1000 microns, wherein the filling device comprises a free-hanging energy absorber made of a non-metallic low-contamination material, which is introduced before filling the polycrystalline silicon in the plastic bag and via which the polycrystalline silicon is filled into the plastic bag, and the free-hanging energy absorber is then removed from the polycrystalline silicon filled plastic bag and the plastic bag is sealed.
- DE 32 21 436 A1 discloses an apparatus for filling bags, consisting of an outer bag, and arranged in this, open-top inner bag made of plastic film, with a hopper, with a filled sacks supporting and transporting off conveyor, the bags during filling up to support on the conveyor are lowered.
- the object of the invention is to avoid such jamming of the silicon, and to accomplish a nachzerklein mecanicsarmes packaging of the silicon.
- the object is achieved by a method for packaging polycrystalline silicon, in which polycrystalline silicon is filled by means of a filling device in a plastic bag, wherein the filling device comprises a freely suspended energy absorber made of a non-metallic low-contamination material, characterized in that the plastic bag pulled over the energy absorber is filled polycrystalline silicon and the plastic bag is lowered during filling down so that silicon slips into the plastic bag, wherein prior to the beginning of the lowering movement of the plastic bag whose cross section is reduced by a suitable device and gradually during filling or after filling is increased to accomplish a controlled filling of the plastic bag with polycrystalline silicon.
- the inventive method also uses an energy absorber, as already known from the prior art.
- the filling process itself differs from the procedure described in the prior art.
- the plastic bag is lowered down.
- the presence of the energy absorber further prevents piercing of the plastic bag, as it is protected by the energy absorber from hard impact of the silicon.
- the energy absorber comprises a balance.
- This balance is preferably made of a hard metal or ceramic or carbides.
- the preferably prefabricated bag is pulled over the weighing container and filled by turning the whole unit nachzerklein ceremoniessarm.
- the balance is preferably designed as a sieve and is located at a bottom of the energy absorber or the storage container.
- a jarring mechanism is provided to eliminate jamming altogether and to accomplish a better separation.
- a vibrating mechanism can be generated for example by ultrasound.
- a further preferred embodiment provides for a balance with transfer to an energy absorber.
- the plastic bag is pulled over the energy absorber, then the scales incl. Sieve open, then opened a case brake and closed and then lowered the bag under wave motions and / or shaking.
- a fall brake is preferably a device that is pressed against plastic bag or energy absorber. As a result, the cross section of the plastic bag or the energy absorber is first reduced, then released controlled. This makes it possible to control the product flow and to achieve a low-backflow filling of the silicon into the prefabricated bag.
- the energy absorber consists of a non-metallic low-contamination material.
- the energy absorber is not introduced into the plastic bag before filling the polycrystalline silicon, but the plastic bag is pulled over the energy absorber.
- the plastic bag is pulled over the energy absorber by means of a suitable handling system.
- a suitable handling system for example, an articulated robot is suitable for this purpose.
- the polycrystalline silicon is introduced into the plastic bag via the energy absorber.
- the plastic bag is moved downwards.
- the plastic bag is preferably closed.
- the plastic bag is preferably evacuated by sucking air out of the plastic bag and then welding it.
- a handle hole punched into the plastic bag and any supernatant of the bag can be removed after welding for ease of handling.
- the method described is suitable both for packaging polysilicon fracture for solar applications and polysilicon fracture for the electronics industry.
- these methods are suitable for packaging sharp-edged, up to 10 kg polycrystalline silicon fragments.
- the advantages are particularly noticeable in the presence of fragments with an average weight of more than 80 g.
- the plastic bag is preferably made of a high purity plastic. These are preferably polyethylene (PE) polyethylene terephthalate (PET) or polypropylene (PP) or composite films.
- PE polyethylene
- PET polyethylene terephthalate
- PP polypropylene
- a composite film is a multilayer packaging film from which flexible packaging is made.
- the individual film layers are usually extruded or laminated or laminated.
- the packaging is mainly used in the food industry.
- the plastic bag during filling with polysilicon fracture by means of at least two elements on Held bag and moved away from the energy absorber away and after completion of the filling process by means of these grippers a closure device, preferably a welding device supplied.
- the plastic bag preferably has a thickness of 10 to 1000 microns.
- the energy absorber is preferably made of a non-metallic low-contamination material. It is preferably in the form of a funnel or hollow body.
- textile material eg Gore- Tex® - PTFE fabric or polyester / polyamide fabric
- plastics eg PE, PP, PA, or copolymers of these plastics.
- PU e.g. Gore- Tex® - PTFE fabric or polyester / polyamide fabric
- PE e.g PE, PP, PA, or copolymers of these plastics
- z e.g. As PU, rubber or rubber ethylene ethylene acetate (EVA), with a Shore A hardness between 30 A and 120 A, preferably 70 A.
- the closing of the plastic bag can be done for example by means of welding, gluing, sewing or positive locking. Preferably, it is done by welding.
- the filling device consists of a filling unit and the freely suspended energy absorber which is connected to the filling unit.
- the free-hanging energy absorber has the form of a freely suspended movable flexible hose or one of the other forms mentioned, which are hereinafter to be understood for the sake of simplicity by the term hose with.
- the plastic bag is pulled over the movable flexible tube and the poly-break is introduced into the bag via the filling unit and the flexible tube.
- the filling unit is preferably a funnel, a conveyor trough or a chute, which is provided with a Contaminated material or consist of a low-contamination material.
- the free-hanging energy absorber absorbs a large part of the kinetic energy of the polysilicon crack falling in the bag. It protects the walls of the plastic bag from contact with the sharp-edged polycrystalline silicon and prevents puncturing of the plastic bag. The fact that after filling the plastic bag is pulled down, there is no jamming of the polycrystalline silicon in the energy absorber.
- the polysilicon is first portioned and weighed prior to packaging.
- the filling unit is designed so that the finest particles and chippings of the polysilicon are removed before or during filling. For example, particles with an edge length of less than 16 mm can be sieved off safely.
- a product stream of polysilicon fragments is preferably transported via a conveyor trough, by means of at least one sieve, wherein the sieve may be a perforated plate, a bar screen, an optopneumatic sorting or another suitable device, separated into coarse and fine fragments by means of a dosing scale weighed and dosed to a target weight, discharged via a discharge chute and transported to a packaging unit.
- the sieve may be a perforated plate, a bar screen, an optopneumatic sorting or another suitable device, separated into coarse and fine fragments by means of a dosing scale weighed and dosed to a target weight, discharged via a discharge chute and transported to a packaging unit.
- the at least one sieve and the dosing scales at least partially comprise on their surfaces a low-contamination material, such as e.g. a carbide.
- Portioning and weighing of the polysilicon fracture is preferably by means of a dosing unit for a polysilicon dosing and packaging apparatus comprising a conveyor trough suitable for conveying a product stream of debris, at least one sieve suitable for separation the product stream into coarse and fine fragments, a Gro ⁇ osierrinne for coarse debris and a Feinosierrinne for fine fragments, a dosing scale for determining the dosing, wherein the at least one screen and the dosing scale at least partially comprise a hard metal on their surfaces.
- Such a dosing unit serves to dose polysilicon fragments of a certain size class as accurately as possible before packaging.
- the weighed amount of polysilicon fragments is packed in a foil pouch after dosing and a possible cleaning step according to the method described above.
- the dosing unit comprises at least one sieve, e.g. a bar screen suitable for separating the bridging pieces of the initial product stream into a coarse and fine metering trough.
- at least one sieve e.g. a bar screen suitable for separating the bridging pieces of the initial product stream into a coarse and fine metering trough.
- the metering unit comprises two screens, more preferably bar screens.
- Coarse or larger polysilicon fragments are transported in a coarse dosage trough.
- Fine or smaller polysilicon fragments are transported in a fine metering trough.
- the size distribution of the polysilicon fragments in the starting product stream depends inter alia on the preceding comminution processes.
- the type of division into coarse and fine fragments and the size of the coarse or fine fragments depend on the desired end product, which is to be dosed and packaged.
- a typical fraction size distribution includes pieces of sizes 5-170 mm.
- fragments below a certain size can be removed from the dosing unit by means of a sieve, preferably by means of a rod sieve, in conjunction with a discharge channel. So it can be accomplished that only fragments of a very specific size class are dosed.
- the balance is equipped with an opening, an exchangeable separation mechanism and an evacuation unit.
- the removed smaller fragments are reclassified in downstream processes, dosed and packaged or put to another use.
- the dosing unit comprises a fine particle chute.
- This can be designed einschwenkbar. Depending on the desired target product (fractional size distribution), this is used to screen fines and separate them from the product stream for fine dosing.
- the dosage of the polysilicon over the two dosing channels can be automated.
- At least the screen and the dosing scale should at least partially have carbide on their surfaces.
- hard metals sintered Carbidhartmetalle.
- hard metals preferably titanium carbide and titanium carbide Titanium nitride as hard materials, wherein the binder phase thereby comprises nickel, cobalt and molybdenum. Their use is also preferred in the context of the method according to the invention.
- At least the mechanically stressed, wear-sensitive surface areas of the sieve and the metering balance comprise cemented carbide or ceramic / carbides.
- at least one screen is made entirely of hard metal.
- Sieve and dosing scales may be partially or fully coated with a coating.
- the coating used is preferably a material selected from the group consisting of titanium nitride, titanium carbide, aluminum titanium nitride and DLC (Diamond Like Carbon).
- the dosing unit also makes it possible to divide the silicon product flow over a controlled swirl chute into several dosing and packaging systems and thus a combination of several dosing systems, which are filled with a starting product and are transported to different packaging machines after dosing and weighing.
- the dosing system includes separation mechanisms (sieves) that screen out unwanted, smaller, product sizes and then deliver them to the upstream processes (sieving, classifying).
- the polysilicon fragments are packaged in two plastic bags.
- the packaging in a first plastic bag is carried out as previously mentioned using an energy absorber.
- the first plastic bag is closed.
- the sealed bag is then transferred via a gripping system or a conveyor belt to a machine part for attaching a second bag.
- the polysilicon may also be filled into two nested bags.
- the inner and outer bags are completely inserted into one another, the inner bag is welded, folded over and, after optional control, the outer bag is welded.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Quality & Reliability (AREA)
- Basic Packing Technique (AREA)
- Supply Of Fluid Materials To The Packaging Location (AREA)
- Silicon Compounds (AREA)
Description
Die Erfindung betrifft ein Verfahren zur Verpackung von polykristallinem Silicium.The invention relates to a method for packaging polycrystalline silicon.
Polykristallines Silicium (Polysilicium) wird überwiegend mittels des Siemensverfahrens aus Halogensilanen wie Trichlorsilan abgeschieden und anschließend möglichst kontaminationsarm in polykristalline Siliciumbruchstücke zerkleinert.Polycrystalline silicon (polysilicon) is predominantly deposited by means of the Siemens process from halosilanes such as trichlorosilane and then comminuted as little as possible in contamination into polycrystalline silicon fragments.
Für Anwendungen in der Halbleiter- und Solarindustrie ist ein möglichst wenig kontaminierter Polysiliciumbruch erwünscht. Daher sollte das Material auch kontaminationsarm verpackt werden, bevor es zum Kunden transportiert wird.For applications in the semiconductor and solar industries, the least possible contaminated polysilicon fraction is desired. Therefore, the material should also be packed with low contamination before it is transported to the customer.
Üblicherweise wird Polysiliciumbruch für die Elektronikindustrie in 5 kg Beuteln mit einer Gewichtstoleranz von +/- max. 50 g verpackt. Für die Solarindustrie ist Polysiliciumbruch in Beuteln mit einer Einwaage von 10 kg und einer Gewichtstoleranz von +/- max. 100 g üblich.Typically, polysilicon fracture for the electronics industry is in 5 kg bags with a weight tolerance of +/- max. 50 g packed. For the solar industry polysilicon breakage is in bags with a weight of 10 kg and a weight tolerance of +/- max. 100 g usual.
Schlauchbeutelmaschinen, die zur Verpackung von Siliciumbruch prinzipiell geeignet sind, sind kommerziell erhältlich. Eine entsprechende Verpackungsmaschine ist beispielsweise in
Bei Polysiliciumbruch handelt es sich um ein scharfkantiges, nicht rieselfähiges Schüttgut mit einem Gewicht der einzelnen Si-Bruchstücke von bis zu 2500 g. Daher ist bei der Verpackung darauf zu achten, dass das Material die üblichen Kunststoffbeutel beim Befüllen nicht durchstößt oder im schlimmsten Fall sogar vollständig zerstört.When Polysiliciumbruch is a sharp-edged, non-free-flowing bulk material with a weight of each Si fragments of up to 2500 g. Therefore, it must be ensured during packaging that the material does not puncture the usual plastic bags during filling, or even completely destroyed in the worst case.
Um dies zu verhindern, sind die kommerziellen Verpackungsmaschinen zum Zwecke der Verpackung von Polysilicium in geeigneter Weise zu modifizieren.To prevent this, the commercial packaging machines are to be suitably modified for the purpose of packaging polysilicon.
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Es hat sich gezeigt, dass bei solchen Vorrichtungen oftmals ein Verklemmen der Siliciumbruchstücke in der Abfüllvorrichtung auftritt. Dies ist nachteilig, da es dadurch zu erhöhten Stillstandszeiten der Maschine kommt.
Auch treten Durchstoßungen des Kunststoffbeutels auf, was ebenfalls zu einem Stillstand der Anlage und zu Kontamination des Siliciums führt.It has been found that in such devices often jamming of the silicon fragments in the filling device occurs. This is disadvantageous because it leads to increased downtime of the machine.
Also penetrate the plastic bag, which also leads to a shutdown of the plant and contamination of the silicon.
Durch ein solches Verfahren, dass einen Energieabsorber innerhalb des Kunststoffbeutels vorsieht, können Durchstoßungen des Kunststoffbeutels weitgehend verhindert werden. Nachteilig an diesem Verfahren ist jedoch, dass es weiterhin zu Verklemmungen kommt. Dies treten bei diesem Verfahren vor allem im Energieabsorber auf. Dies führt somit weiterhin zu Produktionsstillständen und erfordert manuelle Eingriffe, die eine Kontamination des Siliciums nach sich ziehen.By such a method that provides an energy absorber within the plastic bag, punctures of the plastic bag can be largely prevented. A disadvantage of this method, however, is that it still comes to jamming. This occur in this process, especially in the energy absorber. This further leads to production stoppages and requires manual intervention, which entails a contamination of the silicon.
Aufgabe der Erfindung ist es, solche Verklemmungen des Siliciums zu vermeiden, sowie ein nachzerkleinerungsarmes Verpacken des Siliciums zu bewerkstelligen.The object of the invention is to avoid such jamming of the silicon, and to accomplish a nachzerkleinerungsarmes packaging of the silicon.
Die Aufgabe wird gelöst durch ein Verfahren zur Verpackung von polykristallinem Silicium, bei dem polykristallines Silicium mittels einer Abfüllvorrichtung in einen Kunststoffbeutel gefüllt wird, wobei die Abfüllvorrichtung einen frei hängenden Energieabsorber aus einem nichtmetallischen kontaminationsarmen Werkstoff umfasst, dadurch gekennzeichnet, dass der Kunststoffbeutel über den Energieabsorber gezogen wird, polykristallines Silicium eingefüllt und der Kunststoffbeutel während des Befüllens nach unten abgesenkt wird, so dass Silicium in den Kunststoffbeutel rutscht, wobei vor Beginn der Absenkbewegung des Kunststoffbeutels dessen Querschnitt mittels einer geeigneten Vorrichtung reduziert wird und nach und nach während des Befüllens oder nach dem Befüllen erhöht wird, um ein kontrolliertes Befüllen des Kunststoffbeutels mit polykristallinem Silicium zu bewerkstelligen.The object is achieved by a method for packaging polycrystalline silicon, in which polycrystalline silicon is filled by means of a filling device in a plastic bag, wherein the filling device comprises a freely suspended energy absorber made of a non-metallic low-contamination material, characterized in that the plastic bag pulled over the energy absorber is filled polycrystalline silicon and the plastic bag is lowered during filling down so that silicon slips into the plastic bag, wherein prior to the beginning of the lowering movement of the plastic bag whose cross section is reduced by a suitable device and gradually during filling or after filling is increased to accomplish a controlled filling of the plastic bag with polycrystalline silicon.
Es hat sich gezeigt, dass sich dadurch ein Verklemmen des Siliciums vermeiden lässt.It has been found that this can prevent jamming of the silicon.
Dabei benutzt das erfindungsgemäße Verfahren ebenfalls einen Energieabsorber, wie bereits aus dem Stand der Technik, bekannt. Der Befüllvorgang selbst unterscheidet sich jedoch vom aus dem Stand der Technik beschriebenen Vorgehen. Während des Befüllens mit Silicium wird der Kunststoffbeutel nach unten abgesenkt. Durch das Vorhandensein des Energieabsorbers wird weiterhin ein Durchstoßen des Kunststoffbeutels verhindert, da dieser durch den Energieabsorber vor hartem Aufprallen des Siliciums geschützt wird. Gleichzeitig wird durch das Absenken des Kunststoffbeutels sichergestellt, dass keine Verklemmungen im Energieabsorber auftreten.The inventive method also uses an energy absorber, as already known from the prior art. However, the filling process itself differs from the procedure described in the prior art. During filling with silicon, the plastic bag is lowered down. The presence of the energy absorber further prevents piercing of the plastic bag, as it is protected by the energy absorber from hard impact of the silicon. At the same time it is ensured by lowering the plastic bag that no jamming occur in the energy absorber.
Vorzugweise umfasst der Energieabsorber eine Waage.Preferably, the energy absorber comprises a balance.
Diese Waage besteht vorzugsweise aus einem Hartmetall oder Keramik oder Carbiden.This balance is preferably made of a hard metal or ceramic or carbides.
Der vorzugsweise vorgefertigte Beutel wird über den Wägebehälter gezogen und durch Drehen der ganzen Einheit nachzerkleinerungsarm befüllt.The preferably prefabricated bag is pulled over the weighing container and filled by turning the whole unit nachzerkleinerungsarm.
Die Waage ist vorzugsweise als Sieb ausgeführt und befindet sich an einem Boden des Energieabsorbers bzw. des Vorratsbehälters.The balance is preferably designed as a sieve and is located at a bottom of the energy absorber or the storage container.
Vorzugsweise ist ein Rüttelmechanismus vorgesehen, um Verklemmen gänzlich ausschließen zu können und um eine bessere Abtrennung zu bewerkstelligen.
Ein solcher Rüttelmechanismus kann beispielsweise durch Ultraschall erzeugt werden.Preferably, a jarring mechanism is provided to eliminate jamming altogether and to accomplish a better separation.
Such a vibrating mechanism can be generated for example by ultrasound.
Eine weitere bevorzugte Ausführungsform sieht eine Waage mit Übergabe an einen Energieabsorber vor.A further preferred embodiment provides for a balance with transfer to an energy absorber.
Dabei wird der Kunststoffbeutel über den Energieabsorber gezogen, anschließend die Waage inkl. Sieb geöffnet, darauf hin eine Fallbremse geöffnet und geschlossen und der dann der Beutel unter Wellenbewegungen und/oder Rütteln abgesenkt.The plastic bag is pulled over the energy absorber, then the scales incl. Sieve open, then opened a case brake and closed and then lowered the bag under wave motions and / or shaking.
Als Fallbremse dient vorzugsweise eine Vorrichtung, die gegen Kunststoffbeutel bzw. Energieabsorber gedrückt wird.
Dadurch wird der Querschnitt des Kunststoffbeutels bzw. des Energieabsorbers zunächst reduziert, dann kontrolliert freigegeben.
Damit lässt sich der Produktstrom kontrollieren und ein nachzerkleinerungsarmes Einfüllen des Siliciums in den vorgefertigten Beutel erreicht.As a fall brake is preferably a device that is pressed against plastic bag or energy absorber.
As a result, the cross section of the plastic bag or the energy absorber is first reduced, then released controlled.
This makes it possible to control the product flow and to achieve a low-backflow filling of the silicon into the prefabricated bag.
Vorzugsweise besteht der Energieabsorber aus einem nichtmetallischen kontaminationsarmen Werkstoff.Preferably, the energy absorber consists of a non-metallic low-contamination material.
Anders als bei
Vorzugsweise wird der Kunststoffbeutel mittels eines geeigneten Handhabungssystems über den Energieabsorber gezogen. Dazu eignet sich beispielsweise ein Knickarmroboter.Preferably, the plastic bag is pulled over the energy absorber by means of a suitable handling system. For example, an articulated robot is suitable for this purpose.
Gemäß dem erfindungsgemäßen Verfahren wird das polykristalline Silicium über den Energieabsorber in den Kunststoffbeutel eingefüllt.According to the method of the invention, the polycrystalline silicon is introduced into the plastic bag via the energy absorber.
Während des Befüllens wird der Kunststoffbeutel nach unten bewegt.During filling, the plastic bag is moved downwards.
Dies erfolgt vorzugsweise mittels geeigneter Greifersysteme.This is preferably done by means of suitable gripper systems.
Nach dem Befüllvorgang wird der Kunststoffbeutel vorzugsweise verschlossen.After the filling process, the plastic bag is preferably closed.
Zuvor wird der Kunststoffbeutel vorzugsweise evakuiert, indem aus dem Kunststoffbeutel Luft abgesaugt wird und dann verschweißt.Beforehand, the plastic bag is preferably evacuated by sucking air out of the plastic bag and then welding it.
Dabei kann zur einfacheren Handhabung ein Griffloch in den Kunststoffbeutel gestanzt sowie ein etwaiger Überstand des Beutels nach dem Verschweißen entfernt werden.In this case, a handle hole punched into the plastic bag and any supernatant of the bag can be removed after welding for ease of handling.
Im Gegensatz zur festen Position des frei hängenden vorgefertigten Beutels ist es mit vorliegender Erfindung möglich, dass über die flexible Positionierung des Beutelgreifers mittels Handhabungssystemen ein verklemmfreier, nachzerkleinerungsarmer und durchstoßungsarmer Befüllvorgang möglich ist.In contrast to the fixed position of the free-hanging prefabricated bag, it is possible with the present invention that a flexible, non-pinch, low-penetration filling operation is possible via the flexible positioning of the bag gripper by means of handling systems.
Das beschriebene Verfahren eignet sich sowohl zum Verpacken von Polysiliciumbruch für Solaranwendungen als auch für Polysiliciumbruch für die Elektronikindustrie. Insbesondere sind dies Verfahren zum Verpacken von scharfkantigen, bis 10 kg schweren polykristallinen Siliciumbruchstücken geeignet. Die Vorteile kommen insbesondere in Anwesenheit von Bruchstücken mit einem mittleren Gewicht größer 80 g zum Tragen.The method described is suitable both for packaging polysilicon fracture for solar applications and polysilicon fracture for the electronics industry. In particular, these methods are suitable for packaging sharp-edged, up to 10 kg polycrystalline silicon fragments. The advantages are particularly noticeable in the presence of fragments with an average weight of more than 80 g.
Der Kunststoffbeutel besteht vorzugsweise aus einem hochreinen Kunststoff. Dabei handelt es sich bevorzugt um Polyethylen (PE) Polyethylenterephthalat (PET) oder Polypropylen (PP) oder um Verbundfolien.The plastic bag is preferably made of a high purity plastic. These are preferably polyethylene (PE) polyethylene terephthalate (PET) or polypropylene (PP) or composite films.
Eine Verbundfolie ist eine mehrschichtige Verpackungsfolie, aus der flexible Verpackungen gemacht werden. Die einzelnen Folienschichten werden üblicherweise extrudiert oder kaschiert bzw. laminiert. Die Verpackungen finden hauptsächlich in der Lebensmittelindustrie Verwendung.A composite film is a multilayer packaging film from which flexible packaging is made. The individual film layers are usually extruded or laminated or laminated. The packaging is mainly used in the food industry.
Vorzugsweise wird der Kunststoffbeutel während des Befüllens mit Polysiliciumbruch mittels mindestens zweier Elemente am Beutel gehalten und nach unten vom Energieabsorber weg bewegt und nach Beendigung des Befüllvorganges mittels dieser Greifer einer Verschlussvorrichtung, vorzugsweise einer Verschweißvorrichtung, zugeführt.Preferably, the plastic bag during filling with polysilicon fracture by means of at least two elements on Held bag and moved away from the energy absorber away and after completion of the filling process by means of these grippers a closure device, preferably a welding device supplied.
Der Kunststoffbeutel weist vorzugsweise eine Dicke von 10 bis 1000 µm auf.The plastic bag preferably has a thickness of 10 to 1000 microns.
Der Energieabsorber besteht vorzugsweise aus einem nichtmetallischen kontaminationsarmen Werkstoff. Er hat vorzugsweise die Form eines Trichters oder Hohlkörpers.The energy absorber is preferably made of a non-metallic low-contamination material. It is preferably in the form of a funnel or hollow body.
Er besteht vorzugsweise aus Textil-Material (z. B. Gore-Tex® - PTFE-Gewebe oder Polyester/Polyamid-Gewebe), Kunststoffen (z. B. PE, PP, PA, oder Copolymeren dieser Kunststoffe). Besonders bevorzugt besteht er aus einem gummielastischen Kunststoff, z. B. PU, Kautschuk Gummi oder Ethylenvinylacetat (EVA), mit einer Shore A-Härte zwischen 30 A und 120 A, bevorzugt 70 A.It is preferably made of textile material (eg Gore- Tex® - PTFE fabric or polyester / polyamide fabric), plastics (eg PE, PP, PA, or copolymers of these plastics). Particularly preferably it consists of a rubber-elastic plastic, z. As PU, rubber or rubber ethylene ethylene acetate (EVA), with a Shore A hardness between 30 A and 120 A, preferably 70 A.
Das Verschließen des Kunststoffbeutels kann beispielsweise mittels Verschweißen, Verkleben, Vernähen oder Formschluss erfolgen. Vorzugsweise erfolgt es mittels Verschweißen.The closing of the plastic bag can be done for example by means of welding, gluing, sewing or positive locking. Preferably, it is done by welding.
Bevorzugt besteht die Abfüllvorrichtung aus einer Befülleinheit und dem frei hängenden Energieabsorber der mit der Befülleinheit verbunden ist. Bevorzugt hat der frei hängende Energieabsorber die Form eines frei hängenden beweglichen flexiblen Schlauchs oder eine der anderen genannten Formen, die im Folgenden der Einfachheit halber unter dem Begriff Schlauch mit zu verstehen sind.Preferably, the filling device consists of a filling unit and the freely suspended energy absorber which is connected to the filling unit. Preferably, the free-hanging energy absorber has the form of a freely suspended movable flexible hose or one of the other forms mentioned, which are hereinafter to be understood for the sake of simplicity by the term hose with.
Der Kunststoffbeutel wird über den beweglichen flexiblen Schlauch gezogen und der Polybruch über die Befülleinheit und den flexiblen Schlauch in den Beutel eingebracht.The plastic bag is pulled over the movable flexible tube and the poly-break is introduced into the bag via the filling unit and the flexible tube.
Bei der Befülleinheit handelt es sich vorzugsweise um einen Trichter, eine Förderrinne oder eine Rutsche, die mit einem kontaminationsarmen Material verkleidet sind oder aus einem kontaminationsarmen Material bestehen.The filling unit is preferably a funnel, a conveyor trough or a chute, which is provided with a Contaminated material or consist of a low-contamination material.
Der frei hängende Energieabsorber absorbiert einen großen Teil der Bewegungsenergie des in den Beutel fallenden Polysiliciumbruchs. Er schützt die Wände des Kunststoffbeutels vor dem Kontakt mit dem scharfkantigen polykristallinen Silicium und verhindert ein Durchstoßen des Kunststoffbeutels. Dadurch, dass nach dem Befüllen der Kunststoffbeutel nach unten gezogen wird, kommt es zu keinerlei Verklemmungen des polykristallinen Siliciums im Energieabsorber.The free-hanging energy absorber absorbs a large part of the kinetic energy of the polysilicon crack falling in the bag. It protects the walls of the plastic bag from contact with the sharp-edged polycrystalline silicon and prevents puncturing of the plastic bag. The fact that after filling the plastic bag is pulled down, there is no jamming of the polycrystalline silicon in the energy absorber.
Vorzugsweise wird das Polysilicium vor dem Verpacken zunächst portioniert und gewogen.Preferably, the polysilicon is first portioned and weighed prior to packaging.
Die Befülleinheit ist so gestaltet, dass feinste Partikel und Absplitterungen des Polysiliciums vor oder während des Befüllens entfernt werden. Beispielsweise können Partikel mit einer Kantenlänge kleiner 16mm sicher abgesiebt werden.The filling unit is designed so that the finest particles and chippings of the polysilicon are removed before or during filling. For example, particles with an edge length of less than 16 mm can be sieved off safely.
Dazu wird vorzugsweise ein Produktstrom an Polysiliciumbruchstücken über eine Förderrinne transportiert, mittels wenigstens eines Siebs, wobei es sich beim Sieb um eine Lochplatte, ein Stangensieb, eine optopneumatische Sortierung oder eine andere geeignete Vorrichtung handeln kann, in grobe und feine Bruchstücke getrennt, mittels einer Dosierwaage abgewogen und auf ein Zielgewicht dosiert, über eine Abführrinne abgeführt und zu einer Verpackungseinheit transportiert.For this purpose, a product stream of polysilicon fragments is preferably transported via a conveyor trough, by means of at least one sieve, wherein the sieve may be a perforated plate, a bar screen, an optopneumatic sorting or another suitable device, separated into coarse and fine fragments by means of a dosing scale weighed and dosed to a target weight, discharged via a discharge chute and transported to a packaging unit.
Vorzugsweise umfassen das wenigstens eine Sieb und die Dosierwaage an ihren Oberflächen wenigstens teilweise einen kontaminationsarmen Werkstoff wie z.B. ein Hartmetall.Preferably, the at least one sieve and the dosing scales at least partially comprise on their surfaces a low-contamination material, such as e.g. a carbide.
Die Portionierung und Einwaage des Polysiliciumbruchs erfolgt vorzugsweise mittels einer Dosiereinheit für eine Vorrichtung zum Dosieren und Verpacken von Polysiliciumbruchstücken, umfassend eine Förderrinne, geeignet zum Befördern eines Produktstroms an Bruchstücken, wenigstens ein Sieb, geeignet zur Trennung des Produktstroms in grobe und feine Bruchstücke, eine Grobdosierrinne für grobe Bruchstücke und eine Feindosierrinne für feine Bruchstücke, eine Dosierwaage zur Bestimmung des Dosiergewichts, wobei das wenigstens eine Sieb sowie die Dosierwaage an ihren Oberflächen wenigstens teilweise ein Hartmetall umfassen.Portioning and weighing of the polysilicon fracture is preferably by means of a dosing unit for a polysilicon dosing and packaging apparatus comprising a conveyor trough suitable for conveying a product stream of debris, at least one sieve suitable for separation the product stream into coarse and fine fragments, a Groβosierrinne for coarse debris and a Feinosierrinne for fine fragments, a dosing scale for determining the dosing, wherein the at least one screen and the dosing scale at least partially comprise a hard metal on their surfaces.
Eine solche Dosiereinheit dient dazu, Polysiliciumbruchstücke einer bestimmten Größenklasse vor dem Verpacken so exakt wie möglich zu dosieren.Such a dosing unit serves to dose polysilicon fragments of a certain size class as accurately as possible before packaging.
Durch Trennung des Produktstroms in Grob- und Feinteile ist ein exakteres Dosieren des Polysiliciums möglich.By separating the product stream into coarse and fine particles, a more accurate dosing of the polysilicon is possible.
Die abgewogene Menge an Polysiliciumbruchstücken wird nach dem Dosieren und einem evtl. Reinigungsschritt gemäß dem zuvor beschriebenen Verfahren in einen Folienbeutel verpackt.The weighed amount of polysilicon fragments is packed in a foil pouch after dosing and a possible cleaning step according to the method described above.
Die Dosiereinheit umfasst wenigstens ein Sieb, z.B. ein Stangensieb, geeignet zur Abtrennung der Brückstücke des anfänglichen Produktstroms in eine Grob- und Feindosierrinne.The dosing unit comprises at least one sieve, e.g. a bar screen suitable for separating the bridging pieces of the initial product stream into a coarse and fine metering trough.
Vorzugsweise umfasst die Dosiereinheit zwei Siebe, besonders bevorzugt Stangensiebe.Preferably, the metering unit comprises two screens, more preferably bar screens.
Grobe bzw. größere Polysiliciumbruchstücke werden in einer Grobdosierrinne transportiert.Coarse or larger polysilicon fragments are transported in a coarse dosage trough.
Feine bzw. kleinere Polysiliciumbruchstücke werden in einer Feindosierrinne transportiert.Fine or smaller polysilicon fragments are transported in a fine metering trough.
Die Größenverteilung der Polysiliciumbruchstücke im Ausgangsproduktstrom hängt u.a. vom vorangegangen Zerkleinerungsprozessen ab. Die Art der Aufteilung in grobe und feine Bruchstücke sowie die Größe der groben bzw. feinen Bruchstücke hängen vom gewünschten Endprodukt ab, das zu dosieren und zu verpacken ist.The size distribution of the polysilicon fragments in the starting product stream depends inter alia on the preceding comminution processes. The type of division into coarse and fine fragments and the size of the coarse or fine fragments depend on the desired end product, which is to be dosed and packaged.
Eine typische Bruchgrößenverteilung umfasst Bruchstücke der Größen 5-170 mm.A typical fraction size distribution includes pieces of sizes 5-170 mm.
Beispielsweise können Bruchstücke unterhalb einer bestimmten Größe mittels eines Siebs, bevorzugt mittels eines Stangensiebs, in Verbindung mit einer Abführrinne aus der Dosiereinheit abgeführt werden. So lässt es sich bewerkstelligen, dass nur Bruchstücke einer ganz bestimmten Größenklasse dosiert werden.For example, fragments below a certain size can be removed from the dosing unit by means of a sieve, preferably by means of a rod sieve, in conjunction with a discharge channel. So it can be accomplished that only fragments of a very specific size class are dosed.
Durch den Transport des Polysiliciums auf den Förderinnen entstehen erneut unerwünschte Produktgrößen. Diese können beispielsweise durch einen Abtrennen in der Dosierwaage wieder entfernt werden. Dazu ist die Waage mit einer Öffnung, einem wechselbaren Abtrennmechanismus und einer Abführeinheit ausgestattet.By transporting the polysilicon on the conveyor again arise undesirable product sizes. These can be removed again, for example, by separating them in the dosing scale. For this purpose, the balance is equipped with an opening, an exchangeable separation mechanism and an evacuation unit.
Die abgeführten kleineren Bruchstücke werden in nach gelagerten Prozessen erneut klassifiziert, dosiert und verpackt oder einer anderen Verwendung zugeführt.The removed smaller fragments are reclassified in downstream processes, dosed and packaged or put to another use.
Vorzugsweise umfasst die Dosiereinheit eine Feinanteilrutsche. Diese kann einschwenkbar gestaltet sein. Je nach gewünschtem Zielprodukt (Bruchgrößenverteilung) wird diese verwendet, um Feinanteile auszusieben und vom Produktstrom für die Feindosierung abzutrennen.Preferably, the dosing unit comprises a fine particle chute. This can be designed einschwenkbar. Depending on the desired target product (fractional size distribution), this is used to screen fines and separate them from the product stream for fine dosing.
Die Dosierung des Polysiliciums über die beiden Dosierrinnen lässt sich automatisieren.The dosage of the polysilicon over the two dosing channels can be automated.
Besonders vorteilhaft ist die Verwendung von Hartmetallelementen für Sieb und Dosierwaage. Zumindest Sieb und Dosierwaage sollten an ihren Oberflächen wenigstens teilweise Hartmetall aufweisen.Particularly advantageous is the use of hard metal elements for sieve and dosing scale. At least the screen and the dosing scale should at least partially have carbide on their surfaces.
Unter Hartmetallen versteht man gesinterte Carbidhartmetalle. Es gibt neben den konventionellen Hartmetallen auf Wolframcarbid-Basis auch Hartmetalle, die vorzugsweise Titancarbid und Titannitrid als Hartstoffe beinhalten, wobei die Bindephase dabei Nickel, Kobalt und Molybdän umfasst. Auch deren Einsatz ist im Rahmen des erfindungsgemäßen Verfahrens bevorzugt.By hard metals is meant sintered Carbidhartmetalle. In addition to conventional tungsten carbide-based hard metals, there are also hard metals, preferably titanium carbide and titanium carbide Titanium nitride as hard materials, wherein the binder phase thereby comprises nickel, cobalt and molybdenum. Their use is also preferred in the context of the method according to the invention.
Vorzugsweise umfassen zumindest die mechanisch beanspruchten, verschleißempfindlichen Oberflächenbereiche von Sieb und Dosierwaage Hartmetall oder Keramik/Carbide. Vorzugsweise ist wenigstens ein Sieb komplett aus Hartmetall gefertigt.Preferably, at least the mechanically stressed, wear-sensitive surface areas of the sieve and the metering balance comprise cemented carbide or ceramic / carbides. Preferably, at least one screen is made entirely of hard metal.
Sieb und Dosierwaage können teilweise oder vollflächig mit einer Beschichtung versehen sein. Als Beschichtung wird vorzugsweise ein Material, ausgewählt aus der Gruppe bestehend aus Titannitrid, Titancarbid, Aluminiumtitannitrid und DLC (Diamond Like Carbon), verwendet.Sieve and dosing scales may be partially or fully coated with a coating. The coating used is preferably a material selected from the group consisting of titanium nitride, titanium carbide, aluminum titanium nitride and DLC (Diamond Like Carbon).
Es hat sich gezeigt, dass die Verwendung von Hartmetallelementen die mechanische Stabilität der Dosiereinheit verbessert. Zudem werden die Wartungsintervalle der Dosiereinheit deutlich größer, da die Hartmetallelemente weniger verschleißen als die im Stand der Technik benutzten Silicium- und Kunststoffverkleidungen.It has been found that the use of hard metal elements improves the mechanical stability of the dosing unit. In addition, the maintenance intervals of the dosing unit become significantly larger, since the hard metal elements wear less than the silicon and plastic cladding used in the prior art.
Überraschenderweise hat sich gezeigt, dass die Kontamination von Silicium durch die Verwendung von Hartmetall sich gegenüber der Verwendung von Silicium- oder Kunststoffauskleidungen nicht signifikant erhöht. Dies betrifft insbesondere die Kontamination mit Wolfram und Kobalt.Surprisingly, it has been found that the contamination of silicon by the use of hard metal does not significantly increase over the use of silicon or plastic liners. This concerns in particular the contamination with tungsten and cobalt.
Die Dosiereinheit ermöglicht es weiterhin, über eine geregelte Schwenkrinne den Silicium-Produktstrom auf mehrere Dosier- und Verpackungssysteme aufzuteilen und somit eine Kombination mehrerer Dosiersysteme, die mit einem Ausgangsprodukt befüllt werden und nach Dosieren und Wägen zu unterschiedlichen Verpackungsmaschinen transportiert werden.The dosing unit also makes it possible to divide the silicon product flow over a controlled swirl chute into several dosing and packaging systems and thus a combination of several dosing systems, which are filled with a starting product and are transported to different packaging machines after dosing and weighing.
Das Dosiersystem beinhaltet Abtrennungsmechanismen (Siebe), die unerwünschte, kleinere, Produktgrößen absieben und diese dann den vorgelagerten Prozessen (Sieben, Klassifizieren) zuführen. Vorzugsweise werden die Polysiliciumbruchstücke in zwei Kunststoffbeutel verpackt.The dosing system includes separation mechanisms (sieves) that screen out unwanted, smaller, product sizes and then deliver them to the upstream processes (sieving, classifying). Preferably, the polysilicon fragments are packaged in two plastic bags.
Das Verpacken in einen ersten Kunststoffbeutel erfolgt wie zuvor erwähnt unter Verwendung eines Energieabsorbers.The packaging in a first plastic bag is carried out as previously mentioned using an energy absorber.
Anschließend wird der erste Kunststoffbeutel verschlossen.Subsequently, the first plastic bag is closed.
Vorzugsweise wird der verschweißte Beutel anschließend über ein Greifsystem oder ein Förderband an ein Maschinenteil zum Anbringen eines zweiten Beutels übergeben.Preferably, the sealed bag is then transferred via a gripping system or a conveyor belt to a machine part for attaching a second bag.
Alternativ dazu kann das Polysilicium auch in zwei ineinander gesteckte Beutel gefüllt werden.Alternatively, the polysilicon may also be filled into two nested bags.
Nach dem Verschweißen des Innenbeutels rutscht dieser bis zum Boden des Außenbeutels ab und dieser kann ebenfalls verschweißt werden.After welding the inner bag this slips down to the bottom of the outer bag and this can also be welded.
Eine andere Ausführungsform sieht vor, den Innen- und Außenbeutel vollständig ineinander zu stecken, den Innenbeutel zu verschweißen, umzuklappen und nach optionaler Kontrolle den Außenbeutel zu verschweißen.In another embodiment, the inner and outer bags are completely inserted into one another, the inner bag is welded, folded over and, after optional control, the outer bag is welded.
Claims (6)
- Method for packaging polycrystalline silicon, in which a plastic bag is filled with polycrystalline silicon by means of a filling device, the filling device comprising a freely suspended energy absorber consisting of a nonmetallic low-contamination material, characterized in that the plastic bag is pulled over the energy absorber and filled with polycrystalline silicon, and the plastic bag is lowered downward during the filling, so that silicon slides into the plastic bag, wherein the cross section of the plastic bag is reduced by means of a suitable device before the start of its lowering movement, and is increased gradually during the filling or after the filling, in order to achieve controlled filling of the plastic bag with polycrystalline silicon.
- Method according to Claim 1, characterized in that the plastic bag consists of polyethylene (PE), polyethylene terephthalate (PET) or polypropylene (PP) or composite sheet.
- Method according to Claim 1, wherein the energy absorber consists of a nonmetallic low-contamination material and has the shape of a funnel, a tube or a hollow body.
- Method according to one of Claims 1 to 3, wherein the storage container or energy absorber comprises a weighing balance.
- Method according to Claim 1, wherein the storage container or energy absorber comprises a weighing balance which is configured as a screen and is located at the bottom of the energy absorber or storage container.
- Method according to one of Claims 1 to 5, wherein a mechanism is provided which produces a wave-like and/or shaking movement of the storage container or energy absorber during the filling, in order to be able to fully prevent sticking and achieve better separation.
Priority Applications (1)
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---|---|---|---|
EP20130190673 EP2692645A1 (en) | 2011-08-18 | 2012-08-10 | Method for Packaging Polycrystalline Silicon |
Applications Claiming Priority (1)
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---|---|---|---|
DE201110081196 DE102011081196A1 (en) | 2011-08-18 | 2011-08-18 | Process for packaging polycrystalline silicon |
Related Child Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP20130190673 Division EP2692645A1 (en) | 2011-08-18 | 2012-08-10 | Method for Packaging Polycrystalline Silicon |
EP20130190673 Division-Into EP2692645A1 (en) | 2011-08-18 | 2012-08-10 | Method for Packaging Polycrystalline Silicon |
Publications (3)
Publication Number | Publication Date |
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EP2559620A2 EP2559620A2 (en) | 2013-02-20 |
EP2559620A3 EP2559620A3 (en) | 2013-07-17 |
EP2559620B1 true EP2559620B1 (en) | 2014-06-18 |
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Family Applications (2)
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EP20120179993 Active EP2559620B1 (en) | 2011-08-18 | 2012-08-10 | Method for packaging polycrystalline silicon |
EP20130190673 Withdrawn EP2692645A1 (en) | 2011-08-18 | 2012-08-10 | Method for Packaging Polycrystalline Silicon |
Family Applications After (1)
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EP20130190673 Withdrawn EP2692645A1 (en) | 2011-08-18 | 2012-08-10 | Method for Packaging Polycrystalline Silicon |
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US (1) | US9090364B2 (en) |
EP (2) | EP2559620B1 (en) |
JP (1) | JP5726823B2 (en) |
KR (1) | KR101486450B1 (en) |
CN (1) | CN102951314B (en) |
CA (1) | CA2783460C (en) |
DE (1) | DE102011081196A1 (en) |
ES (1) | ES2502765T3 (en) |
Families Citing this family (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102012220422A1 (en) * | 2012-11-09 | 2014-05-15 | Wacker Chemie Ag | Packaging of polycrystalline silicon |
DE102013203336A1 (en) * | 2013-02-28 | 2014-08-28 | Wacker Chemie Ag | Packaging polysilicon fragments |
CN103204279B (en) * | 2013-04-02 | 2015-09-30 | 新特能源股份有限公司 | Breaking polycrystalline silicon packaging line and method |
DE102013214099A1 (en) * | 2013-07-18 | 2015-01-22 | Wacker Chemie Ag | Packaging of polycrystalline silicon |
DE102013223883A1 (en) * | 2013-11-22 | 2015-05-28 | Wacker Chemie Ag | Process for producing polycrystalline silicon |
CN105292596B (en) * | 2014-06-16 | 2017-08-01 | 新特能源股份有限公司 | A kind of polysilicon packs metering control system |
KR102420347B1 (en) * | 2014-09-26 | 2022-07-13 | 가부시끼가이샤 도꾸야마 | Polysilicon package |
DE102015209629A1 (en) * | 2015-05-26 | 2016-12-01 | Wacker Chemie Ag | Packaging of polysilicon |
JP6472732B2 (en) | 2015-09-15 | 2019-02-20 | 信越化学工業株式会社 | Resin material, plastic bag, polycrystalline silicon rod, polycrystalline silicon lump |
CN111994659B (en) * | 2020-07-23 | 2024-10-22 | 南京科技职业学院 | Feeding equipment for polycrystalline silicon production |
CN115610727A (en) * | 2022-11-10 | 2023-01-17 | 内蒙古大全新能源有限公司 | Packaging method for irregular polycrystalline silicon lump material |
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US1653200A (en) * | 1927-12-20 | belcher | ||
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JPS5319298A (en) * | 1976-08-07 | 1978-02-22 | Ajinomoto Kk | Apparatus for automatically measuring and charging |
CH608444A5 (en) | 1976-10-02 | 1979-01-15 | Borer Georges Botra | Process for filling a powdery substance into a drum and apparatus for carrying out the process |
JPS5349597A (en) | 1976-10-18 | 1978-05-06 | Nippon Atom Ind Group Co Ltd | Method of filling scattering powder in container |
FR2377937A1 (en) * | 1977-01-20 | 1978-08-18 | Alfa Laval Ag | METHOD AND DEVICE FOR DEAERATION OF POWDERS, SUCH AS MILK POWDERS |
DE2907015A1 (en) | 1979-02-23 | 1980-09-04 | Hauni Werke Koerber & Co Kg | DEVICE FOR FILLING UP SHOULDABLE GOETER IN PACKAGING CONTAINER |
DE3221436C2 (en) | 1982-06-07 | 1984-12-06 | Windmöller & Hölscher, 4540 Lengerich | Device for filling large-volume sacks |
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JP4156046B2 (en) | 1996-06-07 | 2008-09-24 | 株式会社岡部ロック | Contents filling method and apparatus |
DE19654612C2 (en) * | 1996-12-20 | 1999-07-01 | Korsch Pressen Ag | Method and device for checking tablet parameters |
PE56799A1 (en) * | 1997-10-10 | 1999-06-10 | Inhale Therapeutic Syst | METHOD AND APPARATUS FOR TRANSPORTING POWDER |
FR2789050B1 (en) * | 1999-01-28 | 2001-04-13 | Total Raffinage Distribution | METHOD AND DEVICE FOR FACILITATING THE FILLING OF VERTICAL TUBES USING A PARTICULATE MATERIAL |
ES2208537T3 (en) * | 2000-03-29 | 2004-06-16 | Sig Pack Systems Ag | DEVICE FOR PLACEMENT IN CYLINDRICAL CONTAINERS OF A PILE OF PRODUCTS IN THE FORM OF A DISC, IN PARTICULAR FRIED POTATOES. |
DE10204176A1 (en) | 2002-02-01 | 2003-08-14 | Wacker Chemie Gmbh | Device and method for the automatic, low-contamination packaging of broken polysilicon |
FR2846632B1 (en) | 2002-10-31 | 2006-02-10 | Mettler Toledo Flexilab Sas | APPARATUS FOR PRECISION DETERMINATION OF POWDER |
ITMI20030519A1 (en) * | 2003-03-18 | 2004-09-19 | Concetti Spa | EQUIPMENT FOR FILLING BAGS WITH MATERIAL |
DE102004048948A1 (en) | 2004-10-07 | 2006-04-20 | Wacker Chemie Ag | Apparatus and method for low-contamination, automatic breakage of silicon breakage |
DE102005037916B4 (en) * | 2004-11-11 | 2018-08-02 | Windmöller & Hölscher Kg | Machine for forming, filling and closing sacks and method of operating same |
JP4115986B2 (en) * | 2004-11-24 | 2008-07-09 | 株式会社大阪チタニウムテクノロジーズ | Packing method for polycrystalline silicon |
DE102007027110A1 (en) * | 2007-06-13 | 2008-12-18 | Wacker Chemie Ag | Method and apparatus for packaging polycrystalline silicon breakage |
-
2011
- 2011-08-18 DE DE201110081196 patent/DE102011081196A1/en not_active Withdrawn
-
2012
- 2012-07-24 CA CA 2783460 patent/CA2783460C/en not_active Expired - Fee Related
- 2012-07-31 KR KR20120083800A patent/KR101486450B1/en active IP Right Grant
- 2012-08-10 EP EP20120179993 patent/EP2559620B1/en active Active
- 2012-08-10 EP EP20130190673 patent/EP2692645A1/en not_active Withdrawn
- 2012-08-10 US US13/571,485 patent/US9090364B2/en active Active
- 2012-08-10 ES ES12179993.6T patent/ES2502765T3/en active Active
- 2012-08-17 JP JP2012180755A patent/JP5726823B2/en active Active
- 2012-08-17 CN CN201210295534.2A patent/CN102951314B/en active Active
Also Published As
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EP2559620A2 (en) | 2013-02-20 |
CN102951314B (en) | 2015-05-20 |
CN102951314A (en) | 2013-03-06 |
JP5726823B2 (en) | 2015-06-03 |
US9090364B2 (en) | 2015-07-28 |
KR101486450B1 (en) | 2015-01-26 |
DE102011081196A1 (en) | 2013-02-21 |
ES2502765T3 (en) | 2014-10-06 |
CA2783460A1 (en) | 2013-02-18 |
US20130042582A1 (en) | 2013-02-21 |
KR20130020875A (en) | 2013-03-04 |
EP2692645A1 (en) | 2014-02-05 |
JP2013039977A (en) | 2013-02-28 |
CA2783460C (en) | 2015-02-10 |
EP2559620A3 (en) | 2013-07-17 |
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