EP2718071B1 - Block molding machine and method for vertically adjusting a block molding machine - Google Patents
Block molding machine and method for vertically adjusting a block molding machine Download PDFInfo
- Publication number
- EP2718071B1 EP2718071B1 EP20120725445 EP12725445A EP2718071B1 EP 2718071 B1 EP2718071 B1 EP 2718071B1 EP 20120725445 EP20120725445 EP 20120725445 EP 12725445 A EP12725445 A EP 12725445A EP 2718071 B1 EP2718071 B1 EP 2718071B1
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- EP
- European Patent Office
- Prior art keywords
- main frame
- mould
- lifting device
- moulding machine
- ram
- 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.)
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Links
- 238000000465 moulding Methods 0.000 title claims description 27
- 238000000034 method Methods 0.000 title claims description 9
- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 claims description 20
- 239000004575 stone Substances 0.000 description 22
- 238000004519 manufacturing process Methods 0.000 description 5
- 238000007667 floating Methods 0.000 description 4
- 239000000203 mixture Substances 0.000 description 2
- 238000007789 sealing Methods 0.000 description 2
- 239000003086 colorant Substances 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000013270 controlled release Methods 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- JEIPFZHSYJVQDO-UHFFFAOYSA-N iron(III) oxide Inorganic materials O=[Fe]O[Fe]=O JEIPFZHSYJVQDO-UHFFFAOYSA-N 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
Images
Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B1/00—Producing shaped prefabricated articles from the material
- B28B1/04—Producing shaped prefabricated articles from the material by tamping or ramming
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B15/00—General arrangement or layout of plant ; Industrial outlines or plant installations
- B28B15/005—Machines using pallets co-operating with a bottomless mould; Feeding or discharging means for pallets
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B3/00—Producing shaped articles from the material by using presses; Presses specially adapted therefor
- B28B3/02—Producing shaped articles from the material by using presses; Presses specially adapted therefor wherein a ram exerts pressure on the material in a moulding space; Ram heads of special form
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B7/00—Moulds; Cores; Mandrels
- B28B7/0097—Press moulds; Press-mould and press-ram assemblies
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B15/00—General arrangement or layout of plant ; Industrial outlines or plant installations
Definitions
- the invention relates to a block forming machine and a method for height adjustment of a block forming machine.
- Stone forming machines are known in various embodiments in the prior art. Essentially, it is a matter of providing a mold in a clocked process, of filling a concrete quantity into the mold cavities of the mold, compacting the concrete quantity with a stamp and / or a vibrating device and then demoulding the moldings.
- the concrete quantity is filled from a concrete bunker into a filling car and let into the mold from the filling car. Subsequently, the concrete is compacted with a vibrating device and with a punch pressing on the concrete. In the next step, the punch and the mold are raised and the base pallet with the moldings is removed from the stone forming machine.
- Stone forming machines can be used to produce differently shaped stones. These may differ in height, in particular. For example, concrete slabs have a height of about 30 mm, while curbs can have a height of about 300 mm. In order to produce stones with different heights, the stone forming machine must be adjustable. Conventional stone forming machines have a main frame, inside which a height-adjustable subframe is arranged. For height adjustment spindle drives are usually provided. These can be turned by hand or with electric motors to the desired height.
- the block making machine has a bearing block and a main frame which can be fixed in height adjustable manner on the bearing block, wherein in particular on the main frame at least one mold lifting device is provided for raising and lowering a stone mold.
- the main frame is movable relative to the bearing block by actuation of the supported on the bearing block Formhubvoriques, in particular raised or lowered.
- the bearing block may be an arbitrarily designed support structure, such as a frame, a subframe or the like, or a foundation.
- the Formhubvoriques comprises at least one Formhubzylinder and / or a form of traverse. Due to the mold cross-member, the device is stabilized so that lifting with only one lifting cylinder is possible. Also, a wider shape can be used. With a Formhubzylinder not only higher forms over a larger stroke are quickly relocated, but according to the invention, the entire machine.
- the Formhubvorraum is supported over at least one Abdschreibklotz relative to the bearing block.
- the use of an ejector block ensures that the former and the pedestal do not come into direct contact. This is advantageous, on the one hand to provide the largest possible stroke of the mold lifting device for normal production operation and on the other hand, the stroke of the molding device need not be extended in addition to provide the lifting function for the main frame of the machine.
- the Abdschreibklotz is only used in the stone forming machine when a height adjustment of the main frame is to take place.
- At least one coupled to the bearing block and the main frame shape guide rod can be provided.
- the shape guide rod has the task to guide the Formhubvorraum. In this way it is ensured that the orientation of the Formhubvortechnik is always the same. This is particularly advantageous when multiple Formhubzylinder be used, since they can not be operated as uniform in the rule, as would be necessary for a uniform lifting of the stone forming machine.
- the mold lifting device is fixed to the mold guide rod.
- the shape guide rod is then mounted on floating bearing on the main frame or on the bearing block. It has been found that a Formhubvorraum fixed to the mold guide rods is not tilted.
- a punch lifting device for raising and lowering at least one punch can be provided on the main frame.
- the punch lifting device comprises at least one punch lifting cylinder and / or a stamping crosshead.
- At least one of the bearing block and the main frame coupled punch guide rod is provided.
- the purpose of the punch guide rod is to keep the punch lifting device and the punch attached to the punch lifting device in a constant orientation regardless of the stroke position. In this way, a uniform contact pressure over the entire stamp support surface is achieved.
- the punch lifting device is also fixed to the punch guide rod.
- the punch guide rod is then mounted on floating bearing on the main frame or on the bearing block. It has been found that a punch lifting device, which, like a carriage, is moved along stationary punch guide rods, due to the high-acting forces and the partial uneven application of force tends to tilt. This is prevented by the attachment of the Stempelhubvorraum to the punch guide rod.
- the Formhubvorraum is coupled to the punch guide rod and / or the Stempelhubvorides is coupled to the mold guide rod. This mutual coupling increases the precision of alignment even with a particularly high force input. The arrangement is also space-saving.
- mold guide rods and punch guide rods may be provided parallel to each other, wherein the mold guide rods are arranged diagonally opposite one another.
- This arrangement in which the mold guide rods and the punch guide rods define edges of an imaginary cuboid, makes it possible to guide the stamp and / or the mold in a space-saving arrangement particularly stable against tilting.
- the mold guide rod and / or the punch guide rod can be guided by at least one guide unit in the bearing block and / or in the main frame.
- the guide unit is a floating bearing. In the guide unit, a guide rod is guided with high precision at low friction.
- the block making machine has a main frame which can be fixed in height adjustable manner by at least one main frame locking unit on the bearing block.
- the main frame relative to the bearing block can be lowered by loosening the Hauptrahmenfeststellü.
- the advantage of this solution is the fact that the lowering can be done very quickly because the main frame no longer needs to be cranked down spindle drives.
- the Formhubvorraum can be used.
- the mold lifting device Before releasing the locking unit, the mold lifting device can be moved so that it is supported on the bearing block. This makes it possible to lower the main frame in a controlled manner by releasing the locking unit by retracting the lifting cylinder. If the main frame is at the desired height, this height can be fixed by tightening the locking unit.
- the main frame on at least one longitudinal guide element such as a mandrel or a shaft
- the bearing block with the locking unit can be fixed.
- the mandrel has a double function here. First, it ensures accurate alignment of the main frame in the horizontal plane. On the other hand, it allows a precise height adjustment of the main frame.
- the method according to the invention for height adjustment of a block making machine comprises the steps of the method of a forming device in a position supported on a bearing block; solving a main frame detecting unit for a main frame; operating the mold lift device such that the main frame is raised; and tightening the main frame detecting unit for the main frame.
- the main frame detection unit may be designed as a jaw.
- FIGS. 1 to 7 an embodiment of the block molding machine 1 according to the invention is shown in several views and operating conditions.
- the stone forming machine 1 comprises a main frame 2, which is mounted on a bearing block 3.
- Main frame 2 and bearing block 3 are referred to together as a frame 4.
- the bearing block 3 has in the embodiment shown here a rectangular platform 5 with legs 7 in the form of rectangular tubes. In principle, however, the legs 7 can also be designed in any other way.
- a main frame locking unit 9 and a main frame guide unit 10 are assigned to each mandrel 8 on the part of the main frame 2.
- the main frame 2 is a frame construction of profiles 11 welded together.
- the main frame 2 is in the representations of Fig. 1 . 4 and 6 trapezoidal and in the side views of Fig. 2 . 3 . 5 and 7 rectangular.
- the bearing block 3 and the main frame 2 a plurality of devices are attached.
- longitudinal beams 12 are provided.
- the longitudinal beams 12 are also referred to as a static bridge.
- webs 16 of a vibrating table 17 are arranged, on which underlay palettes 13 can be pushed cyclically.
- the moldings 14 are produced.
- the vibrating table 17 is mounted on the bearing block 3 via spring elements 18.
- On the support pallet 13 can be lowered with a Formhubvoriques 19 vertically from above a downwardly and upwardly open stone mold 20 (short: shape).
- Molds 20 are available in various designs to represent a wide range of production. For example, there are molds 20 for stone slabs, paving stones, hollow stones and curbs. As a rule, the molds 20 have a plurality of mold cavities 21 for a plurality of moldings 14.
- the mold cavities 21 can be filled via concrete filling devices 22, 23 with a concrete amount 24, 25.
- two concrete filling devices 22, 23 are provided, of which the first one fills a so-called core concrete quantity 24 and the other serves to apply a facing concrete amount 25 as a cover layer to a layer of core concrete quantity 24.
- the concrete filling devices 22, 23 each have a concrete bunker 26, 27, which can be filled via concrete feeders 28, 29 with the concrete amount 24, 25.
- the core concrete bunker 26 has a larger volume than the header concrete bunker 27.
- On the floors 30, 31 of the concrete bunker 26, 27 is in each case a closure plate 32, 33 is provided.
- the concrete amount 24, 25 can be passed from the concrete bunker 26, 27 in a filling carriage 34, 35.
- the filling carriage 34, 35 is open at the top and bottom.
- a table plate 36, 37 forms the bottom for the concrete amount 24, 25 in the filling carriage 34, 35.
- the filling carriage 34, 35 is displaceable with a hydraulic cylinder 38, 39 on the table frame 36, 37 fixed to the main frame 2. If the loading carriage 34, 35 is moved in the direction of the mold 20, then the filling carriage 34, 35 pulls the closure plate 32, 33 fastened to it via support elements 40, 41 into a position closing the concrete bunker 26, 27.
- an oscillating grate 42 is arranged to be able to fill the core concrete amount 24 evenly in the mold nests 21.
- the filling carriage 34, 35 is retracted back to the retracted position ES with the hydraulic cylinder 38, 39.
- the closure plate 32, 33 are pulled into a concrete bunker 26, 27 opening position OES.
- the stone forming machine can process differently colored intent concrete amount.
- the Beton Stahlettidron 23 for the intent concrete amount 25 three feed hopper 44-46. These can stockpile 25 different colors such as black S, red R and yellow G stockpiled.
- the header concrete amount 25 can be conveyed via conveyor units 47 into a hopper 48, from which it can be introduced via a horizontally movable hose 49 into the bunker 27 for the header concrete amount 25.
- the mold 20 can be lowered with a Formhubvorraum 19 on the support pallet 13 and raised after filling the mold nests 21 with concrete amount 24, 25 and its compression again to demold the moldings 14.
- the mold lifting device 19 comprises a mold cross-member 50 with a mold holder 51 for a mold 20.
- the mold cross-member 50 is in the side view of Fig. 1 . 4 and 6 U-shaped.
- At the upper transverse web 52 of the form traverse 50 engage laterally two Formhubzylinder 53 at.
- the Formhubzylinder 53 are attached via a bracket 54 on the main frame 2.
- the mold traverse 50 is coupled to first guides 55 consisting of two vertical guide rods 57 and second guides 56 consisting of two vertical guide rods 58.
- the guide rods 57, 58 are associated with respect to their longitudinal axes LA parallel to each other and each one of the four corners 61 of the mold cross member 50.
- the mold lifting device 19 is fixedly connected to two diagonally opposite guide rods 57, the mold guide rods 57, in particular via locking units 62, 63.
- the mold cross member 50 can slide along.
- These guide rods 58 are guided by a guide unit 64 in the form of traverse 50.
- the guide rods 57, 58 are coupled to the frame 4 via floating bearing 65 on the main frame 2 and the bearing block 3 vertically displaceable.
- the punch lifting device 66 comprises a stamping crosspiece 68.
- the stamping crosspiece 68 has a punch holder 69 for exchangeable receiving stamps 67.
- the stamping crosshead 68 is moved by a centrally arranged stamp lifting cylinder 70.
- the Stempelhubzylinder 70 is also attached via the bracket 54 on the main frame 2.
- the stamping crosshead 68 is coupled to the second guides 56 consisting of two guide rods 58 and the first guides 55.
- the two diagonally opposite guide rods 58 which are not form guide rods 57, are referred to as punch guide rods 58 because they are attached to the stamping crosshead 68 via lock units 71.
- the stamp crosspiece 68 may slide along the mold guide rods 57 via guide units 73 along.
- the mold lift device 19, the Stempelhub responded 66 and the guide rods 57 are double symmetrical with respect to two central longitudinal planes MLE1, MLE2.
- the main frame 2 in height is displaced.
- the mold cross member 50 is displaced downward until it is supported on the bearing block 3 via four Abdrückklötze 76 associated with the guide rods 57, 58, in particular the guide rods 57, 58 embracing.
- the further extension of the Formhubzylinder 53 of the Formhubvorraum 19 causes the main frame 2 is raised with all attachments.
- the main frame locking units 9 are to be loosened or tightened.
- the lowering of the main frame 2 can be done in the simplest case by controlled release of the main frame locking units 9.
- the lowering can be supported by the Formhubvoriques 19 by the mold crosshead 50 is moved into a supported on the bracket 3 position AP before releasing the Hauptrittenfeststellein clutch 9 and retracted after release of the Formhubzylinder 53.
- the main frame 2 is fixed by the main frame locking units 9 to the spikes 8 of the bearing block 3 with the main frame locking unit 9.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Ceramic Engineering (AREA)
- Mechanical Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Press-Shaping Or Shaping Using Conveyers (AREA)
- Moulds, Cores, Or Mandrels (AREA)
- Machine Tool Units (AREA)
- Processing Of Stones Or Stones Resemblance Materials (AREA)
- Revetment (AREA)
Description
Die Erfindung betrifft eine Steinformmaschine und ein Verfahren zur Höhenverstellung einer Steinformmaschine.The invention relates to a block forming machine and a method for height adjustment of a block forming machine.
Steinformmaschinen sind in vielfältigen Ausführungsformen im Stand der Technik bekannt. Im Kern geht es darum, in einem getakteten Prozess eine Form bereitzustellen, ein Betongemenge in die Formnester der Form einzufüllen, das Betongemenge mit einem Stempel und/oder einer Rütteleinrichtung zu verdichten und anschließend die Formlinge zu entformen. Hierbei hat es sich bewährt, Unterlagspaletten in die Steinformmaschine einzuschieben und nach oben und unten offene Formen auf die Unterlagspaletten abzusenken. Das Betongemenge wird aus einem Betonbunker in einen Füllwagen abgefüllt und vom Füllwagen aus in die Form eingelassen. Anschließend wird der Beton mit einer Rütteleinrichtung und mit einem auf den Beton drückenden Stempel verdichtet. Im nächsten Schritt werden der Stempel und die Form angehoben und die Unterlagspalette mit den Formlingen wird aus der Steinformmaschine entnommen.Stone forming machines are known in various embodiments in the prior art. Essentially, it is a matter of providing a mold in a clocked process, of filling a concrete quantity into the mold cavities of the mold, compacting the concrete quantity with a stamp and / or a vibrating device and then demoulding the moldings. Here it has proven useful to insert underlay pallets in the stone forming machine and lower downwards and downwards open forms on the underlay palettes. The concrete quantity is filled from a concrete bunker into a filling car and let into the mold from the filling car. Subsequently, the concrete is compacted with a vibrating device and with a punch pressing on the concrete. In the next step, the punch and the mold are raised and the base pallet with the moldings is removed from the stone forming machine.
In der
Mit Steinformmaschinen können verschieden geformte Steine hergestellt werden. Diese können sich insbesondere auch in der Höhe unterscheiden. So haben beispielsweise Betonplatten eine Höhe von ca. 30 mm, während Bordsteine eine Höhe von ca. 300 mm haben können. Um Steine mit unterschiedlichen Höhen fertigen zu können, muss die Steinformmaschine einstellbar sein. Herkömmliche Steinformmaschinen haben einen Hauptrahmen, in dessen Innern ein höhenverstellbarer Hilfsrahmen angeordnet ist. Zur Höhenverstellung werden üblicherweise Spindeltriebe vorgesehen. Diese können von Hand oder mit Elektromotoren auf die gewünschte Höhe gedreht werden.Stone forming machines can be used to produce differently shaped stones. These may differ in height, in particular. For example, concrete slabs have a height of about 30 mm, while curbs can have a height of about 300 mm. In order to produce stones with different heights, the stone forming machine must be adjustable. Conventional stone forming machines have a main frame, inside which a height-adjustable subframe is arranged. For height adjustment spindle drives are usually provided. These can be turned by hand or with electric motors to the desired height.
Es hat sich gezeigt, dass die Spindeltriebe eine sehr genaue Einstellung ermöglichen. Als nachteilig wird aber angesehen, dass die Einstellung der Höhe mit einem hohen Arbeitsaufwand verbunden ist, weil der Hilfsrahmen im Hauptrahmen nach einer Höhenverstellung aufwendig justiert werden muss. Zudem ist die Höhenverstellung mit Spindeltrieben langsam.It has been shown that the spindle drives allow a very accurate adjustment. A disadvantage, however, considered that the adjustment of the height is associated with a high workload, because the subframe in the main frame after a height adjustment must be adjusted consuming. In addition, the height adjustment with spindle drives is slow.
Vor diesem Hintergrund ist es die Aufgabe der Erfindung, eine Steinformmaschine aufzuzeigen, bei der eine Höhenverstellung einfach und schnell vorgenommen werden kann. Ferner soll ein Verfahren zur Höhenverstellung eines Hauptrahmens einer Steinformmaschine aufgezeigt werden.Against this background, it is the object of the invention to show a stone forming machine in which a height adjustment can be made easily and quickly. Furthermore, a method for height adjustment of a main frame of a block making machine will be shown.
Der gegenständliche Teil dieser Aufgabe wird durch eine Steinformmaschine mit den Merkmalen von Anspruch 1 gelöst. Vorteilhafte Ausführungsformen der Erfindung gehen aus den Unteransprüchen hervor. Der verfahrensmäßige Teil der Aufgabe wird durch ein Verfahren mit den Merkmalen von Anspruch 15 gelöst.The objective part of this object is achieved by a block forming machine with the features of
Die Steinformmaschine weist einen Lagerbock und einen am Lagerbock höhenverstellbar festlegbaren Hauptrahmen auf, wobei insbesondere am Hauptrahmen wenigstens eine Formhubvorrichtung zum Heben und Senken einer Steinform vorgesehen ist. Der Hauptrahmen ist gegenüber dem Lagerbock durch Betätigung der auf dem Lagerbock abgestützten Formhubvorrichtung bewegbar, insbesondere anhebbar oder absenkbar.The block making machine has a bearing block and a main frame which can be fixed in height adjustable manner on the bearing block, wherein in particular on the main frame at least one mold lifting device is provided for raising and lowering a stone mold. The main frame is movable relative to the bearing block by actuation of the supported on the bearing block Formhubvorrichtung, in particular raised or lowered.
Der Lagerbock kann eine beliebig gestaltete Tragkonstruktion, wie ein Gestell, ein Unterrahmen oder ähnliches, oder ein Fundament sein.The bearing block may be an arbitrarily designed support structure, such as a frame, a subframe or the like, or a foundation.
Es wird also die ohnehin vorhandene, jedoch für andere Zwecke gedachte, Vorrichtung zum Bewegen der Form genutzt, um den gesamten Hauptrahmen mit den gegebenenfalls vorhandenen Anbauten gegenüber dem Lagerbock und den Unterlagspaletten anzuheben bzw. abzusenken. So können der Hilfsrahmen, die Spindeln und Spindeltriebe entfallen, die Maschine wird in der Herstellung günstiger und lässt sich leichter warten, da weniger Teile bzw. Antriebe vorhanden sind. Da die Formhubvorrichtung bereits justiert ist, können zudem weitere Justierungen nach einer Höhenverstellung eingespart werden. Ein weiterer Vorteil ist, dass die Formhubvorrichtung in der Regel relativ schnell verfahrbar ist, so dass eine Höhenverstellung insgesamt weniger Zeit in Anspruch nimmt.It is therefore used anyway, but intended for other purposes, device for moving the mold to raise or lower the entire main frame with the possibly existing attachments relative to the bearing block and the support palettes. Thus, the subframe, the spindles and spindle drives omitted, the machine is cheaper to manufacture and easier to maintain because fewer parts or drives are available. Since the Formhubvorrichtung is already adjusted, also further adjustments can be saved after a height adjustment. Another advantage is that the Formhubvorrichtung is usually relatively quickly moved, so that a total height adjustment takes less time.
Vorzugsweise umfasst die Formhubvorrichtung wenigstens einen Formhubzylinder und/oder eine Formtraverse. Durch die Formtraverse wird die Vorrichtung so stabilisiert, dass ein Anheben mit nur einem Hubzylinder möglich ist. Auch kann eine breitere Form verwendet werden. Mit einem Formhubzylinder können nicht nur höhere Formen über einen größeren Hubweg schnell verlagert werden, sondern erfindungsgemäß auch die gesamte Maschine.Preferably, the Formhubvorrichtung comprises at least one Formhubzylinder and / or a form of traverse. Due to the mold cross-member, the device is stabilized so that lifting with only one lifting cylinder is possible. Also, a wider shape can be used. With a Formhubzylinder not only higher forms over a larger stroke are quickly relocated, but according to the invention, the entire machine.
Zweckmäßigerweise ist die Formhubvorrichtung über wenigstens einen Abdrückklotz gegenüber dem Lagerbock abgestützt. Die Verwendung eines Abdrückklotzes stellt sicher, dass die Formhubvorrichtung und der Lagerbock nicht direkt in Kontakt kommen. Dies ist vorteilhaft, um einerseits einen möglichst großen Hubweg der Formhubvorrichtung für den normalen Produktionsbetrieb bereitzustellen und andererseits den Hubweg der Formvorrichtung nicht zusätzlich verlängern zu müssen, um die Anhebefunktion für den Hauptrahmen der Maschine bereitzustellen. In diesem Zusammenhang kann vorgesehen sein, dass der Abdrückklotz nur dann in die Steinformmaschine eingesetzt wird, wenn eine Höhenverstellung des Hauptrahmens erfolgen soll.Appropriately, the Formhubvorrichtung is supported over at least one Abdrückklotz relative to the bearing block. The use of an ejector block ensures that the former and the pedestal do not come into direct contact. This is advantageous, on the one hand to provide the largest possible stroke of the mold lifting device for normal production operation and on the other hand, the stroke of the molding device need not be extended in addition to provide the lifting function for the main frame of the machine. In this context, it can be provided that the Abdrückklotz is only used in the stone forming machine when a height adjustment of the main frame is to take place.
Weiterhin kann wenigstens eine mit dem Lagerbock und dem Hauptrahmen gekoppelte Formführungsstange vorgesehen sein. Die Formführungsstange hat die Aufgabe, die Formhubvorrichtung zu führen. Auf diese Weise ist sichergestellt, dass die Ausrichtung der Formhubvorrichtung stets gleich ist. Dies ist insbesondere dann vorteilhaft, wenn mehrere Formhubzylinder zum Einsatz kommen, da diese in der Regel nicht so gleichmäßig betätigt werden können, wie es für ein gleichmäßiges Anheben der Steinformmaschine erforderlich wäre.Furthermore, at least one coupled to the bearing block and the main frame shape guide rod can be provided. The shape guide rod has the task to guide the Formhubvorrichtung. In this way it is ensured that the orientation of the Formhubvorrichtung is always the same. This is particularly advantageous when multiple Formhubzylinder be used, since they can not be operated as uniform in the rule, as would be necessary for a uniform lifting of the stone forming machine.
Besonders vorteilhaft ist es, wenn die Formhubvorrichtung an der Formführungsstange festgelegt ist. Die Formführungsstange ist dann über Loslager am Hauptrahmen bzw. am Lagerbock gelagert. Es hat sich gezeigt, dass eine an den Formführungsstangen festgelegte Formhubvorrichtung nicht verkantet ist.It is particularly advantageous if the mold lifting device is fixed to the mold guide rod. The shape guide rod is then mounted on floating bearing on the main frame or on the bearing block. It has been found that a Formhubvorrichtung fixed to the mold guide rods is not tilted.
Weiterhin kann am Hauptrahmen eine Stempelhubvorrichtung zum Heben und Senken wenigstens eines Stempels vorgesehen sein. Vorzugsweise umfasst die Stempelhubvorrichtung wenigstens einen Stempelhubzylinder und/oder eine Stempeltraverse.Furthermore, a punch lifting device for raising and lowering at least one punch can be provided on the main frame. Preferably, the punch lifting device comprises at least one punch lifting cylinder and / or a stamping crosshead.
Vorzugsweise ist wenigstens eine mit dem Lagerbock und dem Hauptrahmen gekoppelte Stempelführungsstange vorgesehen. Zweck der Stempelführungsstange ist es, die Stempelhubvorrichtung und den an der Stempelhubvorrichtung befestigten Stempel in einer konstanten Ausrichtung unabhängig von der Hubstellung zu halten. Auf diese Weise wird ein gleichmäßiger Anpressdruck über die gesamte Stempelauflagefläche erreicht.Preferably, at least one of the bearing block and the main frame coupled punch guide rod is provided. The purpose of the punch guide rod is to keep the punch lifting device and the punch attached to the punch lifting device in a constant orientation regardless of the stroke position. In this way, a uniform contact pressure over the entire stamp support surface is achieved.
Besonders vorteilhaft ist es, wenn auch die Stempelhubvorrichtung an der Stempelführungsstange festgelegt ist. Die Stempelführungsstange ist dann über Loslager am Hauptrahmen bzw. am Lagerbock gelagert. Es hat sich gezeigt, dass eine Stempelhubvorrichtung, die wie ein Schlitten an ortsfesten Stempelführungsstangen entlang bewegt wird, aufgrund der hohen wirkenden Kräfte und der teilweise ungleichmäßigen Krafteinleitung dazu neigt, zu verkanten. Dem wird durch die Befestigung der Stempelhubvorrichtung an der Stempelführungsstange vorgebeugt.It is particularly advantageous if the punch lifting device is also fixed to the punch guide rod. The punch guide rod is then mounted on floating bearing on the main frame or on the bearing block. It has been found that a punch lifting device, which, like a carriage, is moved along stationary punch guide rods, due to the high-acting forces and the partial uneven application of force tends to tilt. This is prevented by the attachment of the Stempelhubvorrichtung to the punch guide rod.
Außerdem kann vorgesehen sein, dass die Formhubvorrichtung mit der Stempelführungsstange gekoppelt ist und/oder die Stempelhubvorrichtung mit der Formführungsstange gekoppelt ist. Diese gegenseitige Verkoppelung erhöht die Präzision der Ausrichtung auch bei besonders hohem Krafteintrag. Die Anordnung ist zudem bauraumsparend.In addition, it can be provided that the Formhubvorrichtung is coupled to the punch guide rod and / or the Stempelhubvorrichtung is coupled to the mold guide rod. This mutual coupling increases the precision of alignment even with a particularly high force input. The arrangement is also space-saving.
Es können zwei Formführungsstangen und zwei Stempelführungsstangen parallel zueinander vorgesehen sein, wobei die Formführungsstangen diagonal gegenüberliegend angeordnet sind. Diese Anordnung, bei der die Formführungsstangen und die Stempelführungsstangen Kanten eines imaginären Quaders definieren, ermöglicht es, den Stempel und/oder die Form bei platzsparender Anordnung besonders kippstabil zu führen.There may be provided two mold guide rods and two punch guide rods parallel to each other, wherein the mold guide rods are arranged diagonally opposite one another. This arrangement, in which the mold guide rods and the punch guide rods define edges of an imaginary cuboid, makes it possible to guide the stamp and / or the mold in a space-saving arrangement particularly stable against tilting.
Die Formführungsstange und/oder die Stempelführungsstange können durch wenigstens eine Führungseinheit im Lagerbock und/oder im Hauptrahmen geführt sein. Die Führungseinheit ist ein Loslager. In der Führungseinheit wird eine Führungsstange mit hoher Präzision bei geringer Reibung geführt.The mold guide rod and / or the punch guide rod can be guided by at least one guide unit in the bearing block and / or in the main frame. The guide unit is a floating bearing. In the guide unit, a guide rod is guided with high precision at low friction.
Ferner ist es zweckmäßig, wenn die Steinformmaschine einen Hauptrahmen aufweist, der durch wenigstens eine Hauptrahmenfeststelleinheit am Lagerbock höhenverstellbar festlegbar ist. So kann der Hauptrahmen gegenüber dem Lagerbock durch Lösen der Hauptrahmenfeststelleinheit abgesenkt werden.Furthermore, it is expedient if the block making machine has a main frame which can be fixed in height adjustable manner by at least one main frame locking unit on the bearing block. Thus, the main frame relative to the bearing block can be lowered by loosening the Hauptrahmenfeststelleinheit.
Der Vorteil dieser Lösung ist darin zu sehen, dass die Absenkung besonders rasch erfolgen kann, da der Hauptrahmen nicht mehr über Spindeltriebe heruntergekurbelt werden muss. Beim Absenken kann wiederum die Formhubvorrichtung zum Einsatz kommen. Vor dem Lösen der Feststelleinheit kann die Formhubvorrichtung so verfahren werden, dass sie sich auf dem Lagerbock abstützt. Dies ermöglicht es, den Hauptrahmen nach Lösen der Feststelleinheit durch Einfahren der Hubzylinder kontrolliert herabzulassen. Ist der Hauptrahmen auf der gewünschten Höhe, kann diese Höhe durch Anziehen der Feststelleinheit fixiert werden.The advantage of this solution is the fact that the lowering can be done very quickly because the main frame no longer needs to be cranked down spindle drives. When lowering, in turn, the Formhubvorrichtung can be used. Before releasing the locking unit, the mold lifting device can be moved so that it is supported on the bearing block. This makes it possible to lower the main frame in a controlled manner by releasing the locking unit by retracting the lifting cylinder. If the main frame is at the desired height, this height can be fixed by tightening the locking unit.
Vorzugsweise ist der Hauptrahmen an wenigstens einem Längsführungselement, wie z.B. einem Dorn oder einer Welle, des Lagerbocks mit der Feststelleinheit festlegbar. Der Dorn hat hierbei eine doppelte Funktion. Zum einen gewährleistet er eine genaue Ausrichtung des Hauptrahmens in der horizontalen Ebene. Zum anderen ermöglicht er eine genaue Höheneinstellung des Hauptrahmens.Preferably, the main frame on at least one longitudinal guide element, such as a mandrel or a shaft, the bearing block with the locking unit can be fixed. The mandrel has a double function here. First, it ensures accurate alignment of the main frame in the horizontal plane. On the other hand, it allows a precise height adjustment of the main frame.
Das erfindungsgemäße Verfahren zur Höhenverstellung einer Steinformmaschine umfasst die Schritte des Verfahrens einer Formhubvorrichtung in eine auf einem Lagerbock abgestützte Stellung; des Lösens einer Hauptrahmenfeststelleinheit für einen Hauptrahmen; des Betätigens der Formhubvorrichtung derart, dass der Hauptrahmen angehoben wird; und des Anziehens der Hauptrahmenfeststelleinheit für den Hauptrahmen.The method according to the invention for height adjustment of a block making machine comprises the steps of the method of a forming device in a position supported on a bearing block; solving a main frame detecting unit for a main frame; operating the mold lift device such that the main frame is raised; and tightening the main frame detecting unit for the main frame.
Die Hauptrahmenfeststelleinheit kann als Klemmbacke ausgeführt sein.The main frame detection unit may be designed as a jaw.
Die Erfindung ist nachfolgend anhand von einem in den Figuren dargestellten Ausführungsbeispiel näher erläutert. Es zeigen:
- Fig. 1
- eine Seitenansicht der erfindungsgemäßen Steinformmaschine im Produktionsprozess bei angehobener Stempelhubvorrichtung;
- Fig. 2
- eine Schnittdarstellung entlang der Linie A-B in
Fig. 1 ; - Fig. 3
- eine Schnittdarstellung entlang der Linie C-D in
Fig. 1 ; - Fig. 4
- eine Seitenansicht der erfindungsgemäßen Steinformmaschine von
Fig. 1 im Produktionsprozess bei abgesenkter Stempelhubvorrichtung; - Fig. 5
- eine Schnittdarstellung entlang der Linie E-F in
Fig. 4 ; - Fig. 6
- eine Seitenansicht der erfindungsgemäßen Steinformmaschine von
Fig. 1 beim Anheben des Hauptrahmens; und - Fig. 7
- eine Schnittdarstellung entlang der Linie G-H in
Fig. 6 .
- Fig. 1
- a side view of the block forming machine according to the invention in the production process with raised Stempelhubvorrichtung;
- Fig. 2
- a sectional view taken along the line AB in
Fig. 1 ; - Fig. 3
- a sectional view along the line CD in
Fig. 1 ; - Fig. 4
- a side view of the stone molding machine according to the invention of
Fig. 1 in the production process with lowered punch lifting device; - Fig. 5
- a sectional view taken along the line EF in
Fig. 4 ; - Fig. 6
- a side view of the stone molding machine according to the invention of
Fig. 1 when lifting the main frame; and - Fig. 7
- a sectional view taken along the line GH in
Fig. 6 ,
In den
Von der Plattform 5 aus erstrecken sich vier Längsführungseinheiten in Form von Dornen 8 in vertikaler Richtung VR nach oben, an denen der Hauptrahmen 2 geführt und höhenverstellbar festlegbar ist. Hierzu sind jedem Dorn 8 seitens des Hauptrahmens 2 eine Hauptrahmenfeststelleinheit 9 und eine Hauptrahmenführungseinheit 10 zugeordnet. Der Hauptrahmen 2 ist eine Rahmenkonstruktion aus miteinander verschweißten Profilen 11. Der Hauptrahmen 2 ist in den Darstellungen der
Am Lagerbock 3 und am Hauptrahmen 2 sind mehrere Vorrichtungen befestigt. Am Lagerbock 3 sind Längsbalken 12 vorgesehen. Die Längsbalken 12 werden auch als statische Brücke bezeichnet. In den Zwischenräumen 15 zwischen den Längsbalken 12 sind Stege 16 eines Rütteltisches 17 angeordnet, auf welche Unterlagspaletten 13 taktweise geschoben werden können. Auf den Unterlagspaletten 13 werden die Formlinge 14 hergestellt. Der Rütteltisch 17 ist über Federelemente 18 auf dem Lagerbock 3 gelagert. Auf die Unterlagspalette 13 kann mit einer Formhubvorrichtung 19 vertikal von oben eine nach unten und oben offene Steinform 20 (kurz: Form) abgesenkt werden. Formen 20 sind in verschiedene Ausführungen verfügbar, um ein breites Produktionsspektrum abbilden zu können. Es gibt beispielsweise Formen 20 für Steinplatten, Pflastersteine, Hohlsteine und Bordsteine. Die Formen 20 weisen in der Regel mehrere Formnester 21 für mehrere Formlinge 14 auf.On the
Die Formnester 21 können über Betonfüllvorrichtungen 22, 23 mit einem Betongemenge 24, 25 gefüllt werden. Dafür sind bei der gezeigten Maschine zwei Betonfüllvorrichtungen 22, 23 vorgesehen, wovon die erste ein sogenanntes Kernbetongemenge 24 verfüllt und die andere dazu dient, ein Vorsatzbetongemenge 25 als Deckschicht auf eine Schicht aus Kernbetongemenge 24 aufzubringen. Die Betonfüllvorrichtungen 22, 23 weisen jeweils einen Betonbunker 26, 27 auf, der über Betonzuführungen 28, 29 mit dem Betongemenge 24, 25 befüllbar ist. Der Kernbetonbunker 26 hat ein größeres Volumen als der Vorsatzbetonbunker 27. An den Böden 30, 31 der Betonbunker 26, 27 ist jeweils ein Verschlussblech 32, 33 vorgesehen. Das Betongemenge 24, 25 kann vom Betonbunker 26, 27 in einen Füllwagen 34, 35 durchgelassen werden. Der Füllwagen 34, 35 ist oben und unten offen. Ein Tischblech 36, 37 bildet den Boden für das Betongemenge 24, 25 im Füllwagen 34, 35. Der Füllwagen 34, 35 ist mit einem Hydraulikzylinder 38, 39 auf dem am Hauptrahmen 2 befestigten Tischblech 36, 37 verschiebbar. Wird der Füllwagen 34, 35 in Richtung der Form 20 bewegt, so zieht der Füllwagen 34, 35 das über Tragelemente 40, 41 an ihm befestigte Verschlussblech 32, 33 in eine den Betonbunker 26, 27 verschließende Stellung. In dem Füllwagen 34 für das Kernbetongemenge 24 ist ein oszillierender Rost 42 angeordnet, um das Kernbetongemenge 24 gleichmäßig in die Formnester 21 einfüllen zu können. Nach dem das Betongemenge 24, 25 in die Formnester 21 gefüllt ist, wird der Füllwagen 34, 35 wieder in die eingefahrene Stellung ES mit dem Hydraulikzylinder 38, 39 zurückgezogen. In der eingefahrenen Stellung ES des Füllwagens 34, 35 kann das Verschlussblech 32, 33 in eine den Betonbunker 26, 27 öffnende Stellung OES gezogen werden.The mold cavities 21 can be filled via
In der hier gezeigten Ausführungsform kann die Steinformmaschine unterschiedlich gefärbte Vorsatzbetongemenge verarbeiten. Hierzu weist die Betonfüllvorrichtung 23 für das Vorsatzbetongemenge 25 drei Einfülltrichter 44-46 auf. Diese können Vorsatzbetongemenge 25 unterschiedlicher Farben wie schwarz S, rot R und gelb G bevorraten. Von den Einfülltrichtern 44-46 kann das Vorsatzbetongemenge 25 über Fördereinheiten 47 in einen Trichter 48 gefördert werden, von dem aus es über einen horizontal beweglichen Schlauch 49 in den Bunker 27 für das Vorsatzbetongemenge 25 eingeleitet werden kann.In the embodiment shown here, the stone forming machine can process differently colored intent concrete amount. For this purpose, the
Die Form 20 kann mit einer Formhubvorrichtung 19 auf die Unterlagspalette 13 abgesenkt und nach dem Füllen der Formnester 21 mit Betongemenge 24, 25 und dessen Verdichtung wieder angehoben werden, um die Formlinge 14 zu entformen. Die Formhubvorrichtung 19 umfasst eine Formtraverse 50 mit einer Formhalterung 51 für eine Form 20. Die Formtraverse 50 ist in der Seitenansicht der
Nach dem Einfüllen des Betongemenges 24, 25 in die Formnester 21 wird das Betongemenge 24, 25 verdichtet. Hierzu wird die Unterlagspalette 13 mit dem Rütteltisch 17 in Vibrationen versetzt. Anschließend wird mit einer Stempelhubvorrichtung 66 ein oder mehrere Stempel 67 abgesenkt, vgl. insbesondere
Die Formhubvorrichtung 19, die Stempelhubeinrichtung 66 und die Führungsstangen 57 sind in Bezug auf zwei Mittellängsebenen MLE1, MLE2 doppelt symmetrisch.The
Um das Niveau des Tischblechs 36, 37 gegenüber der Unterlagspalette 13 auf die Höhe der Oberkante 75 der Form 20 anheben zu können, ist der Hauptrahmen 2 in der Höhe verlagerbar. Um den Hauptrahmen 2 anzuheben, wird die Formtraverse 50 nach unten verlagert, bis sie sich auf dem Lagerbock 3 über vier den Führungsstangen 57, 58 zugeordnete, insbesondere die Führungsstangen 57, 58 umgreifende, Abdrückklötze 76 abgestützt wird. Das weitere Ausfahren der Formhubzylinder 53 der Formhubvorrichtung 19 führt dazu, dass der Hauptrahmen 2 mit allen Anbauten angehoben wird. Vor und nach dem Heben sind die Hauptrahmenfeststelleinheiten 9 zu lösen bzw. anzuziehen. Das Absenken des Hauptrahmens 2 kann im einfachsten Fall durch kontrolliertes Lösen der Hauptrahmenfeststelleinheiten 9 erfolgen. Das Absenken kann durch die Formhubvorrichtung 19 unterstützt werden, indem vor dem Lösen der Hauptrahmenfeststelleinheiten 9 die Formtraverse 50 in eine auf dem Lagerbock 3 abgestützte Position AP verfahren wird und nach dem Lösen der Formhubzylinder 53 eingefahren wird. Ist die gewünschte Höhe erreicht, wird der Hauptrahmen 2 über die Hauptrahmenfeststelleinheiten 9 an den Dornen 8 des Lagerbocks 3 mit der Hauptrahmenfeststelleinheit 9 festgelegt.In order to raise the level of the
- 1 -1 -
- SteinformmaschineBlock making machine
- 2 -2 -
- Hauptrahmenmain frame
- 3 -3 -
- Lagerbockbearing block
- 4 -4 -
- Gestellframe
- 5 -5 -
- Plattformplatform
- 6 -6 -
- Eckencorners
- 7 -7 -
- Beinleg
- 8 -8th -
- Dornmandrel
- 9 -9 -
- HauptrahmenfeststelleinheitMain frame judgment unit
- 10 -10 -
- HauptrahmenführungseinheitMain frame guide unit
- 11 -11 -
- Profilprofile
- 12 -12 -
- Längsbalkenstringers
- 13 -13 -
- Unterlagspaletteunderlay palette
- 14 -14 -
- Formlingmolding
- 15 -15 -
- Zwischenraumgap
- 16 -16 -
- Stegweb
- 17 -17 -
- Rütteltischshaking table
- 18 -18 -
- Federelementspring element
- 19 -19 -
- FormhubvorrichtungFormhubvorrichtung
- 20 -20 -
- Steinformstone shape
- 21 -21 -
- Formnestcavity
- 22 -22 -
- BetonfüllvorrichtungBetonfüllvorrichtung
- 23 -23 -
- BetonfüllvorrichtungBetonfüllvorrichtung
- 24 -24 -
- KernbetongemengeCore concrete mixture
- 25 -25 -
- VorsatzbetongemengeFacing concrete mixture
- 26 -26 -
- Betonbunkerconcrete bunker
- 27 -27 -
- Betonbunkerconcrete bunker
- 28 -28 -
- Betonzuführungconcrete feed
- 29 -29 -
- Betonzuführungconcrete feed
- 30 -30 -
- Bodenground
- 31 -31 -
- Bodenground
- 32 -32 -
- VerschlussblechSealing sheet
- 33 -33 -
- VerschlussblechSealing sheet
- 34 -34 -
- Füllwagencharging car
- 35 -35 -
- Füllwagencharging car
- 36 -36 -
- Tischblechtable sheet
- 37 -37 -
- Tischblechtable sheet
- 38 -38 -
- Hydraulikzylinderhydraulic cylinders
- 39 -39 -
- Hydraulikzylinderhydraulic cylinders
- 40 -40 -
- Tragelementsupporting member
- 41 -41 -
- Tragelementsupporting member
- 42 -42 -
- Rostrust
- 44 -44 -
- Einfülltrichterhopper
- 45 -45 -
- Einfülltrichterhopper
- 46 -46 -
- Einfülltrichterhopper
- 47 -47 -
- Fördereinheitdelivery unit
- 48 -48 -
- Trichterfunnel
- 49 -49 -
- Schlauchtube
- 50 -50 -
- FormtraverseTraverse form
- 51 -51 -
- Formhalterungmold support
- 52 -52 -
- Querstegcrosspiece
- 53 -53 -
- FormhubzylinderFormhubzylinder
- 54 -54 -
- Konsoleconsole
- 55 -55 -
- Erste FührungFirst tour
- 56 -56 -
- Zweite FührungSecond leadership
- 57 -57 -
- Führungsstangeguide rod
- 58 -58 -
- Führungsstangeguide rod
- 61 -61 -
- Eckecorner
- 62 -62 -
- FeststelleinheitLocking Unit
- 63 -63 -
- FeststelleinheitLocking Unit
- 64 -64 -
- FührungseinheitGuide unit
- 65 -65 -
- Loslagermovable bearing
- 66 -66 -
- StempelhubvorrichtungStempelhubvorrichtung
- 67 -67 -
- Stempelstamp
- 68 -68 -
- Stempeltraversestamp Traverse
- 69 -69 -
- Stempelhalterungstamp holder
- 70 -70 -
- StempelhubzylinderStempelhubzylinder
- 71 -71 -
- FeststelleinheitLocking Unit
- 73 -73 -
- FührungseinheitGuide unit
- 75 -75 -
- Oberkantetop edge
- 76 -76 -
- AbdrückklotzAbdrückklotz
- AP -AP -
- Abgestützte PositionSupported position
- ES -ES -
- Eingezogene StellungEngaged position
- G -G -
- Gelbyellow
- LA -LA -
- Längsachse von 57, 58Longitudinal axis of 57, 58
- MLE1 -MLE1 -
-
Mittellängsebene 1Center
longitudinal plane 1 - MLE2 -MLE2 -
-
Mittellängsebene 2Middle
longitudinal plane 2 - OES -OES -
- Öffnende StellungOpening position
- R -R -
- Rotred
- S -S -
- Schwarzblack
- VR -VR -
- Vertikale RichtungVertical direction
Claims (15)
- A block moulding machine including a pedestal (3) and a main frame (2), which is vertically movable and fixable on the pedestal (3), wherein at least one mould lifting device (19) is provided on the main frame (2) for raising and lowering a block mould (20), characterised in that the main frame (2) is movable with respect to the pedestal (3) by actuation of the mould lifting device (19) supported on the pedestal (3).
- A block moulding machine as claimed in Claim 1, characterised in that the mould lifting device (19) includes at least one mould lifting cylinder (53) and/or a mould crossbeam (50).
- A block moulding machine as claimed in Claim 1 or 2, characterised in that the mould lifting device (19) is supported by means of at least one jack block (76) on the pedestal (3).
- A block moulding machine as claimed in one of Claims 1 to 3, characterised in that at least one mould guide rod (57, 58) coupled to the pedestal (3) and the main frame (2) is provided.
- A block moulding machine as claimed in Claim 4, characterised in that the mould lifting device (19) is fixed to the mould guide rod (57).
- A block moulding machine as claimed in one of Claims 1 to 5, characterised in that provided on the main frame (2) there is a ram lifting device for raising and lowering at least one ram (67).
- A block moulding machine as claimed in Claim 6, characterised in that the ram lifting device (66) includes at least one ram lifting cylinder (70) and/or a ram crossbeam (68).
- A block moulding machine as claimed in Claim 6 or 7, characterised in that at least one ram guide rod (58) is provided, which is coupled to the pedestal (3) and the main frame (2).
- A block moulding machine as claimed in Claim 8, characterised in that the ram lifting device (66) is fixed to the ram guide rod (58).
- A block moulding machine as claimed in one of Claims 4, 5, 8 or 9, characterised in that the mould lifting device (19) is coupled to the ram guide rod (58) and/or the ram lifting device (66) is coupled to the mould guide rod (57).
- A block moulding machine as claimed in one of Claims 8 to 10, characterised in that two mould guide rods (57) and two ram guide rods (58) are provided parallel to one another, wherein the mould guide rods (57) are arranged diagonally opposite to one another.
- A block moulding machine as claimed in one of Claims 4, 5 or 8 to 11, characterised in that the mould guide rod (57) and/or the ram guide rod (58) are guided by at least one guide unit (65) in the pedestal (3) and/or in the main frame (2).
- A block moulding machine as claimed in one of the preceding claims, characterised in that the main frame (2) is lowerable with respect to the pedestal (3) by releasing a main frame fixing unit (9).
- A block moulding machine as claimed in Claim 13, characterised in that the main frame (2) is fixable to at least one longitudinal guide unit (8) of the pedestal (3) with the main frame fixing unit (9).
- A method of vertically moving a block moulding machine (1), characterised by the following steps:moving a mould lifting device (19) into a position (AS) in which it is supported on a pedestal (3);releasing a main frame fixing unit (9) for a main frame (2);actuating the mould lifting device (19) such that the main frame (2) is raised;andtightening the main frame fixing unit (9) for the main frame (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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PL12725445T PL2718071T3 (en) | 2011-06-09 | 2012-06-04 | Block molding machine and method for vertically adjusting a block molding machine |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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DE102011050970A DE102011050970B4 (en) | 2011-06-09 | 2011-06-09 | Stone forming machine and method for height adjustment of a stone forming machine |
PCT/EP2012/060519 WO2012168195A1 (en) | 2011-06-09 | 2012-06-04 | Block molding machine and method for vertically adjusting a block molding machine |
Publications (2)
Publication Number | Publication Date |
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EP2718071A1 EP2718071A1 (en) | 2014-04-16 |
EP2718071B1 true EP2718071B1 (en) | 2015-05-06 |
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EP20120725445 Active EP2718071B1 (en) | 2011-06-09 | 2012-06-04 | Block molding machine and method for vertically adjusting a block molding machine |
Country Status (10)
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US (1) | US9352487B2 (en) |
EP (1) | EP2718071B1 (en) |
CN (1) | CN103702810B (en) |
BR (1) | BR112014001803A2 (en) |
DE (1) | DE102011050970B4 (en) |
DK (1) | DK2718071T3 (en) |
ES (1) | ES2537889T3 (en) |
PL (1) | PL2718071T3 (en) |
RU (1) | RU2563515C2 (en) |
WO (1) | WO2012168195A1 (en) |
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US20140272284A1 (en) * | 2013-03-15 | 2014-09-18 | David M. Franke | Multi zone cementitious product and method |
CN114888929B (en) * | 2022-04-21 | 2023-09-19 | 济南一建集团有限公司 | Locking and opening structure of aluminum alloy block mold |
CZ36657U1 (en) * | 2022-11-07 | 2022-12-06 | AGSTAV TŘEBÍČ a.s. | Equipment for colouring and decorating tread layers of concrete pavements |
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FR2580314B1 (en) * | 1985-04-16 | 1987-06-05 | Piazza Giovanni | PROCESS FOR MANUFACTURING BUILDING BLOCKS, MEANS FOR CARRYING OUT SAID METHOD AND PRODUCT THUS OBTAINED |
SU1447674A1 (en) * | 1987-05-19 | 1988-12-30 | Центральный межведомственный институт повышения квалификации руководящих работников и специалистов строительства | Cassette installation for manufacturing building articles |
FR2642355B1 (en) * | 1989-02-01 | 1992-10-30 | Euromat Sa | VIBRATION PRESS FOR MOLDING CONCRETE PRODUCTS |
SU1736699A1 (en) * | 1990-03-06 | 1992-05-30 | Московский Инженерно-Строительный Институт Им.В.В.Куйбышева | Vibration platform for moulding structures from concrete mixes |
RU2036082C1 (en) * | 1992-03-19 | 1995-05-27 | Товарищество с ограниченной ответственностью "ПиК" | Machine for manufacture of building blocks |
RO116718B1 (en) * | 1995-11-01 | 2001-05-30 | Sorin Nicolaescu | Machine for manufacturing concrete elements by vibratory compression |
CN1247370C (en) * | 2002-12-26 | 2006-03-29 | 佛山市灵海陶瓷科技有限公司 | Ceramic tile forming equipment and forming method |
DE102005017671A1 (en) * | 2005-04-16 | 2006-10-19 | Kobra Formen Gmbh | Device for producing concrete blocks |
DE102005020428A1 (en) * | 2005-04-29 | 2006-11-02 | Harald Winkler | Assembly for producing concrete articles has bracing means for vibration-transmitting connection, in particular clamping, of mold frame with vibration table |
CN201077118Y (en) * | 2007-08-20 | 2008-06-25 | 田先春 | Concrete block building machine |
EP2161177B1 (en) * | 2008-09-09 | 2011-11-02 | EuroMaint AB | A lifting device |
CN101708624B (en) * | 2009-12-08 | 2011-05-18 | 西安银马贝莎建筑制品机械有限公司 | Fixed high-efficiency vibration and pressurization forming machine |
-
2011
- 2011-06-09 DE DE102011050970A patent/DE102011050970B4/en not_active Expired - Fee Related
-
2012
- 2012-06-04 US US14/125,059 patent/US9352487B2/en active Active
- 2012-06-04 RU RU2013153476/03A patent/RU2563515C2/en active
- 2012-06-04 EP EP20120725445 patent/EP2718071B1/en active Active
- 2012-06-04 CN CN201280028195.XA patent/CN103702810B/en active Active
- 2012-06-04 WO PCT/EP2012/060519 patent/WO2012168195A1/en active Application Filing
- 2012-06-04 ES ES12725445.6T patent/ES2537889T3/en active Active
- 2012-06-04 BR BR112014001803A patent/BR112014001803A2/en unknown
- 2012-06-04 DK DK12725445.6T patent/DK2718071T3/en active
- 2012-06-04 PL PL12725445T patent/PL2718071T3/en unknown
Also Published As
Publication number | Publication date |
---|---|
RU2013153476A (en) | 2015-07-20 |
ES2537889T3 (en) | 2015-06-15 |
CN103702810A (en) | 2014-04-02 |
RU2563515C2 (en) | 2015-09-20 |
DE102011050970B4 (en) | 2013-08-22 |
CN103702810B (en) | 2016-01-20 |
US20150290836A1 (en) | 2015-10-15 |
US9352487B2 (en) | 2016-05-31 |
BR112014001803A2 (en) | 2017-06-13 |
WO2012168195A1 (en) | 2012-12-13 |
DE102011050970A1 (en) | 2012-12-13 |
DK2718071T3 (en) | 2015-08-03 |
PL2718071T3 (en) | 2015-10-30 |
EP2718071A1 (en) | 2014-04-16 |
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