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CN109435218A - The automated production system of processing of CPP film - Google Patents

The automated production system of processing of CPP film Download PDF

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Publication number
CN109435218A
CN109435218A CN201811347632.XA CN201811347632A CN109435218A CN 109435218 A CN109435218 A CN 109435218A CN 201811347632 A CN201811347632 A CN 201811347632A CN 109435218 A CN109435218 A CN 109435218A
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CN
China
Prior art keywords
material receiving
cooling collar
roller
production system
processing
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.)
Pending
Application number
CN201811347632.XA
Other languages
Chinese (zh)
Inventor
曹玉
毛潞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing Ruiting Plastic Co Ltd
Original Assignee
Chongqing Ruiting Plastic Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Chongqing Ruiting Plastic Co Ltd filed Critical Chongqing Ruiting Plastic Co Ltd
Priority to CN201811347632.XA priority Critical patent/CN109435218A/en
Publication of CN109435218A publication Critical patent/CN109435218A/en
Pending legal-status Critical Current

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  • Shaping By String And By Release Of Stress In Plastics And The Like (AREA)
  • Extrusion Moulding Of Plastics Or The Like (AREA)

Abstract

The present invention relates to thin film processing techniques fields, disclose a kind of automated production system of processing of CPP film, including extruder, air compressor machine, air-cooler, collapser and material receiving roller, it is characterized by: the discharging of extruder is terminated with cooling collar, cooling collar is communicated with the air cooler, the deflector for controlling velocity flow profile in cooling collar is equipped in cooling collar, cooling collar is equipped with outlet, outlet has wind-guiding case, the turbine coaxially connected with material receiving roller is rotatably connected in wind-guiding case, wind-guiding case is equipped with air outlet;Thickness gauge is equipped between collapser and material receiving roller, thickness gauge is that electric signal is connect with extruder.The present invention, which is able to solve the CPP film produced in the prior art, has that sizing is bad, in uneven thickness.

Description

The automated production system of processing of CPP film
Technical field
The present invention relates to thin film processing techniques fields, and in particular to a kind of automated production system of processing of CPP film.
Background technique
CPP film is also known as cast polypropylene film, as food and commodity packaging and outer packing, has excellent illustrative, can Keep product still high-visible under packaging.Curtain coating extrusion process production CPP film is generallyd use in plastic cement industry, which includes adding Material, fusion plastification squeeze out membrane tube, multiple processes such as inflation, sizing, folder put down, draw, batching, every procedure all to it is final at Quality has important influence.Usually there are some problems in the CPP film that existing CPP film production system is produced: first, it is cold But not enough, cause CPP film fixed effect bad;Second, CPP non-uniform film thickness are even.
Summary of the invention
The object of the present invention is to provide a kind of automated production systems of processing of CPP film, to solve to produce in the prior art CPP film out has that sizing is bad, in uneven thickness.
To achieve the above object, The technical solution adopted by the invention is as follows:
The automated production system of processing of CPP film, including extruder, air compressor machine, air-cooler, collapser and material receiving roller, The discharging of extruder is terminated with cooling collar, and cooling collar is communicated with the air cooler, and is equipped in cooling collar for controlling coolant jacket The deflector of velocity in pipes distribution, cooling collar are equipped with outlet, and outlet has wind-guiding case, be rotatably connected in wind-guiding case with The coaxially connected turbine of material receiving roller, wind-guiding case are equipped with air outlet;Thickness gauge, thickness are equipped between collapser and material receiving roller Detector is that electric signal is connect with extruder.
Compared with prior art, the principle of the present invention and the utility model has the advantages that after raw material fusion plastification, will be melted by extruder Raw material is configured to film pipe, while being blown into compressed air to cross-head using air compressor machine, occurs that pipe at high temperature Inflation deforms and is transformed into tubular film (i.e. membrane tube).Cold wind is provided into cooling collar by air-cooler in the process, to membrane tube It is cooled down, makes its rapid shaping;Due to being provided with deflector in cooling collar, and the deflector makes in cooling collar close to film Flow velocity at pipe is most fast, therefore can rapidly take away heat, plays the role of rapid cooling to membrane tube, to enable membrane tube Enough fast shapings overcome disadvantage that is cooling insufficient and causing shaping film ineffective, to be conducive to improve film Quality.Cold wind in cooling collar enters in wind-guiding case after taking away the heat of membrane tube through outlet, is then discharged through air outlet, Lasting air-flow will be formed in wind-guiding case in the process, which will be used as drive force turbine rotation, and turbine will drive rewinding Roller rotation is realized rewinding to be rotated using exhaust gas after cooling as drive force material receiving roller, has reached energy-efficient effect. Membrane tube moves at collapser under the action of tractive force and is squeezed into flat film through collapser, then by thickness gauge to thin The thickness of film is detected, if thickness is up to standard, smoothly in winding to material receiving roller;If thickness is not up to standard, due to thickness gauge It is to be electrically connected with extruder, signal is passed to extruder by thickness gauge at this time, and extruder will be out of service, is examined by thickness It surveys instrument to be measured in real time the thickness of film, avoids the film thickness of production not up to standard.
Further, between the collapser and thickness gauge be equipped with for compress film to roller.It is arranged to roller, to thin Film is compressed, and film forming is further made.
Further, the collapser is equipped with cooling collar far from the side of film.Film is carried out again at collapser It is cooling, so that film is preferably formed.
Further, guide roller is successively arranged between the thickness gauge and material receiving roller.Film is carried out using guide roller Expansion, prevents adhesion.
Further, transmission belt is connected between the material receiving roller and guide roller.By transmission belt by guide roller and material receiving roller Linkage drives guide roller to rotate using the rotation of material receiving roller, without additional setting power source, reaches energy-efficient effect.
Further, dust cleaning case is equipped between the directive wheel and material receiving roller, dust cleaning case is close to material receiving roller.It is thin in production process It has been easily adhered dust on film, has been cleared up before winding using dust of the dust cleaning case to film surface, has guaranteed on material receiving roller Film it is clean.
Further, the dust cleaning case include be symmetricly set on film two sides suction box and with coaxially connected negative of turbine Press impeller.Negative pressure wheel rotation is driven by turbine rotation, negative pressure wheel rotation will make to generate negative pressure in suction box, utilize negative pressure Dust absorption on film is fallen, achievees the effect that dedusting, cleaning;And suction box, two sides dust suction are symmetrical arranged in film two sides Case cancels out each other to the adsorption capacity of film, generates traction force to film when avoiding negative-pressure adsorption and film is deformed.
Detailed description of the invention
Fig. 1 is the schematic diagram of the embodiment of the present invention;
Fig. 2 is the schematic diagram that turbine is connect with material receiving roller in the embodiment of the present invention;
Fig. 3 is the schematic diagram that material receiving roller is connect with guide roller, guide roller with to roller in the embodiment of the present invention;
Fig. 4 is the enlarged diagram in Fig. 1 at A.
Specific embodiment
It is further described below by specific embodiment:
Appended drawing reference in Figure of description include: extruder 1, air-cooler 2, collapser 3, material receiving roller 4, cooling collar 5, Deflector 6, outlet 7, wind-guiding case 8, turbine 9, air outlet 10, to roller 11, thickness gauge 12, guide roller 13, suction box 14, anti- To transmission belt 15, positive transmission belt 16.
Embodiment is basic as shown in attached Fig. 1 to Fig. 4:
The automated production system of processing of CPP film, including extruder 1, air compressor machine, air-cooler 2, collapser 3 and rewinding Roller 4, the discharging of extruder 1 are terminated with cooling collar 5, and the caliber of cooling collar 5 is more than or equal to the membrane tube of actual production Diameter, cooling collar 5 are connected to air-cooler 2.Collapser 3 is far from also being provided with cooling collar 5 on the side of film, so as to by film Pipe cools down when being squeezed into flat film to membrane tube, forms film more preferably.It is connected in cooling collar 5 cold for controlling But in casing 5 velocity flow profile deflector 6 (as shown in Figure 4), deflector 6 is serrated setting, and the setting of deflector 6 makes close The air-flow velocity of membrane tube is maximum, can rapidly be taken away heat with will pass through cold wind, to have the function that cooling.Coolant jacket Pipe 5 is equipped with outlet 7 (in figure arrow indicate flow direction), and outlet 7 is communicated with wind-guiding case 8, is rotatably connected in wind-guiding case 8 and rewinding The coaxially connected turbine 9 of roller 4, wind-guiding case 8 are equipped with air outlet 10 (as shown in Fig. 2, arrow indicates flow direction in figure).Collapser 3 It is successively arranged between material receiving roller 4 to roller 11, thickness gauge 12, guide roller 13 and dust cleaning case, to roller 11 for compressing film, Form film preferably, thickness gauge 12 is that electric signal is connect with extruder 1, air compressor machine and air-cooler 2.Dust cleaning case leans on Nearly material receiving roller 4, dust cleaning case includes the suction box 14 and the negative pressure leaf coaxially connected with turbine 9 for being symmetricly set on film two sides Wheel, suction box 14 is towards being provided with suction inlet on the side of film.Reverse drive band is connected between material receiving roller 4 and guide roller 13 15, guide roller 13 and to being connected with positive transmission belt 16 (as shown in Figure 3) between roller 11.
When it is implemented, fused raw material is configured to film pipe by extruder 1, is opened simultaneously after raw material fusion plastification Dynamic air compressor machine is blown into compressed air to 1 head of extruder, makes pipe that inflation occur at high temperature and deforms and be transformed into tubular film (i.e. membrane tube).Starting air-cooler 2 provides cold wind into cooling collar 5 in the process, cools down to membrane tube, makes its rapid shaping. Cold wind into cooling collar 5 will flow under the guiding of deflector 6, since the special shape of deflector 6 is arranged, make cold But the flow velocity in casing 5 at membrane tube is most fast, so as to rapidly take away the heat of membrane tube, plays fast quickly cooling to membrane tube But effect, and then enable membrane tube fast shaping, reach preferably cooling effect, to be conducive to improve the quality of film.
After cold wind in cooling collar 5 takes away the heat of membrane tube, entered in wind-guiding case 8 through outlet 7, then through outlet air Mouth 10 is discharged.Lasting air-flow will be formed in wind-guiding case 8 in the process, which will rotate as drive force turbine 9.Turbine Material receiving roller 4 will be driven to rotate when 9 rotation, realizes rewinding;Material receiving roller 4 will drive guide roller 13 by reverse drive band 15 when rotating Rotation (as shown in figure 3, arrow indicates rotation direction in figure), guide roller 13 will be driven by positive transmission belt 16 to 11 turns of roller It is dynamic.
When membrane tube is moved under the action of tractive force at collapser 3, cooling collar 5 again will be carried out it at collapser Cooling, when forming it preferably, while passing through collapser 3, membrane tube is squeezed into flat film by collapser 3, is avoided in membrane tube It generates bubble and influences the performance of film.Then film passes through from collapser 3 and by roller 11, rotating to roller 11 will be to film Roll-in again is carried out, film forming is further promoted.
It will be reached at thickness gauge 12 with rear film, thickness gauge 12 will detect the thickness of film.If thick Spend up to standard, film will turn down at dust cleaning case in leading for guide roller 13.To also negative pressure impeller be driven to turn when rotating due to turbine 9 Dynamic, negative pressure wheel rotation will make to generate negative pressure in suction box 14, be adsorbed the dust being adhered on film two sides by suction inlet Fall, achievees the effect that dedusting, cleaning.If thickness is not up to standard, due to thickness gauge 12 and extruder 1, air compressor machine and air-cooler 2 It is electrical connection, signal is passed to extruder 1, air compressor machine and air-cooler 2, extruder 1, air compressor machine by thickness gauge 12 at this time And air-cooler 2 all will be out of service, is measured in real time by thickness of the thickness gauge 12 to film, avoids the film of production Thickness is not up to standard.
What has been described above is only an embodiment of the present invention, and the common sense such as well known specific structure and characteristic are not made herein in scheme Excessive description.It, without departing from the structure of the invention, can be with it should be pointed out that for those skilled in the art Make several modifications and improvements.These also should be considered as protection scope of the present invention, these all will not influence what the present invention was implemented Effect and patent practicability.The scope of protection required by this application should be based on the content of the claims, in specification The records such as specific embodiment can be used for explaining the content of claim.

Claims (7)

  1. The automated production system of processing of 1.CPP film, including extruder, air compressor machine, air-cooler, collapser and material receiving roller, Be characterized in that: the discharging of extruder is terminated with cooling collar, and cooling collar is communicated with the air cooler, and is equipped in cooling collar for controlling The deflector of velocity flow profile in cooling collar processed, cooling collar are equipped with outlet, and outlet has wind-guiding case, rotation in wind-guiding case It is connected with the turbine coaxially connected with material receiving roller, wind-guiding case is equipped with air outlet;Thickness is equipped between collapser and material receiving roller to examine Instrument is surveyed, thickness gauge is that electric signal is connect with extruder.
  2. 2. the automated production system of processing of CPP film according to claim 1, it is characterised in that: the collapser and thickness Degree detector between be equipped with for compress film to roller.
  3. 3. the automated production system of processing of CPP film according to claim 2, it is characterised in that: the collapser is separate The side of film is equipped with cooling collar.
  4. 4. the automated production system of processing of CPP film according to any one of claim 1 to 3, it is characterised in that: described Guide roller is successively arranged between thickness gauge and material receiving roller.
  5. 5. the automated production system of processing of CPP film according to claim 4, it is characterised in that: the material receiving roller with lead To being connected with transmission belt between roller.
  6. 6. the automated production system of processing of CPP film according to claim 5, it is characterised in that: the directive wheel and receipts Expect to be equipped with dust cleaning case between roller, dust cleaning case is close to material receiving roller.
  7. 7. the automated production system of processing of CPP film according to claim 6, it is characterised in that: the dust cleaning case includes It is symmetricly set on the suction box and the negative pressure impeller coaxially connected with turbine of film two sides.
CN201811347632.XA 2018-11-13 2018-11-13 The automated production system of processing of CPP film Pending CN109435218A (en)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111169027A (en) * 2020-01-09 2020-05-19 苏州惠国塑料制品有限公司 PE film efficient blow molding production line
CN112936924A (en) * 2019-12-10 2021-06-11 财团法人纺织产业综合研究所 Apparatus and method for manufacturing plastic film
TWI753331B (en) * 2019-12-10 2022-01-21 財團法人紡織產業綜合研究所 Fabrication apparatus and manufacturing method of plastic film

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112936924A (en) * 2019-12-10 2021-06-11 财团法人纺织产业综合研究所 Apparatus and method for manufacturing plastic film
TWI753331B (en) * 2019-12-10 2022-01-21 財團法人紡織產業綜合研究所 Fabrication apparatus and manufacturing method of plastic film
CN112936924B (en) * 2019-12-10 2023-01-20 财团法人纺织产业综合研究所 Method for manufacturing plastic film
CN111169027A (en) * 2020-01-09 2020-05-19 苏州惠国塑料制品有限公司 PE film efficient blow molding production line
CN111169027B (en) * 2020-01-09 2021-10-26 苏州惠国塑料制品有限公司 PE film efficient blow molding production line

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Application publication date: 20190308