CN85105073A - Equipment with thermoplastic material production band bubble film - Google Patents

Equipment with thermoplastic material production band bubble film Download PDF

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Publication number
CN85105073A
CN85105073A CN85105073.5A CN85105073A CN85105073A CN 85105073 A CN85105073 A CN 85105073A CN 85105073 A CN85105073 A CN 85105073A CN 85105073 A CN85105073 A CN 85105073A
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China
Prior art keywords
film
eddy
heating jacket
cylinder
temperature
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Withdrawn
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CN85105073.5A
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Chinese (zh)
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CN1013181B (en
Inventor
川上肇
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Kawakami Industrial Co ltd
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Kawakami Industrial Co ltd
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Priority to CN 85105073 priority Critical patent/CN1013181B/en
Publication of CN85105073A publication Critical patent/CN85105073A/en
Publication of CN1013181B publication Critical patent/CN1013181B/en
Expired legal-status Critical Current

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Abstract

One with thermoplastic material such as polyethylene, produces the equipment of making many bubbles film that damping and interlayer use.Film from T shape mould heat pressure obtains after being cooled, heats with the eddy-current heating cylinder that heating jacket and interior cooling device are housed.The eddy-current heating cylinder the heating jacket in drum housing is arranged, is used for the induction coil that heats and the sealing heat-conducting medium between heating jacket and the induction coil in addition.The characteristics of this invention are cooling devices that makes heat-conducting medium cooling, have the fast lifting temperature, around cylinder and the advantage that is evenly distributed of axial temperature.Adopt this equipment, it is bad to produce no local fusing, and transparency is good, many bubbles film that output is high.

Description

Equipment with thermoplastic material production band bubble film
This invention is one and improves equipment, and relevant for the low-density polyethylene film of thermoplastic material-for example, produces the film that has many single sealing bubbles.
Make the band bubble thermoplastic film that damping and interlayer are used, be referred to as meaning " gas lid " or " bubble filler ".
Usually, shown in Fig. 4 A and 4B, this film is (to be called " epiphragma " later on) again and flat plastic sheeting 3(is called " notacoria " later on the hot melting plastic film that has a protuberance 2a) form, the opening edge of epiphragma is sealed formation cavity 4, what have has some variations, for example can be, or with different materials on for example quires is combined in the end face of one deck additional plastic film or other materials fusion at the protuberance of epiphragma 2, make three shape products layer by layer.
The already known processes process of producing above-mentioned band bubble film can be divided into following three types.First type is plastics to be placed on be hot pressed into film in the mould, forms epiphragma when taking advantage of mecystasis, epiphragma and also be that the notacoria that hot pressing is come out from mould contacts, and exerting pressure fuses together double-layer films.Second type, the temporary transient coiling of plastic material launches then, is heated into mecystasis under a suitable temperature, carries out above-mentioned shaping and hot melt operation again.The third type, the hot pressing plastic material is heated to mecystasis immediately after cooling off fast, carry out above-mentioned shaping and hot melt operation then.
The shortcoming of first type of technology is: because notacoria is in high temperature for a long time, the crystalline solid in the plastic material is increased, thereby lose transparency.With film shaped after cooling immediately compare, also have the low problem of rigidity of epiphragma, in addition because notacoria can not be melted, so occur wrinkle easily.
Taking cost into account, the instant mode of production of second type the off line mode of production not as first type, but because of adopting the rolling film that is easy to purchase that the simple advantage of equipment is arranged.The problem that produces with this technology is that the crystallization process of plastic material changes the physical property of film and surface condition, and deposits " the mist layer " that make additive in the process and increase.Because the physical property of plastic material is along with the length of its storage time and holding conditions and different, so be difficult to make product quality to keep unified.
The method that the third type occurs is in order to keep the superiority of instant method than off-line method, and eliminates above mentioned shortcoming.Immediately fast after the cooling, heating can be avoided opacity, and produce hard again, not with the high-quality homogeneous film of wrinkle the plastic material that is hot pressed into film from mould.
Yet conventional equipment is adopted in the enforcement that the method for the third type may not be paid easily, be unsafty along the axial temperature of film heated roller with to the reactivity of temperature, and maintenance is also had any problem.
Adopt electric heater the easiest in the roller heating device, but along drum shaft to temperature uniformity can not keep well.When heater breaks down and need to change, needsization long time with a lot of difficulties is arranged.Though heat up than very fast, cooling then needs to wait for heat radiation.
In the factory of steaming plant was arranged, steam also was a kind of effective heater, raise equably along the temperature that axially makes of cylinder, but will change set temperature, then will depend on the adjustment of steam pressure, so can not realize soon.
Heat-conducting medium circulation is used to replace steam to increase temperature effect, and the outer field heat-conducting medium of chilling roll can improve the speed of cooling, but it is also not really fast to heat up, and the uniformity of cylinder axial temperature is also not as good with Steam Heating.For axial temperature is raise equably, imagination is adorned a heating jacket in cylinder, and interior dress vapour-liquid two-phase hybrid system has the advantage that needs to be maintained hardly.An induction coil also is housed in the cylinder, temperature is risen rapidly by eddy-current heating.Yet temperature-reactive still can not meet the demands, because cooling needs the time.
In addition, along width be its axial temperature of heated roller of 1200mm distribute be generally ± 5 ℃.So its Temperature Distribution of width along plastic sheeting is uneven, the result causes the film shaped inferior or incomplete fusion of part.Especially the easier appearance of the latter.Adopt certain polyethylene as representational plastic material aerogenesis in next life bubble filler, the temperature of plastic material is remained in 142 ℃ to 144 ℃ the scope.Temperature is at about 146 ℃ or can cause plastic sheeting to be bonded on the heated roller when above, and when temperature at about 140 ℃ or when following, it is very poor again to fuse.Therefore, adopt existing device in high yield, the difficulty that occurs in the various process of producing product makes that pliable and tough, the attempt of low cost product becomes more obvious with film production lightweight more.
This invention is intended to solve above-mentioned problem.
The purpose of this invention provides a kind of high yield, the equipment of high-effect production bubble filler, and this equipment is applicable to the film of various different materials and various different size specifications, and does not need special technology; Particularly this equipment transparency of products and robustness of producing all increases, and can prevent to occur on notacoria wrinkle.
In the device with plastic material production band bubble film, from the film in the first feed source be fed to two facing to cylinder between, carving a series of pits on one of them cylinder, utilize vacuum draw to form protuberance, this plastic sheeting and the flat plastic sheeting of sending into from the second film source are fused.Producing the equipment that has single sealing bubble film in this invention comprises: the eddy-current heating cylinder, a heating jacket and inner cooling device are housed in the cylinder, and be placed between the above mentioned cylinder and the first or second film feed source; A chilling roll is placed between the eddy-current heating cylinder and each above mentioned first and second film feed source that inner cooling device is housed; The eddy-current heating cylinder that heating jacket and inner cooling device are housed has a drum housing, interior dress heat-conducting medium be sealed in heating jacket and in order to the heating induction coil between the gap.The characteristics of this invention are to cool off the device of this heat-conducting medium.
Epiphragma by the first film feed source is sent into is keeping a suitable temperature equably along its width, through chilling roll with heating jacket is housed and eddy-current heating cylinder that inner cooling ground is put, arrives shaping roller, the formation protuberance.Meanwhile, the notacoria of being supplied with by the second film feed is keeping the proper temperature of uniformity along thin-film width, arrives profile roll through supercooling roller and eddy-current heating roller that heating jacket and inner cooling device be housed.Notacoria contacts with the epiphragma with protuberance, and fusion forms above mentioned bubble under pressure.
Fig. 1 is a sketch, the part of appliance of diagram this invention.
Fig. 2 is in the used equipment of this invention, and the axial section of the eddy-current heating cylinder of heating jacket and internal heat is housed.
Fig. 3 is along the cut-away view of III-III direction among Fig. 2.
Fig. 4 is the band bubble film of being made by thermoplastic, and A is a plane, and B is a profile.
With reference to accompanying drawing, will illustrate the embodiment of this invention below.
As shown in Figure 1, by the epiphragma 2 of extruder 5 by 6 supplies of the first film feed source T shape mould, through chilling roll 26 coolings, preferably cooling fast, contact with the eddy-current heating cylinder 7 that heating jacket and inner cooling device are housed, be heated to a certain suitable temperature at this drum upper cover film, contact with shaping roller 8, utilize the pit on shaping roller 8 circumference, vacuum forming, form protuberance 2a, meanwhile, the notacoria 3 that extruder 5 is supplied with through the second film feed source T shape mould 9, through chilling roll 27 coolings, preferably cooling fast contacts with the eddy-current heating cylinder that heating jacket and inner cooling device are housed, and notacoria is heated to a suitable temperature and is transported to shaping roller 8 on this heated roller.The opening edge of protuberance 2a is exerted pressure to double-layer films simultaneously with compressing running roller 11 on the sealing epiphragma 2, their hot melts is become have the bubble filler that seals bubble 4.The bubble filler is peeled off and is reeled with peeling off roller 12.
Epiphragma 2 and notacoria 3 are through supercooling.Improved transparency.
As shown in Figures 2 and 3, eddy-current heating cylinder 7(10) heating jacket and inner cooling device are housed, now be explained as follows.
Heating jacket 14 makes a ring-type stria, be placed on eddy-current heating cylinder 7(10) the periphery, near the shell thickness portion of cylinder 13 circumferential surface, a kind of heat-conducting medium (not illustrating in the drawings) is packed in heating jacket 14 with solution-air two-phase state, adopts step-down water as heat-conducting medium in this example.
Core at drum housing 13 is equipped with stationary spindle 17, and induction coil 18 and be arranged on the centre of stationary spindle 17 as the core body 19 of supporting forms annular seal space 16 between induction coil 18 and the drum housing 13.The two ends of drum housing 13 are supported on the stationary spindle 17 with bearing 20, embed encapsulant 21 between annular seal space 16 and bearing 20, thereby annular seal space 16 and open-air are isolated.
Form another annular seal space 22 in core body 19, lead-in wire 23 is enclosed in this annular seal space, and to induction coil 18 power supplies, lead-in wire 23 passes axle 17 and is connected on the power supply, and power supply does not illustrate on figure.
Cooling device is to form with the many pipelines 24 that have fin, is installed in the annular seal space 16, and cooling medium supply source and cooling medium circulation device are arranged, and both all do not illustrate on figure.The circulation of cooling medium such as water is supplied with and is carried out continuously, shown in figure upward arrow A and B.Heat-conducting medium 25(is silicone oil for example) be stored in annular seal space 16 and 22.
Eddy-current heating cylinder 7(10) heating jacket and inner cooling device are housed, its usage is as follows, by the 23 introducing alternating currents that go between, produces magnetic flux in induction coil 18, makes in the drum housing 13 and generates eddy current, makes temperature rise to high temperature by joule heating effect.As a result, make the water in the heating jacket 14 heat vaporization because of draw heat face from drum housing 13.It is lower that vaporize water flows in the heating jacket temperature, the partial condensation that pressure is lower, and make described part heating, and carry out above-mentioned steps repeatedly, make the surface temperature of drum housing 13 all keep uniformity along circumferential and axial.
At this moment, silicone oil 25 is cooled continuously, for avoiding temperature excessively to raise, can control the voltage of induction coil 18 simultaneously, as controlling with PID.Adopt this method can very simply and promptly realize heating up and cooling.
Owing to can accomplish temperature fast lifting and uniformity of temperature profile, so as plastic sheeting and the eddy-current heating cylinder 7(10 that heating jacket and inner cooling device are housed) when contacting, might keep a suitable temperature.In this example, the gradient of temperature rate can reach 0.8min/ ℃, and along the temperature uniformity of 1200mm axial length can be defined as ± 1 ℃.
Be suitable for making the circulating water circulation, and the flow and the temperature that needn't need to regulate water in the above-mentioned cooling device.
From the epiphragma 2 and the notacoria 3 of T shape mould 6 and 9, after being cooled, roll 7 and 10 by the eddy-current heating tube that heating jacket and inner cooling device are housed and keep the most suitable temperature respectively.Because above-mentioned fast temperature grade is 0.8min/ ℃, thus even when going wrong, also can promptly overcome because of change in film thickness, and because the exospheric temperature variation is very fast, so can improve product yield.Allowing the temperature range of hot melt very narrow, is ± 1 ℃ along 1200mm axial length temperature uniformity, therefore, also can use even its highest peelable temperature of certain material and minimum fusible temperature differ very little.In addition, when notacoria is admitted to cylinder, remain on the minimum of hot melting temperature because of carrying on the back thin 3, so got rid of the possibility that forms wrinkle, transparency then is improved, and simultaneous temperature control is also very simple, only needs to carry out PID control with the constant flow rate of cooling water.Therefore, do not need the skill of high degree of skill,, realize that unattended is very possible by automatic control.
Example:
Employing has a kind of equipment of said structure, and the eddy-current heating cylinder of two 400mm diameters is housed, and each cylinder respectively has a heating jacket and inner cooling device, is that manufacture of materials is steeped film more with polyethylene, and epiphragma thickness is 80 μ, and notacoria thickness is 40 μ.
List the variations in temperature of each point in the equipment shown in Figure 1 below.Linear velocity is 40m/min.
Point epiphragma notacoria
A,G 250℃ 250℃
B 50℃
H 50℃
C 138℃
D 123℃
E 93℃
I 130℃
F 120℃
J 115℃
K 75℃
L 54℃
M 40℃

Claims (3)

1, be used to produce a kind of equipment with single sealing bubble film, wherein the plastic sheeting from the first film feed source is sent between two cylinders that facing with each other, and one of them has a series of pits, along with vacuum draw forms protuberance.This plastic sheeting and the flat plastic sheeting fusion that comes from the second film feed source, described equipment comprises: the eddy-current heating cylinder of heating jacket and inner cooling device is housed, is placed between above-mentioned cylinder and the above-mentioned first and second film feed sources; A chilling roll is placed between each eddy-current heating cylinder and the above-mentioned first and second film feed sources; The described eddy-current heating cylinder that heating jacket and inner cooling device are housed has a drum housing, wherein puts into heat-conducting medium, be sealed in heating jacket and the induction coil that is used for heating between the gap, described cooling device is used for cooling off heat-conducting medium.
2, according to claim 1 described equipment, the water in the heating jacket of wherein packing into is in decompression state, and the silicone oil of packing into is as heat-conducting medium.
3, according to claim 1 described equipment, wherein cooling pipe makes current through described pipeline as the cooling device of heater.
CN 85105073 1985-07-03 1985-07-03 Apparatus for production of films with bubbles using hot plastic materials Expired CN1013181B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 85105073 CN1013181B (en) 1985-07-03 1985-07-03 Apparatus for production of films with bubbles using hot plastic materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 85105073 CN1013181B (en) 1985-07-03 1985-07-03 Apparatus for production of films with bubbles using hot plastic materials

Publications (2)

Publication Number Publication Date
CN85105073A true CN85105073A (en) 1986-12-31
CN1013181B CN1013181B (en) 1991-07-17

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Application Number Title Priority Date Filing Date
CN 85105073 Expired CN1013181B (en) 1985-07-03 1985-07-03 Apparatus for production of films with bubbles using hot plastic materials

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CN (1) CN1013181B (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1296149C (en) * 2002-06-22 2007-01-24 曾世麟 Modular plastic-wood waste composite product and process for making same
CN100404226C (en) * 2005-08-19 2008-07-23 重庆大学 Inductive hot compacting dies for precision engineering plastic rubber products
CN100485302C (en) * 2005-03-17 2009-05-06 东芝机械株式会社 Heating and cooling roller
CN101060971B (en) * 2004-11-10 2010-10-27 埃卡丰信公司 Method for manufacturing receptacles by thermoforming and placement of decorative strips on said receptacles
CN102474922A (en) * 2009-08-27 2012-05-23 特电株式会社 Induction heating roller device
CN102896881A (en) * 2011-07-27 2013-01-30 捷拉斯印刷机械有限公司 Inductively heated cylinder
CN103466141A (en) * 2012-05-16 2013-12-25 乌尔曼包装系统有限责任及合伙两合公司 Sealing roll
CN104290313A (en) * 2014-10-16 2015-01-21 苏州华冲精密机械有限公司 Blister mould for food packaging box
CN114174047A (en) * 2019-07-29 2022-03-11 博萨控股有限公司 Pulse heat sealing of heat sealable film material

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201506028U (en) * 2009-09-06 2010-06-16 李小龙 Plastic thin film production facility and plastic thin film
JP5606773B2 (en) * 2010-04-13 2014-10-15 株式会社Ihi Induction heating roll device

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1296149C (en) * 2002-06-22 2007-01-24 曾世麟 Modular plastic-wood waste composite product and process for making same
CN101060971B (en) * 2004-11-10 2010-10-27 埃卡丰信公司 Method for manufacturing receptacles by thermoforming and placement of decorative strips on said receptacles
CN100485302C (en) * 2005-03-17 2009-05-06 东芝机械株式会社 Heating and cooling roller
CN100404226C (en) * 2005-08-19 2008-07-23 重庆大学 Inductive hot compacting dies for precision engineering plastic rubber products
CN102474922A (en) * 2009-08-27 2012-05-23 特电株式会社 Induction heating roller device
CN102474922B (en) * 2009-08-27 2014-07-30 特电株式会社 Induction heating roller device
CN102896881A (en) * 2011-07-27 2013-01-30 捷拉斯印刷机械有限公司 Inductively heated cylinder
CN102896881B (en) * 2011-07-27 2016-08-24 捷拉斯印刷机械有限公司 The cylinder of heating can be sensed
CN103466141A (en) * 2012-05-16 2013-12-25 乌尔曼包装系统有限责任及合伙两合公司 Sealing roll
CN104290313A (en) * 2014-10-16 2015-01-21 苏州华冲精密机械有限公司 Blister mould for food packaging box
CN114174047A (en) * 2019-07-29 2022-03-11 博萨控股有限公司 Pulse heat sealing of heat sealable film material

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Publication number Publication date
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