CN101856862A - Injection apparatus possible back pressure control - Google Patents

Injection apparatus possible back pressure control Download PDF

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Publication number
CN101856862A
CN101856862A CN200910163896A CN200910163896A CN101856862A CN 101856862 A CN101856862 A CN 101856862A CN 200910163896 A CN200910163896 A CN 200910163896A CN 200910163896 A CN200910163896 A CN 200910163896A CN 101856862 A CN101856862 A CN 101856862A
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CN
China
Prior art keywords
screw rod
back pressure
cylinder body
pressure
motor
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.)
Granted
Application number
CN200910163896A
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Chinese (zh)
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CN101856862B (en
Inventor
玄昌勋
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.)
LS Mtron Ltd
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LS Mtron Ltd
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Publication of CN101856862A publication Critical patent/CN101856862A/en
Application granted granted Critical
Publication of CN101856862B publication Critical patent/CN101856862B/en
Expired - Fee Related legal-status Critical Current
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/17Component parts, details or accessories; Auxiliary operations
    • B29C45/46Means for plasticising or homogenising the moulding material or forcing it into the mould
    • B29C45/53Means for plasticising or homogenising the moulding material or forcing it into the mould using injection ram or piston
    • B29C45/54Means for plasticising or homogenising the moulding material or forcing it into the mould using injection ram or piston and plasticising screw
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/17Component parts, details or accessories; Auxiliary operations
    • B29C45/76Measuring, controlling or regulating
    • B29C45/77Measuring, controlling or regulating of velocity or pressure of moulding material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/17Component parts, details or accessories; Auxiliary operations
    • B29C45/46Means for plasticising or homogenising the moulding material or forcing it into the mould
    • B29C45/53Means for plasticising or homogenising the moulding material or forcing it into the mould using injection ram or piston
    • B29C45/54Means for plasticising or homogenising the moulding material or forcing it into the mould using injection ram or piston and plasticising screw
    • B29C2045/547Means for plasticising or homogenising the moulding material or forcing it into the mould using injection ram or piston and plasticising screw continuously rotating plasticising screw cooperating with a single injection plunger

Abstract

The present invention provides an injection apparatus which controls back pressure through using oil pressure for keeping the back pressure continuous and constant thereby performing excellent injection operation. The injection apparatus of the invention is provided with a screw, a motor for rotation, a motor for advancing and retreating, a ball screw, a ball nut and a connection component. One end of the screw is connected with a connecting rod component. The connecting rod component moves along with reciprocation of the screw. One end of the connecting rod component is connected with a back pressure control cylinder which is connected with a working oil storage container through tubing. The injection apparatus with the structure according to the invention can control the generated back pressure through the cylinder so that the back pressure is continuous and kept constant.

Description

Can control the injection device of back pressure
Technical field
The present invention relates to control the injection device of back pressure, relating in more detail can be at the injection device that carries out resin when metering continuous control back pressure.
Background technology
Usually, injection machine is the device that is used for injecting resin in the mould of making according to the shape of the product that will be shaped, and is made of injection device and mold closing mechanism.Described injection device wherein is following device: the mechanical energy that produces by the rotation that is arranged at the inner screw rod of a portion (barrel) and be installed on a heat energy that portion's external heated device produces, make the resin particle fusing of solid shape, inject the resin that has melted in the mould of making according to the shape of the product that will be shaped and it is solidified, thereby obtain the product of intended shape.
At this moment, being arranged at a screw rod of portion inside is made of threaded shank and screw head, wherein, described threaded shank is used for conveying solid substance shape resin particle and makes the fusing of solid shape resin particle, and described screw head is used to prevent resin reverse flow when injecting melting resin in mould.
In order to make the resin fusing, the tube portion of heater will be installed from the resin particle input that hopper is supplied with, in tube portion, the screw rod that is connected with hydraulic motor or electro-motor is rotated.Utilization makes the resin fusing by the shear heat of such screw rod generation and the heat that heater produces.Then, make the buildup of resin that melted leading portion portion by screw head at screw head.
At this moment, under the situation of force feed melting resin,, screw rod carries the resin of supplying with from hopper while retreating to screw head.Thus, resin is piled up continuously to the leading portion portion of screw head.When piling up the described melting resin of ormal weight and finishing metering in the leading portion portion of screw head, screw rod stops the rotation, and advances vertically with the pressure and the speed that are suitable for molding condition, and the outlet of melting resin from tube portion pushed in the mould.
Below, be described more specifically with reference to the Fig. 1 that shows this existing injection device.
Existing injection device 100 is made of ball screw 10, screw rod 20, housing 30 and pressure tester (load cell) 40 substantially.
Ball screw 10 is made of ball screw axle 11 and ball screw nut 13, and wherein, described ball screw axle 11 is connected with first electro-motor 50 and is rotated, and described ball screw nut 13 is driven along with the rotation of ball screw axle 11 and advances and retreat.
That is, ball screw 10 makes rotatablely moving of first electro-motor 50 be converted into the advance and retreat reciprocating motion.
In addition, an end of ball screw axle 11 constitutes and connects injection carriage (injection bracket) 80.
Screw rod 20 is connected with second electro-motor 60, by transmitting revolving force from motor 60, the injection of the resin that screw rod 20 will melt (not shown) forward end.But screw rod 20 has protuberance (not shown) in the neighboring, and the rotation by screw rod 20 can be with resin extruded, so screw rod 20 is not suitable for being connected on the housing 30 described later.
Thereby screw rod 20 also has vertically the prolongation axle 21 that extends in the rear end, and screw rod 20 prolongs axle 21 through this and is connected with second electro-motor 60, thereby makes the revolving force of second electro-motor 60 be passed to screw rod 20.
One end of housing 30 is connected with screw rod 20, and the other end of housing 30 is connected with ball screw nut 13, advances and retreat by the advance and retreat drive force screw rod 20 of ball screw nut 13.
More precisely, an end of housing 30 is connected with the prolongation axle 21 that prolongation is formed on the screw rod 20, and the other end of housing 30 is connected with ball screw nut 13, and the driving force of ball screw nut 13 is passed to and prolongs axle 21, and drive screw 20 is advanced and retreat thus.
At this moment, connect housing 30 and prolong axle 21 by bearing 31.That is, housing 30 is driven by ball screw nut 13 and advances and retreat, and prolongs axle 21 and is connected with second electro-motor 60, and rotate simultaneously with screw rod 20.Thus, housing 30 is linked together with prolonging axle 21, thereby the pressure of housing 30 is passed to prolongation axle 21 through bearing 31.
Pressure tester 40 is installed on the neighboring of screw rod 20, to by before the housing 30 so that the pressure that puts on the screw rod 20 measure.
But, as mentioned above, have the axle of prolongation 21 in the rear end of screw rod 20, prolong axle 21 and is connected with housing 30 through bearing 31, therefore, preferably pressure tester 40 is fixed on the neighboring of prolongation spools 21.
This be because, be installed on situation about being formed with on the screw rod 20 of protuberance with pressure tester 40 and compare in the neighboring, pressure tester 40 is installed in the outside of the prolongation axle 21 that is connected with housing 30 and directly is subjected to the pressure of housing 30, detected pressures more accurately.
According to conventional injector 100 with this structure, make 11 rotations of ball screw axle by first electro-motor 50, ball screw nut 13 advances mobile thus.
Thereupon, the housing 30 that combines with ball screw nut 13 on axis direction also advances simultaneously.At this moment, second electro-motor 60 is rotated and prolongation axle 21 is rotated, and along with the rotation that prolongs axle 21, screw rod 20 is rotation simultaneously also, injects operation thus.
But, be not only to be undertaken by screw rod 20 injecting resins, and the power that need be able to screw rod 20 be advanced from the back segment of screw rod 20 makes screw rod 20 with certain pressure extrusion resin by rotation.Therefore, in order to be passed to screw rod 20, housing 30 and prolongation axle 21 are linked together through bearing 31 by the forward travel that described first electro-motor 50 carries out housing 30.
The forward travel of described housing 30 is passed to the prolongation axle 21 that is rotating, and screw rod 20 not only has revolving force, also has thrust, thus injecting resin.
At this moment, need control to form suitable resin the injection pressure in when injection and press pressure tester 40 performance and above-mentioned relevant functions.That is, pressure tester 40 is installed in the outside that prolongs axle 21, when prolonging axle 21 and be subjected to pressure from housing 30 this pressure is measured.
The pressure of Ce Dinging is passed to control part (not shown) like this, and when resin was pressed above permissible value, control part was controlled first electro-motor 50 and reduced the resins pressure, and when resin forced down in reasonable value, control part was controlled first electro-motor, 50 rising resins and pressed.At this moment, by the rotary speed that first electro-motor 50 is regulated in increase and decrease, resin is compressed into row control.
Thereby according to existing injection device 100, pressure tester 40 is installed in the outside of the prolongation axle 21 that screw rod 20 is connected with housing 30, directly is subjected to the pressure of housing 30 to come pressure is measured.
In the measurement process that makes the resin plasticization, when screw rod retreated, control was used to make the constant back pressure of the pressure maintenance in the portion very important.
Particularly, when carrying out expansion injection molding, in the resin metering, need the pressure in the portion to be risen to more than certain pressure (pressure that can foam), make the resin that in tube portion, mixes can not foam with blowing agent by back pressure.At this moment, the pressure in the tube portion must remain on constant under the situation of the pressure that can not depart from objectives significantly.
But, in existing injection device 100, pressure and the target back pressure of utilizing pressure tester 40 to read in the portion in the constant time cycle compare, when the pressure in the tube portion during greater than the target back pressure, for the pressure in the tube portion is adjusted to goal pressure and the position of adjusting screw(rod).In such process, there is following problem, that is, the pressure in the tube portion can not remain on constant, needs to regulate pressure interimly, but irregular like this pressure is regulated and is made the pressure a portion in unbalanced, and the adjusting of irregular like this pressure makes resin expanded in the portion.
Summary of the invention
Therefore, the present invention makes in order to solve above-mentioned existing issue, and its purpose is to provide by utilizing oil pressure control back pressure to make back pressure continuously and keep constant, thereby can carry out the injection device of good injection operation.
Be used to realize the injection device that to control back pressure of the present invention of above-mentioned purpose, have: screw rod, force feed and metering resin are injected in tube portion, the rotation motor, be connected with the end of described screw rod, make described screw rod rotation, the advance and retreat motor, transferring power so that described screw rod can advance and retreat, ball screw is connected with electro-motor with described advance and retreat, be rotated with the revolving force of motor by these advance and retreat, ball nut, be configured on the axle of described ball screw, along with the rotation of the described ball screw motion of advancing and retreat, connecting elements, be connected with described ball nut, move back and forth; End at described screw rod is connected with link component, this link component is motion together along with the reciprocating motion of described screw rod, end at described link component is connected with back pressure master cylinder body, and described back pressure master cylinder body is connected with the oily reservoir vessel of work through pipe arrangement.
In addition, preferably have injection pressure master cylinder body in the end of screw rod, a side of described injection pressure master cylinder body combines with described connecting elements, and described injection pressure master cylinder body is connected with the oily reservoir vessel of work through pipe arrangement.
In addition, preferably on described pipe arrangement, has switch discharge valve (waste valve) respectively.
In addition, an end of preferred described link component combines with bearing on being combined in described screw rod, and the other end of described link component combines with the piston of described back pressure master cylinder body.
In addition, preferred described injection pressure master cylinder body combines with the end of described screw rod through bearing.
In injection device of the present invention, when the injection operation of carrying out resin, can control the back pressure of generation by cylinder body portion, make back pressure continuously and it is remained constant.
Description of drawings
Fig. 1 is the cutaway view of the state that is provided with of the existing injection device of expression.
Fig. 2 is the skeleton diagram of the injection device of expression an embodiment of the invention.
The specific embodiment
Below, with reference to accompanying drawing a preferred embodiment of the present invention is described.In addition, though the present invention will be described for the embodiment that illustrates with reference to the accompanying drawings, this embodiment only describes as an embodiment, can not limit technical conceive of the present invention, core texture of the present invention and effect thus.
Fig. 2 is the skeleton diagram of the injection device 200 of expression an embodiment of the invention.
The injection device 200 of present embodiment has: tube portion 210; Screw rod 220, force feed and metering resin are injected in tube portion 210; Rotation is connected with the end of screw rod 220 with motor 230, makes screw rod 220 rotations; Advance and retreat are with motor 240, transferring power so that screw rod 220 can advance and retreat; Ball screw 250 is connected with motor 240 with advance and retreat, and the revolving force of being advanced and retreat with motor 240 is rotated; Ball nut 260 is configured on the axle of ball screw 250, advances and retreat mobile along with the rotation of ball screw 250; Connecting elements 270 is connected with ball nut 260, moves back and forth.
According to present embodiment, be connected with link component 280 at an end of described screw rod 220 through bearing 281, described link component 280 is motion together along with the reciprocating motion of screw rod 220, and an end of link component 280 is connected with back pressure master cylinder body 290.
Described back pressure master cylinder body 290 have cylinder body 291 and combine with described link component 280 and can with the piston 292 of its interlock.
In addition, the end of described screw rod 220 has the bearing 221 that can make screw rod 220 rotation, has injection pressure master cylinder body 300 in a side of bearing 221.The piston 302 that injection pressure master cylinder body 300 has cylinder body 301 and can move in the inside of cylinder body 301, piston 302 is connected with described connecting elements 270.
In addition, described back pressure master cylinder body 290 is connected with work oil reservoir vessel 310 through pipe arrangement 290a, 290b, and injection pressure master cylinder body 300 is connected with work oil reservoir vessel 310 through pipe arrangement 300a, 300b.On pipe arrangement 290a, have discharge valve 320, on pipe arrangement 300a, have discharge valve 330.
Described rotation constitutes by belt wheel 231,232 and driving-belt 233 transferring power with motor 230.Described rotation can be moved through guide rod (not shown) etc. swimmingly with motor 230.
In addition, advance and retreat also constitute by belt wheel 241,242 and driving-belt 243 transferring power with motor 240.
Described belt wheel 232 is connected with the end of screw rod 220, and described belt wheel 242 is connected with the end of ball screw 250.
But power transmission is not limited to above-mentioned belt wheel and driving-belt, also can use the power transmission of other structure.
According to such structure, the resin that flows in the tube portion 210 is melted on one side by force feed on one side and piles up to the leading portion portion of tube portion 210, press to surpass when the melting resin that applies and be set at can resist the back pressure that melting resin presses the time, open discharge valve 320, screw rod 220 retreats in tube portion 210 under the state of rotation.
At this moment, link component 280 is interlock and moving also, and the piston 292 of the back pressure master cylinder body 290 that is connected with link component 280 also moves in cylinder body 291.So the fluid in the cylinder body 291 is sent to work oil reservoir vessel 310 from pipe arrangement 290a.
In addition, be combined with bearing 221 and injection pressure master cylinder body 300 in the end of screw rod 220 side, along with the motion of screw rod 220, bearing 221 and injection pressure master cylinder body 300 also retreat mobile simultaneously.Cylinder body 301 carries out relative motion with piston 302, and the fluid in the cylinder body 301 is sent to work oil reservoir vessel 310 from pipe arrangement 300a by the discharge valve of opening 330 thus.
Certainly, the rotation that is being connected with belt wheel 231,232 and driving-belt 233 is also moved simultaneously with motor 230.
At this moment, connecting elements 270, ball screw 250, ball nut 260 and advance and retreat are not moved with motor 240, keep their configuration status.
On the other hand, the injection pressure of effect during for injection, advance and retreat turn round with motor 240, through belt wheel 241,242 and driving-belt 243 with transmission of power to ball screw 250, ball nut 260 carries out straight line and moves when ball screw 250 is rotated, and the connecting elements 270 that combines with ball nut 260 also moves simultaneously.
So, the power that the piston 302 of the injection pressure master cylinder body 300 that combines with described connecting elements 270 also is pressed, at this moment, cylinder body 301 pressure inside (oil pressure) remain constant pressure (target injection pressure) by discharge valve 330, in the scope of target injection pressure, piston 302 does not move and cylinder body 301, bearing 221 move, and screw rod 220 mobile action of injection of carrying out tube portion 210 in.
At this moment, (for example take place when unusual in action of injection, the advance and retreat abnormal operation of motor 240), promptly, translational speed after the variation of the caused ball nut 260 of reason ball screw 250 rotations, when ball nut 260 promoted piston 302 with the pressure more than the target injection pressure, discharge valve 330 was opened, and piston 302 moves in cylinder body 301.The fluid suitable with cylinder body 301 volumes of the distance that moves in cylinder body 301 corresponding to piston 302 sent in the work oil reservoir vessel 310 from pipe arrangement 300a, and supply with fluid from pipe arrangement 300b in the cylinder body 301 of the end of piston 302 side, and the amount of the fluid of supplying with is suitable with cylinder body 301 volumes of the distance that moves corresponding to piston 302.
At this, detect the action of piston 302 or the action of oil pressure in the cylinder body 301 or detection discharge valve 330, control part (not shown) is controlled with the action of motor 240 advance and retreat thus, thereby regulates injection pressure.
Advance in order to carry out action of injection when mobile at described screw rod 220, link component 280 also moves simultaneously, the piston 292 that is being connected with link component 280 also moves (in the drawings in cylinder body 291, move to the left from the right side), under the state that discharge valve 320 is opened, the fluids of working in the oily reservoir vessel 310 are sent in the cylinder body 291 from pipe arrangement 290a, and fluid is sent into work oil reservoir vessel 310 and stored from pipe arrangement 290b more then.
More than, based on the illustration accompanying drawing embodiments of the present invention are described for convenience, but the invention is not restricted to this, can in the scope of technical conceive of the present invention, carry out various distortion and correction.

Claims (5)

1. the injection device that can control back pressure has:
Screw rod (220), force feed and metering resin are injected in tube portion (210),
Rotation is connected with the end of described screw rod (220) with motor (230), makes described screw rod (220) rotation,
Advance and retreat are with motor (240), transferring power so that described screw rod (220) can advance and retreat,
Ball screw (250) is connected with motor (240) with described advance and retreat, be rotated with the revolving force of motor (240) by these advance and retreat,
Ball nut (260) is configured on the axle of described ball screw (250), along with the rotation of described ball screw (250) motion of advancing and retreat,
Connecting elements (270) is connected with described ball nut (260), moves back and forth; It is characterized in that,
End at described screw rod (220) is connected with link component (280), and this link component (280) is motion together along with the reciprocating motion of described screw rod (220), is connected with back pressure master cylinder body (290) at an end of described link component (280),
Described back pressure master cylinder body (290) is connected with the oily reservoir vessel of work (310) through pipe arrangement (290a, 290b).
2. the injection device that can control back pressure as claimed in claim 1 is characterized in that,
Has injection pressure master cylinder body (300) in the end of described screw rod (220), one side of described injection pressure master cylinder body (300) combines with described connecting elements (270), and described injection pressure master cylinder body (300) is connected with the oily reservoir vessel of work (310) through pipe arrangement (300a, 300b).
3. the injection device that can control back pressure as claimed in claim 2 is characterized in that,
On described pipe arrangement (290a, 300a), has switch discharge valve (320,330) respectively.
4. the injection device that can control back pressure as claimed in claim 1 is characterized in that,
One end of described link component (280) combines with bearing (281) on being combined in described screw rod (220), and the other end of described link component (280) combines with the piston (292) of described back pressure master cylinder body (290).
5. the injection device that can control back pressure as claimed in claim 2 is characterized in that,
Described injection pressure master cylinder body (300) combines through the end of bearing (221) with described screw rod (220).
CN2009101638964A 2009-04-13 2009-08-14 Injection apparatus possible back pressure control Expired - Fee Related CN101856862B (en)

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KR1020090031780A KR101040818B1 (en) 2009-04-13 2009-04-13 Injection Apparatus Possible Back Pressure Control
KR10-2009-0031780 2009-04-13

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CN101856862B CN101856862B (en) 2013-10-16

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Cited By (2)

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Publication number Priority date Publication date Assignee Title
CN106476233A (en) * 2015-08-28 2017-03-08 震雄机械(深圳)有限公司 Jet forming machine and its plasticization unit hydraulic control device, back pressure control method
CN110234487A (en) * 2017-01-31 2019-09-13 住友重机械工业株式会社 Injection (mo(u)lding) machine

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KR101283505B1 (en) * 2011-01-20 2013-07-12 주식회사 진영이노텍 Auto sealing apparatus
KR102502006B1 (en) 2018-11-23 2023-02-22 엘에스엠트론 주식회사 Injection molding machine with back pressure signal filter and control method thereof

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JP2009012259A (en) * 2007-07-03 2009-01-22 Nissei Plastics Ind Co Hydraulic driving method and apparatus for injection molding machine

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JP2006088463A (en) * 2004-09-22 2006-04-06 Nissei Plastics Ind Co Control method of electric/oil pressure type injection device
JP2009012259A (en) * 2007-07-03 2009-01-22 Nissei Plastics Ind Co Hydraulic driving method and apparatus for injection molding machine
CN101306573A (en) * 2008-05-23 2008-11-19 浙江大学 Electric plasticization drive method and apparatus based on direct back-pressing feed back control

Cited By (4)

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Publication number Priority date Publication date Assignee Title
CN106476233A (en) * 2015-08-28 2017-03-08 震雄机械(深圳)有限公司 Jet forming machine and its plasticization unit hydraulic control device, back pressure control method
CN106476233B (en) * 2015-08-28 2019-04-12 震雄机械(深圳)有限公司 Jet forming machine and its plasticization unit hydraulic control device, back pressure control method
CN110234487A (en) * 2017-01-31 2019-09-13 住友重机械工业株式会社 Injection (mo(u)lding) machine
CN110234487B (en) * 2017-01-31 2023-08-11 住友重机械工业株式会社 Injection molding machine

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CN101856862B (en) 2013-10-16
KR101040818B1 (en) 2011-06-14

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