CN117774242A - Plastic mold processing and forming device and application method thereof - Google Patents

Plastic mold processing and forming device and application method thereof Download PDF

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Publication number
CN117774242A
CN117774242A CN202410143086.7A CN202410143086A CN117774242A CN 117774242 A CN117774242 A CN 117774242A CN 202410143086 A CN202410143086 A CN 202410143086A CN 117774242 A CN117774242 A CN 117774242A
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China
Prior art keywords
shell
inner shell
cooling
cylinder
processing
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CN202410143086.7A
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Chinese (zh)
Inventor
邹志伟
孙成松
冯亮
张亿林
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Sichun Mianyang Hongyongsheng Molding Co ltd
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Sichun Mianyang Hongyongsheng Molding Co ltd
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Priority to CN202410143086.7A priority Critical patent/CN117774242A/en
Publication of CN117774242A publication Critical patent/CN117774242A/en
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Abstract

The invention discloses a plastic mold processing and forming device and a use method thereof, wherein the plastic mold processing and forming device comprises a multistage cooling component, a pretreatment component and a preparation discharging component, wherein first fins are uniformly arranged on the inner wall of a grading shell; after injection molding is finished, the multistage cooling assembly is used for regulating and controlling the flow direction of cooling liquid to dissipate heat, so that the heat dissipation efficiency of a cooling system is improved, the cooling effect can be improved in the rapid cooling process, the demolding cooling period is shortened, the personalized requirements of users are met, and the use experience of the users is improved; the cooling is accomplished the back and is utilized the preparation ejection of compact subassembly automatic discharging that sets up, need not to match the manual work to pick up the material arrangement, has reduced the cost of labor of plastics product processing, has improved the practicality of device.

Description

Plastic mold processing and forming device and application method thereof
Technical Field
The invention relates to the technical field of plastic mold forming, in particular to a plastic mold processing and forming device and a using method thereof.
Background
The plastic mould forming is a method for manufacturing plastic products, the basic principle is that plastic raw materials are put into a mould, plastic is formed into a required shape by heating, pressurizing and the like, the conventional plastic mould processing and forming device basically can meet daily use requirements, but certain shortcomings still exist, firstly, the conventional plastic mould processing and forming device has simple functions, the plastic particle raw materials are lack of being treated before injection moulding, and the residual greasy dirt or impurities on the particle raw materials can influence the subsequent melt extrusion process, so that the forming quality of plastic products is reduced; secondly, the cooling structure in the existing plastic mold processing and forming device is simple, the heat exchange efficiency of the cooling structure cannot be adjusted due to the influence of heat dissipation power, the heat dissipation effect of the cooling structure cannot be accelerated when the rapid cooling requirement is met, the personalized requirement of a user is difficult to meet, and the use experience of the user is influenced; thirdly, the existing plastic mold processing and forming device needs to be matched with manpower for sorting and collecting after discharging, so that the labor cost of product processing is increased, and the practicability of the device is affected; it is therefore necessary to design a plastic mold processing and molding device and a method of using the same.
Disclosure of Invention
The invention aims to provide a plastic mold processing and forming device and a using method thereof, which are used for solving the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions: the utility model provides a plastic mold processing forming device, including first mould, second mould, shaping platform, multistage cooling module, pretreatment module, preparation ejection of compact subassembly, docking station, docking block, docking screw, enclosure and extruder body, first mould is fixed at the top of shaping platform, and sliding connection has the docking station on the shaping platform, be provided with the second mould on the docking station, the top of first mould and second mould all is provided with the cooling platform in the multistage cooling module, multistage cooling module is by the cooling station, the circulating pump, the liquid reserve tank, the classifying shell, classifying inner shell, the inner shell export, one-level export, the second grade export, the inner shell tail hole, the unblock frame, the unblock shell, the shutoff board, the spacing ring, the connecting spring, the shutoff ring, the regulation and control cylinder, first fin and second fin constitute, the top one side of cooling platform is provided with the classifying shell, and the one end of classifying shell is provided with the classifying inner shell through pipe cooperation connection on the cooling liquid export of first mould and second mould, the other end of inner shell is provided with the cooling platform in the multistage cooling module, the inner shell tail hole evenly, the second fin is provided with on the outer shell evenly on the outer wall of the classifying shell, the inner shell evenly is provided with the inner shell, the one-level fin is provided with the one-level of the plug ring, the one-level shell is connected with the one-level shell near the one-level plug ring, the one side of the plug ring has the plug ring, the one-level plug ring is provided with the plug ring in the plug ring, the plug ring in the one side has the plug ring, the plug ring has the plug ring in the one side has the plug ring, the plug has the plug ring on the one side on the plug ring, the plug has the plug through the one and the plug through the one side on the plug through the one side, one end of the connecting spring is fixed in the unlocking shell, the unlocking shell is fixedly connected with a plugging ring through a connecting piece, the plugging ring is slidably connected in the grading inner shell, one side of the plugging ring is fixedly connected with the output end of the regulating cylinder, the regulating cylinder is embedded in the sealing shell, and the sealing shell is uniformly fixed on the inner wall of the grading inner shell; the forming table is sleeved in a groove formed in one side of the closed shell, a processing outer shell in a pretreatment component is sleeved in the groove formed in the top of the closed shell, the pretreatment component consists of a processing outer shell, a processing inner shell, a rotary outlet, a circulating port, a feeding plate, a transfusion tube, a transmission table, a roller belt charging unit, a connecting shaft, a stirring frame, a fan shell, a connecting cylinder, a hexagonal shaft sleeve, a hexagonal transmission block, a connecting shaft cylinder, a liquid discharge tube, a discharge shell and a feeding hopper, the processing inner shell is rotationally connected with the processing outer shell, the rotary outlet is formed in the processing inner shell, the circulating port is formed in the top of the processing outer shell, the discharge shell is sleeved in the discharge port formed in the bottom of the processing outer shell, a feeding plate is arranged on one side of the processing outer shell, the top of the feeding plate is respectively provided with the transfusion tube and the feeding hopper, the transmission table is rotationally connected at the center of one side of the feeding plate, the connecting shaft is sleeved in the transmission table, one end of the stirring frame is fixedly connected with the output end of the connecting cylinder, the connecting cylinder is electrically connected in the uniformly formed in the groove on the transmission table, one end of the connecting shaft is in a matched connection with the roller belt charging unit, the other end of the connecting shaft is fixedly connected with the hexagonal shaft sleeve, and the other end of the roller belt charging unit is fixedly connected with the hexagonal shaft sleeve; one side of closing the shell is provided with the support frame in the preparation ejection of compact subassembly, the preparation ejection of compact subassembly comprises support frame, first cylinder, the frame that slides, the coupling shell, the second cylinder, the elevating platform, the elevating cylinder, the crane, the rotating electrical machines, the roll-over stand, the revolving cylinder, the clamping cylinder, centre gripping piece and ejection of compact platform, the ejection of compact platform sets up between support frame and shaping platform, sliding connection has first cylinder in the support frame, one side of first cylinder is provided with the frame that slides, sliding connection is provided with the coupling shell in the spout of seting up on the support frame, sliding connection has the second cylinder on the frame that slides, the second cylinder is located the inside of coupling shell, be provided with the elevating platform between the second cylinder, the symmetry is provided with the elevating cylinder on the elevating platform, the output of elevating cylinder is provided with the crane, the bottom of elevating platform is provided with the rotating electrical machines, the output fixedly connected with roll-over stand of rotating electrical machines, the symmetry is provided with revolving cylinder on the output of revolving cylinder clamping cylinder, the output of clamping cylinder is provided with the roll-over stand.
Preferably, the bottom of docking station is provided with the butt joint connecting block, and the ball nut cooperation of butt joint connecting block through inside embedding installation is connected on the butt joint lead screw, and the butt joint lead screw rotates to be connected in the shaping platform, and the output of butt joint motor is connected to the one end fixed connection of butt joint lead screw, and the inside at the shaping platform is installed in the butt joint motor embedding.
Preferably, the top of the cooling table is respectively provided with a circulating pump and a liquid storage tank.
Preferably, the liquid storage tank is respectively connected with the primary outlet and the secondary outlet in a matched mode through the guide pipe.
Preferably, the liquid storage tank is communicated with the circulating pump, and the output end of the circulating pump is connected to the cooling liquid inlets of the first die and the second die in a matched manner through a conduit.
Preferably, a connecting shaft cylinder is arranged at the center of one side of the inner processing shell, and the output end of the connecting shaft cylinder is fixedly connected with a hexagonal transmission block.
Preferably, a liquid discharge pipe is arranged at the bottom of one side of the inner treatment shell, and a regulating valve is arranged on the liquid discharge pipe.
Preferably, the processing shell is uniformly provided with a fan shell, the output end of the fan shell is provided with an electric heating wire, and a drying fan is arranged in the fan shell.
Preferably, the bottom of the discharge shell is connected to the extruder body in a matched manner, and the output end of the extruder body is sleeved in the injection molding port of the first die.
The application method of the plastic mold processing and forming device comprises the following steps: step one, raw material treatment; step two, injection molding; step three, stripping and preparing;
firstly, putting plastic particle raw materials into a processing inner shell from a feed hopper, then discharging cleaning liquid into the processing inner shell from a liquid delivery pipe, at the moment, communicating a rotating outlet on the processing inner shell with a circulating port on a processing outer shell, simultaneously driving a connecting shaft and a stirring frame to rotate under the driving of a roller skin charging unit, fully stirring and cleaning the plastic particle raw materials by using the stirring frame, removing dirt on the surfaces of the raw material particles, driving the stirring frame to slide on the connecting shaft by a connecting shaft cylinder on a transmission table in the cleaning process, automatically adjusting the position of the stirring frame in the processing inner shell, improving the cleaning efficiency, opening a regulating valve on the liquid delivery pipe after the cleaning is finished, discharging the cleaning liquid from the liquid delivery pipe, simultaneously discharging clear water into the processing inner shell from the liquid delivery pipe, continuously flushing the raw material particles, after flushing, and after the clear water is emptied, operating a drying fan in the air shell, and matching with an electric heating wire to dry the raw material particles in the processing inner shell, discharging evaporated water from the circulating port on the processing outer shell, and finishing the pretreatment process of the particle raw material after drying;
in the second step, the hexagonal transmission block is pushed into the hexagonal shaft sleeve through the connecting shaft cylinder, then the connecting shaft rotates under the action of the roller belt charging unit, meanwhile, the hexagonal transmission block and the hexagonal shaft sleeve are mutually matched to drive the processing inner shell to rotate in the processing outer shell, when a rotating outlet on the processing inner shell is communicated with a discharge hole on the processing outer shell, particle raw materials enter the extruder body through the discharge shell, meanwhile, the docking screw rotates under the action of the docking motor and is mutually matched with the docking connecting block, the docking platform is driven to be close to the forming platform, the first die is tightly pressed on the second die, and then the particle raw materials are subjected to spiral extrusion and then are injected between the first die and the second die; after injection molding is finished, the circulating pump discharges cooling liquid in the liquid storage tank into the first die and the second die, the cooling liquid enters the classifying inner shell after circulation, the cooling liquid enters the primary outlet from the inner shell outlet on the classifying inner shell during initial cooling, then the cooling liquid is discharged into the liquid storage tank to finish circulation, the regulating and controlling cylinder drives the plugging ring and the unlocking shell to be close to the tail hole of the inner shell when rapid cooling is needed, the inner shell outlet is plugged through the plugging ring, the unlocking shell is close to the unlocking frame, then the unlocking frame pushes up the plugging plate, the gap between the plugging plate and the unlocking frame is sealed while the connecting spring is stretched, at the moment, the cooling liquid is discharged into the gap between the classifying outer shell and the classifying inner shell from the tail hole of the inner shell, and then the cooling liquid passes through the first fins and the second fins to dissipate heat, so that the heat dissipation efficiency of the cooling system is accelerated, and the cooling effect can be improved in the rapid cooling process;
in the third step, after cooling, the docking screw rotates under the action of the docking motor to be matched with the docking connection block, the docking platform is driven to be away from the forming platform, the first die is separated from the second die, the cooled product is contracted and then is clung to the second die, then the lifting cylinder drives the lifting frame to move downwards, the position interval between the sliding frame and the second die is adjusted through the first cylinder, then the clamping cylinder drives the clamping piece to be mutually close to clamp the product, the demolding mechanism in the second die is matched to take down the product from the second die, then the rotating cylinder drives the clamping cylinder to rotate, the lifting cylinder drives the lifting frame to move upwards, the product is moved out of the forming platform, and then the second cylinder drives the lifting platform to move along the sliding frame to be matched with the lifting cylinder to move the product to the discharging platform, so that discharging is completed.
Compared with the prior art, the invention has the beneficial effects that: before molding, plastic particle raw materials are put into a processing inner shell from a feed hopper, then cleaning liquid is discharged into the processing inner shell from a liquid conveying pipe, at the moment, a rotating outlet on the processing inner shell is communicated with a circulating port on a processing outer shell, meanwhile, a connecting shaft and a stirring frame rotate under the drive of a roller skin charging unit, the plastic particle raw materials are fully stirred and cleaned by the stirring frame, dirt on the surfaces of the raw material particles is removed, the stirring frame is driven to slide on the connecting shaft by a connecting shaft cylinder on a transmission table in the cleaning process, the position of the stirring frame in the processing inner shell is automatically adjusted, the cleaning efficiency is improved, a regulating valve on a liquid discharging pipe is opened after the cleaning is finished, the cleaning liquid is discharged from the liquid discharging pipe, meanwhile, clear water is discharged into the processing inner shell from the liquid conveying pipe, raw material particles are continuously washed, a drying fan in a fan shell runs after the clear water is emptied, the raw material particles in the processing inner shell are dried by matching with an electric heating wire, the evaporated water is discharged from the circulating port on the processing outer shell, the front processing process of the raw material particles is finished after the drying, the plastic particle raw material is prevented from adhering impurities or the melting extrusion process after the plastic molding process is influenced by pollutants is avoided; after injection molding, a circulating pump discharges cooling liquid in a liquid storage tank into a first die and a second die, the cooling liquid enters a grading inner shell after circulation, the cooling liquid enters a primary outlet from an inner shell outlet on the grading inner shell during initial cooling, and then is discharged into the liquid storage tank to complete circulation, a regulating and controlling cylinder drives a plugging ring and a unlocking shell to be close to an inner shell tail hole when rapid cooling is needed, the inner shell outlet is plugged through the plugging ring, the unlocking shell is close to an unlocking frame, then the unlocking frame pushes up a plugging plate, a gap between the plugging plate and the unlocking frame is sealed while a connecting spring is stretched, at the moment, the cooling liquid is discharged into a gap between the grading outer shell and the grading inner shell from the inner shell through the inner shell tail hole, and then passes through a first fin and a second fin to dissipate heat, so that the heat dissipation efficiency of a cooling system is accelerated, the cooling effect can be improved in the rapid cooling process, the individual requirements of a user are met, and the use experience of the user is improved; after the cooling is finished, the butt joint lead screw rotates under the effect of the butt joint motor and is mutually matched with the butt joint connecting block, the butt joint table is driven to be far away from the forming table, the first die and the second die are separated, simultaneously cooled products shrink and cling to the second die, then the lifting cylinder drives the lifting frame to move downwards, simultaneously, the position interval between the sliding frame and the second die is adjusted through the first cylinder, then the clamping cylinder drives the clamping piece to mutually approach to clamp the products, meanwhile, the demolding mechanism in the second die is matched to take down the products from the second die, then the rotating cylinder drives the clamping cylinder to rotate, meanwhile, the lifting cylinder drives the lifting frame to move upwards to move the products out of the forming table, then the second cylinder drives the lifting table to move along the sliding frame, the lifting cylinder is matched to move the products to the discharging table, the discharging is finished, the manual material picking and finishing are not needed, the labor cost of plastic product processing is reduced, and the practicability of the device is improved.
Drawings
FIG. 1 is a three-dimensional view of the overall structure of the present invention;
FIG. 2 is a top view of the overall structure of the present invention;
FIG. 3 is an exploded view of a portion of the structure of the present invention;
FIG. 4 is an enlarged view of a portion of area A of FIG. 3;
FIG. 5 is an enlarged view of a portion of region B of FIG. 3;
FIG. 6 is a schematic view of the position of the connecting shaft according to the present invention;
FIG. 7 is a schematic view of the position of the extruder body according to the present invention;
FIG. 8 is a schematic view showing the arrangement of the first fin and the second fin in the present invention;
FIG. 9 is a schematic view of the location of the inner housing of the present invention;
FIG. 10 is a schematic view of the unlocking case of the present invention;
FIG. 11 is an enlarged view of a portion of region C of FIG. 10;
FIG. 12 is a flow chart of a method of the present invention;
in the figure: 1. a first mold; 2. a second mold; 3. a forming table; 4. a multi-stage cooling assembly; 5. a pre-processing assembly; 6. preparing a discharging assembly; 7. a docking station; 8. butting connecting blocks; 9. docking a lead screw; 10. a closed shell; 11. an extruder body; 401. a cooling table; 402. a circulation pump; 403. a liquid storage tank; 404. a graded housing; 405. a classifying inner shell; 406. an inner housing outlet; 407. a primary outlet; 408. a secondary outlet; 409. an inner shell tail hole; 410. unlocking the frame; 411. unlocking the shell; 412. a plugging plate; 413. a limiting ring; 414. a connecting spring; 415. a plugging ring; 416. regulating and controlling an air cylinder; 417. a first fin; 418. a second fin; 501. a processing enclosure; 502. treating the inner shell; 504. rotating the outlet; 505. a flow port; 506. a feed plate; 507. an infusion tube; 508. a transmission table; 509. a roller belt charging unit; 510. a connecting shaft; 511. a stirring rack; 512. a fan housing; 513. the connecting cylinder; 514. a hexagonal shaft sleeve; 515. a hexagonal transmission block; 516. a connecting shaft cylinder; 517. a liquid discharge pipe; 518. a discharge shell; 519. a feed hopper; 601. a support frame; 602. a first cylinder; 603. a sliding frame; 604. a connection housing; 605. a second cylinder; 606. a lifting table; 607. a lifting cylinder; 608. a lifting frame; 609. a rotating motor; 610. a roll-over stand; 611. a rotary cylinder; 612. clamping an air cylinder; 613. a clamping piece; 614. and a discharging table.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-11, an embodiment of the present invention is provided: a plastic mold processing and shaping device comprises a first mold 1, a second mold 2, a shaping table 3, a multistage cooling component 4, a pretreatment component 5, a preparation discharging component 6, a butt joint table 7, a butt joint connecting block 8, a butt joint lead screw 9, a closed shell 10 and an extruder body 11, wherein the first mold 1 is fixed on the top of the shaping table 3, the butt joint table 7 is slidingly connected on the shaping table 3, the second mold 2 is arranged on the butt joint table 7, the cooling tables 401 in the multistage cooling component 4 are arranged on the tops of the first mold 1 and the second mold 2, the multistage cooling component 4 consists of the cooling table 401, a circulating pump 402, a liquid storage tank 403, a classification outer shell 404, a classification inner shell 405, an inner shell outlet 406, a first-stage outlet 407, a second-stage outlet 408, an inner shell tail hole 409, an unlocking frame 410, an unlocking shell 411, a plugging plate 412, a limiting ring 413, a connecting spring 414, a plugging ring 415, a regulating cylinder 416, a first fin 417 and a second fin 418, a classifying outer shell 404 is arranged on one side of the top of the cooling table 401, a classifying inner shell 405 is arranged in the classifying outer shell 404, one end of the classifying inner shell 405 is connected to the cooling liquid outlets of the first die 1 and the second die 2 in a matched manner through a conduit, an inner shell tail hole 409 is arranged at the other end of the classifying inner shell 405, second fins 418 are uniformly arranged on the outer wall of the classifying inner shell 405, first fins 417 are uniformly arranged on the inner wall of the classifying outer shell 404, a secondary outlet 408 is arranged on one side of the top of the classifying outer shell 404, an inner shell outlet 406 is arranged on the classifying inner shell 405, a primary outlet 407 is sleeved on the inner shell outlet 406, a through hole is arranged at the joint of the classifying outer shell 404 and the primary outlet 407, an unlocking frame 410 is arranged on one side of the classifying inner shell 405 close to the inner shell tail hole 409, an unlocking shell 411 is slidingly connected to one end of the classifying inner shell 405 close to the unlocking frame 410, the unlocking shell 411 is slidably connected with a blocking plate 412, the blocking plate 412 is slidably connected to a support column arranged on the limiting ring 413, the limiting ring 413 is fixed in the unlocking shell 411, one side of the blocking plate 412 is uniformly provided with a connecting spring 414, one end of the connecting spring 414 is fixed in the unlocking shell 411, the unlocking shell 411 is fixedly connected with a blocking ring 415 through a connecting piece, the blocking ring 415 is slidably connected in the classifying inner shell 405, one side of the blocking ring 415 is fixedly connected with an output end of a regulating cylinder 416, the regulating cylinder 416 is embedded and installed in the sealing shell, and the sealing shell is uniformly fixed on the inner wall of the classifying inner shell 405; the forming table 3 is sleeved in a groove formed in one side of the closed shell 10, a processing outer shell 501 in the preprocessing component 5 is sleeved in a groove formed in the top of the closed shell 10, the preprocessing component 5 is composed of the processing outer shell 501, the processing inner shell 502, a rotary outlet 504, a circulation port 505, a feeding plate 506, a transfusion tube 507, a transmission table 508, a roller skin charging unit 509, a connecting shaft 510, a stirring frame 511, a fan shell 512, a connecting cylinder 513, a hexagonal shaft sleeve 514, a hexagonal transmission block 515, a connecting shaft cylinder 516, a liquid discharge tube 517, a discharge shell 518 and a feeding hopper 519, the processing inner shell 502 is rotatably connected with the processing inner shell 502, a rotary outlet 504 is formed in the processing inner shell 502, a circulation port 505 is formed in the top of the processing outer shell 501, a discharge shell 518 is sleeved in the bottom of the processing outer shell 501, a feeding plate 506 is arranged on one side of the processing outer shell 501, the top of the feeding plate 506 is respectively provided with the transfusion tube 507 and the feeding hopper 519, the center of one side of the feeding plate 506 is rotatably connected with the transmission table 508, the connecting shaft 510 is sleeved in the transmission table 508, one end of the stirring frame 511 is fixedly connected with the stirring frame 511, one end of the output shaft 513 is fixedly connected with the roller skin charging unit 511 in the transmission table 511, and the other end of the transmission table is fixedly connected with the roller skin charging unit 510, and the other end of the transmission shaft is fixedly connected with the roller frame 511, and the feeding plate is connected with the feeding plate roll table 510 in the transmission shaft is connected with the transmission shaft roll table is connected with the feeding plate roll table 511; one side of the closed shell 10 is provided with a support frame 601 in the preparation discharging assembly 6, the preparation discharging assembly 6 consists of the support frame 601, a first air cylinder 602, a sliding frame 603, a connecting shell 604, a second air cylinder 605, a lifting table 606, a lifting air cylinder 607, a lifting frame 608, a rotating motor 609, a roll-over stand 610, a rotating air cylinder 611, a clamping air cylinder 612, a clamping piece 613 and a discharging table 614, the discharging table 614 is arranged between the support frame 601 and the forming table 3, the first air cylinder 602 is connected in the support frame 601 in a sliding way, one side of the first air cylinder 602 is provided with the sliding frame 603, the sliding frame 603 is connected in a sliding groove formed on the support frame 601, the connecting shell 604 is arranged between the sliding frames 603, the second air cylinders 605 are connected to the sliding frame 603 in a sliding manner, the second air cylinders 605 are located in the connecting shell 604, lifting tables 606 are arranged between the second air cylinders 605, lifting air cylinders 607 are symmetrically arranged on the lifting tables 606, lifting frames 608 are arranged at the output ends of the lifting air cylinders 607, a rotating motor 609 is arranged at the bottom of each lifting frame 608, a turnover frame 610 is fixedly connected to the output ends of the rotating motors 609, rotating air cylinders 611 are symmetrically arranged in the turnover frames 610, clamping air cylinders 612 are symmetrically arranged at the output ends of the rotating air cylinders 611, clamping pieces 613 are arranged at the output ends of the clamping air cylinders 612, the clamping air cylinders 612 are used for driving the clamping pieces 613 to be close to each other, and products are prevented from falling out of a die and being damaged in the product demoulding process;
the bottom of the butt joint table 7 is provided with a butt joint connecting block 8, the butt joint connecting block 8 is connected to a butt joint lead screw 9 in a matched manner through a ball nut embedded in the butt joint connecting block, the butt joint lead screw 9 is rotationally connected to the forming table 3, one end of the butt joint lead screw 9 is fixedly connected with the output end of a butt joint motor, the butt joint motor is embedded in the forming table 3, the butt joint lead screw 9 is matched with the butt joint connecting block 8, and the butt joint table 7 is driven to be close to the first die 1 on the forming table 3 in the injection molding process;
the top of the cooling table 401 is respectively provided with a circulating pump 402 and a liquid storage tank 403, the liquid storage tank 403 is respectively connected with a primary outlet 407 and a secondary outlet 408 in a matched mode through a conduit, the liquid storage tank 403 is communicated with the circulating pump 402, the output end of the circulating pump 402 is connected to the cooling liquid inlets of the first die 1 and the second die 2 in a matched mode through a conduit, and the circulating pump 402 provides circulating power for cooling liquid;
a connecting shaft cylinder 516 is arranged at the center of one side of the inner processing shell 502, the output end of the connecting shaft cylinder 516 is fixedly connected with a hexagonal transmission block 515, and the connecting shaft cylinder 516 is used for regulating and controlling the position of the hexagonal transmission block 515;
the bottom of one side of the processing inner shell 502 is provided with a drain pipe 517, a regulating valve is arranged on the drain pipe 517, a fan shell 512 is uniformly arranged on the processing outer shell 501, an output end of the fan shell 512 is provided with an electric heating wire, a drying fan is arranged in the fan shell 512, the bottom of the drain shell 518 is connected to the extruder body 11 in a matched manner, an output end of the extruder body 11 is sleeved in an injection molding port of the first die 1, and the extruder body 11 is used for carrying out spiral extrusion on plastic particle raw materials.
Referring to fig. 12, an embodiment of the present invention is provided: the application method of the plastic mold processing and forming device comprises the following steps: step one, raw material treatment; step two, injection molding; step three, stripping and preparing;
in the first step, firstly, plastic particle raw materials are put into the processing inner shell 502 from the feed hopper 519, then cleaning liquid is discharged into the processing inner shell 502 from the infusion tube 507, at this time, a rotating outlet 504 on the processing inner shell 502 is communicated with a circulating port 505 on the processing outer shell 501, meanwhile, a connecting shaft 510 and a stirring frame 511 are driven by a roller skin charging unit 509 to rotate, the stirring frame 511 is utilized to fully stir and clean the plastic particle raw materials, dirt on the surface of the raw material particles is removed, a connecting shaft cylinder 516 on a transmission table 508 drives the stirring frame 511 to slide on the connecting shaft 510 during cleaning, the position of the stirring rack 511 in the inner processing shell 502 is automatically adjusted, the cleaning efficiency is improved, a regulating valve on a liquid discharge pipe 517 is opened after the cleaning is finished, cleaning liquid is discharged from the liquid discharge pipe 517, meanwhile clear water is discharged into the inner processing shell 502 from a liquid conveying pipe 507, raw material particles are continuously washed, after the washing is finished and clear water is emptied, a drying fan in a fan shell 512 operates, the raw material particles in the inner processing shell 502 are dried by matching with an electric heating wire, evaporated water is discharged from a circulation port 505 on the outer processing shell 501, and the pretreatment process of the particle raw materials is finished after the drying is finished;
in the second step, the hexagonal transmission block 515 is pushed into the hexagonal shaft sleeve 514 by the connecting shaft cylinder 516, then the connecting shaft 510 rotates under the action of the roller belt charging unit 509, meanwhile, the hexagonal transmission block 515 and the hexagonal shaft sleeve 514 are mutually matched to drive the processing inner shell 502 to rotate in the processing outer shell 501, when the rotating outlet 504 on the processing inner shell 502 is communicated with the discharge port on the processing outer shell 501, the granular raw material enters the extruder body 11 through the discharge shell 518, and meanwhile, the docking screw 9 rotates under the action of the docking motor to mutually match with the docking connection block 8 to drive the docking station 7 to be close to the forming station 3, so that the first die 1 is tightly pressed on the second die 2, and then the granular raw material is subjected to spiral extrusion and then is injected between the first die 1 and the second die 2; after injection molding, the circulation pump 402 discharges cooling liquid in the liquid storage tank 403 into the first mold 1 and the second mold 2, the cooling liquid enters the classifying inner shell 405 after circulation, the cooling liquid enters the primary outlet 407 from the inner shell outlet 406 on the classifying inner shell 405 during initial cooling, and then the cooling liquid is discharged into the liquid storage tank 403 to complete circulation, when the cooling is required to be quickly cooled, the regulating cylinder 416 drives the blocking ring 415 and the unlocking shell 411 to be close to the inner shell tail hole 409, the inner shell outlet 406 is blocked by the blocking ring 415, the unlocking shell 411 is close to the unlocking frame 410, then the unlocking frame 410 is tightly propped against the blocking plate 412, the gap between the blocking plate 412 and the unlocking frame 410 is opened while the connecting spring 414 is stretched, at the moment, the cooling liquid is discharged into the gap between the classifying outer shell 404 and the classifying inner shell 405 from the inner shell tail hole 409, and then passes through the first fins 417 and the second fins 418 to dissipate heat, so that the cooling efficiency of the cooling system is accelerated, and the cooling effect can be improved in the quick cooling process;
in the third step, after cooling, the docking screw 9 rotates under the action of the docking motor to cooperate with the docking connection block 8 to drive the docking station 7 to move away from the forming station 3, the first mold 1 and the second mold 2 are separated, the cooled product is contracted and then is tightly attached to the second mold 2, then the lifting cylinder 607 drives the lifting frame 608 to move downwards, the position interval between the sliding frame 603 and the second mold 2 is adjusted through the first cylinder 602, then the clamping cylinder 612 drives the clamping piece 613 to mutually approach to clamp the product, meanwhile, the demolding mechanism in the second mold 2 is matched to take down the product from the second mold 2, then the rotating cylinder 611 drives the clamping cylinder 612 to rotate, meanwhile, the lifting cylinder 607 drives the lifting frame 608 to move upwards to move the product out of the forming station 3, then the second cylinder 605 drives the lifting frame 606 to move along the sliding frame 603, and the lifting cylinder 607 is matched to move the product to the discharging station 614, so that discharging is completed.
Based on the above, the invention has the advantages that before forming, plastic particle raw materials are put into the processing inner shell 502 from the feed hopper 519, then cleaning liquid is discharged into the processing inner shell 502 from the liquid conveying pipe 507, at the moment, a rotating outlet 504 on the processing inner shell 502 is communicated with a circulating port 505 on the processing outer shell 501, meanwhile, a connecting shaft 510 and a stirring frame 511 are driven by a roller skin charging unit 509 to rotate, the stirring frame 511 is utilized to fully stir and clean the plastic particle raw materials, dirt on the surfaces of the raw material particles is removed, a connecting shaft cylinder 516 on a transmission table 508 drives the stirring frame 511 to slide on the connecting shaft 510 in the cleaning process, the position of the stirring frame 511 in the processing inner shell 502 is automatically adjusted, the cleaning efficiency is improved, a regulating valve on the liquid discharging pipe 517 is opened after the cleaning is completed, the cleaning liquid is discharged from the liquid discharging pipe 517, meanwhile, a drying fan in the processing inner shell 502 is continuously washed from the liquid discharging pipe 507, after the cleaning is completely finished, a drying fan in the fan shell 512 is driven by clear water, the electric heating wire is matched to carry out stirring and cleaning on the raw material particles in the processing inner shell 502, the evaporated water is discharged from the processing inner shell 505, the connecting shaft 516 slides on the raw material particles, the raw material particles on the processing inner shell 502, the adhesion and pollution of the raw material particles after the drying and the material forming process is avoided after the plastic material is completely extruded, and the quality is guaranteed, and the quality of the material is completely after the material is formed, and the material is prevented from being adhered and finished, and after the material is formed; after injection molding, the circulation pump 402 discharges cooling liquid in the liquid storage tank 403 into the first mold 1 and the second mold 2, the cooling liquid enters the classifying inner shell 405 after circulation, the cooling liquid enters the first-stage outlet 407 from the inner shell outlet 406 on the classifying inner shell 405 during initial cooling, and then the cooling liquid is discharged into the liquid storage tank 403 to complete circulation, when the cooling is required to be quickly cooled, the regulating cylinder 416 drives the blocking ring 415 and the unlocking shell 411 to be close to the inner shell tail hole 409, the inner shell outlet 406 is blocked through the blocking ring 415, the unlocking shell 411 is close to the unlocking frame 410, then the unlocking frame 410 is tightly propped against the blocking plate 412, the gap between the blocking plate 412 and the unlocking frame 410 is opened while the connecting spring 414 is stretched, at the moment, the cooling liquid is discharged into the gap between the classifying outer shell 404 and the classifying inner shell 405 from the inner shell tail hole 409, and then passes through the first fins 417 and the second fins 418 to dissipate heat, so that the cooling efficiency of the cooling system is accelerated, the cooling effect can be improved during the quick cooling process, the demolding cooling period is shortened, the personalized requirements of a user are met, and the use experience of the user is improved; after cooling is finished, the butt joint lead screw 9 rotates under the action of the butt joint motor to be matched with the butt joint connecting block 8, the butt joint table 7 is driven to be far away from the forming table 3, the first die 1 and the second die 2 are separated, simultaneously, cooled products shrink and cling to the second die 2, then the lifting cylinder 607 drives the lifting frame 608 to move downwards, simultaneously, the position interval between the sliding frame 603 and the second die 2 is adjusted through the first cylinder 602, then the clamping cylinder 612 drives the clamping piece 613 to be mutually close to clamp the products, simultaneously, the demolding mechanism in the second die 2 is matched to take the products off the second die 2, then the rotating cylinder 611 drives the clamping cylinder 612 to rotate, simultaneously, the lifting cylinder 607 drives the lifting frame 608 to move upwards, the products are moved out of the forming table 3, then the second cylinder 605 drives the lifting frame 606 to move along the sliding frame 603, the lifting cylinder 607 is matched to move the products to the discharging table 614, material picking and finishing are finished, the labor cost of plastic product processing is reduced, and the practicability of the device is improved.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. The utility model provides a plastic mold processing forming device, includes first mould (1), second mould (2), shaping platform (3), multistage cooling module (4), pretreatment module (5), preparation ejection of compact subassembly (6), docking station (7), docking block (8), docking lead screw (9), enclosure (10) and extruder body (11), its characterized in that: the first die (1) is fixed at the top of the forming table (3), the forming table (3) is connected with a butt joint table (7) in a sliding manner, the butt joint table (7) is provided with a second die (2), the tops of the first die (1) and the second die (2) are both provided with cooling tables (401) in a multi-stage cooling assembly (4), the multi-stage cooling assembly (4) comprises the cooling tables (401), a circulating pump (402), a liquid storage tank (403), a classifying outer shell (404), a classifying inner shell (405), an inner shell outlet (406), a primary outlet (407), a secondary outlet (408), an inner shell tail hole (409), an unlocking frame (410), an unlocking shell (411), a plugging plate (412), a limiting ring (413), a connecting spring (414), a plugging ring (415), a regulating cylinder (416), a first fin (417) and a second fin (418), one side of the top of the cooling table (401) is provided with a classifying outer shell (404), the inner shell (405) is internally provided with a classifying inner shell (405), one end of the classifying inner shell (405) is connected to the cooling liquid of the first die (1) and the tail hole (409) of the second die (2) in a matched manner through a conduit, second fins (418) are uniformly arranged on the outer wall of the classifying inner shell (405), first fins (417) are uniformly arranged on the inner wall of the classifying outer shell (404), a second-stage outlet (408) is arranged on one side of the top of the classifying outer shell (404), an inner shell outlet (406) is formed in the classifying inner shell (405), a first-stage outlet (407) is sleeved on the inner shell outlet (406), a through hole is formed in the joint of the classifying outer shell (404) and the first-stage outlet (407), an unlocking frame (410) is arranged on one side, close to a tail hole (409) of the inner shell, of the classifying inner shell (405), an unlocking shell (411) is slidably connected to one end, close to the unlocking frame (410), of the inner shell (405), a plugging plate (412) is slidably connected to a strut arranged on a limiting ring (413), the limiting ring (413) is fixed in the unlocking shell (411), a connecting spring (414) is uniformly arranged on one side of the plugging plate (412), one end of the connecting spring (414) is fixed in the unlocking shell (411), the unlocking shell (411) is fixedly connected with the plugging ring (415) through a connecting piece, one end, close to the plugging ring (415) is slidably connected to the plugging ring (416) in the sealing cylinder (416), the sealing end is fixedly embedded in the sealing and sealing end of the inner shell (416), the sealing shell is uniformly fixed on the inner wall of the grading inner shell (405); the forming table (3) is sleeved in a groove formed in one side of the sealing shell (10), a processing shell (501) in a pretreatment component (5) is sleeved in a groove formed in the top of the sealing shell (10), the pretreatment component (5) comprises a processing shell (501), a processing inner shell (502), a rotary outlet (504), a circulation port (505), a feeding plate (506), a delivery pipe (507), a transmission table (508), a roller belt charging unit (509), a connecting shaft (510), a stirring rack (511), a fan shell (512), a connecting cylinder (513), a hexagonal shaft sleeve (514), a hexagonal transmission block (515), a connecting shaft cylinder (516), a liquid discharge pipe (517), a discharge shell (518) and a feed hopper (519), the processing inner shell (502) is rotationally connected with the processing inner shell (502), a rotary outlet (504) is formed in the processing inner shell (502), the top of the processing inner shell (501) is provided with a circulation port (505), a discharge shell (518) is formed in a discharge port formed in the bottom of the processing inner shell (501), one side of the processing outer shell (501) is provided with the feeding plate (506), one side of the feeding plate (506) is sleeved with the transmission plate (506) and one side of the transmission table (519) is respectively connected with the transmission table (519), a connecting shaft (510) is sleeved in the transmission table (508), a stirring frame (511) is connected to the connecting shaft (510) in a sliding manner, one end of the stirring frame (511) is fixed to the output end of a connecting air cylinder (513), the connecting air cylinder (513) is sleeved in a groove uniformly formed in the transmission table (508), one end of the connecting shaft (510) is connected with a roller skin charging unit (509) in a matched manner, the roller skin charging unit (509) is fixed to a feeding plate (506), a hexagonal shaft sleeve (514) is arranged at the other end of the connecting shaft (510), and the hexagonal shaft sleeve (514) is rotationally connected in the processing inner shell (502); one side of the closed shell (10) is provided with a support frame (601) in the preparation discharging component (6), the preparation discharging component (6) is composed of the support frame (601), a first air cylinder (602), a sliding frame (603), a connecting shell (604), a second air cylinder (605), a lifting table (606), a lifting air cylinder (607), a lifting frame (608), a rotating motor (609), a turnover frame (610), a rotating air cylinder (611), a clamping air cylinder (612), a clamping piece (613) and a discharging table (614), the discharging table (614) is arranged between the support frame (601) and the forming table (3), the first air cylinder (602) is connected in the support frame (601) in a sliding way, one side of the first air cylinder (602) is provided with a sliding frame (603), the sliding frame (603) is connected in a sliding groove formed in the support frame (601), the connecting shell (604) is arranged between the sliding frames (603), the second air cylinder (605) is connected in a sliding way, the second air cylinder (605) is positioned in the connecting shell (604), the lifting table (607) is arranged between the second air cylinder (605), the lifting table (607) is provided with the lifting table (606), the lifting table (606) is symmetrically provided with lifting ends (608), the bottom of crane (608) is provided with rotation motor (609), and the output fixedly connected with roll-over stand (610) of rotation motor (609), is provided with revolving cylinder (611) in the symmetry in roll-over stand (610), and the symmetry is provided with clamping cylinder (612) on the output of revolving cylinder (611), and the output of clamping cylinder (612) is provided with centre gripping piece (613).
2. A plastic mold tooling apparatus as set forth in claim 1 wherein: the bottom of butt joint platform (7) is provided with butt joint connecting block (8), and butt joint connecting block (8) are connected on butt joint lead screw (9) through the ball nut cooperation of inside embedding installation, and butt joint lead screw (9) rotate and connect in shaping platform (3), and the output of butt joint motor is connected to the one end fixed connection of butt joint lead screw (9), and the inside at shaping platform (3) is installed in the butt joint motor embedding.
3. A plastic mold tooling apparatus as set forth in claim 1 wherein: the top of the cooling table (401) is respectively provided with a circulating pump (402) and a liquid storage tank (403).
4. A plastic mold tooling apparatus as set forth in claim 3 wherein: the liquid storage tank (403) is respectively connected with the primary outlet (407) and the secondary outlet (408) in a matched mode through a conduit.
5. A plastic mold tooling apparatus as set forth in claim 3 wherein: the liquid storage tank (403) is communicated with the circulating pump (402), and the output end of the circulating pump (402) is connected to the cooling liquid inlets of the first die (1) and the second die (2) in a matched mode through a guide pipe.
6. A plastic mold tooling apparatus as set forth in claim 1 wherein: a connecting shaft cylinder (516) is arranged in the center of one side of the inner processing shell (502), and the output end of the connecting shaft cylinder (516) is fixedly connected with a hexagonal transmission block (515).
7. The plastic mold tooling apparatus of claim 6 wherein: a liquid discharge pipe (517) is arranged at the bottom of one side of the treatment inner shell (502), and a regulating valve is arranged on the liquid discharge pipe (517).
8. A plastic mold tooling apparatus as set forth in claim 1 wherein: the processing shell (501) is uniformly provided with a fan shell (512), the output end of the fan shell (512) is provided with an electric heating wire, and a drying fan is arranged in the fan shell (512).
9. A plastic mold tooling apparatus as set forth in claim 1 wherein: the bottom of the discharging shell (518) is connected to the extruder body (11) in a matched mode, and the output end of the extruder body (11) is sleeved in an injection molding port of the first die (1).
10. The application method of the plastic mold processing and forming device comprises the following steps: step one, raw material treatment; step two, injection molding; step three, stripping and preparing; the method is characterized in that:
firstly, putting plastic particle raw materials into a processing inner shell (502) from a feed hopper (519), then discharging cleaning liquid into the processing inner shell (502) from a liquid conveying pipe (507), at the moment, a rotating outlet (504) on the processing inner shell (502) is communicated with a circulating port (505) on a processing outer shell (501), meanwhile, a connecting shaft (510) and a stirring frame (511) are driven by a roller skin charging unit (509) to rotate, the stirring frame (511) is utilized to fully stir and clean the plastic particle raw materials, the dirt on the surfaces of the raw material particles is removed, a connecting shaft cylinder (516) on a transmission table (508) drives the stirring frame (511) to slide on the connecting shaft (510) in the cleaning process, the position of the stirring frame (511) in the processing inner shell (502) is automatically adjusted, the cleaning efficiency is improved, a regulating valve on a liquid discharging pipe (517) is opened after the cleaning liquid is discharged from the liquid discharging pipe (517), the raw material particles are continuously washed, the raw material particles are completely washed, and after the cleaning liquid is discharged from the liquid discharging pipe (507) into the processing inner shell (502), the fan (512) is matched with a fan (512) to dry the raw material particles, and the raw material particles are completely dried, and the raw material particles are discharged from the processing inner shell (501) is completely, and dried, and the raw material particles are completely is dried.
In the second step, the hexagonal transmission block (515) is pushed into the hexagonal shaft sleeve (514) through the connecting shaft cylinder (516), then the connecting shaft (510) rotates under the action of the roller belt charging unit (509), meanwhile, the hexagonal transmission block (515) and the hexagonal shaft sleeve (514) are matched to drive the inner processing shell (502) to rotate in the outer processing shell (501), when a rotating outlet (504) on the inner processing shell (502) is communicated with a discharge outlet on the outer processing shell (501), particle raw materials enter the extruder body (11) through the discharge shell (518), meanwhile, the docking screw (9) rotates under the action of the docking motor and is matched with the docking connection block (8), the docking station (7) is driven to be close to the forming station (3), the first die (1) is tightly pressed on the second die (2), and then the particle raw materials are subjected to spiral extrusion and then are injected between the first die (1) and the second die (2); after injection molding, a circulating pump (402) discharges cooling liquid in a liquid storage tank (403) into a first die (1) and a second die (2), the cooling liquid enters a grading inner shell (405) after circulation, the cooling liquid enters a first-stage outlet (407) from an inner shell outlet (406) on the grading inner shell (405) during initial cooling, and then is discharged into the liquid storage tank (403) to finish circulation, a regulating cylinder (416) drives a blocking ring (415) and an unlocking shell (411) to be close to an inner shell tail hole (409) when the cooling is required to be quickly cooled, the inner shell outlet (406) is blocked through the blocking ring (415), the unlocking shell (411) is simultaneously close to an unlocking frame (410), then the unlocking frame (410) pushes against a blocking plate (412), a gap between the blocking plate (412) and the unlocking frame (410) is simultaneously stretched and a connecting spring (414), the cooling liquid is discharged into a gap between the grading outer shell (404) and the grading inner shell (405) through the inner shell tail hole (409), and then the cooling liquid passes through a first fin (417) and a second fin (418), so that the cooling efficiency of a cooling system is accelerated, and the cooling effect can be quickly cooled in a cooling process;
in the third step, after cooling, the docking screw (9) rotates under the action of the docking motor to be matched with the docking connection block (8) to drive the docking station (7) to be away from the forming station (3), the first die (1) and the second die (2) are separated, meanwhile, the cooled product is contracted and then is tightly attached to the second die (2), then the lifting cylinder (607) drives the lifting frame (608) to move downwards, meanwhile, the position interval between the sliding frame (603) and the second die (2) is adjusted through the first cylinder (602), then the clamping cylinder (612) drives the clamping piece (613) to be mutually close to clamp the product, meanwhile, the demolding mechanism in the second die (2) is matched to take the product off the second die (2), then the rotating cylinder (611) drives the clamping cylinder (612) to rotate, meanwhile, the lifting cylinder (607) drives the lifting frame (608) to move upwards to move the product out of the forming station (3), then the second cylinder (605) drives the lifting frame (606) to move along the sliding frame (603), and the lifting cylinder (607) is matched to move the product to the discharging station (614) to finish discharging.
CN202410143086.7A 2024-02-01 2024-02-01 Plastic mold processing and forming device and application method thereof Pending CN117774242A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202410143086.7A CN117774242A (en) 2024-02-01 2024-02-01 Plastic mold processing and forming device and application method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202410143086.7A CN117774242A (en) 2024-02-01 2024-02-01 Plastic mold processing and forming device and application method thereof

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Publication Number Publication Date
CN117774242A true CN117774242A (en) 2024-03-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202410143086.7A Pending CN117774242A (en) 2024-02-01 2024-02-01 Plastic mold processing and forming device and application method thereof

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Country Link
CN (1) CN117774242A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118977383A (en) * 2024-10-22 2024-11-19 湖南桑尼森迪玩具制造有限公司 A plastic mold raw material weighing device for injection molding

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118977383A (en) * 2024-10-22 2024-11-19 湖南桑尼森迪玩具制造有限公司 A plastic mold raw material weighing device for injection molding
CN118977383B (en) * 2024-10-22 2024-12-20 湖南桑尼森迪玩具制造有限公司 Mould raw material weighing device for plastic mould injection molding

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