CN213353434U - Accurate plastic mould based on quick design - Google Patents

Accurate plastic mould based on quick design Download PDF

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Publication number
CN213353434U
CN213353434U CN202022187916.6U CN202022187916U CN213353434U CN 213353434 U CN213353434 U CN 213353434U CN 202022187916 U CN202022187916 U CN 202022187916U CN 213353434 U CN213353434 U CN 213353434U
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CN
China
Prior art keywords
auxiliary
main
die body
mold body
molding
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Expired - Fee Related
Application number
CN202022187916.6U
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Chinese (zh)
Inventor
林俊廷
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Dongguan Xiangyao Plastic Products Co ltd
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Dongguan Xiangyao Plastic Products Co ltd
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Priority to CN202022187916.6U priority Critical patent/CN213353434U/en
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Publication of CN213353434U publication Critical patent/CN213353434U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model relates to the technical field of plastic molds, in particular to a precision plastic mold based on rapid shaping, which comprises a main mold body and an auxiliary mold body connected with the main mold body, wherein the main mold body and the auxiliary mold body are combined to form a shaping cavity; the bottom of the main mold body is provided with a first lower mold body, the bottom of the auxiliary mold body is provided with a second lower mold body, the main mold body is provided with a main molding groove, the auxiliary mold body is provided with an auxiliary molding groove, and the main molding groove and the auxiliary molding groove are closed to form a molding cavity; a flushing cooling tank and an inflating cooling tank are arranged on the outer edge of the molding cavity; the utility model discloses set up bath cooling bath and the cooperation of aerifing the cooling bath respectively along the outer edge in shaping chamber, can wash by water and aerify and cool off after accomplishing the product and moulding plastics, can be quick with the product shaping, the shaping is effectual, and production efficiency is high.

Description

Accurate plastic mould based on quick design
Technical Field
The utility model relates to a plastic mould technical field especially relates to an accurate plastic mould based on quick design.
Background
The mold is an important equipment indispensable in injection molding. Injection molding is a method of injecting a raw material having a certain temperature into a gap formed between a male mold and a female mold to form a product. The injection molding method has the characteristics of low molding cost, short molding period, simple molding process and the like, so the method is very commonly applied in the field of product manufacturing.
Generally, when the mold is opened, the mold can be opened after the product is cooled and shaped, and the product is cooled and shaped after injection molding, so that a long time is needed, the whole equipment is waiting at the time, the production efficiency is low, and the shaping needs to be further improved.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides an outer edge in the one-tenth die cavity has set up bath cooling bath respectively and has aerifyd the cooling bath cooperation, can wash by water and aerify and cool off after accomplishing the product and moulding plastics, can be quick with the product shaping, the shaping is effectual, the high accurate plastic mould based on quick design of production efficiency.
The utility model adopts the technical proposal that: a precision plastic mold based on rapid shaping comprises a main mold body and an auxiliary mold body connected to the main mold body, wherein the main mold body and the auxiliary mold body are combined to form a shaping cavity; the bottom of the main mold body is provided with a first lower mold body, the bottom of the auxiliary mold body is provided with a second lower mold body, the main mold body is provided with a main molding groove, the auxiliary mold body is provided with an auxiliary molding groove, and the main molding groove and the auxiliary molding groove are involuted to form a molding cavity; a flushing cooling tank and an inflating cooling tank are arranged on the outer edge of the molding cavity, the flushing cooling tank is communicated to the upper surfaces of the main mold body and the auxiliary mold body, and the flushing cooling tank is arranged between the main mold body and the auxiliary mold body; and the inflation cooling groove is provided with an inflation interface communicated to the lower surfaces of the first lower die body and the second lower die body.
The further improvement of the scheme is that a first injection molding port is arranged at the position, corresponding to the inlet of the molding cavity, of the main mold body, and the first injection molding port is a conical port.
The scheme is further improved in that the main die body is provided with a plurality of groups of guide shafts, and the auxiliary die body is driven by the guide shafts.
The technical scheme is further improved in that a second injection molding port is arranged at the position, corresponding to the inlet of the molding cavity, of the auxiliary mold body, and the second injection molding port is a conical port.
The further improvement of the scheme is that the first lower die body is provided with a first lower die cavity corresponding to the forming cavity, and the first lower die cavity is provided with a first water passing groove corresponding to the flushing cooling groove.
The further improvement of the scheme is that the first lower die body is fixedly arranged on the lower surface of the main die body through bolts, and a first positioning pin is arranged between the first lower die body and the main die body.
The further improvement of the scheme is that the second lower die body is provided with a second lower die cavity corresponding to the forming cavity, and the second lower die cavity is provided with a second water passing groove corresponding to the flushing cooling groove.
The further improvement of the scheme is that the second lower die body is fixedly arranged on the lower surface of the auxiliary die body through a bolt, and a second positioning pin is arranged between the second lower die body and the auxiliary die body.
The scheme is further improved in that a main auxiliary plate is arranged on one side, away from the auxiliary die body, of the main die body.
The scheme is further improved in that an auxiliary board is arranged on one side, away from the main die body, of the auxiliary die body.
The utility model has the advantages that:
compare traditional plastic mould, the utility model discloses a main mould body and vice mould body cooperation have formed the one-tenth die cavity of product, have set up bath cooling bath and aerify the cooling bath cooperation respectively along the outer edge in one-tenth die cavity, can wash by water and aerify and cool off after accomplishing the product and moulding plastics, can be quick with the product shaping, the shaping is effectual, production efficiency is high. Specifically, a main die body and an auxiliary die body connected with the main die body are arranged, and the main die body and the auxiliary die body are combined to form a molding cavity; the bottom of the main mold body is provided with a first lower mold body, the bottom of the auxiliary mold body is provided with a second lower mold body, the main mold body is provided with a main molding groove, the auxiliary mold body is provided with an auxiliary molding groove, and the main molding groove and the auxiliary molding groove are closed to form a molding cavity; through the cooperation of main forming groove and vice forming groove with product injection moulding, the shaping is effectual, and simple structure is reliable, still has first die body and second die body simultaneously and to the bottom shaping of product, and the shaping is effectual.
The outer edge of the molding cavity is provided with a flushing cooling tank and an inflating cooling tank, the flushing cooling tank is communicated to the upper surfaces of the main mold body and the auxiliary mold body, and the flushing cooling tank is arranged between the main mold body and the auxiliary mold body; the inflation cooling tank is provided with an inflation interface communicated to the lower surfaces of the first lower die body and the second lower die body, and products in the forming cavity are quickly formed under the cooperation of the flushing cooling tank and the inflation cooling tank, so that the production efficiency is effectively prompted.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic perspective view of another perspective of the present invention;
FIG. 3 is a schematic perspective view of the main mold body of the present invention;
fig. 4 is a schematic perspective view of the secondary mold body of the present invention.
Description of reference numerals: the injection molding device comprises a main mold body 100, a main molding groove 110, a guide shaft 120, a main auxiliary plate 130, a first injection molding port 140, a secondary mold body 200, a secondary molding groove 210, a secondary auxiliary plate 220, a second injection molding port 230, a molding cavity 300, a flushing cooling tank 310, an aeration cooling tank 320, a first lower mold body 400, a first lower mold groove 410, a first water passing tank 420, a first positioning pin 430, a second lower mold body 500, a second lower mold groove 510, a second water passing tank 520 and a second positioning pin 530.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1 to 4, a precision plastic mold based on rapid prototyping includes a main mold body 100 and an auxiliary mold body 200 connected to the main mold body 100, wherein the main mold body 100 and the auxiliary mold body 200 are combined to form a prototyping cavity 300; the bottom of the main mold body 100 is provided with a first lower mold body 400, the bottom of the auxiliary mold body 200 is provided with a second lower mold body 500, the main mold body 100 is provided with a main molding groove 110, the auxiliary mold body 200 is provided with an auxiliary molding groove 210, and the main molding groove 110 and the auxiliary molding groove 210 are involuted to form a molding cavity 300.
The main mold body 100 is provided with a plurality of sets of guide shafts 120, and the auxiliary mold body 200 is driven to the guide shafts 120 to ensure the matching molding of the two sets of mold bodies and the product molding precision.
The main auxiliary plate 130 is installed on one side, away from the auxiliary mold body 200, of the main mold body 100, the auxiliary plate 220 is installed on one side, away from the main mold body 100, of the auxiliary mold body 200, and the auxiliary plate is fixedly connected with the structure for use.
A water flushing cooling tank 310 and an air charging cooling tank 320 are arranged on the outer edge of the molding cavity 300, the water flushing cooling tank 310 is communicated with the upper surfaces of the main mold body 100 and the auxiliary mold body 200, and the water flushing cooling tank 310 is arranged between the main mold body 100 and the auxiliary mold body 200; the inflation cooling tank 320 is provided with an inflation port communicated to the lower surfaces of the first lower mold body 400 and the second lower mold body 500, and products in the molding cavity 300 are rapidly molded under the cooperation of the flushing cooling tank 310 and the inflation cooling tank 320, so that the production efficiency is effectively prompted.
The injection molding device is characterized in that a first injection molding port 140 is arranged at the position, corresponding to the inlet of the molding cavity 300, of the main mold body 100, the first injection molding port 140 is a tapered port, and the further improvement is that a second injection molding port 230 is arranged at the position, corresponding to the inlet of the molding cavity 300, of the auxiliary mold body 200, the second injection molding port 230 is a tapered port and is used for introducing injection molding raw materials through the injection molding port, so that the rapid molding of products is guaranteed.
The first lower mold body 400 is provided with a first lower mold cavity 410 corresponding to the molding cavity 300, the first lower mold cavity 410 is provided with a first water passing groove 420 corresponding to the water flushing cooling groove 310, the improvement is that the second lower mold body 500 is provided with a second lower mold cavity 510 corresponding to the molding cavity 300, the second lower mold cavity 510 is provided with a second water passing groove 520 corresponding to the water flushing cooling groove 310, the water passing groove is used for water cooling, the cooling effect is good, and the product is molded quickly.
The first lower die body 400 is fixedly arranged on the lower surface of the main die body 100 through bolts, and a first positioning pin 430 is arranged between the first lower die body 400 and the main die body 100, the improvement is that a second lower die body 500 is fixedly arranged on the lower surface of the auxiliary die body 200 through bolts, a second positioning pin 530 is arranged between the second lower die body 500 and the auxiliary die body 200, and the first lower die body is fixedly connected with the auxiliary die body 200 through bolts and positioning pins, so that the connection precision is high, and the structure is reliable.
The utility model discloses a fundamental mode body 100 and the cooperation of secondary die body 200 have formed the one-tenth die cavity 300 of product, have set up bath cooling bath 310 and the cooperation of aerifing cooling bath 320 respectively along the outer edge that becomes die cavity 300, can wash by water and aerify and cool off after accomplishing the product and moulding plastics, can be quick with the product shaping, the shaping is effectual, production efficiency is high. Specifically, a main mold body 100 and an auxiliary mold body 200 connected to the main mold body 100 are provided, and a molding cavity 300 is formed after the main mold body 100 and the auxiliary mold body 200 are combined; the bottom of the main mold body 100 is provided with a first lower mold body 400, the bottom of the auxiliary mold body 200 is provided with a second lower mold body 500, the main mold body 100 is provided with a main molding groove 110, the auxiliary mold body 200 is provided with an auxiliary molding groove 210, and the main molding groove 110 and the auxiliary molding groove 210 are involuted to form a molding cavity 300; the product is injection molded through the matching of the main molding groove 110 and the auxiliary molding groove 210, the molding effect is good, the structure is simple and reliable, and meanwhile, the first lower mold body 400 and the second lower mold body 500 are used for molding the bottom of the product, so that the molding effect is good.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (10)

1. The utility model provides a precision plastic mould based on quick design which characterized in that: the die comprises a main die body and an auxiliary die body connected with the main die body, wherein the main die body and the auxiliary die body are combined to form a molding cavity; the bottom of the main mold body is provided with a first lower mold body, the bottom of the auxiliary mold body is provided with a second lower mold body, the main mold body is provided with a main molding groove, the auxiliary mold body is provided with an auxiliary molding groove, and the main molding groove and the auxiliary molding groove are involuted to form a molding cavity; a flushing cooling tank and an inflating cooling tank are arranged on the outer edge of the molding cavity, the flushing cooling tank is communicated to the upper surfaces of the main mold body and the auxiliary mold body, and the flushing cooling tank is arranged between the main mold body and the auxiliary mold body; and the inflation cooling groove is provided with an inflation interface communicated to the lower surfaces of the first lower die body and the second lower die body.
2. The precision plastic mold based on rapid prototyping as set forth in claim 1, wherein: a first injection molding port is arranged at the position, corresponding to the inlet of the molding cavity, of the main mold body, and the first injection molding port is a conical port.
3. The precision plastic mold based on rapid prototyping as set forth in claim 1, wherein: the main die body is provided with a plurality of groups of guide shafts, and the auxiliary die body is driven on the guide shafts.
4. The precision plastic mold based on rapid prototyping as set forth in claim 1, wherein: and a second injection molding port is arranged at the position of the auxiliary die body, which corresponds to the inlet of the molding cavity, and is a conical port.
5. The precision plastic mold based on rapid prototyping as set forth in claim 1, wherein: the first lower die body is provided with a first lower die groove corresponding to the forming cavity, and the first lower die groove is provided with a first water passing groove corresponding to the flushing cooling groove.
6. The precision plastic mold based on rapid prototyping as set forth in claim 5, wherein: the first lower die body is fixedly arranged on the lower surface of the main die body through bolts, and a first positioning pin is arranged between the first lower die body and the main die body.
7. The precision plastic mold based on rapid prototyping as set forth in claim 6, wherein: the second lower die body is provided with a second lower die cavity corresponding to the molding cavity, and the second lower die cavity is provided with a second water passing groove corresponding to the flushing cooling groove.
8. The precision plastic mold based on rapid prototyping as set forth in claim 7, wherein: the second lower die body is fixedly arranged on the lower surface of the auxiliary die body through a bolt, and a second positioning pin is arranged between the second lower die body and the auxiliary die body.
9. The precision plastic mold based on rapid prototyping as set forth in claim 1, wherein: and a main auxiliary plate is arranged on one side of the main die body, which is far away from the auxiliary die body.
10. The precision plastic mold based on rapid prototyping as recited in claim 9, wherein: and an auxiliary plate is arranged on one side of the auxiliary die body, which is far away from the main die body.
CN202022187916.6U 2020-09-29 2020-09-29 Accurate plastic mould based on quick design Expired - Fee Related CN213353434U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022187916.6U CN213353434U (en) 2020-09-29 2020-09-29 Accurate plastic mould based on quick design

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022187916.6U CN213353434U (en) 2020-09-29 2020-09-29 Accurate plastic mould based on quick design

Publications (1)

Publication Number Publication Date
CN213353434U true CN213353434U (en) 2021-06-04

Family

ID=76157133

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022187916.6U Expired - Fee Related CN213353434U (en) 2020-09-29 2020-09-29 Accurate plastic mould based on quick design

Country Status (1)

Country Link
CN (1) CN213353434U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210604

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