CN221809559U - In-mold automated assembly - Google Patents
In-mold automated assembly Download PDFInfo
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- CN221809559U CN221809559U CN202420432843.8U CN202420432843U CN221809559U CN 221809559 U CN221809559 U CN 221809559U CN 202420432843 U CN202420432843 U CN 202420432843U CN 221809559 U CN221809559 U CN 221809559U
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Abstract
The utility model discloses the technical field of dies, in particular to an in-die automatic assembly, which comprises a die seat and a die cover, wherein guide posts I are fixedly arranged at four corners of the top end of the die seat, sliding holes I are formed at the four corners of the die cover, and the inner wall of each sliding hole I is in sliding connection with the outer wall of each guide post I; the utility model discloses a mold for molding a plastic material, which comprises a mold seat, wherein a molding base is fixedly arranged in the middle of the top end of the mold seat, a molding footstock is arranged at the top end of the molding base, molding grooves I which correspond to each other are formed in the molding footstock and the molding base.
Description
Technical Field
The utility model relates to the technical field of dies, in particular to an in-die automatic assembly.
Background
With the continuous development of technology, more and more products are manufactured by injection molding, and the required shape is manufactured by injection molding with a corresponding mold.
When the existing mold is used, after the materials are required to be naturally cooled after injection molding, demolding is performed, and the natural cooling time is long, so that the service efficiency is influenced.
For this purpose, we invented in-mold automated assembly.
Disclosure of utility model
The present utility model has been made in view of the above and/or problems associated with existing in-mold automated assemblies.
It is therefore an object of the present utility model to provide in-mold automated assembly that solves the above mentioned problems.
In order to solve the technical problems, according to one aspect of the present utility model, the following technical solutions are provided:
An in-mold automated assembly comprising: the die comprises a die seat and a die cover, wherein a first guide pillar is fixedly arranged at four corners of the top end of the die seat, sliding holes are formed in the four corners of the die cover, and the inner wall of the first sliding hole is in sliding connection with the outer wall of the first guide pillar;
The forming die is characterized in that a forming base is fixedly arranged in the middle of the top end of the die seat, a forming top seat is arranged on the top end of the forming base, and forming grooves I which correspond to each other are formed in the forming top seat and the forming base.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: semicircular grooves are formed in the right side of the top end of the forming base and the right side of the bottom end of the forming top seat, and the inner wall of the semicircular grooves is connected with a sliding block circular insert in a sliding mode.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: one side of the molding base is fixedly provided with a sliding block seat, and a transverse through hole II is formed in the sliding block seat.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: the top of slider seat all fixed mounting has oblique briquetting, four corners of oblique briquetting have all been seted up through-hole IV, the inner wall sliding connection of through-hole IV has the guide post, the bottom of guide post and the top fixed connection of slider seat.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: the sliding block seat is provided with a second inclined guide post slot, the inclined pressing block is provided with a first inclined guide post slot, and the inner walls of the first inclined guide post slot and the second inclined guide post slot are connected with inclined guide posts in a sliding manner.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: the second through hole corresponds to the sliding block circular insert, a heat exchange tube is arranged between the forming top seat and the forming base, mounting holes are formed in two sides of the top end of the forming top seat, and the inner wall of each mounting hole is connected with the outer walls of two ends of the heat exchange tube.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: two through holes I are formed in the die cover, connecting pipes are arranged on the inner walls of the through holes I, and the inner sides of the connecting pipes are connected with one of the two ends of the heat exchange pipe.
As a preferred embodiment of the in-mold automated assembly according to the utility model, wherein: the outer wall of mould seat and the outer wall of mould lid have all seted up threaded hole, the outside of mould seat is equipped with fixed connecting rod, the through-hole III has all been seted up at fixed connecting rod's both ends, fixed threaded rod is installed to the inboard of through-hole III, fixed threaded rod passes through-hole III and threaded hole's inner wall threaded connection.
Compared with the prior art:
Pouring injection molding materials into the first molding groove, covering the mold cover on the mold cover, respectively connecting the input and output of cooling water with one of the two connecting pipes, transmitting the cooling water to the heat exchange pipe through one of the connecting pipes, exchanging heat with the materials to be molded, the molding top seat and the molding base, leading out the cooling water after heat exchange through the other connecting pipe, cooling the cooling water, and accelerating cooling molding.
Drawings
FIG. 1 is a front view of the present utility model;
FIG. 2 is a rear view of the present utility model;
FIG. 3 is a front view of the mold cover of the present utility model;
FIG. 4 is a side view of FIG. 2 of the present utility model;
Fig. 5 is an exploded view of the present utility model.
In the figure: the die comprises a die seat 1, a die cover 2, a first guide post 101, a first sliding hole 102, a connecting pipe 201, a first through hole 202, a heat exchange pipe 203, an inclined guide post 3, a sliding block circular insert 4, a sliding block seat 5, an inclined pressing block 6, a forming top seat 7, a forming groove I8, a forming base 9, a second through hole 10, a guide post 11, a through groove 12, an inclined guide post slot I13, an inclined guide post slot II 14, a fixed connecting rod 15, a third through hole 16, a threaded hole 17, a fixed threaded rod 18 and a fourth through hole 19.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the present utility model more apparent, embodiments of the present utility model will be described in further detail below with reference to the accompanying drawings.
Embodiment one:
The utility model provides in-mold automatic assembly, which has the advantages of convenient use and improved efficiency, referring to fig. 1-5, and comprises a mold seat 1 and a mold cover 2, wherein four corners at the top end of the mold seat 1 are fixedly provided with guide posts I101, four corners of the mold cover 2 are provided with slide holes I102, and the inner wall of the slide hole I102 is in sliding connection with the outer wall of the guide post I101;
The middle part of the top end of the die seat 1 is fixedly provided with a forming base 9, the top end of the forming base 9 is provided with a forming footstock 7, and the forming footstock 7 and the forming base 9 are provided with forming grooves I8 which correspond to each other.
Semicircular grooves are formed in the right side of the top end of the forming base 9 and the right side of the bottom end of the forming top seat 7, and the inner wall of the semicircular grooves is slidably connected with the sliding block circular insert 4.
One side of the molding base 9 is fixedly provided with a sliding block seat 5, and a transverse through hole II 10 is formed in the sliding block seat 5.
The top of the slide block seat 5 is fixedly provided with an inclined pressing block 6, four corners of the inclined pressing block 6 are provided with through holes four 19, the inner wall of each through hole four 19 is slidably connected with a guide post 11, and the bottom of each guide post 11 is fixedly connected with the top of the slide block seat 5.
The slide block seat 5 is provided with a second inclined guide post slot 14, the inclined press block 6 is provided with a first inclined guide post slot 13, and the inner walls of the first inclined guide post slot 13 and the second inclined guide post slot 14 are connected with the inclined guide post 3 in a sliding manner.
The transverse through hole II 10 corresponds to the sliding block circular insert 4, a heat exchange tube 203 is arranged between the forming top seat 7 and the forming base 9, mounting holes are formed in two sides of the top end of the forming top seat 7, and the inner wall of each mounting hole is connected with the outer walls of two ends of the heat exchange tube 203.
The die cover 2 is provided with two through holes 202, the inner walls of the two through holes 202 are provided with connecting pipes 201, and the inner sides of the connecting pipes 201 are connected with one of the two ends of the heat exchange pipe 203.
When the molding machine is specifically used, a person skilled in the art pours injection molding materials into the first molding groove 8, slides the first sliding hole 102 on the mold cover 2 and the outer wall of the first guide pillar 101, covers the mold cover 2, connects the input and output of cooling water with one of the two connecting pipes 201 respectively, transmits the cooling water to the heat exchange pipe 203 through one of the connecting pipes 201, exchanges heat with the materials to be molded, the molding top seat 7 and the molding base 9, cools the materials, accelerates cooling molding, and guides the cooling water after heat exchange out through the other connecting pipe 201.
Embodiment two:
the utility model provides in-mold automatic assembly, referring to fig. 1-5, the outer wall of a mold seat 1 and the outer wall of a mold cover 2 are provided with threaded holes 17, the outer side of the mold seat 1 is provided with a fixed connecting rod 15, both ends of the fixed connecting rod 15 are provided with a through hole III 16, the inner side of the through hole III 16 is provided with a fixed threaded rod 18, and the fixed threaded rod 18 passes through the through hole III 16 and is in threaded connection with the inner wall of the threaded hole 17.
When the injection molding machine is specifically used, a person skilled in the art pours injection molding materials into the first molding groove 8, slides the first sliding hole 102 on the mold cover 2 and the outer wall of the first guide pillar 101, covers the mold cover 2, fixedly connects two ends of the fixed connecting rod 15 with the outer wall of the mold seat 1 and the outer wall of the mold cover 2 respectively through the fixed threaded rod 18, connects the input and output of cooling water with one of the two connecting pipes 201 respectively, transmits the cooling water to the heat exchange pipe 203 through one of the connecting pipes 201, exchanges heat with the material to be molded, the molding top seat 7 and the molding base 9, cools the material to be molded, accelerates the cooling molding, and guides the cooling water after heat exchange out through the other connecting pipe 201.
Although the utility model has been described hereinabove with reference to embodiments, various modifications thereof may be made and equivalents may be substituted for elements thereof without departing from the scope of the utility model. In particular, the features of the disclosed embodiments may be combined with each other in any manner as long as there is no structural conflict, and the exhaustive description of these combinations is not given in this specification merely for the sake of omitting the descriptions and saving resources. Therefore, it is intended that the utility model not be limited to the particular embodiment disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.
Claims (8)
1. Automatic assembly in mould, including mould seat (1), mould lid (2), its characterized in that: four corners at the top end of the die seat (1) are fixedly provided with guide posts I (101), four corners of the die cover (2) are provided with sliding holes I (102), and the inner walls of the sliding holes I (102) are in sliding connection with the outer walls of the guide posts I (101);
The forming die is characterized in that a forming base (9) is fixedly arranged in the middle of the top end of the die seat (1), a forming footstock (7) is arranged at the top end of the forming base (9), and forming grooves I (8) corresponding to each other are formed in the forming footstock (7) and the forming base (9).
2. The in-mold automated assembly according to claim 1, wherein the right side of the top end of the molding base (9) and the right side of the bottom end of the molding top seat (7) are provided with semicircular grooves, and the inner wall of the semicircular grooves is slidably connected with a sliding block circular insert (4).
3. The in-mold automated assembly according to claim 2, wherein a slide block seat (5) is fixedly installed on one side of the molding base (9), and a transverse through hole two (10) is formed in the slide block seat (5).
4. The in-mold automatic assembly according to claim 3, wherein the top ends of the slide block seats (5) are fixedly provided with inclined press blocks (6), four corners of each inclined press block (6) are provided with through holes (19), the inner walls of the through holes (19) are slidably connected with guide posts (11), and the bottom ends of the guide posts (11) are fixedly connected with the top ends of the slide block seats (5).
5. The automatic in-mold assembly according to claim 4, wherein the slide block seat (5) is provided with a second inclined guide post slot (14), the inclined press block (6) is provided with a first inclined guide post slot (13), and the inner walls of the first inclined guide post slot (13) and the second inclined guide post slot (14) are slidably connected with the inclined guide post (3).
6. The automatic in-mold assembly according to claim 5, wherein the second transverse through hole (10) corresponds to the round insert (4) of the sliding block, a heat exchange tube (203) is arranged between the forming top seat (7) and the forming base (9), mounting holes are formed in two sides of the top end of the forming top seat (7), and the inner walls of the mounting holes are connected with the outer walls of two ends of the heat exchange tube (203).
7. The in-mold automated assembly according to claim 6, wherein the mold cover (2) is provided with two through holes (202), the inner walls of the two through holes (202) are provided with connecting pipes (201), and the inner sides of the connecting pipes (201) are connected with one of two ends of the heat exchange pipe (203).
8. The in-mold automated assembly according to claim 7, wherein the outer wall of the mold base (1) and the outer wall of the mold cover (2) are provided with threaded holes (17), the outer side of the mold base (1) is provided with a fixed connecting rod (15), two ends of the fixed connecting rod (15) are provided with three through holes (16), the inner side of the three through holes (16) is provided with a fixed threaded rod (18), and the fixed threaded rod (18) penetrates through the three through holes (16) to be in threaded connection with the inner wall of the threaded holes (17).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420432843.8U CN221809559U (en) | 2024-03-06 | 2024-03-06 | In-mold automated assembly |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420432843.8U CN221809559U (en) | 2024-03-06 | 2024-03-06 | In-mold automated assembly |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221809559U true CN221809559U (en) | 2024-10-08 |
Family
ID=92915627
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420432843.8U Active CN221809559U (en) | 2024-03-06 | 2024-03-06 | In-mold automated assembly |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221809559U (en) |
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2024
- 2024-03-06 CN CN202420432843.8U patent/CN221809559U/en active Active
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| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| CP03 | Change of name, title or address |
Address after: Building 10, No. 229 Yuanfeng Road, Yushan Town, Kunshan City, Suzhou City, Jiangsu Province, 215000 Patentee after: Yihuiyuan Mold Technology (Suzhou) Co.,Ltd. Country or region after: China Address before: Building 10, No. 229 Yuanfeng Road, Yushan Town, Kunshan City, Suzhou City, Jiangsu Province Patentee before: Kunshan Yihuiyuan Mold Co.,Ltd. Country or region before: China |
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| CP03 | Change of name, title or address |