Anti-deformation injection molding part supporting device
By designing modular support modules and components, the problem of adjustable support points in injection molding support devices has been solved, achieving stable support for injection molded parts during processing and improving the quality and practicality of finished products.
Patent Information
- Application Number
- CN202520036963.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-08
AI Technical Summary
Existing injection molding support devices cannot adjust the support points according to the shape of the injection molding part, which makes the injection molding part prone to deformation during processing and affects the quality of the finished product.
The design adopts modular support modules and components. By matching and assembling blocks and slots, combined with airbag locking components and buckle components, the support device can be flexibly adjusted and fixed, ensuring the stability of injection molded parts during processing.
By combining the support components and the airbag locking components, the parts can be adaptively adjusted according to their shape and size, preventing deformation and improving the finished product quality and processing practicality.
Smart Images

Figure CN223644124U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of auxiliary devices for injection molding, specifically a support device for anti-deformation injection molded parts. Background Technology
[0002] Injection molded parts are plastic products obtained by injecting molten plastic material into a mold cavity through the injection molding process, followed by cooling and solidification. Injection molding is a highly efficient and precise plastic processing technology with advantages such as high production efficiency, good product precision, and low cost. It is widely used in fields such as electronics, automobile manufacturing, and medical devices. The basic process of injection molding includes mold closing, injection, pressure holding, cooling, mold opening, and product removal.
[0003] Most injection molded parts are irregularly shaped, but existing injection molded part support devices cannot adjust the support points according to the shape of the injection molded part, which makes the injection molded part prone to deformation during processing and affects the quality of the finished product.
[0004] Based on this, a support device for anti-deformation injection molded parts is now provided, which can eliminate the drawbacks of existing devices. Utility Model Content
[0005] The purpose of this utility model is to provide a support device for anti-deformation injection molded parts to solve the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] An anti-deformation injection molded part support device includes several assembled support modules. The assembled support modules are evenly distributed with mounting holes. Support components are provided in the mounting holes. The assembled support modules are provided with locking blocks and locking slots on their sides. The locking blocks and locking slots are matched in size. The locking blocks are provided with buckle components. The locking slots are provided with locking openings. The bottom end of the assembled support modules is provided with an interface.
[0008] Based on the above technical solutions, this utility model also provides the following optional technical solutions:
[0009] In one alternative embodiment: the support assembly includes a support column disposed within a mounting hole, a limiting ring being provided at the lower part of the support column, and a first spring being provided at the lower end of the limiting ring.
[0010] In one alternative: the mounting hole is provided with an airbag locking assembly, the airbag locking assembly includes a first mounting groove provided on the side of the mounting hole, the first mounting groove is provided with an annular airbag, the annular airbags are provided with a connecting hole between them, and a connecting hole is provided on one side of the annular airbag, the connecting hole being connected to an interface.
[0011] In one alternative: the card block is provided with a second mounting groove, the buckle assembly is disposed in the second mounting groove, one side of the second mounting groove is provided with a slot, the other side of the second mounting groove is provided with a third mounting groove, and the side of the third mounting groove is provided with a sliding groove.
[0012] In one alternative embodiment: the snap-fit assembly includes a snap-fit post and a drive rod, the snap-fit post being slidably disposed in a slot, and the drive rod being slidably disposed in a third mounting slot.
[0013] In one alternative: the locking post is provided with a first rack, and one end of the locking post is provided with a second spring, one end of the second spring being fixedly connected to the locking post and the other end being fixedly connected to the locking block.
[0014] In one alternative: a second rack is provided on one side of the drive rod, and a slider is provided on the side of the drive rod opposite to the second rack, the slider being slidably disposed in a groove.
[0015] In one alternative: the upper end of the locking pin is provided with a first gear, the first gear is rotatably connected to the locking block, the lower end of the first gear is meshed with a first rack, a second gear is meshed with one side of the first gear, and the second gear is meshed with a second rack.
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0017] 1. This utility model solves the problem that existing injection molding support devices cannot adjust the support points according to the shape of the injection molding part, making the injection molding part prone to deformation during processing, through the cooperation between the support component and the airbag locking component.
[0018] 2. By setting up an assembly-type support module, this utility model can automatically assemble several assembly-type support modules according to the shape and size of the injection molded part through the use of clips and slots, which greatly improves its practicality. Attached Figure Description
[0019] Figure 1 This is a structural schematic diagram of one side of the present invention.
[0020] Figure 2 This is a schematic diagram of the structure on the other side of this utility model.
[0021] Figure 3 This is a schematic diagram of the support component in this utility model.
[0022] Figure 4 This is a schematic diagram of the airbag locking assembly in this utility model.
[0023] Figure 5 This is a schematic diagram of the buckle assembly in this utility model.
[0024] Figure reference numerals: 100, Assembled support module; 101, Mounting hole; 102, Locking block; 103, Locking groove; 104, Locking opening; 105, Second mounting groove; 106, Groove opening; 107, Third mounting groove; 108, Slide groove; 200, Support assembly; 201, Support column; 202, Limiting ring; 203, First spring; 300, Airbag locking assembly; 301, First mounting groove; 302, Annular airbag; 303, Connecting hole; 304, Connecting hole; 400, Interface; 500, Buckle assembly; 501, Locking post; 502, First rack; 503, Second spring; 504, First gear; 505, Second gear; 506, Drive rod; 507, Second rack; 508, Slider. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0026] In one embodiment, such as Figure 1 and Figure 2 As shown, the anti-deformation injection molded part support device includes several assembled support modules 100. Each assembled support module 100 has evenly distributed mounting holes 101, and a support component 200 is installed within each mounting hole 101. The sides of each assembled support module 100 have locking blocks 102 and locking slots 103, with the sizes of the locking blocks 102 and locking slots 103 matching. Each locking block 102 has a snap-fit component 500, and each locking slot 103 has a snap-fit opening 104. The bottom of each assembled support module 100 has an interface 400. In use, several assembled support modules 100 are assembled into a support device using the locking blocks 102 and locking slots 103 on the assembled support module 100, and the locking components 500 are used to fix the assembled support modules 100 together. The support component 200 then supports the injection molded part.
[0027] In one embodiment, such as Figure 3 As shown, the support assembly 200 includes a support column 201, which is disposed in the mounting hole 101. A limiting ring 202 is provided at the lower part of the support column 201, and a first spring 203 is provided at the lower end of the limiting ring 202. In use, the injection molded part is placed on the support assembly 200. Under the action of the gravity of the injection molded part, the mounting holes 101 of each support column 201 move downward, compressing the first spring 203 until it is balanced.
[0028] In one embodiment, such as Figure 4As shown, an airbag locking assembly 300 is provided in the mounting hole 101. The airbag locking assembly 300 includes a first mounting groove 301 provided on the side of the mounting hole 101. An annular airbag 302 is provided in the first mounting groove 301. A connecting hole 303 is provided between the annular airbags 302. A connecting hole 304 is provided on one side of the annular airbag 302. The connecting hole 304 is connected to the interface 400. In use, an air pump is connected to the interface 400. After the injection molded part is placed on the support assembly 200, air is injected into the annular airbag 302 by the air pump, causing the annular airbag 302 to expand and lock the support column 201.
[0029] In one embodiment, such as Figure 5 As shown, the locking block 102 is provided with a second mounting groove 105, and the buckle assembly 500 is provided in the second mounting groove 105. The second mounting groove 105 has a slot 106 on one side and a third mounting groove 107 on the other side. The third mounting groove 107 has a sliding groove 108 on its side. During assembly, the locking block 102 is inserted into the locking groove 103 and locked by the buckle assembly 500.
[0030] In one embodiment, such as Figure 5 As shown, the snap-fit assembly 500 includes a snap-fit post 501 and a drive rod 506. The snap-fit post 501 is slidably disposed in the slot 106, and the drive rod 506 is slidably disposed in the third mounting slot 107. In use, the snap-fit post 501 is snapped into the slot 104, so that the snap-fit block 102 is locked in the slot 103. The snap-fit post 501 can be moved away from the slot 104 by moving the drive rod 506.
[0031] In one embodiment, such as Figure 5 As shown, the locking post 501 is provided with a first rack 502, and a second spring 503 is provided at one end of the locking post 501. One end of the second spring 503 is fixedly connected to the locking post 501, and the other end is fixedly connected to the locking block 102. During assembly, when the locking block 102 moves downward along the locking groove 103 into place, the locking post 501 slides outward along the groove 106 under the action of the second spring 503, thereby locking into the locking slot 104.
[0032] In one embodiment, such as Figure 5 As shown, a second rack 507 is provided on one side of the drive rod 506, and a slider 508 is provided on the opposite side of the drive rod 506 and the second rack 507. The slider 508 is slidably disposed in the slide groove 108. In use, the drive rod 506 slides up and down along the slide groove 108 through the slider 508.
[0033] In one embodiment, such as Figure 5As shown, the upper end of the locking post 501 is provided with a first gear 504, which is rotatably connected to the locking block 102. The lower end of the first gear 504 is meshed with the first rack 502. A second gear 505 is meshed with one side of the first gear 504. The second gear 505 is meshed with the second rack 507. When it is necessary to release the locking of the buckle assembly 500, the drive rod 506 is pressed down, which drives the second gear 505 to rotate through the second rack 507, thereby driving the first gear 504 to rotate. As a result, the locking post 501 is driven to move inward along the slot 106 through the first rack 502, so that the locking post 501 leaves the slot 104.
[0034] The above embodiment discloses an anti-deformation injection molded part support device. In use, several modular support modules 100 are first assembled together according to the shape and size of the injection molded part. During assembly, the locking block 102 is inserted into the locking slot 103 and locked by the buckle assembly 500. Then, the injection molded part is placed on the support column 201. The support column 201 moves downward by the gravity of the injection molded part, compressing the first spring 203 until it is balanced. An air pump is connected in advance at the interface 400. After the injection molded part is placed stably, air is injected into the annular air bladder 302 by the air pump, causing the annular air bladder 302 to expand and lock the support column 201.
[0035] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A support device for anti-deformation injection molded parts, characterized in that, The assembly includes several modular support modules (100), each modular support module (100) having mounting holes (101) evenly distributed on it. Each mounting hole (101) contains a support component (200). The modular support module (100) has a locking block (102) and a locking slot (103) on its side. The locking block (102) and the locking slot (103) are sized to match. Each locking block (102) contains a buckle component (500), and each locking slot (103) contains a locking opening (104). The bottom of the modular support module (100) has an interface (400).
2. The anti-deformation injection molded part support device according to claim 1, characterized in that, The support assembly (200) includes a support column (201), which is disposed in a mounting hole (101). A limiting ring (202) is provided at the lower part of the support column (201), and a first spring (203) is provided at the lower end of the limiting ring (202).
3. The anti-deformation injection molded part support device according to claim 1, characterized in that, An airbag locking assembly (300) is provided in the mounting hole (101). The airbag locking assembly (300) includes a first mounting groove (301) provided on the side of the mounting hole (101). An annular airbag (302) is provided in the first mounting groove (301). A connecting hole (303) is provided between the annular airbags (302). A connecting hole (304) is provided on one side of the annular airbag (302). The connecting hole (304) is connected to the interface (400).
4. The anti-deformation injection molded part support device according to claim 1, characterized in that, The card block (102) is provided with a second mounting groove (105), the buckle assembly (500) is provided in the second mounting groove (105), the second mounting groove (105) is provided with a slot (106) on one side, the second mounting groove (105) is provided with a third mounting groove (107) on the other side, and the third mounting groove (107) is provided with a sliding groove (108) on the side.
5. The anti-deformation injection molded part support device according to claim 1, characterized in that, The buckle assembly (500) includes a locking post (501) and a drive rod (506). The locking post (501) is slidably disposed in the slot (106), and the drive rod (506) is slidably disposed in the third mounting slot (107).
6. The anti-deformation injection molded part support device according to claim 5, characterized in that, The locking post (501) is provided with a first rack (502), and a second spring (503) is provided at one end of the locking post (501). One end of the second spring (503) is fixedly connected to the locking post (501), and the other end is fixedly connected to the locking block (102).
7. The anti-deformation injection molded part support device according to claim 5, characterized in that, The drive rod (506) has a second rack (507) on one side, and a slider (508) is provided on the opposite side of the drive rod (506) and the second rack (507). The slider (508) is slidably disposed in the slide groove (108).
8. The anti-deformation injection molded part support device according to claim 5, characterized in that, The upper end of the locking post (501) is provided with a first gear (504), the first gear (504) is rotatably connected to the locking block (102), the lower end of the first gear (504) is meshed with the first rack (502), a second gear (505) is meshed with one side of the first gear (504), and the second gear (505) is meshed with the second rack (507).