Injection mold for ABS (Acrylonitrile Butadiene Styrene) nylon rear mud tile of electric vehicle

By designing fixed modules and moving modules in the ABS nylon rear mud tile injection mold of electric vehicle, and using the sliding connection between the third guide slider and the slide chute, the problem of difficult molding of rear mud tile is solved, achieving smooth molding and improving production efficiency of rear mud tile is achieved.

CN222844636UActive Publication Date: 2025-05-09TIANJIN HONGFA TECH CO LTD
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Patent Information

Application Number
CN202421797401.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-05-09
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

The injection mold of the ABS nylon rear tiles for electric vehicles is difficult to release after injection molding and is inconvenient for use.

Method used

An injection mold including a fixed module and a moving module is designed. The third guide slide is slidably connected to the third guide slide chute. The moving template pulls the first module outward, so that the second module slides along the third guide slide, so as to realize the disengagement of the rear mud tile molded parts.

Benefits of technology

Through this design, the smooth mold release of the rear mud tiles is achieved, the operation process is simplified, and the production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222844636U_ABST
    Figure CN222844636U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of injection molds, in particular to an injection mold for an ABS nylon rear mud tile of an electric vehicle, which comprises a fixed mold block, a movable mold block is arranged on one side of the fixed mold block, the movable mold block comprises a movable mold plate, a first mold block is arranged on one side of the movable mold plate, and second mold blocks are arranged on the two sides of the first mold block. Third guide sliding blocks are fixedly installed in the middles of the two sides of the first module, a third guide sliding groove is formed in one side of the second module, the third guide sliding blocks are in sliding connection with the third guide sliding groove, a floating plate is fixedly installed at one end of the second module, and second pushing springs are arranged on the two sides of the first module. And one end of the second pushing spring is fixedly connected with the movable mold plate, so that the effect of facilitating quick demolding is achieved.
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Description

Technical Field

[0001] The present application relates to the field of injection molds, and in particular to an injection mold for an ABS nylon rear mudguard of an electric vehicle. Background Art

[0002] An injection mold is a manufacturing tool used in the plastic injection molding process. It consists of a high-precision mold and a mold holder, and is mainly used to manufacture plastic products of various shapes and sizes. An injection mold usually consists of two major parts: a front mold (punch) and a back mold (die). The injection molding process involves injecting molten plastic material into a mold under high pressure, which is then cooled and solidified to form a plastic product of the desired shape.

[0003] The injection mold of the ABS nylon rear mudguard of electric vehicles is specially designed for the production of rear mudguards of electric vehicles. The rear mudguards are usually arc-shaped with complex structures. It is difficult to demold after the injection molding is completed, which is inconvenient to use. Utility Model Content

[0004] In order to solve the problems raised in the above background technology, the present application provides an injection mold for an ABS nylon rear mudguard of an electric vehicle.

[0005] The above technical objectives of this application are achieved through the following technical solutions:

[0006] An injection mold for an ABS nylon rear mudplate of an electric vehicle comprises a fixed module, a movable module is provided on one side of the fixed module, the movable module comprises a movable template, a first module is provided on one side of the movable template, second modules are provided on both sides of the first module, third guide sliders are fixedly installed in the middle of both sides of the first module, a third guide slot is provided on one side of the second module, the third guide slider is slidably connected to the third guide slot, a floating plate is fixedly installed at one end of the second module, second push springs are provided on both sides of the first module, and one end of the second push spring is fixedly connected to the movable template.

[0007] By adopting the above scheme, a movable module is provided on one side of the fixed module, which facilitates the closure of the fixed module and the movable module for rear tile injection molding. Second modules are provided on both sides of the first module, which facilitates the combination of the two second modules with the first module into a molding module, which is inserted into the cavity of the fixed module for injection molding. The third guide slider is slidably connected to the third guide slot, which facilitates the movable template to pull the first module outward during demolding, so that the two second modules slide along the third guide slider, so that the two second modules are close to each other and separated from the rear tile molded part, which facilitates demolding. One end of the second push spring is fixedly connected to the movable template, so that the second push spring provides elastic force to push the second module to slide along the third guide slider during demolding.

[0008] Furthermore, fourth guide slots are provided at both ends of one side of the floating plate, a fourth guide slide block is slidably connected inside the fourth guide slot, and the other end of the second push spring is fixedly connected to the fourth guide slide block.

[0009] By adopting the above scheme, a fourth guide slider is slidably connected inside the fourth guide slot, and the other end of the second push spring is fixedly connected to the fourth guide slider, so that the elastic force of the second push spring can slide the second module along the third guide slider without hindering the two second modules from approaching each other.

[0010] Furthermore, the fixed module includes a fixed template, and a mold groove is fixedly installed on one side of the fixed template.

[0011] Furthermore, forming templates are provided on both sides of the mold groove, and a forming groove is opened on one side of the forming template.

[0012] By adopting the above scheme, forming templates are provided on both sides of the mold groove, and a forming groove is opened on one side of the forming template, so that the two forming grooves and the mold groove are closed into a cavity, which is convenient for injection molding of the rear mud tile.

[0013] Furthermore, an injection interface is provided in the middle of one side of the fixed template away from the mold groove, and a feed hole is provided in the middle of one side of the mold groove.

[0014] By adopting the above scheme, an injection interface is opened in the middle of the fixed template away from the mold groove, and a feed hole is opened in the middle of one side of the mold groove, so that the pouring head of the injection molding device can be inserted into the injection interface, and the injection molding material can be injected into the cavity from the feed hole for injection molding.

[0015] Furthermore, first guide grooves are provided at both ends of the mold groove, and first guide sliders are fixedly installed at both ends of the molding template, and the first guide sliders are slidably connected to the first guide grooves.

[0016] By adopting the above scheme, the first guide slider is slidably connected to the first guide groove, so that the molding template can slide along the first guide slider during demoulding, so that the two molding templates move away from each other, thereby separating the molding template from the rear mud tile molding part, facilitating demoulding.

[0017] Furthermore, second guide slots are provided at both ends of one side of the forming template, and a second guide sliding block is slidably connected inside the second guide slot.

[0018] By adopting the above solution, second guide slots are opened at both ends of one side of the forming template, and the second guide slide block is slidably connected inside the second guide slot, so that the second guide slide block can slide along the second guide slot.

[0019] Furthermore, a first push spring is fixedly mounted on one side of the second guide sliding block, and the other end of the first push spring is fixedly connected to the fixed template.

[0020] By adopting the above scheme, a first push spring is fixedly installed on one side of the second guide slider, and the other end of the first push spring is fixedly connected to the fixed template, so that the first push spring provides elastic force to push the molding template to slide along the first guide slider during demoulding.

[0021] In summary, this application has the following technical effects:

[0022] A movable module is provided on one side of the fixed module, so that the fixed module and the movable module are closed for injection molding of the rear tile. Second modules are provided on both sides of the first module, so that the two second modules are combined with the first module into a molding module, which is inserted into the cavity of the fixed module for injection molding. The third guide slider is slidably connected to the third guide slide groove, so that the movable template can pull the first module outward during demoulding, so that the two second modules slide along the third guide slider, so that the two second modules are close to each other and separated from the rear tile molded part, which is convenient for demoulding. One end of the second push spring is fixedly connected to the movable template, so that the second push spring provides elastic force to push the second module to slide along the third guide slider during demoulding. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is the appearance structure diagram of this application;

[0024] Figure 2 is an exploded view of this application;

[0025] Figure 3 This is the exploded diagram of the dynamic module of this application;

[0026] Figure 4 It is an exploded diagram of the module specified in this application;

[0027] Figure 5 It is a top view of the present application.

[0028] In the figure, 101, fixed module; 10101, fixed template; 10102, mold groove; 10103, feed hole; 10104, first guide groove; 10105, injection interface; 10106, molding template; 10107, first guide slider; 10108, molding groove; 10109, first push spring; 10110, second guide slider; 10111, second guide slide groove; 102, moving module; 10201, moving template; 10202, first module; 10203, third guide slider; 10204, floating plate; 10205, second module; 10206, third guide slide groove; 10207, fourth guide slide groove; 10208, second push spring; 10209, fourth guide slider; 103, rear mud tile molding part. DETAILED DESCRIPTION

[0029] The present application is further described in detail below with reference to the accompanying drawings.

[0030] Example:

[0031] As attached Figure 1 To Attachment Figure 5 As shown:

[0032] The utility model provides an injection mold for an ABS nylon rear mud tile of an electric vehicle, comprising a fixed module 101, a movable module 102 is arranged on one side of the fixed module 101, and the movable module 102 is arranged on one side of the fixed module 101, so that the fixed module 101 and the movable module 102 are closed to perform injection molding of the rear mud tile, the movable module 102 comprises a movable template 10201, a first module 10202 is arranged on one side of the movable template 10201, and second modules 10205 are arranged on both sides of the first module 10202, and the second modules 10205 are arranged on both sides of the first module 10202, so that the two second modules 10205 are combined with the first module 10202 into a molding module, and the second modules 10205 are inserted into the mold cavity of the fixed module 101 for injection molding, and third guide slide blocks 10203 are fixedly installed in the middle of both sides of the first module 10202, and a third guide slide groove 10206 is opened on one side of the second module 10205. The first and second blocks 10203 are slidably connected to the third guide slot 10206, and are slidably connected to the third guide slot 10206 through the third guide slider 10203, so that the movable template 10201 can pull the first module 10202 outward during demoulding, so that the two second modules 10205 can slide along the third guide slider 10203, so that the two second modules 10205 can approach each other and separate from the rear tile forming part 103, which is convenient for demoulding. A floating plate 10204 is fixedly installed at one end of the second module 10205, and second push springs 10208 are provided on both sides of the first module 10202. One end of the second push spring 10208 is fixedly connected to the movable template 10201, and one end of the second push spring 10208 is fixedly connected to the movable template 10201, so that the second push spring 10208 provides elastic force to push the second module 10205 to slide along the third guide slider 10203 during demoulding.

[0033] Among them, fourth guide grooves 10207 are opened at both ends of one side of the floating plate 10204, and the fourth guide slider 10209 is slidably connected inside the fourth guide groove 10207, and the other end of the second push spring 10208 is fixedly connected to the fourth guide slider 10209, and the fourth guide slider 10209 is slidably connected inside the fourth guide groove 10207, and the other end of the second push spring 10208 is fixedly connected to the fourth guide slider 10209, so that the elastic force of the second push spring 10208 can slide the second module 10205 along the third guide slider 10203 without hindering the two second modules 10205 from approaching each other.

[0034] The fixed module 101 includes a fixed mold plate 10101 , and a mold groove 10102 is fixedly installed on one side of the fixed mold plate 10101 .

[0035] Among them, molding templates 10106 are provided on both sides of the mold groove 10102, and a molding groove 10108 is opened on one side of the molding template 10106. By providing molding templates 10106 on both sides of the mold groove 10102 and a molding groove 10108 is opened on one side of the molding template 10106, the two molding grooves 10108 and the mold groove 10102 are closed into a cavity, which is convenient for the injection molding of the subsequent mud tiles.

[0036] Among them, an injection molding interface 10105 is opened in the middle of the side of the fixed template 10101 away from the mold groove 10102, and a feed hole 10103 is opened in the middle of one side of the mold groove 10102. The injection molding interface 10105 is opened in the middle of the side of the fixed template 10101 away from the mold groove 10102, and the feed hole 10103 is opened in the middle of one side of the mold groove 10102, so that the pouring head of the injection molding device can be inserted into the injection molding interface 10105, and the injection molding raw material can be injected into the mold cavity from the feed hole 10103 for injection molding.

[0037] Among them, first guide grooves 10104 are opened at both ends of the mold groove 10102, and first guide sliders 10107 are fixedly installed at both ends of the molding template 10106. The first guide slider 10107 is slidably connected to the first guide groove 10104. The first guide slider 10107 is slidably connected to the first guide groove 10104, so that the molding template 10106 can slide along the first guide slider 10107 during demoulding, so that the two molding templates 10106 are separated from each other, thereby making the molding template 10106 separate from the rear mud tile molding part 103, which is convenient for demoulding.

[0038] Among them, a second guide groove 10111 is opened at both ends of one side of the forming template 10106, and a second guide slider 10110 is slidably connected inside the second guide groove 10111. A second guide groove 10111 is opened at both ends of one side of the forming template 10106, and a second guide slider 10110 is slidably connected inside the second guide groove 10111, so that the second guide slider 10110 can slide along the second guide groove 10111.

[0039] Among them, a first push spring 10109 is fixedly installed on one side of the second guide slider 10110, and the other end of the first push spring 10109 is fixedly connected to the fixed template 10101. The first push spring 10109 is fixedly installed on one side of the second guide slider 10110, and the other end of the first push spring 10109 is fixedly connected to the fixed template 10101, so that the first push spring 10109 provides elastic force to push the molding template 10106 to slide along the first guide slider 10107 during demolding.

[0040] Specifically, a molding template 10106 is provided on both sides of the mold groove 10102, and a molding groove 10108 is provided on one side of the molding template 10106, so that the two molding grooves 10108 and the mold groove 10102 are closed into a mold cavity, which is convenient for injection molding of the rear brick. An injection molding interface 10105 is provided in the middle of one side of the fixed template 10101 away from the mold groove 10102, and a feed hole 10103 is provided in the middle of one side of the mold groove 10102, so that the pouring head of the injection molding device is inserted into the injection molding interface 10105, and the injection molding raw material is injected into the mold cavity from the feed hole 10103 for injection molding, and the first module 1 Second modules 10205 are provided on both sides of 0202, so that the two second modules 10205 and the first module 10202 are combined into a molding module, which is inserted into the mold cavity of the fixed module 101 for injection molding. The third guide slider 10203 is slidably connected with the third guide slot 10206, so that the movable template 10201 can pull the first module 10202 outward during demoulding, so that the two second modules 10205 slide along the third guide slider 10203, so that the two second modules 10205 are close to each other and separated from the rear tile molding part 103, which is convenient for demoulding, and the second push spring 10208 is used. One end is fixedly connected to the movable template 10201, so that the second push spring 10208 provides elastic force to push the second module 10205 to slide along the third guide slider 10203 during demoulding, and the fourth guide slider 10209 is slidably connected inside the fourth guide slide groove 10207. The other end of the second push spring 10208 is fixedly connected to the fourth guide slider 10209, so that the elastic force of the second push spring 10208 does not hinder the two second modules 10205 from approaching each other during the sliding process of the second module 10205 along the third guide slider 10203, and the second guide slider 1011 is used. 0A first push spring 10109 is fixedly installed on one side, and the other end of the first push spring 10109 is fixedly connected to the fixed template 10101, so that the first push spring 10109 provides elastic force to push the forming template 10106 to slide along the first guide slider 10107 during demoulding. The first guide slider 10107 is slidably connected to the first guide groove 10104, so that the forming template 10106 slides along the first guide slider 10107 during demoulding, so that the two forming templates 10106 move away from each other, thereby separating the forming template 10106 from the rear tile forming part 103, which is convenient for demoulding.

[0041] This specific embodiment is merely an explanation of the present application and is not a limitation of the present application. After reading this specification, those skilled in the art may make modifications to the present embodiment without any creative contribution as needed, but such modifications are protected by the patent law as long as they are within the scope of the claims of the present application.

Claims

1. An injection mold for ABS nylon rear mudplate of an electric vehicle, characterized in that: The invention comprises a fixed module (101), a movable module (102) is provided on one side of the fixed module (101), the movable module (102) comprises a movable template (10201), a first module (10202) is provided on one side of the movable template (10201), second modules (10205) are provided on both sides of the first module (10202), third guide sliders (10203) are fixedly installed in the middle of both sides of the first module (10202), a third guide slot (10206) is provided on one side of the second module (10205), the third guide slider (10203) is slidably connected to the third guide slot (10206), a floating plate (10204) is fixedly installed on one end of the second module (10205), second push springs (10208) are provided on both sides of the first module (10202), and one end of the second push spring (10208) is fixedly connected to the movable template (10201).

2. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 1, characterized in that: The floating plate (10204) is provided with fourth guide slots (10207) at both ends of one side, the fourth guide slot (10207) is slidably connected to a fourth guide slider (10209) inside, and the other end of the second push spring (10208) is fixedly connected to the fourth guide slider (10209).

3. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 1, characterized in that: The fixed module (101) comprises a fixed mold plate (10101), and a mold groove (10102) is fixedly mounted on one side of the fixed mold plate (10101).

4. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 3, characterized in that: Forming templates (10106) are provided on both sides of the mold groove (10102), and a forming groove (10108) is provided on one side of the forming template (10106).

5. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 4, characterized in that: An injection molding interface (10105) is provided in the middle of one side of the fixed mold plate (10101) away from the mold groove (10102), and a feed hole (10103) is provided in the middle of one side of the mold groove (10102).

6. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 4, characterized in that: Both ends of the mold groove (10102) are provided with a first guide groove (10104), and both ends of the molding template (10106) are fixedly installed with a first guide slider (10107), and the first guide slider (10107) is slidably connected to the first guide groove (10104).

7. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 6, characterized in that: Second guide grooves (10111) are provided at both ends of one side of the forming template (10106), and a second guide sliding block (10110) is slidably connected inside the second guide groove (10111).

8. The injection mold of the ABS nylon rear mudplate of an electric vehicle according to claim 7, characterized in that: A first push spring (10109) is fixedly mounted on one side of the second guide slider (10110), and the other end of the first push spring (10109) is fixedly connected to the fixed template (10101).