Turnover type functional frame for production of injection mold

By introducing a demolding facilitator and buffer protection measures into the flip-type functional frame, the problems of stability, flexibility and demolding speed of the flip-type functional frame are solved, realizing fast and safe mold demolding and transfer, and adapting to the production needs of molds of various specifications.

CN223918494UActive Publication Date: 2026-02-17KUNSHAN TIANCHENGXU METAL PROD CO LTD
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Patent Information

Application Number
CN202520578717.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-17
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing flip-type functional rack devices have problems such as low stability, insufficient flexibility, slow demolding speed, and potential damage to the device when processed parts fall during injection mold production.

Method used

A flip-type functional frame, including a functional platform and a demolding facilitator, was designed. The flip-type platform is flipped by a flip cylinder, and the electric vibrating wheel driven by a telescopic cylinder cooperates with the buffer pad to achieve rapid demolding. The buffer pad and protective pad absorb kinetic energy to prevent damage. At the same time, threaded blocks and mounting blocks are used to limit the movement of different mold types.

Benefits of technology

It improves the demolding speed of injection molds, protects the processed parts inside the mold from damage when they fall, and adapts to the usage requirements of molds of different specifications, thereby improving production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of natural gas compressors, in particular to a turnover type functional frame for injection mold production, which comprises a functional frame table, the functional frame table comprises a demolding promoting mechanism arranged on the inner side wall of the functional frame table, and the demolding promoting mechanism comprises a turnover table rotationally connected to the inner side wall of the functional frame table. A working groove is formed in the bottom end of the overturning table, a telescopic air cylinder is fixedly connected to the bottom end of the overturning table, a lifting frame is fixedly connected to the output end of the telescopic air cylinder, an electric vibration wheel is rotationally connected to the inner side wall of the lifting frame, and a protection pad is arranged below the lifting frame. Through the cooperation of the functional stand and the demolding promoting mechanism, the overturning cylinder is started to drive the overturning table to overturn, so that the opening of the lower injection mold is downward, and the telescopic cylinder is started to drive the electric vibration wheel and the lifting frame to move downward; and the electric vibration wheel is started to rotate, so that vibration of the injection molding lower mold is realized, and demolding is promoted.
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Description

TECHNICAL FIELD

[0001] The utility model relates to injection mold production technical field, concretely relates to a kind of turnover type function frame for injection mold production. BACKGROUND

[0002] Injection mold needs to use a series of auxiliary tools in production and processing process, including turnover type function frame, which is used to clamp and fix injection mold and assist the production and processing of injection mold. However, the existing turnover type function frame device still has some defects in use. First, the stability is not high, and the injection mold is easy to move during the turnover process. Second, the flexibility is not high, and the turnover adjustment is troublesome. Moreover, the existing turnover type function frame device is often specific in specification and can only be applied to injection molds of specific specifications, which cannot meet the use requirements of injection molds of various specifications in production and processing.

[0003] After searching, the patent file with the publication number CN219006801U proposes a turnover type function frame device for injection mold production: the utility model discloses a turnover type function frame device for injection mold production, which comprises a first support, a mold base, a turnover mechanism and a mounting bracket. The first support is provided with a second support on one side, and the top of the first support and the second support is provided with a turnover mechanism. The top of the turnover mechanism is placed with a mold base, and the two sides of the turnover mechanism are fixed with a fixed ear. The top of the first support and the second support is provided with a mounting bracket through a rotating shaft, and the mounting bracket is clamped on the fixed ear. The bottom end of the first support is fixed with a first rotary drive mechanism, and the output end of the first rotary drive mechanism is connected with the rotating shaft through a belt pulley mechanism. The utility model is provided with a first support, a second support, a first rotary drive mechanism, a rotating shaft, a turnover mechanism, a mounting bracket, a screw rod, a pressing plate, a mold base and a fixed ear, which is beneficial to the mold inversion after mold forming and facilitates demolding.

[0004] In the above technical solution, the mold is turned over and inverted after cooling, thereby realizing demolding. However, the demolding speed is slow, which affects the production rhythm of subsequent molds. Moreover, the impact generated when the processed parts fall may cause damage to the self or the conveyor belt.

[0005] Therefore, it is necessary to invent a turnover type function frame for injection mold production to solve the above problems. UTILITY MODEL CONTENTS

[0006] The utility model aims to provide a turnover type function frame for injection mold production, which accelerates demolding through the cooperation of the function frame table and the demolding promoting mechanism, thereby solving the problem of slow demolding speed in the prior art, which affects the production rhythm of subsequent molds and may cause damage to the self or the conveyor belt when the processed parts fall.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a flip-type functional frame for injection mold production, comprising a functional frame platform, wherein the functional frame platform includes a demolding facilitation mechanism disposed on the inner side wall of the functional frame platform, the demolding facilitation mechanism includes a flipping table rotatably connected to the inner side wall of the functional frame platform, a working groove is provided at the bottom end of the flipping table, a telescopic cylinder is fixedly connected to the bottom end of the flipping table, a lifting frame is fixedly connected to the output end of the telescopic cylinder, an electric vibrating wheel is rotatably connected to the inner side wall of the lifting frame, a protective pad is provided below the lifting frame, a fixed frame is fixedly connected to the bottom end of the protective pad, the fixed frame has a U-shaped cross section, vibration is achieved by the rotation of the lifting frame to accelerate demolding, and the protective pad and other parts are used to protect the processed parts from damage caused by impact when falling.

[0008] Preferably, the surface of the tilting table is provided with an injection mold, and a buffer pad is fixedly connected to the bottom of the injection mold. The buffer pad is located inside the working groove. The contact between the lifting frame and the buffer pad allows the buffer pad to absorb part of the kinetic energy, thereby preventing the processed parts inside the injection mold from being damaged by excessive vibration.

[0009] Preferably, the top of the protective pad is fixedly connected with several sets of protrusions, and the inner sidewall of the protective pad is fixedly connected with several sets of cushioning sponge sleeves. The inner sidewall of the cushioning sponge sleeves is wrapped with a rubber core. The protrusions increase the working thickness of the cushioning area and reduce noise. The cushioning capacity is enhanced by the cooperation between the cushioning sponge sleeves and the protective pad.

[0010] Preferably, a hidden groove is provided on the left side of the functional frame, and an electric threaded rod is installed on the inner wall of the hidden groove. The threads at both ends of the electric threaded rod are in opposite directions. Two sets of threaded blocks are threadedly connected to the outer wall of the electric threaded rod, and the bottom of the threaded blocks extends into the inside of the hidden groove and slides inside the hidden groove. When the electric threaded rod is started, the two sets of threaded blocks move inward or outward at the same time.

[0011] Preferably, a threaded block is fixedly connected to one end of the top of the flipping cylinder located within the functional frame. An installation groove is provided on the side of the threaded block near the lower injection mold. Installation blocks are fixedly connected to both sides of the lower injection mold at positions corresponding to the installation groove. The installation groove and the installation block are engaged with each other by the threaded block to limit the position of the lower injection mold.

[0012] Preferably, a tilting cylinder is fixedly connected to one side of the functional frame, and the output end of the tilting cylinder is fixedly connected to the rotation shaft of the tilting platform. Activating the tilting cylinder drives the tilting platform to tilt.

[0013] Preferably, a mounting frame is provided below the tilting table, a conveying mechanism is installed on the inner side wall of the mounting frame, and a fixed frame is fixedly connected to the inner side wall of the mounting frame. The conveying mechanism is activated to transport the demolded workpiece to the next working location.

[0014] The technical effects and advantages provided by this utility model in the above technical solution are as follows:

[0015] 1. Through the cooperation of the functional frame and the demolding promotion mechanism, the flipping cylinder is activated to drive the flipping table to flip, so that the opening of the injection mold is facing downward. The telescopic cylinder is activated to drive the electric vibrating wheel and the lifting frame downward, so that the electric vibrating wheel and the buffer pad come into contact with each other and start the rotation of the electric vibrating wheel to realize the vibration of the injection mold to promote demolding. At the same time, the buffer pad absorbs excess kinetic energy to protect the processed parts inside the injection mold. Finally, the protective pad is used to support the processed parts, and the fixed frame and other parts are used to protect the processed parts from damage caused by falling.

[0016] 2. By cooperating with parts such as threaded blocks, mounting blocks, and mounting slots, the electric threaded rod is activated to drive the threaded blocks to slide inside the hidden groove. The threaded blocks also drive the mounting slots and mounting blocks to engage with each other, thereby limiting the lower injection molds of different models and preventing the lower injection molds from falling off after being flipped. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a partial structural schematic diagram of the present invention;

[0020] Figure 3 For the present utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0021] Figure 4 For the present utility model Figure 2 Enlarged structural diagram at point B;

[0022] Figure 5 This is a schematic diagram of the internal structure of the protective pad of this utility model.

[0023] Explanation of reference numerals in the attached figures:

[0024] 1. Functional support frame; 2. Demolding facilitation mechanism; 201. Tilting table; 202. Protective pad; 203. Lifting frame; 204. Electric vibrating wheel; 205. Buffer pad; 206. Working groove; 207. Telescopic cylinder; 208. Fixed frame; 209. Buffer sponge sleeve; 210. Protrusion; 3. Injection lower mold; 4. Tilting cylinder; 5. Threaded block; 6. Mounting frame; 7. Conveying mechanism; 8. Mounting block; 9. Mounting groove; 10. Hidden groove; 11. Electric threaded rod. Detailed Implementation

[0025] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0026] This utility model provides, for example Figures 1-5The diagram shows a flip-type functional frame for injection mold production, comprising a functional frame platform 1. The functional frame platform 1 includes a demolding facilitation mechanism 2 disposed on its inner side wall. The demolding facilitation mechanism 2 includes a flipping table 201 rotatably connected to the inner side wall of the functional frame platform 1. A working groove 206 is provided at the bottom end of the flipping table 201. A telescopic cylinder 207 is fixedly connected to the bottom end of the flipping table 201. A lifting frame 203 is fixedly connected to the output end of the telescopic cylinder 207. An electric vibrating wheel 204 is rotatably connected to the inner side wall of the lifting frame 203. A protective pad 202 is disposed below the lifting frame 203, and a fixing frame 208 is fixedly connected to the bottom end of the protective pad 202. The fixed frame 208 has a U-shaped cross-section. Vibration is achieved through the rotation of the lifting frame 203 to accelerate demolding. The protective pad 202 and other components protect the workpiece from damage caused by impact during drops. The surface of the tilting table 201 is equipped with an injection mold 3. A buffer pad 205 is fixedly connected to the bottom of the injection mold 3. The buffer pad 205 is located inside the working groove 206. Contact between the lifting frame 203 and the buffer pad 205 allows the buffer pad 205 to absorb some kinetic energy, preventing excessive vibration and damage to the workpiece inside the injection mold 3. Several sets of protrusions 210 are fixedly connected to the top of the protective pad 202. The inner side of the protective pad 202... Several sets of cushioning sponge sleeves 209 are fixedly connected to the wall. The inner wall of the cushioning sponge sleeve 209 is wrapped with a rubber core. The working thickness of the cushioning area is increased and noise is reduced by using protrusions 210. The cushioning capacity is enhanced by the cooperation between the cushioning sponge sleeve 209 and the protective pad 202. A flipping cylinder 4 is fixedly connected to one side of the functional frame 1. The output end of the flipping cylinder 4 is fixedly connected to the rotation shaft of the flipping table 201. Activating the flipping cylinder 4 drives the flipping table 201 to flip. A mounting frame 6 is set below the flipping table 201. A conveying mechanism 7 is installed on the inner wall of the mounting frame 6, and a fixed frame 208 is fixedly connected to the inner wall of the mounting frame 6. Activating the conveying mechanism 7 will demold the... The workpiece is transported to the next work location. Through the cooperation of the functional frame 1 and the demolding promotion mechanism 2, the flipping cylinder 4 is activated to drive the flipping table 201 to flip, so that the opening of the injection mold 3 faces downward. The telescopic cylinder 207 is activated to drive the electric vibrating wheel 204 and the lifting frame 203 downward, so that the electric vibrating wheel 204 and the buffer pad 205 come into contact with each other and the rotation of the electric vibrating wheel 204 is activated to realize the vibration of the injection mold 3 to promote demolding. At the same time, the buffer pad 205 absorbs excess kinetic energy to protect the processed parts inside the injection mold 3. Finally, the protective pad 202 is used to support the processed parts, and the fixed frame 208 and other parts protect the processed parts from damage caused by falling.

[0027] Refer to the instruction manual appendix Figures 1-5An electric threaded rod 11 is installed on the inner wall of the concealed groove 10. The threads at both ends of the electric threaded rod 11 are in opposite directions. Two sets of tilting cylinders 4 are threadedly connected to the outer wall of the electric threaded rod 11, and the bottom of the tilting cylinders 4 slides inside the concealed groove 10. When the electric threaded rod 11 is activated, it drives the tilting cylinders 4 to move inward or outward simultaneously. A threaded block 5 is fixedly connected to one end of the top of the tilting cylinder 4 located inside the functional frame 1. An installation groove 9 is opened on the side of the threaded block 5 near the lower injection mold 3. Installation blocks 8 are fixedly connected to both sides of the lower injection mold 3 at positions corresponding to the installation groove 9. The installation groove 9 and the installation blocks 8 are engaged with each other by the threaded block 5 to limit the position of the lower injection mold 3. A tilting cylinder 4 is fixedly connected to one side of the platform 1. The output end of the tilting cylinder 4 is fixedly connected to the rotating shaft of the tilting platform 201. When the tilting cylinder 4 is activated, the tilting platform 201 is tilted. A mounting frame 6 is set below the tilting platform 201. A conveying mechanism 7 is installed on the inner side wall of the mounting frame 6. When the conveying mechanism 7 is activated, the demolded workpiece is transported to the next working location. Through the cooperation of parts such as the threaded block 5, the mounting block 8, and the mounting groove 9, the electric threaded rod 11 is activated to drive the threaded block 5 to slide inside the hidden groove 10. The threaded block 5 drives the mounting groove 9 and the mounting block 8 to engage with each other, thereby limiting the lower injection mold 3 of different models and preventing the lower injection mold 3 from falling after tilting.

[0028] The working principle of this practical application is as follows:

[0029] Refer to the instruction manual appendix Figures 1-5 After the lower injection mold 3 and the upper mold are closed, the upper mold is raised, and the tilting cylinder 4 is activated to drive the tilting table 201 to tilt, so that the opening of the lower injection mold 3 faces downward. The telescopic cylinder 207 is activated to drive the electric vibrating wheel 204 and the lifting frame 203 downward, so that the electric vibrating wheel 204 and the buffer pad 205 come into contact with each other and the rotation of the electric vibrating wheel 204 is activated to vibrate the lower injection mold 3 to promote demolding. At the same time, the buffer pad 205 absorbs excess kinetic energy to protect the processed parts inside the lower injection mold 3. Finally, the conveying mechanism 7 is used to receive the processed parts, and the protective pad 202 supports the conveying mechanism 7 to prevent damage. At the same time, the protrusion 210 is used to increase the working thickness of the buffer area and reduce the noise caused by the impact. The buffer sponge sleeve 209 and the protective pad 202 cooperate to enhance the buffering capacity and prevent deformation.

[0030] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A flip-type functional rack for injection mold production, comprising a functional rack platform (1), characterized in that: The functional platform (1) includes a demolding promotion mechanism (2) disposed on the inner side wall of the functional platform (1). The demolding promotion mechanism (2) includes a flipping table (201) rotatably connected to the inner side wall of the functional platform (1). The bottom end of the flipping table (201) is provided with a working groove (206). The bottom end of the flipping table (201) is fixedly connected with a telescopic cylinder (207). The output end of the telescopic cylinder (207) is fixedly connected with a lifting frame (203). The inner side wall of the lifting frame (203) is rotatably connected with an electric vibrating wheel (204). A protective pad (202) is provided below the lifting frame (203). The bottom end of the protective pad (202) is fixedly connected with a fixing frame (208). The cross section of the fixing frame (208) is U-shaped.

2. The flip-type functional frame for injection mold production according to claim 1, characterized in that: The surface of the flipping table (201) is provided with an injection mold (3), and a buffer pad (205) is fixedly connected to the bottom end of the injection mold (3). The buffer pad (205) is located inside the working groove (206).

3. The flip-type functional frame for injection mold production according to claim 1, characterized in that: The top of the protective pad (202) is fixedly connected with several sets of protrusions (210), and the inner wall of the protective pad (202) is fixedly connected with several sets of buffer sponge sleeves (209), and the inner wall of the buffer sponge sleeves (209) is wrapped with a rubber inner core.

4. The flip-type functional frame for injection mold production according to claim 1, characterized in that: The functional frame (1) has a hidden groove (10) on its left side. An electric threaded rod (11) is installed on the inner wall of the hidden groove (10). The threads at both ends of the electric threaded rod (11) are opposite. Two sets of threaded blocks (5) are threadedly connected to the outer wall of the electric threaded rod (11), and the bottom of the threaded blocks (5) extends into the inside of the hidden groove (10) and slides inside the hidden groove (10).

5. A flip-type functional frame for injection mold production according to claim 4, characterized in that: The threaded block (5) has an installation groove (9) on one side near the lower injection mold (3), and the lower injection mold (3) is fixedly connected to the installation blocks (8) on both sides corresponding to the installation groove (9).

6. A flip-type functional frame for injection mold production according to claim 1, characterized in that: A tilting cylinder (4) is fixedly connected to one side of the functional frame (1), and the output end of the tilting cylinder (4) is fixedly connected to the rotation shaft of the tilting table (201).

7. A flip-type functional frame for injection mold production according to claim 1, characterized in that: A mounting frame (6) is provided below the flipping table (201). A conveying mechanism (7) is installed on the inner side wall of the mounting frame (6), and a fixing frame (208) is fixedly connected to the inner side wall of the mounting frame (6).

Citation Information

Patent Citations

  • Turnover type functional frame device for production of injection mold

    CN219006801U