Rapid cold setting tool for supporting piece

By designing a rapid cold-forming fixture for the support components, and utilizing a combination of a cooling chamber and a moving block, rapid cooling and shaping of the rubber support components was achieved. This solved the problem of cooling time affecting mold processing efficiency, and improved processing efficiency and cooling resource utilization.

CN223777781UActive Publication Date: 2026-01-09QIDONG HUIDA SHOCK-ABSORPTION TECH CO LTD
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Patent Information

Application Number
CN202520018000.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2026-01-09
Estimated Expiration
2035-01-06

AI Technical Summary

Technical Problem

In the existing technology, the cooling time of rubber support components is relatively long, which affects the mold processing efficiency, and the mold cooling device also affects the mold processing efficiency.

Method used

Design a rapid cold-forming fixture for support components, comprising a base, a cooling chamber, cooling pipes, and cooling holes. A coolant supply device provides the cooling source, and the support component is rapidly cooled and shaped through a cooling chamber composed of a moving block and a fixed block.

Benefits of technology

This method enables rapid cooling and shaping of the support components, improves processing efficiency, does not affect mold processing efficiency, and increases the utilization rate of cooling resources.

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Abstract

A plurality of cooling cavities are fixedly formed in a base, cooling pipelines and cooling holes are formed in main bodies of the cooling cavities, the cooling holes are communicated with a cooling liquid supply device, the cooling liquid supply device provides a cooling source for the cooling cavities, and the inner shapes of the cooling cavities conform to the shapes of the supporting pieces; the cooling cavity surrounds, cools and forms the supporting piece, the tool can quickly cool and form the rubber supporting piece, and the machining efficiency of the supporting piece is improved; the movable power device drives the movable block to do opening and closing motion, the opening and closing motion of the movable block achieves rapid taking and placing of the supporting piece, and the cooling and shaping efficiency of the supporting piece is improved. The fixed blocks and the multiple movable blocks are combined to form the multiple cooling cavities, the single fixed block corresponds to the multiple movable blocks, the fixed blocks and the movable blocks are provided with the independent cooling pipelines, the space utilization rate is increased, and the utilization efficiency of cooling resources is improved.
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Description

Technical Field

[0001] This utility model relates to the field of rubber shaping tooling technology, and in particular to a rapid cold shaping tooling for support components. Background Technology

[0002] Molds are various shapes and tools used in industrial production to obtain desired products through methods such as injection molding, blow molding, extrusion, die casting, forging, smelting, and stamping. In short, a mold is a tool used to create shaped objects; this tool is composed of various parts, and different molds are composed of different parts. It primarily achieves the shaping of objects by changing the physical state of the material being molded.

[0003] The rubber support is a cylindrical support body. During processing, the rubber is heated and melted, then injected into the mold cavity. The rubber hardens and solidifies inside the cavity, completing the compression molding of the support.

[0004] In related technologies, after the support component is formed, it needs to be cooled and shaped before being trimmed to complete the finished product. The cooling of rubber support components is usually achieved through natural cooling or mold cooling. Natural cooling involves placing the support component in a natural environment for natural cooling, which takes a long time. Mold cooling usually involves a cooling device on the mold. After the support component is vulcanized, the mold cooling device is activated to cool and shape the support component. This type of mold with a cooling device will seriously affect the processing efficiency of the mold.

[0005] Therefore, in practice, a rapid cold-setting fixture for support components is needed. After vulcanization molding, the support component is removed from the mold and placed in the rapid cold-setting fixture. The cold-setting fixture rapidly cools and sets the support component, which has high cooling efficiency and does not affect the processing efficiency of the mold, thus improving the mold processing efficiency. Utility Model Content

[0006] To address the problems in related technologies, this application discloses a rapid cold-forming tooling for support components, which solves the problem that the cooling time of rubber support components affects the mold processing efficiency in related technologies.

[0007] To achieve the above objectives, this application provides the following technical solution:

[0008] A quick cold-setting fixture for a support component includes a base, on which multiple cooling chambers are fixedly mounted. Each cooling chamber has a cooling pipe inside its main body and cooling holes that communicate with the cooling pipes. The cooling holes are connected to a coolant supply device, which provides a cooling source for the cooling chambers.

[0009] As a further aspect of this application: the cooling chamber includes a fixed block and a movable block. The fixed block is fixedly disposed on the base, and the movable block is movable relative to the base. One end of the movable block is combined with the fixed block to form the cooling chamber, and the other end of the movable block is powered by a moving power device, which drives the movable block to open and close.

[0010] As a further aspect of this application: the fixed block and the moving block are respectively provided with the cooling pipes and cooling holes.

[0011] As a further aspect of this application: the fixed block and the moving block are each half the volume of the cooling cavity.

[0012] As a further aspect of this application: the fixed block is provided with a plurality of the movable blocks, and the fixed block and the plurality of movable blocks are combined to form a plurality of the cooling chambers.

[0013] As a further aspect of this application, a plurality of stabilizing blocks are fixedly provided on the non-working side of the fixed block.

[0014] As a further aspect of this application: a stabilizing plate is fixedly provided on the non-moving side of the mobile power device.

[0015] In summary, the beneficial effects of this application are as follows:

[0016] 1. A rapid cold-setting fixture for support components has multiple cooling chambers fixed on its base. The main body of each cooling chamber is equipped with cooling pipes and cooling holes. The cooling holes are connected to a coolant supply device, which provides a cooling source for the cooling chambers. The internal shape of the cooling chambers matches the shape of the support components, and the cooling chambers surround and cool the support components to set their shape. Of course, the shape of the cooling chambers can be adapted to other shapes of rubber parts. This fixture can quickly cool and set rubber support components, improving the processing efficiency of support components.

[0017] 2. The cooling chamber is composed of a movable block and a fixed block. The other end of the movable block is connected to a moving power device, preferably a power cylinder. The moving power device drives the movable block to open and close. The opening and closing of the movable block enables the quick placement and removal of the support component, improving the cooling and shaping efficiency of the support component.

[0018] 3. The fixed block is equipped with multiple moving blocks. The fixed block and multiple moving blocks are combined to form multiple cooling chambers. Each fixed block corresponds to multiple moving blocks, and the fixed block and moving blocks are equipped with independent cooling pipes, which improves space utilization and the efficiency of cooling resource utilization. Attached Figure Description

[0019] The accompanying drawings are provided to further understand this application and form part of the specification. They are used together with the embodiments of this application to explain this application and do not constitute a limitation thereof.

[0020] In the attached diagram:

[0021] Figure 1 This is a schematic diagram of the structure of this application.

[0022] Figure 2 This is a schematic diagram of the planar structure of this application.

[0023] Figure label annotations:

[0024] 1. Base; 2. Cooling chamber; 3. Cooling holes; 4. Fixing block; 5. Moving block; 6. Moving power unit; 7. Stabilizing block; 8. Stabilizing plate; Detailed Implementation

[0025] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects disclosed in this embodiment as detailed in the appended claims.

[0026] It should be noted that all directional indicators in the embodiments (such as up, down, left, right, front, back, etc.) are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0027] Furthermore, the use of terms such as "first" and "second" in the embodiments is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit this application. It is merely to distinguish components or operations described using the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0028] To further understand the content, features, and effects of this application, the following embodiments are provided, and detailed descriptions are given below in conjunction with the accompanying drawings:

[0029] like Figure 1-2 As shown:

[0030] The rapid cold-setting fixture for the support component includes a base 1, on which multiple cooling chambers 2 are fixedly mounted. The internal shape of the cooling chambers 2 matches the shape of the support component. Cooling pipes are provided inside the main body of the cooling chambers 2, and cooling holes 3 are provided on the main body of the cooling chambers 2, which are connected to the cooling pipes. The cooling holes 3 are connected to a coolant supply device, which provides a cooling source for the cooling chambers 2. The cooling chambers 2 enable the rapid cooling and setting of the support component.

[0031] Specifically, the cooling chamber 2 includes a fixed block 4 and a movable block 5, with the fixed block 4 and the movable block 5 each comprising half the volume of the cooling chamber 2.

[0032] Of course, the cooling chamber 2 can be composed of one or more fixed blocks 4 and movable blocks 5.

[0033] The fixed block 4 is fixedly set on the base 1, and the movable block 5 is movable relative to the base 1. One end of the movable block 5 is combined with the fixed block 4 to form the cooling chamber 2. The other end of the movable block 5 is powered by a moving power device 6, which includes a power cylinder. The moving power device 6 drives the movable block 5 to open and close.

[0034] Each fixed block 4 is equipped with three movable blocks 5. The fixed block 4 and the three movable blocks 5 are combined to form three cooling chambers 2. The fixed block 4 and the movable blocks 5 are each equipped with independent cooling pipes and cooling holes 3.

[0035] In addition, three stabilizing blocks 7 are fixedly provided on the non-working side of the fixed block 4, and a stabilizing plate 8 is fixedly provided on the non-moving side of the moving power device 6. The stabilizing blocks 7 and the stabilizing plate 8, together with the base 1, improve the stability of the tooling.

[0036] In practical applications:

[0037] This fixture for rapid cold-setting of support components has multiple cooling chambers 2 fixed on a base 1. The main body of each cooling chamber 2 has cooling pipes and cooling holes 3. The cooling holes 3 are connected to a coolant supply device, which provides a cooling source for the cooling chambers 2. The internal shape of the cooling chambers 2 matches the shape of the support component. The cooling chambers 2 surround and cool the support component for shaping. Of course, the shape of the cooling chambers 2 can be adapted to the design of other rubber parts. This fixture can quickly cool and shape rubber support components, improving the processing efficiency of support components.

[0038] The cooling chamber 2 is composed of a movable block 5 and a fixed block 4. The other end of the movable block 5 is connected to a moving power device 6, preferably a power cylinder. The moving power device 6 drives the movable block 5 to open and close. The opening and closing movement of the movable block 5 realizes the rapid picking and putting of the support component and improves the cooling and shaping efficiency of the support component.

[0039] The fixed block 4 is provided with multiple movable blocks 5. The fixed block 4 and the multiple movable blocks 5 are combined to form multiple cooling chambers 2. Each fixed block 4 corresponds to multiple movable blocks 5, and the fixed block 4 and the movable blocks 5 are provided with independent cooling pipes, which improves the space utilization rate and the utilization efficiency of cooling resources.

[0040] Finally, it should be noted that the above disclosure is merely a preferred embodiment of this application and is not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application. The scope of this application is limited only by the appended claims.

Claims

1. A quick cold-setting fixture for a support component, comprising a base (1), characterized in that: Multiple cooling chambers (2) are fixedly provided on the base (1). The cooling chamber (2) has a cooling pipe inside its main body. The cooling chamber (2) has a cooling hole (3) that communicates with the cooling pipe. The cooling hole (3) is connected to a coolant supply device. The coolant supply device provides a cooling source for the cooling chamber (2).

2. The rapid cold-setting fixture for a support component according to claim 1, characterized in that: The cooling chamber (2) includes a fixed block (4) and a movable block (5). The fixed block (4) is fixedly disposed on the base (1). The movable block (5) is movable relative to the base (1). One end of the movable block (5) is combined with the fixed block (4) to form the cooling chamber (2). The other end of the movable block (5) is powered by a moving power device (6). The moving power device (6) drives the movable block (5) to open and close.

3. The rapid cold-setting fixture for a support component according to claim 2, characterized in that: The fixed block (4) and the movable block (5) are respectively provided with the cooling pipes and cooling holes (3).

4. The rapid cold-setting fixture for a support component according to claim 2, characterized in that: The fixed block (4) and the movable block (5) are each half the volume of the cooling chamber (2).

5. The rapid cold-setting fixture for a support component according to claim 2, characterized in that: The fixed block (4) is provided with a plurality of the movable blocks (5), and the fixed block (4) and the plurality of movable blocks (5) are combined to form a plurality of the cooling chambers (2).

6. The rapid cold-setting fixture for a support component according to claim 2, characterized in that: The non-working side of the fixed block (4) is fixed with multiple stabilizing blocks (7).

7. The rapid cold-setting fixture for a support component according to claim 2, characterized in that: The mobile power unit (6) has a stabilizing plate (8) fixed on its non-moving side.