In-pipe elastic member mounting mechanism

By using the internal elastic component installation mechanism, which incorporates limiting components and power components, the problem of stable installation of elastic components in irregular pipe fittings is solved, achieving an efficient and precise installation process and reducing labor costs.

CN224527028UActive Publication Date: 2026-07-21ZHEJIANG YOTRIO GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG YOTRIO GRP CO LTD
Filing Date
2025-06-23
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In industrial production, it is difficult to stably install elastic components inside irregularly shaped pipes, resulting in a complicated, time-consuming, and labor-intensive installation process with high labor costs.

Method used

An internal elastic component installation mechanism is adopted, including a limiting component, a push rod, and a power unit. The limiting guide cavity matches the elastic component, and the cylinder provides power to stably send the elastic component into the designated position. The pipe is then fixed by a fixing component to ensure installation accuracy.

Benefits of technology

This achieves stable installation of elastic components, improves installation accuracy and production efficiency, and saves labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of in-pipe elastic member mounting mechanisms, including pipe fitting, limiting assembly, elastic member, push rod and power part, power part is connected with the one end of push rod and provides power for push rod, push rod drives elastic member to enter pipe fitting, limiting assembly is set at the entrance of pipe fitting, limiting assembly is provided with the limiting guide cavity matched with elastic member, elastic member is elastically deformed when being located in limiting guide cavity, so that the part of elastic member and mounting position is mutually matched is compressed into pipe fitting. The utility model is high in installation precision, process is fast, elastic member can be kept stable and sent into specified mounting position during installation process, greatly saves artificial cost, and improves production efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of elastic component installation mechanism, specifically relating to an internal elastic component installation mechanism. Background Technology

[0002] In industrial production, it is often necessary to install elastic components inside pipes to meet the needs of different industrial products. In application scenarios where the elastic components have irregular shapes, workers usually need to use hand tools to push the elastic components into the pipe. If the pipe is too long or the elastic component has a special shape, it is easy for the elastic component to be difficult to push into the designated position, or the elastic component may rotate during the pushing process, making it difficult to install. In this case, the elastic component needs to be removed and pushed in again, which is a cumbersome, time-consuming, labor-intensive, and labor-intensive process. Utility Model Content

[0003] To address the aforementioned problems, this utility model aims to provide an in-pipe elastic component installation mechanism that offers high installation accuracy, fast process, and stable delivery of the elastic component to the designated installation position during installation, significantly reducing labor costs and improving production efficiency.

[0004] The technical problem solved by this utility model can be achieved by the following technical solution: an in-pipe elastic element installation mechanism, including a pipe, a limiting component, an elastic element, a push rod and a power unit. The power unit is connected to one end of the push rod and provides power to the push rod. The push rod drives the elastic element into the pipe. The limiting component is set at the entrance of the pipe and is provided with a limiting guide cavity that matches the elastic element. When the elastic element is located in the limiting guide cavity, it undergoes elastic deformation, so that the part of the elastic element that matches the installation position is compressed into the pipe.

[0005] The limiting component includes a first limiting part and a second limiting part. The limiting guide cavity of the first limiting part matches the upper part of the elastic member, and the limiting guide cavity of the second limiting part matches the lower part of the elastic member.

[0006] The end of the push rod is provided with a guide part and a limiting groove. The elastic element can be set in the limiting groove. When the push rod moves into the tube, the guide part causes the elastic element to move in coordination.

[0007] The power unit uses cylinders.

[0008] It also includes a fixing component, which includes a clamping part and a supporting part. The pipe fitting is mounted on the supporting part, and the clamping part is used to clamp the supporting part to fix the pipe fitting.

[0009] The clamping part uses a rotary cylinder.

[0010] It also includes at least one switch for controlling the start and stop of the power unit and the clamping unit.

[0011] Compared with the prior art, this utility model has the following advantages: the installation accuracy is high, the process is fast, and the elastic element can be stably fed into the designated installation position during the installation process, which greatly saves labor costs and improves production efficiency. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model. Figure 1 ;

[0013] Figure 2 This is a schematic diagram of the structure of this utility model. Figure 2 ;

[0014] Figure 3 This is a schematic diagram of the limit component;

[0015] Figure 4 This is a schematic diagram of the push rod structure;

[0016] Figure 5 This is a structural diagram of a fixed component.

[0017] In the figure: 1-pipe fitting, 2-limiting component, 21-first limiting part, 22-second limiting part, 23-limiting guide cavity, 3-elastic element, 4-push rod, 41-guide part, 42-limiting groove, 5-power part, 6-fixing component, 61-pressing part, 62-support part. Detailed Implementation

[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the following description, in conjunction with specific illustrations, further elaborates on this utility model.

[0019] In the description of this utility model, it should be understood that the terms "one end", "the other end", "outer side", "upper", "inner side", "horizontal", "coaxial", "center", "end", "length", "outer end", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0020] Combined with appendix Figures 1 to 5As shown, this embodiment discloses an in-pipe elastic element installation mechanism, including a pipe 1, a limiting component 2, an elastic element 3, a push rod 4, and a power unit 5. The pipe 1 has a slot that matches the elastic element 3 at the installation position of the elastic element 3. The power unit 5 is connected to one end of the push rod 4 and provides power to the push rod 4 so that the push rod 4 can move along the pipe 1. In this embodiment, the power unit 5 adopts a cylinder structure, but other similar structures commonly used in the prior art can also be adopted. The push rod 4 drives the elastic element 3 into the pipe 1.

[0021] In summary, the limiting component 2 is located at the entrance of the pipe fitting 1. The limiting component 2 is provided with a limiting guide cavity 23 that matches the shape of the elastic element 3. The limiting guide cavity 23 also has a certain curvature, which allows the elastic element 3 to undergo elastic deformation when it is located in the limiting guide cavity 23. This causes the elastic element 3 to be compressed into the pipe fitting 1 in an orientation that matches the installation position. After entering the pipe fitting 1, the elastic element 3 will continue to be compressed due to the inner wall of the pipe fitting 1. When the elastic element 3 moves to the slot, the elastic element 3 will elastically reset, that is, the installation of the elastic element 3 is complete.

[0022] Based on the above installation structure, the limiting component 2 includes a first limiting part 21 and a second limiting part 22. The shape of the limiting guide cavity 23 of the first limiting part 21 matches the upper part of the elastic member 3, enabling it to compress the upper part of the elastic member 3. The shape of the limiting guide cavity 23 of the second limiting part 22 matches the lower part of the elastic member 3, enabling it to compress the lower part of the elastic member 3. The first limiting part 21 is located on one side of the second limiting part 22. The positional relationship between the first limiting part 21 and the second limiting part 22 is based on the attached drawing. In actual product use, the on-site positional relationship shall prevail, and it can also be an up-down or front-back positional relationship.

[0023] In summary, the size of the limiting guide cavity 23 is not greater than the inner diameter of the pipe fitting 1, so that the compressed elastic element 3 can be sent into the pipe fitting 1.

[0024] In conjunction with the above installation structure, the end of the push rod 4 is provided with a guide part 41 and a limiting groove 42. The elastic element 3 can be placed in the limiting groove 42. Before installation, the elastic element 3 is set to a position that matches the groove, and at the same time, it is prevented that the elastic element 3 will move randomly or detach from the push rod 4 during movement. The guide part 41 abuts against the front end of the elastic element 3. When the push rod 4 moves into the pipe 1, the guide part 41 can push the elastic element 3, so that the elastic element 3 can move in coordination. After the elastic element 3 is installed, the push rod 4 moves out of the pipe 1, and the guide part 41 retracts along the cavity of the elastic element 3 to avoid the situation where the elastic element 3 is taken out of the pipe 1.

[0025] In conjunction with the above, this utility model also includes a fixing component 6, which includes a pressing part 61 and a supporting part 62. The supporting part 62 is provided with a groove for placing the pipe fitting 1. The lower part of the pipe fitting 1 is disposed on the groove of the supporting part 62. The pressing part 61 is used to apply pressure to the supporting part 62, thereby pressing the supporting part 62. The supporting part 62 applies pressure to both sides of the pipe fitting 1, thereby fixing the pipe fitting 1 during installation and preventing the pipe fitting 1 from shifting when the elastic element 3 moves inside the pipe fitting 1. The positional relationship between the fixing component 6 and the pipe fitting 1 is based on the attached drawings. In the specific product use, the positional relationship on site shall prevail. It can also be a vertical or front-back positional relationship. In this embodiment, the pressing part 61 adopts a rotary cylinder structure, but other similar structures commonly used in the prior art can also be adopted.

[0026] In conjunction with the above, it also includes at least one switch 7, which is used to control the start and stop of the power unit 5 and the clamping unit 61.

[0027] This invention features high installation precision and a fast process. During installation, the elastic element can be stably fed into the designated installation position, significantly saving labor costs and improving production efficiency.

[0028] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the utility model. Any simple modifications, equivalent changes, or alterations made to the above embodiments based on the technical principles of the present utility model shall still fall within the scope of the technical solution of the present utility model.

Claims

1. A pipe-mounted elastic element installation mechanism, comprising a pipe fitting (1), a limiting assembly (2), an elastic element (3), a push rod (4), and a power unit (5), wherein the power unit (5) is connected to one end of the push rod (4) and provides power to the push rod (4), and the push rod (4) drives the elastic element (3) into the pipe fitting (1), characterized in that: The limiting component (2) is set at the entrance of the pipe fitting (1). The limiting component (2) is provided with a limiting guide cavity (23) that matches the elastic element (3). When the elastic element (3) is located in the limiting guide cavity (23), it undergoes elastic deformation, so that the part of the elastic element (3) that matches the installation position is compressed into the pipe fitting (1).

2. The tube elastic element installation mechanism according to claim 1, characterized in that: The limiting component (2) includes a first limiting part (21) and a second limiting part (22). The limiting guide cavity (23) of the first limiting part (21) matches the upper part of the elastic member (3), and the limiting guide cavity (23) of the second limiting part (22) matches the lower part of the elastic member (3).

3. The tube-mounted elastic element installation mechanism according to claim 1, characterized in that: The end of the push rod (4) is provided with a guide part (41) and a limiting groove (42). The elastic element (3) can be set in the limiting groove (42). When the push rod (4) moves into the tube (1), the guide part (41) causes the elastic element (3) to move in coordination.

4. A tube-mounted elastic element installation mechanism according to any one of claims 1 to 3, characterized in that: The power unit (5) uses a cylinder.

5. The tube elastic element installation mechanism according to claim 4, characterized in that: It also includes a fixing component (6), which includes a clamping part (61) and a supporting part (62). The pipe fitting (1) is disposed on the supporting part (62), and the clamping part (61) is used to clamp the supporting part (62) to fix the pipe fitting (1).

6. The tube elastic element installation mechanism according to claim 5, characterized in that: The clamping part (61) is a rotary cylinder.

7. The tube elastic element installation mechanism according to claim 6, characterized in that: It also includes at least one switch (7) for controlling the start and stop of the power unit (5) and the clamping unit (61).