Adjustable anti-shake device for conveying copper products

By designing an adjustable anti-vibration device for conveying copper products, and utilizing a release mechanism and auxiliary mechanisms, the problem of rigid pressure rollers being unable to release pressure quickly was solved, enabling undamaged conveying of copper parts and improving conveying efficiency and product quality.

CN224257857UActive Publication Date: 2026-05-19JIANGXI PRO JIANGTONG LONGCHANG PRECISE COPPER PIPE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI PRO JIANGTONG LONGCHANG PRECISE COPPER PIPE CO LTD
Filing Date
2025-07-31
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In the current copper material conveying process, rigid pressure rollers cannot release pressure quickly, resulting in indentations or deformation on the surface of copper parts, increasing the scrap rate.

Method used

Design an adjustable anti-shake device for conveying copper products. Through a release mechanism and an auxiliary mechanism, the impact force is transmitted by a contact wheel to disengage the clamp, thereby achieving zero pressure and avoiding damage from hard impacts.

Benefits of technology

It effectively prevents indentations or deformation on the surface of copper parts, improves conveying efficiency, and reduces scrap rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an adjustable anti-shake device for conveying copper products, which comprises a mounting seat, a sliding seat connected to the mounting seat in a sliding manner, two clamping grooves formed in the right part of the sliding seat, a clamping piece connected to the sliding seat in a sliding manner, two clamping grooves formed in the clamping piece, a screw rod frame connected to the right part of the mounting seat in a threaded manner, the clamping piece connected with the screw rod frame in a rotating manner, and the clamping piece connected with the screw rod frame in a threaded manner. A fixing rod is connected to the upper side of the left portion of the sliding seat, two bearings are connected to the fixing rod, a contact wheel is connected between the bearings, a first clamping block is slidably connected between the sliding seat and the clamping piece, and a releasing mechanism is arranged on the clamping piece. By arranging the releasing mechanism, when the copper material shakes suddenly and violently, impact force is transmitted to the first clamping block through the contact wheel, high-frequency vibration of the copper material instantly overcomes a second spring threshold value, the first clamping block is driven to be separated from the locking position, and therefore rigid connection between the sliding seat and the clamping piece is relieved, the contact wheel is separated from the copper material, and pressure return to zero is achieved; and surface indentation or structural damage of the copper piece is effectively avoided.
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Description

Technical Field

[0001] This utility model relates to the field of copper product manufacturing technology, and in particular to an adjustable anti-shake device for conveying copper products. Background Technology

[0002] In the field of precision copper processing, copper materials typically have high requirements for surface finish and dimensional accuracy. Shaking, vibration, or displacement during the conveying process can lead to problems such as scratches, deformation, and positional deviation, affecting product quality and subsequent processes. Therefore, anti-shaking treatment is required during conveying to reduce or eliminate harmful vibrations of copper parts during the conveying process. Existing conveyor lines mostly use rigid pressure roller anti-shaking devices, which can suppress normal vibrations. However, when copper parts encounter sudden jumps, the rigid pressure rollers cannot release pressure quickly, which can easily cause indentations or deformation on the surface of the copper parts, leading to an increase in scrap rate.

[0003] To address the aforementioned issues, an adjustable anti-shake device for conveying copper products has been developed. Utility Model Content

[0004] In order to overcome the shortcomings of existing anti-vibration devices, which cannot quickly release pressure from rigid rollers when copper parts encounter sudden vibrations, easily causing indentations or deformation on the surface of copper parts and leading to an increase in scrap rate, this utility model provides an adjustable anti-vibration device for conveying copper products.

[0005] The technical solution of this utility model is as follows:

[0006] An adjustable anti-shake device for conveying copper products includes a mounting base, a sliding seat slidably connected to the mounting base, two slots on the right side of the sliding seat, a locking element slidably connected to the sliding seat, and two slots on the locking element, a screw rod frame threadedly connected to the right side of the mounting base, the locking element rotatably connected to the screw rod frame, a fixing rod connected to the upper left side of the sliding seat, two bearings connected to the fixing rod, a contact wheel connected between the bearings, a first locking block slidably connected between the sliding seat and the locking element, and a release mechanism provided on the locking element.

[0007] Optionally, the release mechanism includes a fixing plate, and two fixing plates are connected to the upper front side of the locking member. Each fixing plate is slidably connected to a second locking block. Each second locking block has an inclined structure. A second spring is connected between each second locking block and the adjacent fixing plate. Four first springs are connected between the lower part of the first locking block and the locking member.

[0008] Optionally, it also includes an auxiliary mechanism, which includes a mounting bracket, and the mounting bracket is also connected to the fixed rod. An auxiliary wheel is rotatably connected to the left side of the mounting bracket.

[0009] Optionally, the mounting base has a plurality of mounting holes.

[0010] Optionally, the right side of the lead screw holder is provided with an assistive grip.

[0011] Optionally, each of the second blocks is provided with a spherical assist component.

[0012] By adopting the above technical solutions, the beneficial effects of this utility model are:

[0013] This invention features a release mechanism. When the copper material experiences sudden and severe vibration, the impact force is transmitted to the first locking block via the contact wheel. Its high-frequency vibration instantly overcomes the second spring threshold, driving the first locking block to disengage from the locking position. This releases the rigid connection between the sliding seat and the locking component, causing the contact wheel to disengage from the copper material and achieving zero pressure. This effectively prevents surface indentations or structural damage to the copper material. Simultaneously, the first locking block can automatically reset under the influence of gravity through the inclined structure of the second locking block, effectively ensuring the efficiency of copper material conveying. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0015] Figure 2 This is a partial cross-sectional three-dimensional structural diagram of the present invention.

[0016] Figure 3 This is a partial cross-sectional three-dimensional structural diagram of the release mechanism of this utility model.

[0017] Figure 4 This is a three-dimensional structural diagram of the auxiliary mechanism of this utility model.

[0018] Explanation of reference numerals in the attached drawings: 1: Mounting base, 2: Sliding base, 3: Clamping element, 4: Lead screw bracket, 5: Fixed rod, 6: Contact wheel, 7: Bearing, 8: First clamping block, 9: Release mechanism, 91: First spring, 92: Fixed plate, 93: Second clamping block, 94: Second spring, 10: Auxiliary mechanism, 101: Mounting bracket, 102: Auxiliary wheel. Detailed Implementation

[0019] The embodiments of this utility model will be described below with reference to the accompanying drawings. Example 1

[0020] An adjustable anti-shake device for conveying copper products, such as... Figure 1 and Figure 2As shown, it includes a mounting base 1 with several mounting holes. A sliding seat 2 is slidably connected to the mounting base 1. Two slots are opened on the right side of the sliding seat 2. A locking piece 3 is slidably connected to the sliding seat 2. The locking piece 3 also has two slots. A lead screw frame 4 is threadedly connected to the right side of the mounting base 1. An assist handle is provided on the right side of the lead screw frame 4. The locking piece 3 is rotatably connected to the lead screw frame 4. A fixing rod 5 is connected to the upper left side of the sliding seat 2. Two bearings 7 are connected to the fixing rod 5. A contact wheel 6 is connected between the bearings 7. A first locking block 8 is slidably connected between the sliding seat 2 and the locking piece 3. A release mechanism 9 is provided on the locking piece 3.

[0021] like Figures 1-3 As shown, the release mechanism 9 includes a fixed plate 92. Two fixed plates 92 are connected to the upper front side of the locking piece 3. Each fixed plate 92 is slidably connected to a second locking block 93. Each second locking block 93 has an inclined structure and a spherical assist component. Each second locking block 93 is connected to the adjacent fixed plate 92 by a second spring 94. Four first springs 91 are connected between the lower part of the first locking block 8 and the locking piece 3.

[0022] It should be noted that copper materials usually have high requirements for surface finish and dimensional accuracy. Shaking, vibration or displacement during the conveying process may cause scratches, deformation, positional deviation and other problems, affecting product quality and subsequent processes. Therefore, anti-shaking treatment is required during conveying to reduce or eliminate harmful vibrations of copper parts during the conveying process. When using this device, first fix the mounting base 1 in the designated position through the mounting hole, and then rotate the power assist handle according to the actual operation requirements to drive the lead screw frame 4 to move along the mounting base 1. Since the sliding seat 2 and the clamp 3 are engaged by the first clamp block 8, the sliding seat 2 and the clamp 3 are in a relatively fixed state. The movement of the lead screw frame 4 will drive the clamp 3 to move, which in turn will drive the sliding seat 2 to slide on the mounting base 1, thereby adjusting the fixed rod 5 and the contact wheel 6 to the appropriate position.

[0023] The copper material is then conveyed through two contact wheels 6. The contact wheels 6 rotate with low friction via bearings 7 and move synchronously with the conveyed product. The two contact wheels 6 continuously limit the movement of the copper material and absorb the vibration during the conveying process, thereby suppressing the jumping of the copper material. If the copper material encounters severe shaking during the conveying process, the rigid impact will damage the copper material because the sliding seat 2 and the clamp 3 are in a relatively fixed state. Therefore, it is necessary to release the impact in time.

[0024] When the copper part suddenly vibrates violently, the impact force is transmitted to the sliding seat 2 through the contact wheel 6, forcing the first locking block 8 to generate high-frequency vertical vibration, instantly overcoming the threshold of the second spring 94. At the same time, the first spring 91 is stretched and disengaged from the locking block 8. The sliding seat 2 and the locking part 3 will disengage from their relatively fixed state, and the sliding seat 2 can slide freely on the mounting seat 1. The contact wheel 6 will disengage from the surface of the copper part, and the pressure on the surface of the contact wheel 6 will return to zero, thereby effectively avoiding hard impact damage to the copper material.

[0025] After releasing the impact, slide the sliding seat 2 and the locking piece 3 to their relative positions, and press down on the first locking block 8 so that the first locking block 8 is locked into the slot again. During the pressing process, the inclined structure on the second locking block 93 makes it easier for the first locking block 8 to reset downwards. At the same time, the second spring 94 is compressed by force, and the first spring 91 is compressed by squeezing. After the first locking block 8 is in the locked state at the bottom of the second locking block 93, the second spring 94 returns to its initial state. Example 2

[0026] Based on Example 1, such as Figure 1 and Figure 4 As shown, it also includes an auxiliary mechanism 10, which includes a mounting bracket 101. The mounting bracket 101 is also connected to the fixing rod 5. An auxiliary wheel 102 is rotatably connected to the left side of the mounting bracket 101.

[0027] It should be noted that the auxiliary wheel 102 can extend the stress point during copper material transportation, further limit the copper material deviation, and absorb some vibration, thereby improving the anti-shake effect.

[0028] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An adjustable anti-shake device for conveying copper products, characterized in that, It includes a mounting base (1), on which a sliding seat (2) is slidably connected. The right side of the sliding seat (2) has two slots. The sliding seat (2) is slidably connected to a locking piece (3), which also has two slots. The right side of the mounting base (1) is threadedly connected to a lead screw frame (4). The locking piece (3) is rotatably connected to the lead screw frame (4). The upper left side of the sliding seat (2) is connected to a fixing rod (5). The fixing rod (5) is connected to two bearings (7). A contact wheel (6) is connected between the bearings (7). The sliding seat (2) and the locking piece (3) are slidably connected to a first locking block (8). The locking piece (3) is provided with a release mechanism (9).

2. The adjustable anti-shake device for conveying copper products according to claim 1, characterized in that, The release mechanism (9) includes a fixed plate (92). Two fixed plates (92) are connected to the upper front side of the locking piece (3). A second locking block (93) is slidably connected to each fixed plate (92). The second locking block (93) has an inclined structure. A second spring (94) is connected between the second locking block (93) and the adjacent fixed plate (92). Four first springs (91) are connected between the lower part of the first locking block (8) and the locking piece (3).

3. The adjustable anti-shake device for conveying copper products according to claim 2, characterized in that, It also includes an auxiliary mechanism (10), which includes a mounting bracket (101). The mounting bracket (101) is also connected to the fixing rod (5). An auxiliary wheel (102) is rotatably connected to the left side of the mounting bracket (101).

4. The adjustable anti-shake device for conveying copper products according to claim 1, characterized in that, The mounting base (1) has several mounting holes.

5. The adjustable anti-shake device for conveying copper products according to claim 1, characterized in that, The right side of the lead screw frame (4) is equipped with an assist grip.

6. The adjustable anti-shake device for conveying copper products according to claim 2, characterized in that, The second card block (93) is equipped with a spherical assist component.