Mountaineering buckle elastic piece installing machine

By designing a carabiner shrapnel installation machine, the coordinated work of transfer components, spring transport components and shrapnel transport components is solved, and the assembly efficiency of carabiner is improved.

CN222920008UActive Publication Date: 2025-05-30NINGCHANG IND TECH CO LTD
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Patent Information

Application Number
CN202421222944.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-31
Publication Date
2025-05-30
Estimated Expiration
2034-05-31

AI Technical Summary

Technical Problem

During the carabiner assembly process, the springs and shrapnel are small in size, which leads to inconvenient installation and affects assembly efficiency.

Method used

A carabiner shrapnel mounting machine is designed, including transfer components, spring transport components and shrapnel transport components. Through the coordinated work of rotating discs, vibrating discs, cylinders and other components, the efficient pre-installation of springs and shrapnels is achieved.

Benefits of technology

Through this mounting machine, pre-installation of springs and shrapnels can be performed quickly and accurately, improving the assembly efficiency of carabiners and reducing the complexity of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a carabiner shrapnel installing machine, it includes transfer subassembly, spring transport subassembly and shrapnel transport subassembly, transfer subassembly includes the rotary disk, first fixed disk and rotary motor, first fixed disk is located the rotary disk top, the upper end of rotary disk is provided with placing platform, and the rotary motor is located on the rotary disk top. Springs and elastic pieces can be placed on the placing platform, the rotating motor drives the rotating disc to rotate, the spring conveying assembly and the elastic piece conveying assembly are located on one side of the rotating disc, and the output end of the spring conveying assembly and the output end of the elastic piece conveying assembly are located at the upper end of the rotating disc. The rotating disc can transfer the placing platform from the lower end of the output end of the spring conveying assembly to the lower end of the output end of the elastic piece conveying assembly. The mountaineering buckle assembling device has the effect of improving mountaineering buckle assembling efficiency.
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Description

Technical Field

[0001] This application relates to the technical field of carabiner assembly machines, and in particular to a carabiner spring piece installation machine. Background Art

[0002] A carabiner consists of a locking ring, a door body, a bolt, a spring piece and a spring. When assembling the carabiner, the spring is placed inside one end of the door body, then one end of the spring piece is inserted into the outer end of the spring, and then one end of the door body with the spring and the spring piece is inserted into one end of the locking ring. After that, the bolt is inserted into the connection between the door body and the locking ring; during the assembly process of the carabiner, the staff needs to sequentially place the spring and the spring piece inside one end of the door body. Since the spring and the spring piece are small in size, it is very inconvenient to install them, thus affecting the assembly efficiency of the carabiner. Content of the Utility Model

[0003] The purpose of the present utility model is to provide a carabiner spring piece installation machine in view of the defects and deficiencies of the prior art.

[0004] To achieve the above purpose, the present utility model adopts the following technical solutions:

[0005] It includes a transfer component, a spring transportation component, and a shrapnel transportation component. The transfer component includes a rotating disk, a first fixed disk, and a rotating motor. The first fixed disk is located above the rotating disk. An installation platform is provided at the upper end of the rotating disk, and the installation platform can be used to place springs and shrapnel. The rotating motor drives the rotating disk to rotate. The spring transportation component and the shrapnel transportation component are respectively located on one side of the rotating disk, and the output ends of the spring transportation component and the shrapnel transportation component are respectively located at the upper end of the rotating disk. The rotating disk can transfer the installation platform from the lower end of the output end of the spring transportation component to the lower end of the output end of the shrapnel transportation component. The spring transportation component includes a first vibrating disk, an output pipe, a mounting plate, a screening plate, and a screening cylinder. A through hole corresponding to the second placement groove is opened at the upper end of the mounting plate. A screening groove is opened at the upper end of the screening plate. One end of the screening plate is arranged at the output end of the screening cylinder. The screening groove corresponds to the lower end of the output pipe. The screening cylinder pushes the screening plate so that the screening groove corresponds to the through hole. The installation platform includes an installation plate, a fixing strip, a clamping strip, a stabilizing strip, a compression spring, and a driving cylinder. The fixing strip, the clamping strip, and the stabilizing strip are located on the installation plate. The clamping strip is rotatably connected to the upper end of the mounting plate. The clamping strip and the fixing strip clamp each other. A first placement groove is opened on one side of the clamping strip, and a second placement groove is opened on one side of the fixing strip. The first placement groove and the second placement groove correspond to each other. The compression spring is located between the clamping strip and the stabilizing strip. The output end of the driving cylinder is provided with a driving block, and one end of the driving block is aligned between the clamping strip and the fixing strip. The shrapnel transportation component includes a second vibrating disk, a horizontal cylinder, a vertical cylinder, and a first clamping cylinder. The vertical cylinder is arranged at the output end of the horizontal cylinder. The first clamping cylinder is arranged below the output end of the vertical cylinder. The output end of the first clamping cylinder moves to the outlet of the second vibrating disk under the drive of the horizontal cylinder and the vertical cylinder.

[0006] Preferably, a first guiding surface is provided on the side wall of one end of the clamping strip, and a second guiding surface that cooperates with the first guiding surface is provided on the side wall of one end of the driving block.

[0007] Preferably, the shrapnel transportation component further includes a steering component. The steering component includes a second clamping cylinder, a rotating cylinder, and a propulsion cylinder. The propulsion cylinder is arranged vertically upward. The rotating cylinder is arranged on one side of the output end of the propulsion cylinder. The second clamping cylinder is horizontally placed and arranged at the output end of the rotating cylinder. The output end of the second clamping cylinder is located between the outlet of the second vibrating disk and the output end of the first clamping cylinder.

[0008] Preferably, an adjusting clamping cylinder is arranged below the transverse cylinder. The output end of the adjusting clamping cylinder is provided with two adjusting blocks, and between the two adjusting blocks is above the second placement groove.

[0009] In summary, the beneficial technical effects of the present application are as follows:

[0010] When it is necessary to pre-install the spring and the elastic piece, start the first vibrating disk to transport the spring to the outlet of the first vibrating disk, then slide it into the output pipe, and then slide down from the lower end of the output pipe into the screening groove of the screening plate. Then, the screening cylinder pushes the screening plate to move, so that one spring in the screening groove moves until the screening groove corresponds to the through hole. Subsequently, the spring passes through the through hole and falls onto the placement platform. At this time, the driving cylinder drives the driving block to move forward. Under the action of the first guiding surface and the second guiding surface, the clamping strip rotates, so that the first placement groove and the second placement groove move away from each other. At this time, the spring falls between the first placement groove and the second placement groove. Then, the driving cylinder drives the driving block to move in the reverse direction. However, under the action of the compressed spring, the clamping strip moves closer to the fixed strip, so that the first placement groove and the second placement groove clamp the spring. Then, the rotating cylinder drives the rotating disk to rotate, and transports the placement platform from below the mounting plate to below the transverse cylinder. After that, the second vibrating disk transports the elastic piece to the opening, and the pushing cylinder drives the rotating cylinder and the second clamping cylinder to descend. The output end of the second clamping cylinder approaches the outlet of the second vibrating disk and clamps the outermost elastic piece. Subsequently, the rotating cylinder rotates the second clamping cylinder. Then, the first clamping cylinder clamps the other end of the elastic piece, so that the mounting end of the elastic piece is arranged downward. Subsequently, the first clamping cylinder moves above the placement platform under the drive of the vertical cylinder and the transverse cylinder. When the output end of the first clamping cylinder is between the two adjusting blocks, the adjusting clamping cylinder drives the two adjusting blocks to approach each other, so that the two adjusting blocks clamp the elastic piece, thereby adjusting the elastic piece to keep the mounting orientation. Then, the first clamping cylinder inserts one end of the elastic piece into the inside of the upper end of the spring, so as to pre-install the spring and the elastic piece, making the subsequent installation of the climbing buckle more convenient and improving the assembly efficiency of the climbing buckle. Description of the Drawings

[0011] Figure 1 is a schematic structural diagram of the installation machine of the present utility model;

[0012] Figure 2 is a schematic structural diagram of the placement platform and the spring transportation component of the present utility model;

[0013] Figure 3 is a schematic structural diagram of the placement platform of the present utility model;

[0014] Figure 4 is a schematic structural diagram of the placement platform and the elastic piece transportation component of the present utility model.

[0015] In the figure: 1, transfer assembly; 11, rotating disk; 12, first fixed disk; 13, second fixed disk; 14, rotating motor; 2, spring transport assembly; 21, first vibration disk; 22, first mounting frame; 23, output pipe; 24, mounting plate; 241, through hole; 25, screening plate; 251, screening slot; 26, screening cylinder; 3, placement platform; 31, placement plate; 32, fixing strip; 321, second placement slot; 33, clamping strip; 331, first placement slot; 332, first A guide surface; 34, a stabilizing bar; 35, a compression spring; 36, a driving cylinder; 361, a driving block; 362, a second guide surface; 4, a shrapnel transport assembly; 41, a second vibration plate; 42, a steering assembly; 421, a second mounting frame; 422, a second clamping cylinder; 423, a rotating cylinder; 424, a thrust cylinder; 43, a horizontal cylinder; 44, a vertical cylinder; 45, a first clamping cylinder; 46, a guide rod; 47, a sliding block; 5, an adjustment clamping cylinder; 6, an adjustment block. DETAILED DESCRIPTION

[0016] The utility model is further described below in conjunction with the accompanying drawings.

[0017] The embodiment of the present application discloses a carabiner spring installation machine.

[0018] Reference Figure 1 , including a transfer component 1, a spring transport component 2 and a shrapnel transport component 4. The transfer component 1 includes a rotating disk 11, a first fixed disk 12, a second fixed disk 13 and a rotating motor 14. The rotating disk 11, the first fixed disk 12 and the second fixed disk 13 are arranged vertically upward, the first fixed disk 12 and the second fixed disk 13 are fixedly installed, the output end of the rotating motor 14 is fixed to the lower end of the rotating disk 11, and the spring transport component 2 and the shrapnel transport component 4 are respectively located on the outside of the rotating disk 11.

[0019] Reference Figure 2 The spring transport assembly 2 includes a first vibration disk 21, a first mounting frame 22, an output pipe 23, a mounting plate 24, a screening plate 25 and a screening cylinder 26. The screening cylinder 26 is installed and fixed to the outer side of the upper end of the first mounting frame 22, the mounting plate 24 is installed and fixed to the inner side of the upper end of the first mounting frame 22, the screening plate 25 is installed at the output end of the screening cylinder 26, the mounting plate 24 and the screening plate 25 are stacked up and down, a through hole 241 is provided at the upper end of the mounting plate 24, and a screening groove 251 is provided on the upper end surface of the screening plate 25. The first vibration disk 21 is located on one side of the first mounting frame 22, one end of the output pipe 23 is connected to the outlet of the first vibration disk 21, and the other end of the output pipe 23 vertically corresponds to the screening groove 251 of the screening plate 25.

[0020] Reference Figure 3, a placement platform 3 is placed on the upper end of the rotating disk 11. The placement platform 3 includes a placement plate 31, a fixing strip 32, a clamping strip 33, a stabilizing strip 34, a compression spring 35, and a driving cylinder 36. The mounting plate 24 is fixedly installed above the rotating disk 11. The fixing strip 32 and the stabilizing strip 34 are fixedly installed on the placement plate 31. The fixing strip 32, the clamping strip 33, and the stabilizing strip 34 are arranged in sequence. The clamping strip 33 is rotatably connected to the upper end surface of the mounting plate 24. A first placement groove 331 is formed on one side of the clamping strip 33. A second placement groove 321 is formed on one side of the fixing strip 32. The first placement groove 331 and the second placement groove 321 correspond to each other. One end of the compression spring 35 is fixedly clamped inside the side wall of the stabilizing strip 34, and the other end is fixedly clamped inside the side wall of the clamping strip 33. The driving cylinder 36 is fixedly installed on the upper end surface of the first fixed disk 12. The output end of the driving cylinder 36 is fixedly bolted with a driving block 361. A first guiding surface 332 is formed on the inner side wall of the clamping strip 33 near one end of the first fixed disk 12. A second guiding surface 362 that cooperates with the first guiding surface 332 is formed on the side wall of one end of the driving block 361.

[0021] Start the first vibrating disk 21, transport the spring to the outlet of the first vibrating disk 21, then slide it into the output pipe 23, and then slide into the screening groove 251 of the screening plate 25 from the lower end of the output pipe 23. Then the screening cylinder 26 pushes the screening plate 25 to move, so that one spring in the screening groove 251 moves until the screening groove 251 corresponds to the through hole 241. Subsequently, the spring passes through the through hole 241 and drops onto the placement platform 3. At this time, the driving cylinder 36 drives the driving block 361 to move forward. Under the action of the first guiding surface 332 and the second guiding surface 362, the clamping strip 33 rotates, so that the first placement groove 331 and the second placement groove 321 move away from each other. At this time, the spring drops between the first placement groove 331 and the second placement groove 321. Then the driving cylinder 36 drives the driving block 361 to move in the reverse direction. However, under the action of the compression spring 35, the clamping strip 33 moves closer to the fixing strip 32, so that the first placement groove 331 and the second placement groove 321 clamp the spring. Then the rotating cylinder 423 drives the rotating disk 11 to rotate.

[0022] Refer to Figure 4 , the elastic sheet transportation assembly 4 includes a second vibrating disk 41, a steering assembly 42, a transverse cylinder 43, a vertical cylinder 44, and a first clamping cylinder 45. The transverse cylinder 43 is fixed to the upper end surface of the second fixed disk 13. A guiding rod 46 is fixedly installed on the lower end surface of the second fixed disk 13. The output end of the transverse cylinder 43 is fixed with a sliding block 47. The sliding block 47 horizontally slides on the guiding rod 46. The vertical cylinder 44 is vertically downward and fixed to the side wall of the sliding block 47. The output end of the vertical cylinder 44 is fixedly bolted with a support frame. The first clamping cylinder 45 is fixed to the side wall of the support frame and is inclined.

[0023] The steering assembly 42 includes a second mounting bracket 421, a second clamping cylinder 422, a rotary cylinder 423, and a propulsion cylinder 424. The propulsion cylinder 424 is placed vertically upward and fixedly mounted on the side wall of the second mounting bracket 421. The rotary cylinder 423 is fixed to one side of the output end of the propulsion cylinder 424. The second clamping cylinder 422 is horizontally placed and fixed to the outside of the output end of the rotary cylinder 423. The clamping end of the second clamping cylinder 422 is located above the outlet of the second vibrating disk 41.

[0024] An adjustment clamping cylinder 5 is fixed to the upper end of the first fixed disk 12. The output end of the adjustment clamping cylinder 5 is fixed with two adjustment blocks 6 by bolts. Between the two adjustment blocks 6 is located above the second placement groove 321.

[0025] The placement platform 3 is transported from below the mounting plate 24 to below the transverse cylinder 43. Then, the second vibrating disk 41 transports the elastic piece to the opening. The propulsion cylinder 424 drives the rotary cylinder 423 and the second clamping cylinder 422 to descend. When the output end of the second clamping cylinder 422 approaches the outlet of the second vibrating disk 41 and clamps the outermost elastic piece. Subsequently, the rotary cylinder 423 rotates the second clamping cylinder 422. Then, the first clamping cylinder 45 clamps the other end of the elastic piece, making the mounting end of the elastic piece face downward. Subsequently, the first clamping cylinder 45 moves above the placement platform 3 under the drive of the vertical cylinder 44 and the transverse cylinder 43. When the output end of the first clamping cylinder 45 is between the two adjustment blocks 6, the adjustment clamping cylinder 5 drives the two adjustment blocks 6 to approach each other, so that the two adjustment blocks 6 clamp the elastic piece, thereby adjusting the elastic piece to keep its mounting orientation. Then, the first clamping cylinder 45 inserts one end of the elastic piece into the inside of the upper end of the spring.

[0026] The above is only the preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made according to the structures, features, and principles described in the scope of the patent application of the present invention are included in the scope of the patent application of the present invention.

Claims

1. A carabiner spring installation machine, characterized in that: The invention comprises a transfer assembly (1), a spring transport assembly (2) and a spring sheet transport assembly (4); the transfer assembly (1) comprises a rotating disk (11), a first fixed disk (12) and a rotating motor (14); the first fixed disk (12) is located above the rotating disk (11); a placement platform (3) is provided at the upper end of the rotating disk (11);The placement platform (3) can be used to place springs and shrapnel. The rotating motor (14) drives the rotating disk (11) to rotate. The spring transport component (2) and the shrapnel transport component (4) are respectively located on one side of the rotating disk (11). The output ends of the spring transport component (2) and the shrapnel transport component (4) are respectively located on the upper end of the rotating disk (11). The rotating disk (11) can transfer the placement platform (3) from the lower end of the output end of the spring transport component (2) to the lower end of the output end of the shrapnel transport component (4). The spring transport component (2) comprises a first vibration disk (21), an output pipe (23), a mounting plate (24), a screen A selection plate (25) and a screening cylinder (26), wherein the upper end of the mounting plate (24) is provided with a through hole (241) corresponding to the second placement groove (321), the upper end of the screening plate (25) is provided with a screening groove (251), one end of the screening plate (25) is arranged at the output end of the screening cylinder (26), the screening groove (251) corresponds to the lower end of the output pipe (23), the screening cylinder (26) pushes the screening plate (25) so that the screening groove (251) corresponds to the through hole (241), and the placement platform (3) comprises a placement plate (31), a fixing bar (32), a clamping bar (33), a stabilizing bar (34), and a compression spring (35) and a driving cylinder (36), the fixing bar (32), the clamping bar (33) and the stabilizing bar (34) are located on the placement plate (31), the clamping bar (33) is rotatably connected to the upper end of the installation plate (24), the clamping bar (33) and the fixing bar (32) are mutually clamped, one side of the clamping bar (33) is provided with a first placement groove (331), one side of the fixing bar (32) is provided with a second placement groove (321), the first placement groove (331) and the second placement groove (321) are mutually corresponding, the compression spring (35) is located between the clamping bar (33) and the stabilizing bar (34), the driving cylinder (36) 6) is provided with a driving block (361), one end of the driving block (361) is aligned between the clamping bar (33) and the fixing bar (32), the shrapnel transport assembly (4) comprises a second vibration plate (41), a transverse cylinder (43), a vertical cylinder (44) and a first clamping cylinder (45), the vertical cylinder (44) is provided at the output end of the transverse cylinder (43), the first clamping cylinder (45) is provided below the output end of the vertical cylinder (44), and the output end of the first clamping cylinder (45) is moved to the outlet of the second vibration plate (41) under the drive of the transverse cylinder (43) and the vertical cylinder (44).

2. A carabiner spring installation machine according to claim 1, characterized in that: A first guide surface (332) is formed on the side wall at one end of the clamping strip (33), and a second guide surface (362) cooperating with the first guide surface (332) is formed on the side wall at one end of the driving block (361).

3. A carabiner spring installation machine according to claim 1, characterized in that: The shrapnel transport assembly (4) further comprises a steering assembly (42), wherein the steering assembly (42) comprises a second clamping cylinder (422), a rotating cylinder (423) and a propulsion cylinder (424), wherein the propulsion cylinder (424) is arranged vertically upward, and the rotating cylinder (423) is arranged at one side of the output end of the propulsion cylinder (424). The second clamping cylinder (422) is placed horizontally and is arranged at the output end of the rotating cylinder (423), and the output end of the second clamping cylinder (422) is located between the outlet of the second vibration plate (41) and the output end of the first clamping cylinder (45).

4. A carabiner spring installation machine according to claim 1, characterized in that An adjusting clamping cylinder (5) is arranged below the transverse cylinder (43), and two adjusting blocks (6) are arranged at the output end of the adjusting clamping cylinder (5), and a portion between the two adjusting blocks (6) is located above the second placement groove (321).