A press device for assembling a clamping nut

By designing a stamping device for assembling ferrule nuts, the problem of low efficiency in traditional manual assembly was solved, realizing automated stamping of ferrule nuts, reducing labor consumption, and improving production efficiency.

CN224525715UActive Publication Date: 2026-07-21KAIPING SEDAL TAP COMPONENTS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KAIPING SEDAL TAP COMPONENTS
Filing Date
2025-06-30
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional ferrule nut assembly relies on manual hammering, resulting in low production efficiency and a large consumption of human resources.

Method used

Design a stamping device for assembling ferrule nuts. Through the cooperation of a base, a positioning seat, a material box, a stamping drive cylinder, and a limit drive cylinder, the ferrule nuts are automatically stamped onto the parts to be assembled.

Benefits of technology

It improves the production efficiency of ferrule nut assembly, reduces manpower consumption, and achieves highly efficient automated production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of punch press devices for assembling sleeve nut, to punch sleeve nut to be installed piece, it includes pedestal, locating seat, spare box, punch driving cylinder and limit driving cylinder, pedestal is successively installed with locating seat and spare box on the top surface of one end;Locating seat is recessed into locating groove on top, and the side of locating groove towards spare box is provided with opening;Lower portion in spare box is formed with feeding channel through to its two sides and material blocking channel from the middle of feeding channel to its back, and upper portion in spare box is formed with material inlet channel from the middle of feeding channel to its top surface;Punch driving cylinder is set in the other end of pedestal corresponding with feeding channel, and the telescopic rod of punch driving cylinder is inserted into feeding channel and is provided with punch block on it;Limit driving cylinder is set in the rear of pedestal corresponding with material blocking channel, and limit block is provided on the telescopic rod of limit driving cylinder.The utility model can efficiently punch sleeve nut to be installed piece.
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Description

Technical Field

[0001] This utility model relates to the field of ferrule nut assembly technology, and in particular to a stamping device for ferrule nut assembly. Background Technology

[0002] Compression fittings are widely used assembly parts, applied in the assembly of many faucet adapters, pipe fittings, and flow meter fittings, and the demand for them remains very high. Traditionally, compression fittings are assembled manually by hammering them directly onto one end of the component. However, this manual assembly method is inefficient and consumes a significant amount of manpower. Utility Model Content

[0003] The purpose of this utility model is to provide a stamping device for assembling ferrule nuts.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A stamping device for assembling ferrule nuts, used to stamp ferrule nuts onto parts to be assembled, includes a base, a positioning seat, a material storage box, a stamping drive cylinder, and a limiting drive cylinder. The positioning seat and the material storage box are successively installed side by side on the top surface of one end of the base. The positioning seat has a positioning groove recessed in the top, and the positioning groove has an opening on the side facing the material storage box. The lower part of the material storage box has a feeding channel extending to both sides and a blocking channel extending from the middle of the feeding channel to its back. The upper part of the material storage box has an inlet channel extending from the middle of the feeding channel to its top surface. The feeding channel has an outlet corresponding to the positioning groove on the side of the material storage box facing the positioning seat and a first through-hole on the other side. The blocking channel has a second through-hole on the back of the material storage box. The inlet channel has an input port on the top surface of the material storage box.

[0006] The stamping drive cylinder is located at the other end of the base corresponding to the feeding channel. The telescopic rod of the stamping drive cylinder passes through the first through-hole into the feeding channel and a stamping block is provided thereon. The starting position of the stamping block is between the middle of the feeding channel and the first through-hole. The limiting drive cylinder is located at the rear of the base corresponding to the blocking channel. A limiting block is provided on the telescopic rod of the limiting drive cylinder. As the telescopic rod of the limiting drive cylinder extends, it drives the limiting block to pass through the middle of the feeding channel along the blocking channel.

[0007] As a further technical solution of this utility model: the stamping device for assembling the ferrule nut includes a stamping controller and a limit controller disposed outside the base, wherein the stamping controller controls the operation of the stamping drive cylinder and the limit controller controls the operation of the limit drive cylinder.

[0008] As a further technical solution of this utility model: the diameter of the discharge port is larger than the outer diameter of the ferrule nut, so that after the part to be installed is put into the positioning groove, one end of the part to be installed passes through the opening of the positioning groove into the discharge port.

[0009] As a further technical solution of this utility model: the feed channel is perpendicular to the feeding channel, and its diameter matches the outer diameter of the ferrule nut, so that after the ferrule nut is fed into the feed channel from the input port, the ferrule nut falls vertically down the feed channel towards the middle of the feeding channel.

[0010] As a further technical solution of this utility model: two spring pieces are provided on the two side walls of the feeding channel between the middle part and the discharge port.

[0011] Compared with the prior art, the beneficial effects of this utility model are: This utility model proposes a stamping device for assembling ferrule nuts. Through the cooperation between the base, positioning seat, material box, stamping drive cylinder and limit drive cylinder, it can efficiently stamp ferrule nuts onto the parts to be assembled, effectively reducing manpower consumption. Attached Figure Description

[0012] Figure 1 A schematic diagram of a stamping device for assembling ferrule nuts.

[0013] Figure 2 First sectional view of the stamping device for assembling the ferrule nut.

[0014] Figure 3 Second sectional view of the stamping device for assembling ferrule nuts. Detailed Implementation

[0015] The specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit the scope of protection of this utility model.

[0016] Please see Figure 1 , Figure 2 and Figure 3 A stamping device for assembling ferrule nuts, used to stamp ferrule nuts onto parts to be assembled, includes a base 10, a positioning seat 20, a material box 30, a stamping drive cylinder 40, and a limiting drive cylinder 50. The positioning seat 20 and the material box 30 are successively installed side by side on the top surface of one end of the base 10. The positioning seat 20 has a positioning groove 21 recessed in the top, and the positioning groove 21 has an opening on the side facing the material box 30.

[0017] The lower part of the material preparation box 30 has a feeding channel 31 extending to both sides and a blocking channel 32 extending from the middle of the feeding channel 31 to its back. The upper part of the material preparation box 30 has an inlet channel 33 extending from the middle of the feeding channel 31 to its top surface. The feeding channel 31 has an outlet 301 corresponding to the positioning groove 21 on the side of the material preparation box 30 facing the positioning seat 20 and a first through-hole 302 on the other side. The blocking channel 32 has a second through-hole 303 on the back of the material preparation box 30. The inlet channel 33 has an input port 304 on the top surface of the material preparation box 30.

[0018] The other end of the base 10 corresponding to the stamping drive cylinder 40 and the feeding channel 31 has the telescopic rod of the stamping drive cylinder 40 passing through the first through hole 302 into the feeding channel 31 and a stamping block 41 on it. The starting position of the stamping block 41 is between the middle of the feeding channel 31 and the first through hole 302.

[0019] The limiting drive cylinder 50 is positioned behind the base 10, corresponding to the material blocking channel 32. The telescopic rod of the limiting drive cylinder 50 is provided with a limiting block 51. The starting position of the limiting block 51 is in the second through-hole 303. As the telescopic rod of the limiting drive cylinder 50 extends, it drives the limiting block 51 to pass through the middle of the feeding channel 31 along the material blocking channel 32.

[0020] Furthermore, in this embodiment, the stamping device for assembling the ferrule nut includes a stamping controller 60 and a limit controller 70 disposed outside the base 10. The stamping controller 60 controls the operation of the stamping drive cylinder 40, and the limit controller 70 controls the operation of the limit drive cylinder 50.

[0021] Furthermore, in this embodiment, the diameter of the discharge port 301 is larger than the outer diameter of the ferrule nut, so that after the part to be installed is inserted into the positioning groove 21, one end of the part to be installed passes through the opening of the positioning groove 21 into the discharge port 301, and after the ferrule nut is pressed against one end of the part to be installed, it is easy to remove it from the discharge port 301.

[0022] Furthermore, in this embodiment, the feed channel 33 is perpendicular to the feeding channel 31, and its diameter matches the outer diameter of the ferrule nut. After the ferrule nut is fed into the feed channel 33 from the input port 304, the ferrule nut falls vertically down the feed channel 33 towards the middle of the feeding channel 31.

[0023] Furthermore, in this embodiment, two spring pieces 311 are provided on the two side walls between the middle part of the feeding channel 31 and the discharge port 301. These spring pieces 311 are positioned on the ferrule nut that falls into the middle of the feeding channel 31. As the telescopic rod of the stamping drive cylinder 40 extends, the ferrule nut presses the spring pieces 311 against the discharge port 301.

[0024] Understandably, the method of using the stamping device for assembling ferrule nuts according to this utility model includes the following steps: First, in the initial state, the telescopic rod of the limit drive cylinder 50 extends, and the limit block 51 passes through the middle of the feeding channel 31; Second, several ferrule nuts are fed one by one from the input port 304 into the feeding channel 33, and the ferrule nuts fall vertically along the feeding channel 33 towards the limit block 51; Third, the limit controller 70 controls the telescopic rod of the limit drive cylinder 50 to retract, driving the limit block 51 back to the initial position, and the ferrule nuts fall into the feeding channel. The fourth step involves inserting the part to be assembled into the positioning groove 21. One end of the part to be assembled passes through the opening of the positioning groove 21 into the discharge port 301. Then, the stamping controller 60 controls the extension rod of the stamping drive cylinder 40 to extend, pushing the ferrule nut from the middle of the feeding channel towards the discharge port 301 until the ferrule nut is engaged with one end of the part to be assembled. The fifth step involves removing the assembled part and repeating the fourth step until all the ferrule nuts placed in the second step are used up. The sixth step involves the limit controller 70 controlling the extension rod of the limit drive cylinder 50 to extend, returning to the initial state. By repeating the above six steps, the ferrule nut can be efficiently stamped onto the part to be assembled.

[0025] In summary, the stamping device for assembling ferrule nuts of this utility model, through the cooperation between the base 10, positioning seat 20, material box 30, stamping drive cylinder 40 and limit drive cylinder 50, can efficiently stamp ferrule nuts onto the parts to be assembled, effectively reducing manpower consumption.

[0026] Any combination of different embodiments of this utility model, provided it does not violate the inventive concept of this utility model, shall be considered as the disclosure of this utility model; any simple modifications to the technical solution and any combination of different embodiments within the scope of the inventive concept of this utility model, without violating the inventive concept of this utility model, shall be within the protection scope of this utility model.

Claims

1. A stamping device for assembling ferrule nuts, characterized in that: The system includes a base (10), a positioning seat (20), a material preparation box (30), a stamping drive cylinder (40), and a limit drive cylinder (50). The positioning seat (20) and the material preparation box (30) are installed side by side on the top surface of one end of the base (10). The positioning seat (20) has a positioning groove (21) recessed in the top, and the positioning groove (21) has an opening on the side facing the material preparation box (30). The lower part of the material preparation box (30) has a feeding channel (31) that extends to both sides of the box and a feeding channel (31) that extends from the middle of the feeding channel (31) to the material preparation box. The back of the material blocking channel (32) has an inlet channel (33) formed in the upper part of the material preparation box (30) that extends from the middle of the feeding channel (31) to its top surface. The feeding channel (31) has an outlet (301) corresponding to the positioning groove (21) on the side of the material preparation box (30) facing the positioning seat (20) and a first through-hole (302) on the other side. The back of the material blocking channel (32) has a second through-hole (303) on the back of the material preparation box (30). The inlet channel (33) has an input port (304) on the top surface of the material preparation box (30). The stamping drive cylinder (40) is located at the other end of the base (10) corresponding to the feeding channel (31). The telescopic rod of the stamping drive cylinder (40) passes through the first through-hole (302) into the feeding channel (31) and a stamping block (41) is provided thereon. The starting position of the stamping block (41) is between the middle of the feeding channel (31) and the first through-hole (302). The limiting drive cylinder (50) is located behind the base (10) corresponding to the blocking channel (32). A limiting block (51) is provided on the telescopic rod of the limiting drive cylinder (50). As the telescopic rod of the limiting drive cylinder (50) extends, it drives the limiting block (51) to pass through the middle of the feeding channel (31) along the blocking channel (32).

2. The stamping device for assembling ferrule nuts according to claim 1, characterized in that: It includes a stamping controller (60) and a limit controller (70) located outside the base (10). The stamping controller (60) controls the operation of the stamping drive cylinder (40), and the limit controller (70) controls the operation of the limit drive cylinder (50).

3. The stamping device for assembling ferrule nuts according to claim 1, characterized in that: The diameter of the discharge port (301) is larger than the outer diameter of the ferrule nut so that after the part to be installed is put into the positioning groove (21), one end of the part to be installed can pass through the opening of the positioning groove (21) into the discharge port (301).

4. The stamping device for assembling ferrule nuts according to claim 1, characterized in that: The feed channel (33) is perpendicular to the feed channel (31), and its diameter matches the outer diameter of the ferrule nut. After the ferrule nut is fed into the feed channel (33) from the inlet (304), the ferrule nut falls vertically down the feed channel (33) towards the middle of the feed channel.

5. The stamping device for assembling ferrule nuts according to claim 1, characterized in that: The feeding channel (31) has two spring pieces (311) arranged opposite each other on the two side walls between its middle part and the discharge port (301).