Positioning clamp for single water shell of hand washing faucet

By designing a single-water-shell positioning fixture for handwashing faucets and utilizing the cooperation of conveying and locking components, the problem of low efficiency in manual fixing during faucet shell processing was solved, achieving stable and efficient production.

CN223656511UActive Publication Date: 2025-12-12ANHUI TENGBIAO SANITARY WARE TECH CO LTD
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Patent Information

Application Number
CN202423042751.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-12-12
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

In the existing technology, manual fixing during the faucet shell processing is inefficient and labor-intensive, which affects production efficiency.

Method used

A single-shell positioning clamp for a handwashing faucet is designed, which combines a conveying component and a locking component. The conveying component drives the faucet shell on the placement component to move at a constant speed, and the locking component positions and clamps it, adapting to faucet shells of different specifications.

Benefits of technology

This achieves stability and continuity in the processing of faucet bodies, improving production efficiency and reducing labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a positioning clamp for a single water shell of a hand washing faucet, a conveying assembly is arranged on a rack, placing assemblies for placing faucet shells are uniformly arranged on the conveying assembly, and a locking assembly which is matched with the placing assemblies to fix the faucet shells moving to a machining position is arranged in the middle of the rack. According to the water faucet shell machining device, in the operation process, the conveying assembly drives the water faucet shell on the containing assembly to move at a constant speed, the conveying assembly and the containing assembly are matched with each other to conduct continuous machining operation on the water faucet shell, and the containing assembly and the locking assembly are matched with each other to conduct positioning clamping on the water faucet shell; and the stability of the faucet shell in the machining process is ensured, the clamping piece and the locking piece can be used for machining faucet shells of different specifications during operation, and the application range is wide.
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Description

Technical Field

[0001] This utility model relates to the field of clamping technology, and in particular to a single water tank positioning clamp for a handwashing faucet. Background Technology

[0002] A faucet is a common name for a water valve, used to control the flow of water and thus saving water. During the manufacturing process, the faucet body requires drilling and tapping, and it needs to be secured during processing to ensure stability.

[0003] Currently, in the process of processing faucet bodies, the faucet body is usually fixed onto the fixture manually, and then the processing equipment is controlled to process the faucet body accordingly. In the process of mass production of faucets, manually placing and clamping the faucet is inefficient and labor-intensive, which affects the production efficiency of faucets.

[0004] Based on this, this application provides a single-water-shell positioning clamp for a handwashing faucet. Utility Model Content

[0005] (I) Technical Solution

[0006] To achieve the above objectives, the present invention provides the following technical solution: a single water faucet housing positioning fixture, wherein a conveying assembly is provided on the frame, and a placement assembly for placing the faucet housing is evenly provided on the conveying assembly, and a locking assembly is provided in the middle of the frame to fix the faucet housing that has moved to the processing position in cooperation with the placement assembly.

[0007] The placement assembly includes a placement block disposed on the conveying assembly, the placement block having a semi-circular placement groove, and a clamping element disposed within the placement groove;

[0008] The locking assembly includes a support frame mounted on a frame, a movable groove on the support frame, a driving component inside the movable groove, a lifting cylinder on the driving component, an L-shaped positioning frame mounted on the output end of the lifting cylinder, a fixing block mounted on the lower end face of the positioning frame, a semi-circular locking groove on the fixing block, a locking component inside the fixing block that cooperates with the clamping component to lock the faucet housing, and the locking component has the same structure as the clamping component; an adjusting component is provided on the side wall of the positioning frame.

[0009] Furthermore, the conveying assembly includes rotating shafts symmetrically arranged along the length of the frame. The rotating shafts are mounted on the frame via bearings. A conveying motor is mounted on the frame via a motor mount. The output shaft of the conveying motor is connected to one of the rotating shafts. Conveying sprockets are symmetrically mounted on the rotating shafts. Two conveying sprockets arranged along the length of the frame are connected by chains. Conveying frames are evenly arranged between the two chains along the length of the frame. Guide grooves are symmetrically arranged on the inner wall of the frame, and the conveying frames are slidably arranged within the guide grooves.

[0010] Furthermore, the conveyor frame is provided with a sliding groove, a sliding block is slidably disposed in the sliding groove, a return spring lever is provided between the sliding block and the sliding groove, and a placement block is provided on the sliding block.

[0011] Furthermore, the clamping component includes a limiting cavity formed inside the placement block, and clamping grooves communicating with the limiting cavity are evenly formed on the placement groove. A clamping claw is slidably arranged in the clamping groove. An adjusting spring is provided between the clamping claw and the inner wall of the placement block. A pressing frame is slidably arranged on the inner wall of the limiting cavity. A pressing block cooperating with the clamping claw is provided on the pressing frame. A supporting spring rod is provided between the pressing frame and the inner wall of the limiting cavity. A pressing groove communicating with the limiting cavity is formed on the placement block.

[0012] Furthermore, the driving component includes a movable block slidably disposed within the movable groove, and a driving cylinder is mounted on the support frame, the driving cylinder being connected to the movable block via a flange;

[0013] Furthermore, the adjusting component includes an adjusting cylinder disposed on the positioning frame, an adjusting plate mounted on the adjusting cylinder, and extrusion columns symmetrically mounted on the adjusting plate.

[0014] (II) Beneficial Effects

[0015] This utility model discloses a single-shell positioning clamp for a handwashing faucet. During operation, the conveying component drives the faucet shell on the placement component to move at a uniform speed. The conveying component and the placement component work together to continuously process the faucet shell, while the placement component and the locking component work together to position and clamp the faucet shell, ensuring the stability of the faucet shell during processing. Furthermore, the clamping and locking components can process faucet shells of different specifications, making it widely applicable. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a schematic diagram of the structure of this application;

[0018] Figure 2 This is a schematic diagram of the structure of the delivery component of this application;

[0019] Figure 3 This is a cross-sectional view of the conveyor frame and the placement components in this application;

[0020] Figure 4 This is a cross-sectional view of the locking component of this application;

[0021] Figure 5 This is a cross-sectional view of the components placed in this application;

[0022] Figure 6 This is a cross-sectional view of the placement block, clamping member, fixing block and locking member described in this application. Detailed Implementation

[0023] The embodiments of this utility model will now be described with reference to the accompanying drawings. In this process, to ensure clarity and convenience, we may exaggerate the width of lines or the size of constituent elements in the drawings.

[0024] Furthermore, the terms used below are defined based on the functions of this utility model and may vary depending on the user's or operator's intent or convention. Therefore, these terms are defined based on the entire contents of this specification.

[0025] like Figures 1 to 6 As shown, a single water faucet housing positioning fixture includes a frame 1, a conveying component 2 is provided on the frame 1, a placement component 3 for placing the faucet housing is evenly provided on the conveying component 2, and a locking component 4 is provided in the middle of the frame 1 to cooperate with the placement component 3 to fix the faucet housing that has moved to the processing position.

[0026] The frame 1 is equipped with a processing table. When the faucet shell needs to be processed, the corresponding processing tools can be fixed on the processing table. During operation, the faucet shell to be processed is placed orderly on the placement component 3. The conveying component 2 drives the faucet shell on the placement component 3 to move at a uniform speed. The position of the processing table corresponds to the position of the locking component 4. When the faucet shell moves to the working position of the locking component 4, the locking component 4 and the placement component 3 cooperate to lock the faucet shell. Then, the processing tools fixed on the processing table are used to process the faucet shell. The conveying component 2 can continuously convey the faucet shell, while the placement component 3 and the locking component 4 cooperate to position and clamp the faucet shell, ensuring the stability of the faucet shell during the processing.

[0027] The conveying assembly 2 includes a rotating shaft 21 symmetrically arranged along the length of the frame 1. The rotating shaft 21 is mounted on the frame 1 via bearings. A conveying motor is mounted on the frame 1 via a motor mount. The output shaft of the conveying motor is connected to one of the rotating shafts 21. Conveying sprockets 22 are symmetrically mounted on the rotating shaft 21. The two conveying sprockets 22 arranged along the length of the frame 1 are connected by a chain 23. Conveying frames 24 are evenly arranged between the two chains 23 along the length of the frame 1. Guide grooves are symmetrically arranged on the inner wall of the frame 1. The conveying frames 24 are slidably arranged in the guide grooves.

[0028] When the faucet housing needs to be continuously processed during operation by adopting the above technical solution, the conveyor motor is started to drive the rotating shaft 21 to rotate. During the rotation, the rotating shaft 21 drives the conveyor frame 24 to move at a uniform speed through the cooperation between the chain 23 and the conveyor sprocket 22. During this process, the conveyor frame 24 synchronously drives the faucet housing on the placement component 3 to move synchronously.

[0029] The placement component 3 includes a placement block 31 disposed on the conveying component 2. The placement block 31 has a placement groove 32 with a semi-circular structure, and a clamping member 33 is disposed in the placement groove 32.

[0030] The locking assembly 4 includes a support frame 41 mounted on the frame 1. The support frame 41 has a moving groove, and a driving component 42 is disposed in the moving groove. A lifting cylinder 43 is disposed on the driving component 42. An L-shaped positioning frame 44 is mounted on the output end of the lifting cylinder 43. A fixing block 45 is mounted on the lower end face of the positioning frame 44. A semi-circular locking groove is disposed on the fixing block 45. A locking component 46 is disposed inside the fixing block 45 to cooperate with the clamping component 33 for locking the faucet housing. The locking component 46 has the same structure as the clamping component 33. An adjusting component 47 is disposed on the side wall of the positioning frame 44.

[0031] The lower end face of the fixing block 45 is evenly provided with protrusions, and the upper end face of the placement block 31 is provided with a groove that mates with the protrusions.

[0032] By adopting the above technical solution, when the placement component 3 moves to the working position of the locking component 4, the lifting cylinder 43 is activated to control the positioning frame 44 to move from top to bottom. During the movement, the positioning frame 44 drives the fixing block 45 to move towards the placement block 31, so that the protrusion is inserted into the groove. Then the adjusting component 47 starts to work to control the locking component 46 to clamp and lock the faucet shell. When processing the inside of the faucet shell, the driving component 42 starts to work to drive the locked faucet shell to feed towards the processing tool.

[0033] The conveyor frame 24 is provided with a sliding groove, and a sliding block 241 is slidably disposed in the sliding groove. A reset spring lever 242 is provided between the sliding block 241 and the sliding groove, and a placement block 31 is provided on the sliding block 241.

[0034] By adopting the above technical solution, when the placement block 31 and the fixed block 45 are connected during operation, the driving component 42 can ensure that the placement block 31 can move synchronously with the fixed block 45, and ensure that the faucet housing can move with the driving component 42 in the clamping state.

[0035] The clamping member 33 includes a limiting cavity 331 formed inside the placement block 31. The placement groove 32 is evenly provided with clamping grooves communicating with the limiting cavity 331. A clamping claw 332 is slidably disposed in the clamping groove. An adjusting spring 333 is provided between the clamping claw 332 and the inner wall of the placement block 31. A pressing frame 334 is slidably disposed on the inner wall of the limiting cavity 331. A pressing block 335 that cooperates with the clamping claw 332 is provided on the pressing frame 334. A supporting spring rod 336 is provided between the pressing frame 334 and the inner wall of the limiting cavity 331. The placement block 31 is provided with a pressing groove communicating with the limiting cavity 331.

[0036] The adjusting component 47 includes an adjusting cylinder 471 disposed on the positioning frame 44, an adjusting plate 472 mounted on the adjusting cylinder 471, and extrusion columns 473 symmetrically mounted on the adjusting plate 472.

[0037] By adopting the above technical solution, when the placement block 31 and the fixing block 45 are docked during the specific operation, the adjusting cylinder 471 drives the two pressing columns 473 on the adjusting plate 472 to move synchronously toward the fixing block 45 and the placement block 31. During this process, the two pressing columns 473 simultaneously press the clamping member 33 and the locking member 46. After being pressed, the clamping member 33 and the locking member 46 cooperate synchronously to clamp and fix the faucet shell. The movement of the pressing column 473 can control the clamping member 33 and the locking member 46 to lock the faucet shell of different specifications during the operation.

[0038] During its movement, the extrusion column 473 extrudes the extrusion frame 334. After being extruded, the extrusion frame 334 drives the extrusion block 335 to adjust the clamping claws 332. Multiple clamping claws 332 cooperate with each other to clamp and lock the faucet housing from different directions to ensure the stability of the faucet housing during processing.

[0039] The driving component 42 includes a movable block 421 slidably disposed in the movable groove, and a driving cylinder 422 is mounted on the support frame 41. The driving cylinder 422 is connected to the movable block 421 through a flange.

[0040] When it is necessary to control the locked faucet housing to move toward the processing tool, the drive cylinder 422 is activated to drive the moving block 421 to move. During this process, the moving block 421 synchronously drives the locked faucet housing to move toward the processing table.

[0041] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A single-water-shell positioning clamp for a handwashing faucet, characterized in that, Includes a frame (1), on which a conveying assembly (2) is provided, and on which a placement assembly (3) for placing a faucet housing is evenly provided, and in the middle of the frame (1) a locking assembly (4) that cooperates with the placement assembly (3) to fix the faucet housing that has moved to the processing position. The placement component (3) includes a placement block (31) disposed on the conveying component (2), the placement block (31) having a semi-circular placement groove (32) and a clamping member (33) disposed in the placement groove (32); The locking assembly (4) includes a support frame (41) mounted on the frame (1). The support frame (41) has a moving groove. A driving component (42) is provided in the moving groove. A lifting cylinder (43) is provided on the driving component (42). A positioning frame (44) with an L-shaped structure is installed on the output end of the lifting cylinder (43). A fixing block (45) is installed on the lower end face of the positioning frame (44). A locking groove with a semi-circular structure is provided on the fixing block (45). A locking component (46) is provided inside the fixing block (45) to cooperate with the clamping component (33) for locking the faucet housing. The locking component (46) has the same structure as the clamping component (33). An adjusting component (47) is provided on the side wall of the positioning frame (44).

2. A single-water-shell positioning clamp for a handwashing faucet according to claim 1, characterized in that, The conveying assembly (2) includes a rotating shaft (21) symmetrically arranged along the length of the frame (1). The rotating shaft (21) is mounted on the frame (1) via bearings. A conveying motor is mounted on the frame (1) via a motor mount. The output shaft of the conveying motor is connected to one of the rotating shafts (21). Conveying sprockets (22) are symmetrically mounted on the rotating shaft (21). The two conveying sprockets (22) arranged along the length of the frame (1) are connected by chains (23). Conveying frames (24) are evenly arranged between the two chains (23) along the length of the frame (1). Guide grooves are symmetrically arranged on the inner wall of the frame (1). The conveying frames (24) are slidably arranged in the guide grooves.

3. A single-water-shell positioning clamp for a handwashing faucet according to claim 2, characterized in that, The conveyor frame (24) is provided with a sliding groove, and a sliding block (241) is slidably arranged in the sliding groove. A reset spring lever (242) is provided between the sliding block (241) and the sliding groove, and a placement block (31) is provided on the sliding block (241).

4. A single-water-shell positioning clamp for a handwashing faucet according to claim 1, characterized in that, The clamping member (33) includes a limiting cavity (331) opened inside the placement block (31), and clamping grooves communicating with the limiting cavity (331) are evenly opened on the placement groove (32). A clamping claw (332) is slidably arranged in the clamping groove. An adjusting spring (333) is arranged between the clamping claw (332) and the inner wall of the placement block (31). A pressing frame (334) is slidably arranged on the inner wall of the limiting cavity (331). A pressing block (335) cooperating with the clamping claw (332) is arranged on the pressing frame (334). A supporting spring rod (336) is arranged between the pressing frame (334) and the inner wall of the limiting cavity (331). A pressing groove communicating with the limiting cavity (331) is opened on the placement block (31).

5. A single-water-shell positioning clamp for a handwashing faucet according to claim 4, characterized in that, The driving component (42) includes a movable block (421) slidably disposed in the movable groove, and a driving cylinder (422) is mounted on the support frame (41). The driving cylinder (422) is connected to the movable block (421) through a flange.

6. A single-water-shell positioning clamp for a handwashing faucet according to claim 5, characterized in that, The adjusting component (47) includes an adjusting cylinder (471) disposed on the positioning frame (44), an adjusting plate (472) is mounted on the adjusting cylinder (471), and extrusion columns (473) are symmetrically mounted on the adjusting plate (472).