Hardware precision water transfer printing processing equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG SHUNDE ZILIN HARDWARE PLASTIC CO LTD
- Filing Date
- 2025-10-24
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]本实用新型的目的在于提供一种五金件精准水转印加工设备,以解决上述背景技术中提出的对于现在的五金件在进行水转印加工处理时,由于传统的就是直接通过夹持结构夹持后,让五金件放置到水转印的设备内部进行印制操作,导致了在五金件放置时会有偏斜的情况,导致了印制处理会发生偏斜不够精准影响大后续使用
[0012] This precision water transfer printing equipment for hardware parts can fix and position hardware parts from different directions during daily use, ensuring stable positioning and preventing displacement during the water transfer process. This guarantees accurate adhesion of the water transfer pattern and texture, improves product processing quality, and reduces the defect rate. The equipment offers high operational flexibility. Operators can flexibly adjust the position and angle of the hardware parts according to their size, shape, and processing requirements, facilitating loading, positioning, processing, and unloading operations, improving work efficiency and reducing operational difficulty. It ensures the stability of the connecting vertical rod during horizontal movement. The connections between all components are robust and the structure is reasonable, capable of withstanding various forces generated during operation, ensuring long-term stable and reliable operation, reducing equipment failures, and lowering maintenance costs. After processing, operators can promptly drain the used solution, clean and maintain the processing tank, ensuring the quality of the solution and the normal operation of the equipment for the next processing. This design also facilitates solution recycling and treatment, meeting environmental protection requirements.
Smart Images

Figure CN224602482U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hardware technology, specifically to a precision water transfer printing processing equipment for hardware parts. Background Technology
[0002] Hardware refers to machine parts, components, and small hardware products made from metal raw materials. These can be used independently or as auxiliary tools, and are widely applied in various fields such as industrial manufacturing and daily life. They can be classified in various ways. According to their use, they can be divided into general-purpose hardware accessories and special-purpose hardware accessories. General-purpose hardware accessories include pulleys, casters, connectors, pipe clamps, rollers, shackles, nozzles, spray heads, hooks, etc.; special-purpose hardware accessories cover furniture hardware accessories, marine hardware accessories, clothing hardware accessories, door and window hardware accessories, decorative hardware accessories, etc.
[0003] When processing hardware parts for water transfer printing, the traditional method involves clamping the hardware parts directly into the water transfer printing equipment for printing. This can lead to misalignment of the hardware parts during placement, resulting in inaccurate printing and significantly impacting subsequent use. Utility Model Content
[0004] The purpose of this utility model is to provide a precision water transfer printing processing device for hardware parts, so as to solve the problem mentioned in the background art that, in the current water transfer printing processing of hardware parts, the hardware parts are directly clamped by a clamping structure and placed into the water transfer printing equipment for printing operation. This results in the hardware parts being placed at an angle, which leads to the printing process being biased and not precise enough, which greatly affects the subsequent use.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a precision water transfer printing processing device for hardware parts, comprising a support base block, on which mounting side strips are horizontally and symmetrically welded on both sides; a limit top frame is uniformly fixedly installed on the top surface of the support base block; a telescopic upright is vertically fixedly installed on the top surface of the support base block; a rotating top block is snapped onto the top of the telescopic upright; a horizontal connecting rod is horizontally fixedly installed on one side of the rotating top block; a vertical connecting rod is vertically fixedly installed on the bottom surface of the horizontal connecting rod; a positioning plate is horizontally fixedly connected to the bottom end of the vertical connecting rod; a fixing side rod is uniformly fixedly installed on one side of the support base block; and an adjusting cylinder is horizontally fixedly connected to the end of the fixing side rod away from the support base block. The top surface of the side rod is connected to a connecting vertical rod, the top of the connecting vertical rod is engaged with a mating rotating block, a connecting rod is horizontally fixed to one side of the mating rotating block, a mating base plate is horizontally fixed to the bottom of the connecting rod, a material main board is horizontally fixed to one side of the connecting vertical rod, positioning grooves are evenly formed on the top surface of the material main board, a discharge valve body is fixed to one side of the support base block, a discharge pipe is fixedly connected to the output end of the discharge valve body, processing top grooves are evenly formed on the top surface of the support base block, a limit slot is horizontally formed on the top surface of the fixed side rod, a moving locking block is fixedly connected to the bottom of the connecting vertical rod, an adsorption head is evenly fixedly connected to the bottom surface of the mating base plate, and a clamping body is fixedly formed on the bottom surface of the positioning plate.
[0006] Preferably, there are two mounting side strips, which are symmetrically and parallelly fixedly arranged on the center lines of the two sides of the support base block. The top surface of the mounting side strips is uniformly provided with through holes. There are multiple limiting top frames, and the top opening ends of the limiting top frames are all fixedly connected to the top opening edge of the processing top groove.
[0007] Preferably, the number of telescopic uprights is consistent with the number of limiting top frames, and they are arranged parallel to each other at equal intervals on one side edge of the top surface of the support base block. The bottom end of the rotating top block is connected to the top motor output end of the telescopic uprights, and the top end of the vertical connecting rod is fixedly connected to the bottom end of the horizontal connecting rod away from the rotating top block.
[0008] Preferably, the positioning plates are all horizontally positioned at the top opening of the limiting top frame, the fixed side rods are arranged parallel to each other at equal intervals on one side of the supporting base block near the top surface, the output end of the adjusting cylinder extends horizontally and is inserted into the inside of the limiting slot, and the extended end is horizontally fixedly connected to the side of the moving block, and the bottom end of the connecting vertical rod is connected to the top opening of the limiting slot.
[0009] Preferably, the connecting rod is L-shaped and is designed to match the dimensions of the base plate and the positioning plate. The positioning slots are arranged in a straight line at equal intervals, and the input end of the discharge valve body is connected to the interior of multiple processing top slots.
[0010] Preferably, the processing top grooves are arranged in parallel to each other, the bottom end of the moving block is engaged with the inner side of the limiting groove, the adsorption heads are arranged at equal intervals, and the clamping body is fixedly positioned at the center of the bottom surface of the positioning plate.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] This precision water transfer printing equipment for hardware parts can fix and position hardware parts from different directions during daily use, ensuring stable positioning and preventing displacement during the water transfer process. This guarantees accurate adhesion of the water transfer pattern and texture, improves product processing quality, and reduces the defect rate. The equipment offers high operational flexibility. Operators can flexibly adjust the position and angle of the hardware parts according to their size, shape, and processing requirements, facilitating loading, positioning, processing, and unloading operations, improving work efficiency and reducing operational difficulty. It ensures the stability of the connecting vertical rod during horizontal movement. The connections between all components are robust and the structure is reasonable, capable of withstanding various forces generated during operation, ensuring long-term stable and reliable operation, reducing equipment failures, and lowering maintenance costs. After processing, operators can promptly drain the used solution, clean and maintain the processing tank, ensuring the quality of the solution and the normal operation of the equipment for the next processing. This design also facilitates solution recycling and treatment, meeting environmental protection requirements. Attached Figure Description
[0013] Figure 1 This is a three-dimensional view of the overall connection of this utility model;
[0014] Figure 2 Two three-dimensional connection diagrams of this utility model;
[0015] Figure 3 This is a perspective view of the supporting base block of this utility model;
[0016] Figure 4 This is a schematic diagram of the three-dimensional structure of the base plate of this utility model;
[0017] Figure 5 This is a three-dimensional structural diagram of the telescopic pole of this utility model.
[0018] In the diagram: 1. Support base block; 2. Side mounting strip; 3. Limiting top frame; 4. Telescopic upright; 5. Rotating top block; 6. Horizontal connecting rod; 7. Vertical connecting rod; 8. Positioning plate; 9. Fixed side rod; 10. Adjusting cylinder; 11. Connecting vertical rod; 12. Matching rotating block; 13. Connecting rod; 14. Matching base plate; 15. Material main board; 16. Positioning groove; 17. Discharge valve body; 18. Discharge pipe; 19. Processing top groove; 20. Limiting slot; 21. Moving block; 22. Adsorption head; 23. Clamping body. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Example 1:
[0021] like Figure 1-5 As shown, this utility model provides a technical solution: a precision water transfer printing processing equipment for hardware parts, including a support base 1, with mounting side strips 2 horizontally and symmetrically welded to both sides of the support base 1, and limiting top frames 3 uniformly fixedly installed on the top surface of the support base 1. There are two mounting side strips 2, which are symmetrically and parallelly fixedly installed at the center line of both sides of the support base 1. The top surface of the mounting side strips 2 is uniformly provided with through-hole structures. There are multiple limiting top frames 3, and the top openings of the limiting top frames 3 are all fixedly connected to the edge of the top opening of the processing top groove 19. A telescopic upright 4 is vertically fixedly installed on the top surface of the support base 1, and a rotating top block 5 is engaged at the top of the telescopic upright 4. A horizontal connecting rod 6 is fixedly mounted horizontally on one side of the rotating top block 5. A vertical connecting rod 7 is fixedly mounted vertically on the bottom surface of the horizontal connecting rod 6. The number of telescopic uprights 4 is consistent with the number of limiting top frames 3, and they are arranged parallel to each other at equal intervals on one side edge of the top surface of the supporting base block 1. The bottom end of the rotating top block 5 is connected to the top motor output end of the telescopic upright 4. The top end of the vertical connecting rod 7 is fixedly connected to the bottom end of the horizontal connecting rod 6 away from the rotating top block 5. A positioning plate 8 is horizontally fixedly connected to the bottom end of the vertical connecting rod 7. Fixed side rods 9 are evenly fixedly mounted on one side of the supporting base block 1. An adjusting cylinder 10 is horizontally fixedly connected to the end of the fixed side rod 9 away from the supporting base block 1.
[0022] By rotating the horizontal connecting rod 6, which is fixed horizontally on one side of the top block 5, a vertical connecting rod 7 is fixed vertically on the bottom surface. The top end of the vertical connecting rod 7 is connected to the end of the bottom surface of the horizontal connecting rod 6 away from the rotating top block 5, and the bottom end is horizontally fixedly connected to the positioning plate 8. The positioning plate 8 is horizontally set at the top opening end of the limiting top frame 3, which is in preparation for the subsequent positioning and operation of the hardware.
[0023] Example 2:
[0024] like Figure 1-5 As shown, this utility model provides a technical solution: a precision water transfer printing processing device for hardware parts, including a support base 1, with mounting side strips 2 horizontally and symmetrically welded to both sides of the support base 1, and limiting top frames 3 uniformly fixedly installed on the top surface of the support base 1. There are two mounting side strips 2, which are symmetrically and parallelly fixedly installed at the center line of both sides of the support base 1. The top surface of the mounting side strips 2 is uniformly provided with through-hole structures. There are multiple limiting top frames 3, and the top openings of each limiting top frame 3 are correspondingly and fixedly connected to the processing... At the edge of the top opening of the top groove 19, a telescopic upright 4 is vertically fixed on the top surface of the support base block 1. A rotating top block 5 is snapped onto the top of the telescopic upright 4. A horizontal connecting rod 6 is horizontally fixed on one side of the rotating top block 5. A vertical connecting rod 7 is vertically fixed on the bottom surface of the horizontal connecting rod 6. The number of telescopic uprights 4 is consistent with the number of limiting top frames 3, and they are arranged parallel and equidistantly on one side edge of the top surface of the support base block 1. The bottom end of the rotating top block 5 is connected to the top motor output end of the telescopic upright 4. The top of the vertical connecting rod 7... The end of the horizontal connecting rod 6 is fixedly connected to the bottom surface of the horizontal connecting rod 6 at the end away from the rotating top block 5. The bottom end of the vertical connecting rod 7 is horizontally fixedly connected to the positioning plate 8. Fixed side rods 9 are evenly fixedly arranged on one side of the supporting base block 1. An adjusting cylinder 10 is horizontally fixedly connected to the end of the fixed side rod 9 away from the supporting base block 1. A connecting vertical rod 11 is connected to the top surface of the fixed side rod 9. The positioning plates 8 are all horizontally arranged at the top opening end of the limiting top frame 3. The fixed side rods 9 are arranged parallel to each other at equal intervals on one side of the supporting base block 1 near the top surface. The output end of cylinder 10 extends horizontally and is inserted into the inside of the limiting slot 20. The extended end is horizontally fixedly connected to the side of the moving block 21. The bottom end of the connecting vertical rod 11 is connected to the top opening of the limiting slot 20. The top of the connecting vertical rod 11 is engaged with a mating rotating block 12. A connecting rod 13 is horizontally fixedly connected to one side of the mating rotating block 12. A mating base plate 14 is horizontally fixedly installed at the bottom of the connecting rod 13. A material main board 15 is horizontally fixedly installed on one side of the connecting vertical rod 11. Positioning grooves 16 are evenly opened on the top surface of the material main board 15.
[0025] The mating base plate 14, horizontally fixed at the bottom of the connecting rod 13, has the same dimensions as the positioning plate 8. Adsorption heads 22, evenly fixed to the bottom surface of the mating base plate 14, can be used to adsorb metal parts. A material main board 15, horizontally fixed on one side of the connecting vertical rod 11, has evenly spaced, I-shaped positioning grooves 16 on its top surface, allowing the metal parts to be placed in the positioning grooves 16 for initial positioning. Then, the adjusting cylinder 10 pushes the connecting vertical rod 11 to move the mating base plate 14 above the metal parts, where the adsorption heads 22 adsorb the metal parts. The metal parts are then moved below the positioning plate 8, where a clamping body 23, fixed at the center of the bottom surface of the positioning plate 8, precisely positions and clamps the metal parts, ensuring accurate positioning during the water transfer printing process.
[0026] Example 3:
[0027] like Figure 1-5As shown, this utility model provides a technical solution: a precision water transfer printing processing equipment for hardware parts, including a support base 1, with mounting side strips 2 horizontally and symmetrically welded to both sides of the support base 1, and a limiting top frame 3 uniformly fixedly installed on the top surface of the support base 1. There are two mounting side strips 2, which are symmetrically and parallelly fixedly installed at the center line of both sides of the support base 1. The top surface of the mounting side strips 2 is uniformly provided with through-hole structures. There are multiple limiting top frames 3, and the top openings of the limiting top frames 3 are all fixedly connected to the edge of the top opening of the processing top groove 19. A telescopic upright 4 is vertically fixedly installed on the top surface of the support base 1, and a rotating top block 5 is engaged at the top of the telescopic upright 4. One side of the rotating top block 5... A horizontal connecting rod 6 is fixedly installed horizontally. A vertical connecting rod 7 is fixedly installed vertically on the bottom surface of the horizontal connecting rod 6. The number of telescopic uprights 4 is consistent with the number of limiting top frames 3, and they are arranged parallel and equidistantly on one side edge of the top surface of the supporting base block 1. The bottom end of the rotating top block 5 is connected to the top motor output end of the telescopic upright 4. The top end of the vertical connecting rod 7 is fixedly connected to the bottom end of the horizontal connecting rod 6 away from the rotating top block 5. A positioning plate 8 is horizontally fixedly connected to the bottom end of the vertical connecting rod 7. Fixed side rods 9 are evenly fixedly installed on one side of the supporting base block 1. An adjusting cylinder 10 is horizontally fixedly connected to the end of the fixed side rod 9 away from the supporting base block 1. A connecting vertical rod 11 is connected to the top surface of the fixed side rod 9. Each plate 8 is horizontally positioned at the top opening of the limiting top frame 3. Fixed side rods 9 are arranged parallel and equidistantly on one side of the supporting base block 1 near the top surface. The output end of the adjusting cylinder 10 extends horizontally and is inserted into the limiting slot 20, with the extended end horizontally fixedly connected to the side of the moving block 21. The bottom end of the connecting vertical rod 11 is connected to the top opening of the limiting slot 20. A mating rotating block 12 is engaged at the top of the connecting vertical rod 11. A connecting rod 13 is horizontally fixedly connected to one side of the mating rotating block 12. A mating base plate 14 is horizontally fixedly installed at the bottom end of the connecting rod 13. A material main plate 15 is horizontally fixedly installed on one side of the connecting vertical rod 11. Positioning grooves 1 are evenly distributed on the top surface of the material main plate 15. 6. A discharge valve body 17 is fixedly installed on one side of the support base block 1. The connecting rod 13 is L-shaped and is set to match the specifications and dimensions of the base plate 14 and the positioning plate 8. The positioning grooves 16 are arranged in a straight line at equal intervals. The input end of the discharge valve body 17 is connected to the interior of multiple processing top grooves 19. The output end of the discharge valve body 17 is fixedly connected to the discharge pipe 18. Processing top grooves 19 are evenly opened on the top surface of the support base block 1. The top surface of the fixed side rod 9 is horizontally opened with a limit slot 20. The bottom end of the connecting vertical rod 11 is fixedly connected to a movable locking block 21. Adsorption heads 22 are evenly fixedly connected to the bottom surface of the base plate 14. A clamping body 23 is fixedly installed on the bottom surface of the positioning plate 8. The processing top grooves 19 are arranged in parallel with each other.The bottom end of the movable card block 21 is engaged with the inner side of the limiting card slot 20. The suction heads 22 are arranged at equal intervals. The clamping body 23 is fixedly positioned at the center of the bottom surface of the positioning plate 8.
[0028] By rotating the top block 5, the horizontal connecting rod 6, the vertical connecting rod 7, and the positioning plate 8 are driven by the motor to rotate, thereby immersing the positioned hardware parts into the water transfer printing solution in the processing top tank 19. In the water transfer printing solution, the desired pattern and texture will be attached to the surface of the hardware parts.
[0029] Working principle: Multiple limiting top frames 3 are evenly fixed on the top surface of the supporting base block 1. Their top opening ends are fixedly connected to the edge of the top opening of the processing top groove 19. The processing top grooves 19 are arranged in parallel to each other and are used to hold the solution required for water transfer printing and to support the hardware parts for transfer printing. The top of the vertical connecting rod 7 is connected to the bottom of the horizontal connecting rod 6 away from the rotating top block 5. The bottom end is horizontally fixedly connected to the positioning plate 8. The positioning plate 8 is horizontally set at the top opening end of the limiting top frame 3. The fixed side rod 9 is horizontally fixedly connected to the adjusting cylinder 10 away from the supporting base block 1. Its output end extends horizontally and is inserted into the limiting slot 20 and is horizontally fixedly connected to the side of the moving block 21. The bottom end of the connecting vertical rod 11 is connected to the top opening of the limiting slot 20, and the fixed moving block 21 at the bottom end is engaged with the inner side of the limiting slot 20. By adjusting the extension and retraction of the cylinder 10, the connecting vertical rod 11 can be moved horizontally within the limiting slot 20. The adjusting cylinder 10 pushes the connecting vertical rod 11 to move, so that the mating base plate 14 is moved above the hardware. The hardware is then adsorbed by the suction head 22 and moved below the positioning plate 8. The clamping body 23 fixed at the center of the bottom surface of the positioning plate 8 can accurately position and clamp the hardware, ensuring the accurate position of the hardware during the water transfer printing process. The rotating top block 5, driven by the motor, drives the horizontal connecting rod 6, the vertical connecting rod 7, and the positioning plate 8 to rotate, thereby immersing the positioned hardware into the water transfer printing solution in the processing top tank 19. In the water transfer printing solution, the desired pattern and texture will be attached to the surface of the hardware.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A precision water transfer printing processing device for hardware parts, comprising a support base (1), characterized in that: The two sides of the support base (1) are horizontally symmetrically welded with mounting side strips (2). The top surface of the support base (1) is uniformly fixed with a limit top frame (3). The top surface of the support base (1) is vertically fixed with a telescopic upright (4). The top of the telescopic upright (4) is snapped with a rotating top block (5). One side of the rotating top block (5) is horizontally fixed with a horizontal connecting rod (6). The bottom surface of the horizontal connecting rod (6) is vertically fixed with a vertical connecting rod (7). The bottom end of the vertical connecting rod (7) is horizontally fixed with a positioning plate (8). One side of the support base (1) is uniformly fixed with a fixed side rod (9). The fixed side rod (9) is horizontally fixed with an adjusting cylinder (10) at the end away from the support base (1). The top surface of the fixed side rod (9) is connected with a connecting vertical rod (11). The top end of the connecting vertical rod (11) is snapped with a cooperating rotating block (1). 2) A connecting rod (13) is horizontally fixed to one side of the mating rotating block (12), and a mating base plate (14) is horizontally fixed to the bottom end of the connecting rod (13). A material main plate (15) is horizontally fixed to one side of the connecting vertical rod (11). A positioning groove (16) is evenly opened on the top surface of the material main plate (15). A discharge valve body (17) is fixed to one side of the supporting base block (1). A discharge pipe (18) is fixedly connected to the output end of the discharge valve body (17). A processing top groove (19) is evenly opened on the top surface of the supporting base block (1). A limit slot (20) is horizontally opened on the top surface of the fixed side rod (9). A moving block (21) is fixedly connected to the bottom end of the connecting vertical rod (11). An adsorption head (22) is evenly fixed to the bottom surface of the mating base plate (14). A clamping body (23) is fixedly installed on the bottom surface of the positioning plate (8).
2. The precision water transfer printing equipment for hardware parts according to claim 1, characterized in that: There are two mounting side strips (2), and the two mounting side strips (2) are symmetrically and parallelly fixedly installed on the center line of the two sides of the support base block (1). The top surface of the mounting side strips (2) is uniformly provided with through hole structure. There are multiple limiting top frames (3), and the top opening end of the limiting top frame (3) is fixedly connected to the top opening edge of the processing top groove (19) one by one.
3. The precision water transfer printing equipment for hardware parts according to claim 1, characterized in that: The number of telescopic uprights (4) is consistent with the number of limiting top frames (3), and they are arranged parallel to each other at equal intervals on one side edge of the top surface of the support base block (1). The bottom end of the rotating top block (5) is connected to the top motor output end of the telescopic uprights (4), and the top end of the vertical connecting rod (7) is fixedly connected to the bottom end of the horizontal connecting rod (6) away from the rotating top block (5).
4. The precision water transfer printing equipment for hardware parts according to claim 1, characterized in that: The positioning plates (8) are all horizontally positioned at the top opening of the limiting top frame (3). The fixed side rods (9) are arranged parallel to each other at equal intervals on one side of the supporting base block (1) near the top surface. The output end of the adjusting cylinder (10) is horizontally extended and inserted into the inside of the limiting slot (20), and the extended end is horizontally fixedly connected to the side of the moving block (21). The bottom end of the connecting vertical rod (11) is connected to the top opening of the limiting slot (20).
5. The precision water transfer printing equipment for hardware parts according to claim 1, characterized in that: The connecting rod (13) is L-shaped and is designed to match the specifications and dimensions of the base plate (14) and the positioning plate (8). The positioning grooves (16) are arranged in a straight line at equal intervals. The input end of the discharge valve body (17) is connected to the interior of multiple processing top grooves (19).
6. The precision water transfer printing equipment for hardware parts according to claim 1, characterized in that: The processing top grooves (19) are arranged in parallel to each other, the bottom end of the moving block (21) is engaged with the inner side of the limiting groove (20), the adsorption heads (22) are arranged at equal intervals, and the clamping body (23) is fixedly set at the center of the bottom surface of the positioning plate (8).