Hot galvanizing device for fastener machining
By introducing vibrating stent plates and telescopic motors into the fastener galvanizing device, the problem of incomplete galvanizing of fastener is solved, and full coverage galvanizing and convenient material treatment are achieved.
Patent Information
- Application Number
- CN202422437589.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-10
AI Technical Summary
During the galvanizing process of existing fasteners, contact between multiple fasteners causes incomplete galvanization, affecting the quality of the finished product.
A hot-dip galvanizing device including processing tanks, discharge pipes, restriction slots, placement frames and stent plates is designed. By setting up a vibrating stent plate and a telescopic motor, the fasteners do not contact each other during the galvanizing process, and the galvanizing liquid is flowed by the squirting structure to achieve full coverage galvanizing.
It improves the efficiency and convenience of fastener galvanizing, ensures that each fastener is evenly galvanized, making it more convenient to store and retrieve materials.
Smart Images

Figure CN223134539U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fastener processing, in particular to a hot-dip galvanizing device for fastener processing. Background Art
[0002] When the existing fastener galvanizing structure galvanizes multiple fasteners together, due to contact problems, the contact positions of the fasteners may not be galvanized, which may lead to incomplete galvanizing of the fasteners and affect the finished products. Therefore, a hot-dip galvanizing device for fastener processing is proposed. Content of the Utility Model
[0003] The utility model mainly solves the technical problems existing in the above-mentioned prior art, and provides a hot-dip galvanizing device for fastener processing.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme. It includes a processing pool, and a discharge pipe communicating with the inside of the processing pool is installed outside the processing pool to discharge the internal materials of the processing pool. Arc-shaped structures are provided on the left and right side walls inside the processing pool. A placement frame is arranged between the two limiting slots. A spraying structure for the flow of the internal materials of the processing pool is laid on the bottom surface inside the processing pool. Placement slots are opened at the centers of the upper sides of both sides of the processing pool. Disassembly and installation handrails are fixedly installed at the centers of the outer sides of both sides of the placement frame. The size of the disassembly and installation handrails corresponds to the internal size of the placement slots. After the placement frame is clamped inside the processing pool, the two disassembly and installation handrails are clamped into the corresponding placement slots. The bottom surface inside the placement frame is hollow.
[0005] Further, through holes are opened on the inner sides of the four sides of the placement frame, and mounting seats are fixedly installed on the outer wall surfaces of the left and right sides of the placement frame. The size of the mounting seats corresponds to the internal size of the limiting slots.
[0006] Further, a telescopic motor is fixedly installed at the top inside the mounting seat, and an insertion through hole penetrating the entire mounting seat is opened inside the mounting seat. The output shaft of the telescopic motor passes through the insertion through hole and extends to the lower side of the mounting seat.
[0007] Further, adjustment openings are opened on the left and right sides inside the placement frame. The adjustment openings are located directly below the mounting seats. A material supporting plate is clamped between the two adjustment openings.
[0008] Further, the left and right ends of the material supporting plate are in a convex structure size. The left and right ends of the material supporting plate pass through the corresponding adjustment openings and extend to the outside of the placement frame. Connecting jacks are opened inside the protruding ends at both ends of the material supporting plate.
[0009] Further, a threaded hole is provided inside the connection jack. After the material supporting plate is installed between the two adjustment openings, the lower end of the telescopic motor is inserted into the connection jack and locked by a nut.
[0010] The utility model provides a hot-dip galvanizing device for fastener processing, which has the following beneficial effects:
[0011] 1. A hot-dip galvanizing device for fastener processing. After the material supporting plate, which can vibrate, is placed into the placement frame, both ends of the material supporting plate pass through the corresponding adjustment openings and extend to the outside of the placement frame. Then, the telescopic motor is fixedly installed on the tops of the two mounting seats. The output shaft of the telescopic motor passes through the corresponding telescopic motor and is inserted into the corresponding connection jack. After that, the output shaft of the telescopic motor is locked with a nut, and the position of the material supporting plate will be restricted. Since the overall size of the material supporting plate corresponds to the internal size of the placement frame, when the material supporting plate moves up and down, the fasteners stored inside the placement frame will be driven to vibrate, so that during the processing, the workpieces will not always be close together due to mutual vibration, and the entire exterior of the fasteners can be galvanized, greatly improving the galvanizing efficiency of the device.
[0012] 2. A hot-dip galvanizing device for fastener processing. After the material supporting plate is installed inside the placement frame, the fasteners to be processed are put into the placement frame. Then, the entire placement frame is lifted into the processing pool through the disassembly and assembly handrails installed on both sides outside the placement frame. After both sides of the placement frame are clamped into the corresponding limiting card slots for positioning, when the entire device operates, the spraying structure drives the galvanizing liquid inside the processing pool to flow. The bottom of the placement frame is a hollow structure. After the placement frame is placed into the processing pool, the galvanizing liquid flows into the placement frame through the through holes on the surface of the placement frame. During the vibration of the material supporting plate, the fasteners are galvanized. After processing, the entire placement frame is lifted out, and all the processed fasteners can be taken out. When in use, it is more convenient to store and retrieve materials, improving the convenience of the device. Description of the Drawings
[0013] The structures, ratios, sizes, etc. shown in this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the implementation conditions of the utility model. Therefore, they do not have any technical substantial significance.
[0014] Figure 1 It is a schematic diagram of the overall device;
[0015] Figure 2 It is a schematic diagram of the internal structure of the processing pool;
[0016] Figure 3 It is a schematic diagram of the placement frame structure;
[0017] Figure 4 It is a schematic diagram of the material supporting plate structure.
[0018] Legend Explanation:
[0019] 1. Processing pool; 2. Discharge pipe; 3. Placing frame; 4. Placing card slot; 5. Limiting card slot; 6. Spraying structure; 7. Disassembly and assembly handrail; 8. Mounting seat; 9. Adjusting port; 10. Insertion through hole; 11. Telescopic motor; 12. Material supporting plate; 13. Connection jack. Specific Embodiment
[0020] A hot-dip galvanizing device for fastener processing, as Figures 1 to 4 shown, includes a processing pool 1. A discharge pipe 2 connected to the inside of the processing pool 1 is installed outside the processing pool 1, and the internal material of the processing pool 1 is discharged through the discharge pipe 2. Limiting card slots 5 are provided on the left and right side walls inside the processing pool 1, and the inside of the limiting card slots 5 is of an arc structure. A placing frame 3 is arranged between the two limiting card slots 5. A spraying structure 6 for the flow of the internal material of the processing pool 1 is laid on the inner bottom surface of the processing pool 1. Placing card slots 4 are provided at the centers of the upper sides of both sides of the processing pool 1. Disassembly and assembly handrails 7 are fixedly installed at the centers of the outer sides of both sides of the placing frame 3. The size of the disassembly and assembly handrails 7 corresponds to the internal size of the placing card slots 4. After the placing frame 3 is clamped inside the processing pool 1, the two disassembly and assembly handrails 7 are clamped into the corresponding placing card slots 4. The inner bottom surface of the placing frame 3 is hollow, through holes are provided on the inner sides of the four sides of the placing frame 3, and mounting seats 8 are fixedly installed on the outer wall surfaces of the left and right sides of the placing frame 3. The size of the mounting seats 8 corresponds to the internal size of the limiting card slots 5.
[0021] A telescopic motor 11 is fixedly installed at the top inside the mounting seat 8. An insertion through hole 10 running through the entire mounting seat 8 is provided inside the mounting seat 8. After the telescopic motor 11 is fixed, the output shaft of the telescopic motor 11 passes through the insertion through hole 10 and extends below the mounting seat 8. The lower end of the output shaft of the telescopic motor 11 is of a threaded column structure.
[0022] Adjusting ports 9 are provided on the left and right sides inside the placing frame 3. The adjusting ports 9 are located directly below the mounting seats 8. A material supporting plate 12 is clamped between the two adjusting ports 9. The left and right ends of the material supporting plate 12 are of a protruding structure size. The left and right ends of the material supporting plate 12 pass through the corresponding adjusting ports 9 and extend outside the placing frame 3. Connection jacks 13 are provided inside the protruding ends of both ends of the material supporting plate 12.
[0023] The inner part of the connection jack 13 is provided with a threaded hole. After the material supporting plate 12 is installed between the two adjusting openings 9, the lower end of the telescopic motor 11 is inserted into the inner part of the connection jack 13 and locked by a nut. After the material supporting plate 12 is installed between the two adjusting openings 9, the operation of the telescopic motor 11 drives the entire material supporting plate 12 to move up and down. During the use of the device, the fasteners placed on the material supporting plate 12 can be vibrated periodically, so that the fasteners will not always touch each other.
[0024] The working principle of the present utility model:
[0025] By providing a material supporting plate 12 that can vibrate, after the material supporting plate 12 is placed into the inner part of the placing frame 3, both ends of the material supporting plate 12 extend outside the placing frame 3 through the corresponding adjusting openings 9. Then, the telescopic motor 11 is fixedly installed on the tops of the two mounting seats 8. The output shaft of the telescopic motor 11 passes through the corresponding telescopic motor 11 and is inserted into the inner part of the corresponding connection jack 13. After that, the output shaft of the telescopic motor 11 is locked with a nut, and the position of the material supporting plate 12 will be restricted. Since the overall size of the material supporting plate 12 corresponds to the inner size of the placing frame 3, when the material supporting plate 12 moves up and down, the fasteners stored in the inner part of the placing frame 3 will be driven to vibrate, so that during the processing, the workpieces will not always be close together due to vibration, and the outside of the fasteners can all be galvanized, greatly improving the galvanizing efficiency of the device.
[0026] By providing a placing frame 3 that can be disassembled as a whole, after the material supporting plate 12 is installed in the inner part of the placing frame 3, the fasteners to be processed are put into the inner part of the placing frame 3. Then, the entire placing frame 3 is lifted into the inner part of the processing tank 1 by the disassembly and assembly handrails 7 installed on both sides outside the placing frame 3. After both sides of the placing frame 3 are clamped into the corresponding limiting card slots 5 for positioning, when the entire device operates, the spraying structure 6 drives the galvanizing solution in the inner part of the processing tank 1 to flow. The bottom of the placing frame 3 is a hollow structure. After the placing frame 3 is placed into the inner part of the processing tank 1, the galvanizing solution flows into the placing frame 3 through the through holes on the surface of the placing frame 3. During the vibration of the material supporting plate 12, the fasteners are galvanized. After the processing is completed, the entire placing frame 3 is lifted out, and all the processed fasteners can be taken out. When in use, it is more convenient to store and access materials, improving the convenience of the device.
[0027] The above shows and describes the basic principle, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed.
Claims
1. A hot-dip galvanizing device for fastener processing, comprising a processing tank (1), an external discharge pipe (2) communicating with the inside of the processing tank (1) is installed on the processing tank (1) to discharge the internal material of the processing tank (1) through the discharge pipe (2), and limiting clamping grooves (5) are formed on the left and right side wall surfaces inside the processing tank (1), characterized in that: The interior of the limiting card slot (5) is of an arc surface structure. A placement frame (3) is arranged between the two limiting card slots (5). A gushing structure (6) for the flow of materials inside the processing tank (1) is laid on the inner bottom surface of the processing tank (1). Placement card slots (4) are opened at the centers of both sides above the processing tank (1). Disassembly and installation handrails (7) are fixedly installed at the centers of the outer sides of both sides of the placement frame (3). The size of the disassembly and installation handrail (7) corresponds to the internal size of the placement card slot (4). After the placement frame (3) is clamped inside the processing tank (1), the two disassembly and installation handrails (7) are inserted into the corresponding placement card slots (4). The inner bottom surface of the placement frame (3) is hollow.
2. The hot-dip galvanizing device for fastener processing according to claim 1, characterized in that: Through holes are opened in the inner sides of the four sides of the placement frame (3). Mounting seats (8) are fixedly installed on the outer wall surfaces of the left and right sides of the placement frame (3). The size of the mounting seat (8) corresponds to the internal size of the limiting card slot (5).
3. The hot-dip galvanizing device for fastener processing according to claim 2, wherein: A telescopic motor (11) is fixedly installed at the top of the interior of the mounting seat (8). An insertion through hole (10) running through the entire mounting seat (8) is opened in the interior of the mounting seat (8). The output shaft of the telescopic motor (11) passes through the insertion through hole (10) and extends below the mounting seat (8).
4. A hot-dip galvanizing device for fastener processing according to claim 1, characterized in that: Adjustment openings (9) are opened on both the left and right sides inside the placement frame (3). The adjustment openings (9) are located directly below the mounting seats (8). A material supporting plate (12) is clamped between the two adjustment openings (9).
5. The hot-dip galvanizing device for fastener processing according to claim 4, characterized in that: The left and right ends of the material supporting plate (12) are of a protruding structure size. The left and right ends of the material supporting plate (12) pass through the corresponding adjustment openings (9) and extend to the outside of the placement frame (3). Connecting jacks (13) are opened inside the protruding ends of both ends of the material supporting plate (12).
6. The hot-dip galvanizing device for fastener processing according to claim 5, characterized in that: Threaded holes are opened inside the connecting jacks (13). After the material supporting plate (12) is installed between the two adjustment openings (9), the lower end of the telescopic motor (11) is inserted into the connecting jack (13) and locked with a nut.