Galvanizing equipment for heat preservation nail processing

By designing a galvanizing equipment for thermal insulation nail processing, using mobile mechanisms to automate the loading and unloading and electroplating processes, the existing devices are solved frequently and unstable operations, and a more efficient and stable galvanizing processing process is achieved.

CN222861683UActive Publication Date: 2025-05-13TIANJIN TIANYU SHENGTONG NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202420689151.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-07
Publication Date
2025-05-13
Estimated Expiration
2034-04-07

AI Technical Summary

Technical Problem

The frequent operation of existing galvanizing devices is not conducive to improving work efficiency, and the method of using electromagnets to adsorb the filter cartridge is unstable and is easily impacted and fall off, causing unnecessary losses.

Method used

A galvanized equipment for thermal insulation nail processing is designed, including a work frame, a support plate, a driving mechanism, a charging barrel and an electroplating barrel. The loading barrel is moved from the inlet and outlet to the support arm through the moving mechanism, and the loading barrel on the support plate moves downward into the electroplating barrel. After the electroplating is completed, the loading barrel is lifted, and the plating liquid is dried and then removed from the work rack.

Benefits of technology

The galvanizing equipment does not require frequent adjustment of the position of the support plate, and the loading and discharge are more convenient and stable, reducing the risk of collision with objects outside the range and improving work efficiency.

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Abstract

The utility model discloses galvanizing equipment for heat preservation nail processing, and belongs to the field of research and development of galvanizing equipment. Comprising a working frame, a supporting plate longitudinally moving in the working frame, a driving mechanism arranged in the working frame and used for driving the supporting plate to move, a charging barrel placed on the supporting plate and an electroplating barrel fixedly arranged in the working frame and located below the charging barrel. The end, away from the driving mechanism, of the supporting plate is provided with supporting arms which are symmetrically arranged, the flange of the charging barrel is placed on the supporting arms, and the supporting arms are provided with moving mechanisms used for driving the charging barrel to move transversely. The end, away from the driving mechanism, of the working frame is provided with an inlet and outlet allowing the charging barrel to go in and out. The equipment is safer and more stable in use and high in working efficiency.
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Description

Technical Field

[0001] The utility model relates to the technical field of research and development of galvanizing equipment, in particular to galvanizing equipment for processing heat-insulating nails. Background Art

[0002] At present, galvanizing refers to a surface treatment technology that coats a layer of zinc on the surface of metal, alloy or other materials for aesthetic purposes and to prevent rust. Insulation nails are one of the tools for fixing insulation materials. In the production process of insulation nails, in order to increase the service life of the insulation nails, the surface of the insulation nails is usually galvanized through a galvanizing device.

[0003] After investigation, the Chinese utility model patent with the publication number CN211445940U discloses a device for galvanizing the surface of iron nails, including a bottom plate, a first pillar, a second pillar and a placing table are fixedly connected to the bottom plate, an electroplating tank is provided between the first pillar and the second pillar, a groove is provided on the side of the first pillar close to the second pillar, and a lead screw and a guide rod are vertically installed in the groove, a first motor is provided on the top of the first pillar, the output end of the first motor passes through the top of the first pillar and is connected to the lead screw for transmission, a slider is connected between the lead screw and the guide rod, a first fixed plate is fixedly connected to the side of the slider away from the first pillar, and a filter cylinder is provided on the first fixed plate. A second motor is embedded in the top of the second pillar, and a rotating block is connected above the second motor, and a second fixed plate is fixedly connected to the side of the rotating block close to the first pillar; the device controls the slider through the lead screw, thereby controlling the first fixed plate to move up and down, immersing and lifting the filter cylinder in the electroplating tank, and realizing the loading and unloading work by setting an electromagnet on the second fixed plate to adsorb the filter cylinder and rotate the second fixed plate. However, in this device, the filter cylinder is fixed in the circular hole on the first fixed plate. When loading and unloading, the position of the first fixed plate needs to be adjusted frequently to prevent the filter cylinder from rotating. For example, when loading, the first fixed plate needs to be slid to the bottom of the filter cylinder, and when the filter cylinder is transferred to the top, the first fixed plate needs to be slid to the upper position of the filter cylinder to catch the filter cylinder, and then the first fixed plate needs to be controlled to descend for galvanizing. When unloading, the first fixed plate needs to be slid to the second fixed plate position, and then the first fixed plate needs to be slid to the bottom of the filter cylinder after the electromagnet is adsorbed, and then the filter cylinder can be transferred. Frequent operation is not conducive to improving the working efficiency of the device; the method of using electromagnets to adsorb the filter cylinder is not stable, and it is easy to be hit and fall off during rotation, causing unnecessary losses.

[0004] Therefore, the utility model provides a galvanizing device for processing heat-insulating nails to solve the above problems. Utility Model Content

[0005] 1. Technical issues to be resolved

[0006] The utility model provides a galvanizing device for processing heat-insulating nails, aiming to solve the problems in the background technology that the existing device is frequently operated and is not conducive to improving work efficiency.

[0007] (II) Technical solution

[0008] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: The utility model provides a galvanizing equipment for processing thermal insulation nails, comprising a work frame, a support plate that moves longitudinally inside the work frame, a driving mechanism arranged inside the work frame for driving the support plate to move, a loading barrel placed on the support plate, and a plating barrel fixedly arranged inside the work frame below the loading barrel, the support plate having a symmetrically arranged support arm at one end away from the driving mechanism, the loading barrel flange being placed on the support arm, the support arm being provided with a moving mechanism for driving the loading barrel to move laterally, and the work frame having an exit and an inlet and an outlet for accommodating the loading barrel to enter and exit at one end away from the driving mechanism.

[0009] Preferably, the driving mechanism includes a screw that is rotatably arranged inside the working frame and threadedly connected to the support plate, a first motor that is fixedly arranged on the top of the working frame and whose output end is fixedly connected to one end of the screw, and a guide rod that is fixedly connected to the working frame and longitudinally penetrates the support plate, and the support plate is slidably connected to the guide rod. When the galvanizing equipment starts working, the support plate is moved to a suitable height, and the heat-insulating nails that need to be galvanized are loaded into the loading barrel. The loading barrel is moved from the entrance to the support arm on the support plate by the moving mechanism, and the first motor is turned on to control the screw to rotate, thereby controlling the support plate to slide downward along the guide rod, and the loading barrel on the support plate moves downward into the electroplating barrel below, and the electroplating barrel is filled with electroplating liquid. After the electroplating of the heat-insulating nails is completed, the first motor is controlled to rotate in the opposite direction to lift the loading barrel out of the electroplating barrel and lift it to a high place. After the electroplating liquid is drained, the working frame is moved out by the moving mechanism.

[0010] Preferably, the moving mechanism includes a rotating shaft rotatably connected to the end of the support plate away from the inlet and outlet, a rotating wheel fixedly connected to both ends of the rotating shaft, a secondary wheel rotatably connected to the end of the support arm away from the rotating wheel, and a toothed belt mounted on the rotating wheel and the secondary wheel on the same side, and a second motor whose output end is connected to the rotating shaft is fixedly mounted on the support plate. When loading, the support plate is moved to a suitable height, and the loading barrel loaded with heat-insulating nails is brought into contact with the moving mechanism, and the toothed belt fits with the bottom of the flange of the loading barrel. The second motor rotates to drive the rotating shaft to rotate, and the rotating shaft drives the rotating wheel to rotate, thereby driving the toothed belt and the secondary wheel to rotate, and the toothed belt drives the loading barrel to move to the inside of the work frame and overlap on the support plate. After the electroplating work is completed and the support plate is slid to a suitable position, the second motor is rotated in the opposite direction to move the loading barrel out of the work frame.

[0011] Preferably, a side of the flange of the loading barrel in contact with the toothed belt is provided with a tooth groove engaged with the toothed belt, which can ensure that the toothed belt can move the loading barrel more stably.

[0012] Preferably, the working frame is fixedly connected to a placing frame at one end of the entrance and exit, and a conveyor belt is arranged on the placing frame. The placing frame and the conveyor belt are conducive to improving the convenience of loading and unloading, and the conveyor belt can be connected to other processing equipment of the heat preservation nails to improve the overall processing efficiency of the heat preservation nails.

[0013] Preferably, the upper surface of the conveyor belt is flush with the bottom surface of the loading barrel when it moves out of the inlet and outlet. The height of the conveyor belt needs to be set reasonably. If it is too high, the support plate will slide to the highest position during discharging, and the bottom of the loading barrel will not be able to reach the conveyor belt. If it is too low, the tooth groove at the bottom of the flange of the loading barrel will not be able to engage with the tooth belt during feeding, so it cannot be transferred to the working frame.

[0014] (III) Beneficial effects

[0015] When the galvanizing equipment starts working, the loading barrel is moved from the entrance to the support arm by the moving mechanism, and the support plate is controlled to slide downward along the guide rod, and the loading barrel on the support plate moves downward into the electroplating barrel below. After the galvanizing is completed, the loading barrel is lifted, and after the electroplating liquid is drained, it is moved out of the working frame by the moving mechanism. Compared with the existing technology, the galvanizing equipment does not need to frequently adjust the position of the support plate, and the loading and unloading of materials is more convenient and stable. It is carried out within the range of the device itself and is not easily affected by collisions with objects outside the range. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is the overall elevation view of the utility model;

[0017] Figure 2 It is a schematic diagram of the internal structure of the utility model;

[0018] Figure 3 for Figure 2 A partial enlarged view of the middle A;

[0019] Figure 4 It is a rear view of the utility model.

[0020] In the figure: 1. working frame; 11. entrance and exit; 2. driving mechanism; 21. support plate; 211. support arm; 22. screw rod; 23. guide rod; 24. first motor; 3. moving mechanism; 31. rotating shaft; 32. rotating wheel; 33. toothed belt; 34. auxiliary wheel; 35. second motor; 4. loading barrel; 5. electroplating barrel; 6. placement rack; 61. conveyor belt. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0022] The utility model provides a galvanizing equipment for processing heat preservation nails, referring to Figure 1 to Figure 2 , including a work frame 1, a support plate 21 longitudinally moving inside the work frame 1, a driving mechanism 2 arranged inside the work frame 1 for driving the support plate 21 to move, a loading barrel 4 placed on the support plate 21, and a plating barrel 5 fixedly arranged inside the work frame 1 below the loading barrel 4, the support plate 21 has a symmetrically arranged support arm 211 at one end away from the driving mechanism 2, the flange of the loading barrel 4 is placed on the support arm 211, and the support arm 211 is provided with a moving mechanism 3 for driving the loading barrel 4 to move horizontally, and the work frame 1 is provided with an inlet and outlet 11 at one end away from the driving mechanism 2 for accommodating the loading barrel 4 to enter and exit.

[0023] Among them, refer to Figure 1 to Figure 2 The driving mechanism 2 includes a screw rod 22 rotatably arranged inside the working frame 1 and threadedly connected to the support plate 21, a first motor 24 fixedly arranged on the top of the working frame 1 and with the output end fixedly connected to one end of the screw rod 22, and a guide rod 23 fixedly connected to the inside of the working frame 1 and longitudinally passing through the support plate 21, and the support plate 21 is slidably connected to the guide rod 23.

[0024] When the galvanizing equipment starts working, the support plate 21 is moved to a suitable height, and the insulation nails to be galvanized are loaded into the loading barrel 4. The loading barrel 4 is moved from the entrance 11 to the support arm 211 on the support plate 21 by using the moving mechanism 3. The first motor 24 is turned on and the screw rod 22 is controlled to rotate, thereby controlling the support plate 21 to slide downward along the guide rod 23. The loading barrel 4 on the support plate 21 moves downward into the electroplating barrel 5 below. The electroplating barrel 5 is filled with electroplating liquid. After the electroplating of the insulation nails is completed, the first motor 24 is controlled to rotate in the opposite direction to lift the loading barrel 4 out of the electroplating barrel 5 and lift it to a higher place. After the electroplating liquid is dried, the working frame 1 is moved out by the moving mechanism 3.

[0025] Further, see Figures 2 to 4The moving mechanism 3 includes a rotating shaft 31 rotatably connected to the end of the support plate 21 away from the entrance 11, a rotating wheel 32 fixedly connected to both ends of the rotating shaft 31, a secondary wheel 34 rotatably connected to the end of the support arm 211 away from the rotating wheel 32, and a toothed belt 33 mounted on the rotating wheel 32 and the secondary wheel 34 on the same side. A second motor 35 whose output end is connected to the rotating shaft 31 is fixedly installed on the support plate 21. When loading, the support plate 21 is moved to a suitable height, and the loading barrel 4 loaded with heat-insulating nails is brought into contact with the moving mechanism 3, and the toothed belt 33 is fitted with the bottom of the flange of the loading barrel 4. The second motor 35 rotates to drive the rotating shaft 31 to rotate, and the rotating shaft 31 drives the rotating wheel 32 to rotate, thereby driving the toothed belt 33 and the secondary wheel 34 to rotate, and the toothed belt 33 drives the loading barrel 4 to move to the inside of the working frame 1 and overlap on the support plate 21. After the electroplating work is completed and the support plate 21 is slid to a suitable position, the second motor 35 is rotated in the reverse direction to move the charging barrel 4 out of the working frame 1 .

[0026] It should be noted that, refer to Figures 2 to 3 The side of the flange of the loading barrel 4 that contacts the toothed belt 33 is provided with a tooth groove that meshes with the toothed belt 33, which can ensure that the toothed belt 33 moves the loading barrel 4 more stably.

[0027] Further, see Figure 1 The working frame 1 is fixedly connected to a placing frame 6 at one end of the entrance and exit 11, and a conveyor belt 61 is arranged on the placing frame 6. The placing frame 6 and the conveyor belt 61 are conducive to improving the convenience of loading and unloading, and the conveyor belt 61 can be connected with other processing equipment of the insulation nails to improve the overall processing efficiency of the insulation nails.

[0028] Further, refer to Figure 1 , the upper surface of the conveyor belt 61 is kept flush with the bottom surface of the loading barrel 4 when it moves out of the inlet and outlet 11. The height of the conveyor belt 61 needs to be set reasonably. If it is too high, the support plate 21 will slide to the highest position during discharging, and the bottom of the loading barrel 4 will not be able to reach the conveyor belt 61. If it is too low, the tooth groove at the bottom of the flange of the loading barrel 4 will not be able to engage with the toothed belt 33 during feeding, so that it cannot be transferred to the working frame 1.

[0029] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A galvanizing device for processing heat-insulating nails, comprising a work frame (1), a support plate (21) longitudinally moving inside the work frame (1), a driving mechanism (2) arranged inside the work frame (1) for driving the support plate (21) to move, a loading cylinder (4) placed on the support plate (21), and a plating cylinder (5) fixedly arranged inside the work frame (1) and located below the loading cylinder (4); Features: The support plate (21) has a symmetrically arranged support arm (211) at one end away from the driving mechanism (2), the flange of the charging barrel (4) is placed on the support arm (211), and the support arm (211) is provided with a moving mechanism (3) for driving the charging barrel (4) to move horizontally. The working frame (1) has an inlet and outlet (11) at one end away from the driving mechanism (2) for accommodating the charging barrel (4) to enter and exit.

2. The galvanizing equipment for processing heat-insulating nails according to claim 1 is characterized in that: The driving mechanism (2) comprises a screw rod (22) rotatably arranged inside the working frame (1) and threadedly connected to the support plate (21), a first motor (24) fixedly arranged on the top of the working frame (1) and having an output end fixedly connected to one end of the screw rod (22), and a guide rod (23) fixedly connected to the inside of the working frame (1) and longitudinally penetrating the support plate (21), wherein the support plate (21) is slidably connected to the guide rod (23).

3. The galvanizing equipment for processing heat-insulating nails according to claim 2 is characterized in that: The moving mechanism (3) comprises a rotating shaft (31) rotatably connected to an end of the support plate (21) away from the entrance (11), rotating wheels (32) fixedly connected to both ends of the rotating shaft (31), a secondary wheel (34) rotatably connected to an end of the support arm (211) away from the rotating wheel (32), and a toothed belt (33) sleeved on the rotating wheel (32) and the secondary wheel (34) on the same side. A second motor (35) having an output end connected to the rotating shaft (31) is fixedly mounted on the support plate (21).

4. The galvanizing equipment for processing heat-insulating nails according to claim 3 is characterized in that: A tooth groove meshing with the toothed belt (33) is provided on a side of the flange of the charging barrel (4) that contacts the toothed belt (33).

5. The galvanizing equipment for processing heat-insulating nails according to claim 4, characterized in that: The working frame (1) is fixedly connected to a placement frame (6) at one end located at the entrance (11), and a conveyor belt (61) is arranged on the placement frame (6).

6. The galvanizing equipment for processing heat-insulating nails according to claim 5, characterized in that: The upper surface of the conveyor belt (61) remains flush with the bottom surface of the charging barrel (4) when it moves out of the entrance (11).

Citation Information

Patent Citations

  • Iron nail surface galvanizing device

    CN211445940U