A coating bucket transfer device for anti-corrosion coating processing
By introducing an X-axis fixing plate, a Y-axis fixing plate, and an adjustable transfer mounting assembly into the paint bucket transfer device, and using a motor-driven lead screw to achieve stable clamping of the paint bucket, the problem of swaying during the transfer process is solved, and the adaptability and safety of the device are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JINCAI NEW MATERIALS (SHANGHAI) CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-06-02
AI Technical Summary
Existing paint bucket transfer devices are prone to shaking during movement and are difficult to adapt to paint buckets of different sizes and types, leading to increased operational difficulty and safety hazards.
An adjustable transfer and installation assembly is adopted, which combines an X-axis fixed plate and a Y-axis fixed plate, including a transfer moving plate, a reinforcing plate, a trapezoidal moving block, a limit clamping arm, and an arc-shaped clamping ring. The linear motion and position adjustment are achieved by a motor-driven lead screw, ensuring the stable clamping of the paint bucket.
This technology ensures the stability and adaptability of paint buckets during transport, reduces the risk of shaking, and improves the convenience and safety of operation.
Smart Images

Figure CN224311802U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating processing technology, and in particular to a coating bucket transfer device for anti-corrosion coating processing. Background Technology
[0002] In existing paint processing, limiting the paint buckets is inconvenient, causing the paint buckets to shake inside the device when it is moved, making it unstable. At the same time, limiting the device after it has been moved to the designated position is also inconvenient.
[0003] A patent with publication number CN221498085U discloses a paint bucket transfer device for anti-corrosion coating processing. This patent includes a base plate, a lifting mechanism, a limiting mechanism, a sliding plate, a slider, an inclined block, a wedge block, an elastic block, a top rod, a pressure plate, a dovetail block, a screw, a turntable, a support plate, a guide rod, a connecting rod, and a limiting ring. In use, moving the top rod 36 causes the wedge block 34 to move and the inclined block 33 to slide. The movement of the wedge block 34 and the relative sliding of the inclined block 33 by the top rod 36 allows the sliding plate 31 to rise and fall relative to the support 2, thereby allowing the wheels 4 to rise and fall relative to the support 2. This facilitates movement of the device via the wheels 4. After the device reaches a designated position, the top rod 36 is reset, allowing the wheels 4 to move into the support 2, enabling the support 2 to move and contact the ground for stable placement. The paint bucket is then placed on the base plate 1, contacting the fixing ring 8, which limits the paint bucket's position. Finally, the screw is rotated by the turntable 72. 71. The screw 71 rotates and the support plate 73 makes a threaded movement, which in turn causes the support plate 73 to drive the limiting ring 76 to move downwards through the connecting rod 75 and fit onto the outside of the paint bucket, thus limiting the paint bucket and ensuring that the paint bucket is placed stably in the device when it moves, preventing the paint bucket from shaking during the movement; the fixing ring 8 limits the paint bucket, and the screw 71 rotates and the support plate 73 makes a threaded movement, which in turn causes the support plate 73 to drive the limiting ring 76 to move downwards through the connecting rod 75 and fit onto the outside of the paint bucket, thus limiting the paint bucket and ensuring that the paint bucket is placed stably in the device when it moves, preventing the paint bucket from shaking during the movement; the push rod 36 drives the wedge block 34 to move and the inclined block 33 to slide relative to it, which in turn allows the slide plate 31 to rise and fall relative to the support 2, which in turn allows the wheel 4 to rise and fall relative to the support 2, making it easy for the device to move through the wheel 4 while the support 2 can move and contact the ground to ensure the device is placed stably. However, the following problems still exist in this patent:
[0004] When transferring paint buckets, the lack of effective limiting and fixing measures makes the paint buckets prone to shaking inside the device. This not only affects the quality of the paint but may also cause damage to the paint buckets or even safety accidents. After moving them to the designated location, additional measures are often required to ensure the stability of the device, which increases the difficulty of operation and time costs. Traditional transfer devices are often unable to adapt to paint buckets of different sizes and types, resulting in the need for frequent adjustments or replacements of equipment during use.
[0005] To address the above problems, a coating bucket transfer device for anti-corrosion coating processing needs to be designed to overcome these issues. Utility Model Content
[0006] The main objective of this invention is to provide a coating bucket transfer device for anti-corrosion coating processing, which can effectively solve the problems in the background art.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] A coating bucket transfer device for anti-corrosion coating processing includes an X-axis fixing plate and a Y-axis fixing plate, wherein an adjustable transfer installation component is provided at one end of the top of the Y-axis fixing plate.
[0009] The adjustable transfer and installation assembly includes a transfer moving plate disposed at one end of the top of a Y-axis fixed plate. A reinforcing plate is installed on one side of the transfer moving plate. An adjustment groove is formed on the top of the reinforcing plate. A trapezoidal moving block is installed inside the adjustment groove. A fixed shaft is installed on the top of the trapezoidal moving block. A limit clamping arm is installed at one end of the fixed shaft. Two clamping cavities are provided on one side of the limit clamping arm. A transfer platform is installed on the top of the transfer moving plate. A reinforcing strip is installed at the top end of the transfer platform away from the limit clamping arm. Adjusting cylinders are installed at both ends of the top of the reinforcing strip. Adjusting shafts are installed on the inner walls of the two adjusting cylinders. L-shaped fixed plates are installed on the top of the two adjusting shafts. A reinforcing frame is installed on one side of the L-shaped fixed plate. Fixed blocks are installed on the upper and lower sides of the two reinforcing frames. Mounting rods are installed at the ends of the four fixing blocks away from the L-shaped fixed plates. Arc-shaped clamping rings are installed at the ends of the mounting rods away from the fixing blocks.
[0010] As a preferred embodiment of this utility model, a motor is installed at one end of the top of the X-axis fixing plate and the Y-axis fixing plate, a coupling is installed at one end of the motor, a lead screw is installed at the end of the two couplings away from the motor, a limit block is installed at the end of the outer wall of the lead screw near the coupling, a limit seat is installed at the end of the two lead screws away from the limit block, a linear motion guide rail is installed on the top of both the X-axis fixing plate and the Y-axis fixing plate, and a sliding block is installed at one end of the top of each of the two linear motion guide rails.
[0011] As a preferred embodiment of this utility model, the transfer moving plate is fixedly connected to the reinforcing plate, the trapezoidal moving block is in contact with the adjusting groove, and the trapezoidal moving block is threadedly fixedly connected to the fixed shaft.
[0012] In a preferred embodiment of this utility model, the fixed shaft is fixedly connected to the limiting clamping arm, and the bottom of the limiting clamping arm contacts the top of the transfer table.
[0013] As a preferred embodiment of this utility model, the transfer platform is fixedly connected to the reinforcing strip, the reinforcing strip is threadedly fixedly connected to the two adjusting cylinders, the adjusting cylinders are threadedly fixedly connected to the adjusting shaft, and the adjusting shaft is threadedly fixedly connected to the two L-shaped fixing plates.
[0014] As a preferred embodiment of this utility model, the two L-shaped fixing plates are fixedly connected to the two reinforcing frames, and the two reinforcing frames are all threadedly connected to the four fixing blocks through adjusting shafts. The four fixing blocks are threadedly connected to the four mounting rods, and the mounting rods are threadedly connected to the arc-shaped clamping rings.
[0015] In a preferred embodiment of this utility model, the motor is connected to the lead screw via a coupling, the limiting block is threadedly fixed to the lead screw, the movable slider contacts the top of the linear guide rail, and the movable slider is threadedly fixed to the transfer plate.
[0016] Beneficial effects
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] This anti-corrosion coating processing paint bucket transfer device uses a motor-driven coupling to move a lead screw, causing a moving slider to drive a transfer plate in a linear motion. An X-axis fixing plate and a Y-axis fixing plate enable linear motion of the transfer plate along the X and Y axes. A trapezoidal moving block moves within an adjustment groove to adjust the position of the limiting clamping arm. A clamping cavity grips the paint bucket, ensuring transfer stability. An adjustment shaft facilitates adjustment of the L-shaped fixing plate's angle. An adjustment cylinder limits the adjustment shaft's position. A reinforcing frame enhances the stability of the fixing block. An installation rod allows for easy installation of an arc-shaped clamping ring. The arc-shaped clamping ring, in conjunction with the clamping cavity, clamps one end of the paint bucket. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 2 This is a schematic diagram of the top mounting structure of the Y-axis fixing plate of this utility model;
[0021] Figure 3 This is a schematic diagram of the overall structure of the adjustable transfer and installation component of this utility model;
[0022] Figure 4 This is a partial disassembled structural diagram of the adjustable transport and installation component of this utility model.
[0023] In the diagram: 1. X-axis fixed plate; 2. Y-axis fixed plate; 3. Adjustable transfer mounting assembly; 4. Motor; 5. Coupling; 6. Limit block; 7. Lead screw; 8. Linear guide rail; 9. Limit seat; 10. Moving slider; 301. Transfer moving plate; 302. Reinforcing plate; 303. Adjusting groove; 304. Trapezoidal moving block; 305. Fixed shaft; 306. Limit clamping arm; 307. Clamping cavity; 308. Transfer table; 309. Reinforcing strip; 310. Adjusting cylinder; 311. Adjusting shaft; 312. L-shaped fixed plate; 313. Reinforcing frame; 314. Fixed block; 315. Mounting rod; 316. Arc-shaped clamping ring. Detailed Implementation
[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0025] like Figures 1-4 As shown, a coating bucket transfer device for anti-corrosion coating processing includes an X-axis fixing plate 1 and a Y-axis fixing plate 2. An adjustable transfer installation component 3 is provided at one end of the top of the Y-axis fixing plate 2.
[0026] The adjustable transfer mounting assembly 3 includes a transfer moving plate 301 disposed at one top end of the Y-axis fixed plate 2. A reinforcing plate 302 is mounted on one side of the transfer moving plate 301. An adjustment groove 303 is formed on the top of the reinforcing plate 302. A trapezoidal moving block 304 is installed inside the adjustment groove 303. A fixed shaft 305 is mounted on the top of the trapezoidal moving block 304. A limit clamping arm 306 is mounted on one end of the fixed shaft 305. Two clamping cavities 307 are provided on one side of the limit clamping arm 306. A transfer table 308 is mounted on the top of the transfer moving plate 301. The top of the transfer table 308 is away from the limit clamping arm. A reinforcing strip 309 is installed at one end of the clamping arm 306. Adjusting cylinders 310 are installed at both ends of the top of the reinforcing strip 309. Adjusting shafts 311 are installed on the inner walls of the two adjusting cylinders 310. L-shaped fixing plates 312 are installed on the top of the two adjusting shafts 311. A reinforcing frame 313 is installed on one side of the L-shaped fixing plate 312. Fixing blocks 314 are installed on the upper and lower sides of the two reinforcing frames 313. An installation rod 315 is installed at the end of the four fixing blocks 314 away from the L-shaped fixing plate 312. An arc-shaped clamping ring 316 is installed at the end of the installation rod 315 away from the fixing block 314.
[0027] A motor 4 is installed at one end of the top of the X-axis fixing plate 1 and the Y-axis fixing plate 2. A coupling 5 is installed at one end of the motor 4. A lead screw 7 is installed at the end of the two couplings 5 away from the motor 4. A limit block 6 is installed at the end of the outer wall of the lead screw 7 close to the coupling 5. A limit seat 9 is installed at the end of the two lead screws 7 away from the limit block 6. A linear motion guide rail 8 is installed on the top of both the X-axis fixing plate 1 and the Y-axis fixing plate 2. A sliding slider 10 is installed at one end of the top of each of the two linear motion guide rails 8.
[0028] The transfer moving plate 301 is fixedly connected to the reinforcing plate 302. The trapezoidal moving block 304 contacts the adjusting groove 303 and is threadedly fixedly connected to the fixed shaft 305. The fixed shaft 305 is fixedly connected to the limiting clamping arm 306, and the bottom of the limiting clamping arm 306 contacts the top of the transfer table 308. The transfer table 308 is fixedly connected to the reinforcing strip 309, which is threadedly fixedly connected to two adjusting cylinders 310. The adjusting cylinders 310 are threadedly fixedly connected to the adjusting shaft 311, which is threadedly fixedly connected to two L-shaped fixing plates 312. The two L-shaped fixing plates 312 are fixedly connected to two reinforcing frames 313, which are threadedly fixedly connected to four fixing blocks 314 via the adjusting shaft 311. The four fixing blocks 314 are threadedly fixedly connected to four mounting rods 315, and the mounting rods 315 are threadedly fixedly connected to the arc-shaped clamping ring 316.
[0029] Motor 4 is connected to lead screw 7 via coupling 5, limit block 6 is threadedly fixed to lead screw 7, movable slider 10 contacts the top of linear guide rail 8, and movable slider 10 is threadedly fixed to transfer moving plate 301.
[0030] The X-axis fixing plate 1 and Y-axis fixing plate 2 are respectively installed on the base plate, ensuring that they are perpendicular to each other. The motor 4 is installed at one end of the Y-axis fixing plate 2, ensuring that the motor is in the correct position. The motor 4 is connected to the lead screw 7 through the coupling 5. The limit block 6 is installed on the lead screw 7 to limit the movement range of the lead screw. The moving slider 10 is placed on the guide rail 8 so that it can slide freely. The transfer moving plate 301 is fixed on the moving slider 10 and they are connected together with screws.
[0031] The limiting clamping arm 306 is mounted on the fixed shaft 305 so that it can rotate. The clamping cavity 307 is installed on the transfer moving plate, corresponding to the placement position of the paint bucket. The adjusting cylinder 310 and the adjusting shaft 311 are installed to adjust the angle of the L-shaped fixed plate 312. The reinforcing frame 313 and the fixing block 314 are installed and fixed on the L-shaped fixed plate 312. The mounting rod 315 and the arc-shaped clamping ring 316 are installed and threaded onto the fixing block 314. The motor 4 is started, and it is checked whether the transfer moving plate 301 can move smoothly in the X and Y axis directions. The limiting clamping arm 306 and the arc-shaped clamping ring 316 are adjusted to ensure that they can firmly clamp the paint bucket.
[0032] It should be noted that this utility model is a paint bucket transfer device for anti-corrosion coating processing. In use, the paint bucket is placed at the designated position on the transfer device, usually on the transfer moving plate 301, ensuring the paint bucket is directly above the clamping cavity 307 for clamping. The motor 4 is operated, driving the lead screw 7 via the coupling 5, causing the moving slider 10 to move along the linear guide rail 8, thereby moving the transfer moving plate 301 and the paint bucket together until the paint bucket reaches the predetermined clamping position. By manually pushing the trapezoidal moving block 304 within the adjusting groove 303, the position of the limiting clamping arm 306 is adjusted, ensuring the limiting clamping arm 306 accurately contacts both sides of the paint bucket. Under the action of the fixed shaft 305, the limiting clamping arm 306 is tightly pressed against both sides of the paint bucket, achieving initial fixation. By rotating the adjusting cylinder 310, and then rotating the adjusting shaft 311, the angle of the L-shaped fixing plate 312 is adjusted to ensure the paint bucket is securely clamped. The reinforcing frame 313 and the fixing... The function of block 314 is to enhance the stability of L-shaped fixing plate 312 and prevent the fixing plate from deforming due to excessive force during the transfer process. The mounting rod 315 is threadedly fixed to the arc-shaped clamping ring 316. The arc-shaped clamping ring 316 is installed on the top or bottom of the paint bucket and cooperates with the clamping cavity 307 to form a complete clamping structure, ensuring that the paint bucket will not fall off or shake during the transfer process. After confirming that the paint bucket is firmly clamped, the motor 4 is operated again to drive the transfer moving plate 301 to move in the X and Y axis directions, transferring the paint bucket to the processing position or storage position. During the transfer process, the limit block 6 and the limit seat 9 limit the movement range of the lead screw 7 to prevent the transfer moving plate 301 from exceeding the boundary of the work platform. After reaching the designated position, the motor 4 is operated in reverse to make the moving slider 10 return to the initial position. The trapezoidal moving block 304 and the adjusting cylinder 310 are manually adjusted to release the limit clamping arm 306 and the arc-shaped clamping ring 316, thereby releasing the paint bucket from the clamping state.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A kind of anticorrosive coating processing coating bucket transfer device, including X axis fixed plate (1), Y axis fixed plate (2), it is characterized by: An adjustable transfer mounting assembly (3) is provided at one end of the top of the Y-axis fixing plate (2); The adjustable transfer mounting assembly (3) includes a transfer moving plate (301) disposed at one end of the top of the Y-axis fixed plate (2). A reinforcing plate (302) is mounted on one side of the transfer moving plate (301). An adjustment groove (303) is provided on the top of the reinforcing plate (302). A trapezoidal moving block (304) is installed inside the adjustment groove (303). A fixed shaft (305) is mounted on the top of the trapezoidal moving block (304). A limit clamping arm (306) is mounted on one end of the fixed shaft (305). Two clamping cavities (307) are provided on one side of the limit clamping arm (306). A transfer platform (308) is mounted on the top of the transfer moving plate (301). The top of the transfer platform (308) is away from the limit clamping arm. A reinforcing strip (309) is installed at one end of the clamping arm (306). An adjusting cylinder (310) is installed at both ends of the top of the reinforcing strip (309). An adjusting shaft (311) is installed on the inner wall of the two adjusting cylinders (310). An L-shaped fixing plate (312) is installed on the top of the two adjusting shafts (311). A reinforcing frame (313) is installed on one side of the L-shaped fixing plate (312). Fixing blocks (314) are installed on the upper and lower sides of the two reinforcing frames (313). An installation rod (315) is installed at the end of the four fixing blocks (314) away from the L-shaped fixing plate (312). An arc-shaped clamping ring (316) is installed at the end of the installation rod (315) away from the fixing block (314).
2. The anticorrosive coating processing paint bucket transfer device according to claim 1, characterized in that: A motor (4) is installed at one end of the top of the X-axis fixing plate (1) and the Y-axis fixing plate (2). A coupling (5) is installed at one end of the motor (4). A lead screw (7) is installed at the end of the two couplings (5) away from the motor (4). A limit block (6) is installed at the end of the outer wall of the lead screw (7) close to the coupling (5). A limit seat (9) is installed at the end of the two lead screws (7) away from the limit block (6). A linear moving guide rail (8) is installed on the top of both the X-axis fixing plate (1) and the Y-axis fixing plate (2). A sliding block (10) is installed at one end of the top of both linear moving guide rails (8).
3. The anticorrosive coating processing paint bucket transfer device according to claim 1, characterized in that: The transfer moving plate (301) is fixedly connected to the reinforcing plate (302), the trapezoidal moving block (304) is in contact with the adjusting groove (303), and the trapezoidal moving block (304) is threadedly fixedly connected to the fixed shaft (305).
4. The coating bucket transfer device for anti-corrosion coating processing according to claim 1, characterized in that: The fixed shaft (305) is fixedly connected to the limiting clamping arm (306), and the bottom of the limiting clamping arm (306) contacts the top of the transfer table (308).
5. The coating bucket transfer device for anti-corrosion coating processing according to claim 1, characterized in that: The transfer table (308) is fixedly connected to the reinforcing strip (309), the reinforcing strip (309) is threadedly fixedly connected to the two adjusting cylinders (310), the adjusting cylinders (310) are threadedly fixedly connected to the adjusting shaft (311), and the adjusting shaft (311) is threadedly fixedly connected to the two L-shaped fixing plates (312).
6. The coating bucket transfer device for anti-corrosion coating processing according to claim 1, characterized in that: The two L-shaped fixing plates (312) are fixedly connected to the two reinforcing frames (313). The two reinforcing frames (313) are all threadedly connected to the four fixing blocks (314) through the adjusting shaft (311). The four fixing blocks (314) are threadedly connected to the four mounting rods (315). The mounting rods (315) are threadedly connected to the arc-shaped clamping ring (316).
7. The coating bucket transfer device for anti-corrosion coating processing according to claim 2, characterized in that: The motor (4) is connected to the lead screw (7) via a coupling (5), the limiting block (6) is threadedly fixed to the lead screw (7), the movable slider (10) contacts the top of the linear guide rail (8), and the movable slider (10) is threadedly fixed to the transfer moving plate (301).