Whole-body dip-coating device of outdoor wear-resistant total-iron detachable bed

By designing a full-body dip coating device for a full-iron bed, the problem that the bed body does not fully cover the paint during the dip coating process is solved, and the whole-body disposable dip coating and uniformity of the paint of the bed body is achieved, reducing the process complexity and workload.

CN222901554UActive Publication Date: 2025-05-27HENAN XINLONG OUTDOOR PRODUCTS CO LTD
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Patent Information

Application Number
CN202421443407.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-05-27
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

When dipping the bed, the part in contact with the bed is not completely covered with the paint, resulting in manual feeding and separate later, which increases the complexity of the process and the workload of workers.

Method used

A full-body dip coating device for an outdoor wear-resistant fully iron removable bed is designed. By inverting the bed body and fixing the feet with a clamping plate and clamping mechanism, the whole-body dip coating of the bed body is realized, and the coating is uniformly uniform through the swing mechanism.

Benefits of technology

The whole-body disposable dip coating of the bed body is realized, reducing the need for later feeding, reducing the complexity and workload of the process, and improving the dip coating quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a whole-body dip-coating device of an outdoor wear-resistant total-iron detachable bed, which comprises a dip-coating box, brackets are arranged on the two sides of the upper surface of the dip-coating box, a mounting shell is arranged on the two brackets together, two first electric push rods are arranged on the lower side of the mounting shell through a moving mechanism, and two second electric push rods are arranged on the lower side of the mounting shell. A mounting plate is jointly mounted at the end parts of the telescopic ends of the two first electric push rods, a rotating shaft is rotationally mounted in the mounting plate through a connecting shaft, and a swing mechanism capable of driving the rotating shaft to rotate is arranged on the side surface of the mounting plate; transverse plates are arranged on the two sides, in the length direction, below the rotating shaft, upper top plates are arranged on the two sides, in the length direction, below the transverse plates, and lower bases are installed below the upper top plates through connecting rods. By fixing the interiors of the supporting legs, the whole body of the bed body is not shielded, the purpose of whole body dip-coating of the whole bed body can be completed at a time, independent manual material supplementing in the later period is not needed, and the process complexity and the workload of workers are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of dip coating devices, in particular to a whole-body dip coating device for an outdoor wear-resistant all-iron detachable bed. Background Art

[0002] Dip coating is a coating technology commonly used to cover the surface of an object to provide protection, increase wear resistance, or change the appearance. This technology involves gradually immersing the object in a coating or liquid and then slowly lifting it out so that the coating forms a thin film on the surface of the object. Dip coating can be used for many materials, such as metals, plastics, glass, etc. Common applications include anti-corrosion treatment, surface lubrication, and decorative coatings.

[0003] Currently, when dip coating a bed, a hoist is usually used to lift the bed body and place it in the coating. However, the part of the hoist in contact with the bed body does not completely cover the coating, resulting in the need for manual replenishment later, increasing the complexity of the process and the workload of workers. Content of the Utility Model

[0004] The purpose of the utility model is to provide a whole-body dip coating device for an outdoor wear-resistant all-iron detachable bed that can complete the whole-body dip coating of the entire bed body at one time.

[0005] To achieve the above purpose, the technical solution of the utility model is as follows.

[0006] A whole-body dip coating device for an outdoor wear-resistant all-iron detachable bed includes a dip coating tank. Brackets are installed on both sides of the upper surface of the dip coating tank. An installation housing is jointly installed on the two brackets. Two first electric push rods are installed on the lower side of the installation housing through a moving mechanism. An installation plate is jointly installed at the ends of the telescopic ends of the two first electric push rods. A rotating shaft is rotatably installed inside the installation plate through a connecting shaft. A swinging mechanism capable of driving the rotating shaft to rotate is arranged on the side surface of the installation plate. On both sides of the lower part of the rotating shaft in its length direction, cross plates are arranged. On both sides of the lower part of the cross plates in their length directions, upper top plates are arranged. A lower base is installed below the upper top plate through a connecting rod. Four through grooves are coaxially arranged in an array inside the lower base. Slide rods are installed inside the through grooves. Clamping plates are slidably installed on the outer surfaces of the slide rods. A clamping mechanism capable of driving the four clamping plates to simultaneously move away from the center position of the lower base is arranged on the lower side of the upper top plate.

[0007] It can be seen that by placing the bed upside down, inserting the four clamping plates into the inside of the bed legs, and using the clamping mechanism to drive the four clamping plates to tightly press against the inner wall of the bed legs for fixation, the bed body can then be lifted and placed in the dip coating tank. Since the inside of the legs is fixed, the whole body of the bed is not blocked, and the purpose of dip coating the whole body of the bed can be completed at one time without the need for later manual replenishment, reducing the complexity of the process and the workload of the workers. After the bed body is lifted out of the coating, the swing mechanism drives the bed body to swing back and forth, which can even out the coating on its surface and improve the dip coating quality.

[0008] Furthermore, the moving mechanism includes a threaded rod rotatably installed inside the installation housing. A driving block is installed on the outer surface of the threaded rod, and both first electric push rods are installed on the lower surface of the driving block. A motor is installed on the side surface of the installation housing, and the end of the output shaft of the motor is connected to the threaded rod.

[0009] By starting the motor, its output shaft drives the threaded rod to rotate, which can then drive the driving block to move along its length direction and achieve the purpose of driving the installation plate to move. The bed body can be placed upside down on the left side of the dip coating tank. A drying mechanism (not shown in the figure) is placed on the right side of the dip coating tank. The installation plate moves to the left side of the dip coating tank to lift the bed body and put it into the dip coating tank for dipping. After dipping, it moves to the drying mechanism on the right side of the dip coating tank for drying. After drying, the bed body can be put down to dip the next bed body.

[0010] Furthermore, the swing mechanism includes a gear installed at the end of the connecting shaft. A second electric push rod is installed on the side surface of the installation plate. A toothed plate is slidably installed on the side surface of the installation plate, and the toothed plate is meshed with the gear. The end of the telescopic end of the second electric push rod is connected to the toothed plate.

[0011] When the bed body is lifted out of the coating, the coating is likely to accumulate on the surface of the bed body. At this time, the second electric push rod can be started, and its telescopic end drives the toothed plate to slide up and down. Through the meshing relationship between the toothed plate and the gear, the rotating shaft can be driven to rotate back and forth, and then the bed body can be driven to swing back and forth, so that the accumulated coating on the bed body can flow down smoothly, thus improving the uniformity of the coating and the dip coating quality.

[0012] Furthermore, the clamping mechanism includes a third electric push rod installed on the lower surface of the upper top plate. A tapered block is installed at the end of the telescopic end of the third electric push rod. Oblique blocks are installed on the tops of the four clamping plates. A spring is sleeved on the outer surface of the sliding rod, and the two ends of the spring are respectively abutted against the inner wall of the through groove and the clamping plate.

[0013] After the four splints are inserted into the interior of the bed legs, the third electric push rod is started, and the end of the telescopic end of the third electric push rod drives the conical block to descend, and the outer surface of the conical block squeezes the four inclined blocks at the same time, so that the four splints can be driven to move away from the center of the lower base at the same time, and the four splints can be pressed against the inner wall of the bed legs at the same time to achieve the purpose of fixing them; when the third electric push rod drives the conical block to rise, the inclined block loses the squeezing of the conical block, and under the action of the spring force, the four splints can move toward the center of the lower base at the same time and break away from the inner wall of the bed legs, at this time, the four splints can be pulled out from the inside of the bed legs and the bed can be lowered.

[0014] Furthermore, multiple first slots are opened on both sides of the lower surface of the shaft, a first insertion rod is installed on the upper surface of the cross plate, multiple first through holes are opened on both sides of the outer surface of the shaft, and the first through holes correspond to the first slots, and the first insertion rod is fixed in the first slot by bolts.

[0015] By setting the first slot, the first insertion rod and the first through hole, the position of the cross plate can be adjusted so that it can be suitable for beds of different lengths. The first slot and the first through hole can be consistent, and can be four, five, six, etc.

[0016] Furthermore, multiple second slots are opened on both sides of the upper surface of the horizontal plate, a second insertion rod is installed on the upper surface of the top plate, multiple second through holes are opened on both sides of the side surface of the horizontal plate, and the second through holes correspond to the second slots, and the second insertion rod is fixed in the second slot by bolts.

[0017] By setting the second slot, the second insertion rod and the second through hole, the position of the upper top plate on the horizontal plate can be adjusted so that it can be suitable for beds of different widths. The application range is wide, and the second slot and the second through hole are consistent, which can be four, five, six, etc. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;

[0019] Figure 2 It is a structural schematic diagram of the moving mechanism and the mounting plate in the utility model;

[0020] Figure 3 It is a structural schematic diagram of the swing mechanism and the mounting plate in the utility model;

[0021] Figure 4 for Figure 3 A is an enlarged schematic diagram;

[0022] Figure 5 It is a structural schematic diagram of the clamping mechanism in the utility model.

[0023] In the figure: 100, dip coating tank; 101, support; 102, mounting housing; 103, first electric push rod; 104, mounting plate; 105, rotating shaft; 106, connecting shaft; 107, cross plate; 108, upper top plate; 109, connecting rod; 110, lower base; 111, through slot; 112, sliding rod; 113, clamping plate; 200, moving mechanism; 201, threaded rod; 202, driving block; 203, motor; 300, swinging mechanism; 301, gear; 302, second electric push rod; 303, toothed plate; 400, clamping mechanism; 401, third electric push rod; 402, conical block; 403, inclined block; 404, spring; 500, first slot; 501, first plug rod; 502, first through hole; 600, second slot; 601, second plug rod; 602, second through hole. Detailed implementation manner

[0024] The present utility model will be described in detail below with reference to the accompanying drawings.

[0025] As Figures 1-5 shown, a full-body dip coating device for an outdoor wear-resistant all-iron detachable bed includes a dip coating tank 100. Supports 101 are installed on both sides of the upper surface of the dip coating tank 100. A mounting housing 102 is jointly installed on the two supports 101. Two first electric push rods 103 are installed on the lower side of the mounting housing 102 through a moving mechanism 200. An end portion of the telescopic ends of the two first electric push rods 103 is jointly installed with a mounting plate 104. A rotating shaft 105 is rotatably installed inside the mounting plate 104 through a connecting shaft 106. A swinging mechanism 300 capable of driving the rotating shaft 105 to rotate is arranged on the side surface of the mounting plate 104. On both sides of the lower side of the rotating shaft 105 in its length direction, cross plates 107 are arranged. On both sides of the lower side of the cross plates 107 in its length direction, upper top plates 108 are arranged. A lower base 110 is installed below the upper top plates 108 through connecting rods 109. Four through slots 111 are coaxially arranged in an array inside the lower base 110. A sliding rod 112 is installed inside the through slots 111. A clamping plate 113 is slidably installed on the outer surface of the sliding rod 112. A clamping mechanism 400 capable of driving the four clamping plates 113 to simultaneously move away from the center position of the lower base 110 is arranged on the lower side of the upper top plate 108.

[0026] During use, place the bed body upside down on the left side of the dip coating tank 100. Since the feet of the all-iron bed are hollow iron pipes, by inverting the bed body, all four of its hollow feet face upward. Then, drive the mounting plate 104 to move above the bed body through the moving mechanism 200. The first electric push rod 103 drives the mounting plate 104 to descend, so that the four groups of clamping plates 113 are respectively inserted into the four hollow feet. Then, drive the four clamping plates 113 to simultaneously press against the inner wall of the hollow feet through the clamping mechanism 400, thereby fixing the bed body. Then, immerse the bed body into the coating in the dip coating tank 100 through the moving mechanism 200 and the first electric push rod 103. When the first electric push rod 103 drives the bed body out of the coating, the surface of the bed body is likely to accumulate coating. At this time, the swinging mechanism 300 can be used to drive the bed body to swing back and forth, so that the coating accumulated on the bed body can flow downwards along the trend, thus improving the uniformity of the coating and the dip coating quality.

[0027] Specifically, the moving mechanism 200 includes a threaded rod 201 rotatably installed inside the installation housing 102. A driving block 202 is installed on the outer surface of the threaded rod 201, and both of the first electric push rods 103 are installed on the lower surface of the driving block 202. A motor 203 is installed on the side surface of the installation housing 102, and the end of the output shaft of the motor 203 is connected to the threaded rod 201. By starting the motor 203, its output shaft drives the threaded rod 201 to rotate, thereby driving the driving block 202 to move along its length direction and achieving the purpose of driving the mounting plate 104 to move. The bed body can be placed upside down on the left side of the dip coating tank 100. A drying mechanism (not shown in the figure) is placed on the right side of the dip coating tank 100. The mounting plate 104 moves to the left side of the dip coating tank 100 to lift the bed body and place it in the dip coating tank 100 for dipping. After dipping, it moves to the drying mechanism on the right side of the dip coating tank 100 for drying. After drying, the bed body can be put down to dip the next bed body.

[0028] Specifically, the swinging mechanism 300 includes a gear 301 installed at the end of the connecting shaft 106. A second electric push rod 302 is installed on the side surface of the mounting plate 104. A toothed plate 303 is slidably installed on the side surface of the mounting plate 104, and the toothed plate 303 is meshed with the gear 301. Moreover, the end of the telescopic end of the second electric push rod 302 is connected to the toothed plate 303. When the bed body is taken out of the coating, the surface of the bed body is likely to accumulate coating. At this time, the second electric push rod 302 can be started, and its telescopic end drives the toothed plate 303 to slide up and down. Through the meshing relationship between the toothed plate 303 and the gear 301, the rotating shaft 105 can be driven to rotate back and forth, and then the bed body can be driven to swing back and forth, so that the coating accumulated on the bed body can flow downwards along the trend, thus improving the uniformity of the coating and the dip coating quality.

[0029] Specifically, the clamping mechanism 400 includes a third electric push rod 401 installed on the lower surface of the upper top plate 108. The end of the telescopic end of the third electric push rod 401 is installed with a tapered block 402. The tops of the four clamping plates 113 are all installed with inclined blocks 403. A spring 404 is sleeved on the outer surface of the sliding rod 112, and the two ends of the spring 404 are respectively abutted against the inner wall of the through groove 111 and the clamping plate 113. After the four clamping plates 113 are inserted into the inside of the bed body support feet, the third electric push rod 401 is started. The end of the telescopic end of the third electric push rod 401 drives the tapered block 402 to descend. The outer surface of the tapered block 402 simultaneously presses the four inclined blocks 403. Therefore, the four clamping plates 113 can be driven to move away from the center of the lower base 110 at the same time, and the four clamping plates 113 can be made to abut against the inner wall of the bed body support feet at the same time to achieve the purpose of fixing it. When the third electric push rod 401 drives the tapered block 402 to rise, the inclined blocks 403 lose the extrusion of the tapered block 402, and under the action of the elastic force of the spring 404, the four clamping plates 113 can move towards the center of the lower base 110 at the same time and disengage from the inner wall of the bed body support feet. At this time, the four clamping plates 113 can be withdrawn from the inside of the bed body support feet, and the bed body can be put down.

[0030] Specifically, a plurality of first slots 500 are opened on both sides of the lower surface of the rotating shaft 105. A first plug rod 501 is installed on the upper surface of the cross plate 107. A plurality of first through holes 502 are opened on both sides of the outer surface of the rotating shaft 105, and the first through holes 502 correspond to the first slots 500. The first plug rod 501 is fixed in the first slot 500 by bolts. Through the settings of the first slot 500, the first plug rod 501 and the first through hole 502, the position of the cross plate 107 can be adjusted, so as to be applicable to bed bodies of different lengths. The consistency of the first slot 500 and the first through hole 502 can be four, five, six, etc.

[0031] Specifically, a plurality of second slots 600 are opened on both sides of the upper surface of the cross plate 107. A second plug rod 601 is installed on the upper surface of the upper top plate 108. A plurality of second through holes 602 are opened on both sides of the side surface of the cross plate 107, and the second through holes 602 correspond to the second slots 600. The second plug rod 601 is fixed in the second slot 600 by bolts. Through the settings of the second slot 600, the second plug rod 601 and the second through hole 602, the position of the upper top plate 108 on the cross plate 107 can be adjusted, so as to be applicable to bed bodies of different widths, with a wide range of applications. The consistency of the second slot 600 and the second through hole 602 can be four, five, six, etc.

[0032] The above is a detailed description of the present utility model in conjunction with specific embodiments. It cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model pertains, without departing from the concept of the present utility model, several equivalent substitutions or obvious modifications are made, and the performance or use is the same, and all should be regarded as belonging to the patent protection scope determined by the claims submitted for the present utility model.

Claims

1. A full body dipping device for an outdoor wear-resistant all-iron detachable bed, comprising a dipping box (100), characterized in that: Brackets (101) are installed on both sides of the upper surface of the dipping box (100), and a mounting shell (102) is installed on the two brackets (101) together. Two first electric push rods (103) are installed on the lower side of the mounting shell (102) through a moving mechanism (200), and a mounting plate (104) is installed on the ends of the telescopic ends of the two first electric push rods (103) together. A rotating shaft (105) is rotatably installed inside the mounting plate (104) through a connecting shaft (106), and a swing mechanism (300) capable of driving the rotating shaft (105) to rotate is provided on the side surface of the mounting plate (104); A transverse plate (107) is provided on both sides of the rotating shaft (105) in the length direction, an upper plate (108) is provided on both sides of the transverse plate (107) in the length direction, and a lower base (110) is installed below the upper plate (108) via a connecting rod (109); The lower base (110) is provided with four through slots (111) in a coaxial array inside, a slide bar (112) is installed inside the through slot (111), a clamping plate (113) is slidably installed on the outer surface of the slide bar (112), and a clamping mechanism (400) capable of driving the four clamping plates (113) to move away from the center position of the lower base (110) at the same time is provided on the lower side of the upper top plate (108).

2. The full body immersion coating device for an outdoor wear-resistant all-iron detachable bed according to claim 1 is characterized in that: The moving mechanism (200) comprises a threaded rod (201) rotatably mounted inside the mounting shell (102); a driving block (202) is mounted on the outer surface of the threaded rod (201); and the two first electric push rods (103) are mounted on the lower surface of the driving block (202); a motor (203) is mounted on the side surface of the mounting shell (102); and the end of the output shaft of the motor (203) is connected to the threaded rod (201).

3. The full body immersion coating device for an outdoor wear-resistant all-iron detachable bed according to claim 2 is characterized in that: The swing mechanism (300) comprises a gear (301) mounted on the end of the connecting shaft (106); a second electric push rod (302) is mounted on the side surface of the mounting plate (104); a tooth plate (303) is slidably mounted on the side surface of the mounting plate (104); the tooth plate (303) is meshedly connected with the gear (301); and the end of the telescopic end of the second electric push rod (302) is connected to the tooth plate (303).

4. The full body immersion coating device for an outdoor wear-resistant all-iron detachable bed according to claim 3 is characterized in that: The clamping mechanism (400) includes a third electric push rod (401) installed on the lower surface of the upper top plate (108), the end of the telescopic end of the third electric push rod (401) is installed with a conical block (402), the tops of the four clamping plates (113) are all installed with inclined blocks (403), the outer surface of the sliding rod (112) is sleeved with a spring (404), and the two ends of the spring (404) are respectively in contact with the inner wall of the through groove (111) and the clamping plate (113).

5. The full body immersion coating device for an outdoor wear-resistant all-iron detachable bed according to claim 4 is characterized in that: A plurality of first slots (500) are provided on both sides of the lower surface of the rotating shaft (105), a first insertion rod (501) is installed on the upper surface of the transverse plate (107), a plurality of first through holes (502) are provided on both sides of the outer surface of the rotating shaft (105), and the first through holes (502) correspond to the first slots (500), and the first insertion rod (501) is fixed in the first slot (500) by bolts.

6. The full body immersion coating device for an outdoor wear-resistant all-iron detachable bed according to claim 5 is characterized in that: A plurality of second slots (600) are provided on both sides of the upper surface of the transverse plate (107), a second insertion rod (601) is installed on the upper surface of the upper top plate (108), a plurality of second through holes (602) are provided on both sides of the side surface of the transverse plate (107), and the second through holes (602) correspond to the second slots (600), and the second insertion rod (601) is fixed in the second slot (600) by bolts.