High-temperature-resistant paint coating device for blade
The knife blade coating device addresses uneven coating distribution by using a spring-loaded silicon rubber pad and synchronized rollers for rotational movement, ensuring uniform coating application and ease of blade handling.
Patent Information
- Application Number
- CN202421866166.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-05
AI Technical Summary
During the coating process of existing blade coating devices, the friction between the top surface of the blade and the annular electromagnet causes uneven coating materials, affecting the uniformity and integrity of the coating.
The combination design of the back frame, stop, rotating sleeve, slide rod, first motor, silicone plate, first synchronization wheel, rotating shaft, second synchronization wheel and spring is adopted to clamp the blade cross-section through the spring's elastic force, and the rotation sleeve is driven by the synchronous wheel to rotate, combining the design of the pump body and the spray pipe to achieve uniform coating of the blade.
The uniformity of the blade coating and the convenience of the coating process are achieved, and the uniformity of the coating and the installation and removal efficiency of the blade are improved.
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Figure CN223097090U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of coating application, in particular to a high-temperature resistant coating application device for blades. Background Technique
[0002] On some blades used in gardens and other blades used in industry, it is often necessary to apply a Teflon coating to the blades.
[0003] The Chinese patent discloses a Teflon layer coating device for the blade surface, with the publication number CN211637028U, which includes a protection box. On the upper top wall and the inner bottom wall of the protection box, first cylinders are installed. On the output shafts of the two first cylinders, mounting heads are connected. On the mounting heads, mounting covers are installed. On the mounting heads, rotating shafts are rotatably connected. On the two rotating shafts, turntables are fixedly connected. On the turntables, annular electromagnets are installed. Inside the mounting covers, driving mechanisms are installed. Through the cooperation of the turntable and the annular electromagnet, the switching of double-sided coating of the blade is carried out, so that the blade can be quickly coated on both sides. At the same time, the damage to the blade caused by the traditional centrifugal coating of small parts is avoided, ensuring the appearance integrity of the blade. At the same time, the number of blades that can be placed on the turntable is relatively large, which can meet the number of blades coated each time. During the rotation of the turntable, the coating quality of each blade can be guaranteed to be the same, which is beneficial to the unity of appearance.
[0004] However, it still has the following disadvantages: after the device coats the top surface of the blade, the upper annular electromagnet is used to adsorb the blade, and then the bottom surface of the blade can be coated. However, the coating material on the top surface of the blade rubs and collides with the upper annular electromagnet, making the coating material uneven. For this reason, we propose a high-temperature resistant coating application device for blades to solve this problem. Content of the Utility Model
[0005] The purpose of the utility model is to provide a high-temperature resistant coating application device for blades to solve the problems raised in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: a high-temperature resistant coating application device for blades, which includes an operation table. On the top surface of the operation table, a mounting frame is fixedly connected. Above the operation table, a coating application device is provided. The coating application device includes a mounting part;
[0007] The mounting part includes a U-shaped frame, a stop block, a sliding rod and a first motor. The outer surface of the left end of the sliding rod slidably penetrates the right end face of the left rotating sleeve and extends to the left side of the left rotating sleeve. The left end face of the sliding rod is fixedly connected to the right end face of the stop block. The right end face of the first motor is fixedly connected to the inner wall of the right U-shaped frame;
[0008] Above the operation table, a coating application part is provided;
[0009] The coating part includes a pump body, a box body, a second motor and a mounting plate. The right end face of the box body is fixedly connected to the left end face of the mounting frame. A through hole is provided on the top surface of the mounting frame. Slide bars are slidably penetrated through the front and rear end faces of the mounting plate, and both the front and rear end faces of the slide bars are fixedly connected to the inner wall of the through hole. The front face of the second motor is fixedly connected to the back face of the mounting frame.
[0010] Further improvement lies in that for the rotating sleeve, the silica gel plate, the first synchronous pulley, the rotating shaft, the second synchronous pulley and the spring, the silica gel plates on the left and right sides are respectively fixedly connected to the outer surface of the rotating sleeve on the closer side. The left end of the spring is fixedly connected to the right end face of the left rotating sleeve, and the right end of the spring is fixedly connected to the left end face of the left silica gel plate. By setting the spring, the slide bar, the stopper and the silica gel plate, and using the elastic force of the spring, the silica gel plates on the left and right sides clamp the cross section of the blade.
[0011] Further improvement lies in that the outer surface of the rotating sleeve rotates through the outer surface of the rectangular frame through a first bearing and extends into the interior of the rectangular frame. By setting the rotating sleeve, it is convenient for the blade to rotate and convenient for coating the upper and lower surfaces of the blade.
[0012] Further improvement lies in that the first synchronous pulley is fixedly sleeved on the outer surface of the output shaft of the first motor, the second synchronous pulley is fixedly sleeved on the outer surface of the rotating shaft, the left end face of the rotating shaft is fixedly connected to the right end face of the right rotating sleeve, and the outer surfaces of the first synchronous pulley and the two second synchronous pulleys are connected by a synchronous belt. By setting the first synchronous pulley, the second synchronous pulley, the rotating shaft and the first motor, starting the first motor drives the rotating sleeve to rotate, so that the blade rotates for coating.
[0013] Further improvement lies in that the coating part further includes a spray pipe. The liquid inlet pipe of the pump body is fixedly and communicatively connected to the top surface of the box body. The bottom surface of the liquid outlet pipe of the pump body fixedly penetrates through the top surface of the mounting plate and extends below the mounting plate. The bottom surface of the liquid outlet pipe of the pump body is fixedly and communicatively connected to the top surface of the spray pipe. By setting the pump body, the box body and the spray pipe, the raw material inside the box body is pumped out by the pump body, and the blade is coated by the spray pipe.
[0014] Further improvement lies in that the front outer surface of the output shaft of the second motor rotates through the back face of the mounting frame through a second bearing and extends into the interior of the mounting frame. The front outer surface of the output shaft of the second motor threadedly penetrates through the back face of the mounting plate and extends in front of the mounting plate. By setting the second motor and the mounting plate, starting the second motor drives the mounting plate to move back and forth, so that the spray pipe moves back and forth.
[0015] Further improvement lies in that a chute is provided on the top surface of the operating table, a screw rod is arranged in front of the operating table, the outer surface of the rear end of the screw rod rotatably penetrates through the front surface of the operating table through a third bearing and extends into the chute, a slider is sleeved on the outer surface of the screw rod in a threaded manner, a U-shaped rod is fixedly connected to the outer surface of the rectangular frame, and the bottom surface of the U-shaped rod is fixedly connected to the top surface of the slider. By arranging the U-shaped rod, the slider and the screw rod, rotating the screw rod enables the blade to move back and forth, facilitating the installation and disassembly of the blade.
[0016] Compared with the prior art, the beneficial effects of the present utility model are as follows: In this blade coating device with high-temperature resistant paint, by arranging the rectangular frame, the stopper, the rotating sleeve, the sliding rod, the first motor, the silica gel plate, the first synchronous pulley, the rotating shaft, the second synchronous pulley and the spring, using the elastic force of the spring to clamp the cross-section of the blade by the left and right silica gel plates, starting the first motor, and using the first synchronous pulley and the second synchronous pulley, the first motor drives the rotating shaft and the right rotating sleeve to rotate, enabling the rotating sleeve to drive the blade to rotate, facilitating the coating on the upper surface of the blade and making the coating layer on the blade more uniform; by arranging the pump body, the box body, the second motor, the mounting plate and the spray pipe, starting the pump body to suck out the paint inside the box body and spray it downward from the spray pipe, starting the second motor to drive the mounting plate and the spray pipe to move back and forth, making the coating more uniform; by arranging the screw rod, the slider and the U-shaped rod, rotating the screw rod drives the slider and the U-shaped rod to move back and forth, facilitating driving the blade to move back and forth and facilitating the installation and disassembly of the blade. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic three-dimensional structure diagram of the present utility model;
[0018] Figure 2 is a sectional view of the three-dimensional structure of the present utility model;
[0019] Figure 3 is a partial sectional view of the three-dimensional structure of the present utility model;
[0020] Figure 4 is Figure 3 an enlarged view of the structure at A in
[0021] Figure 5 is Figure 3 an enlarged view of the structure at B in
[0022] In the figure: 1 operating table, 2 mounting bracket, 3 coating device, 31 mounting part, 32 coating part, 311 rectangular frame, 312 stopper, 313 rotating sleeve, 314 sliding rod, 315 first motor, 316 silica gel plate, 317 first synchronous pulley, 318 rotating shaft, 319 second synchronous pulley, 310 spring, 321 pump body, 322 box body, 323 second motor, 324 mounting plate, 325 spray pipe, 4 screw rod, 5 slider, 6 U-shaped rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] Please refer to Figures 1-5 , the present utility model provides a technical solution: a high-temperature resistant coating device for a blade, including an operating table 1, a mounting frame 2 is fixedly connected to the top surface of the operating table 1, a coating device 3 is arranged above the operating table 1, and the coating device 3 includes a mounting part 31;
[0025] The mounting part 31 includes a rectangular frame 311, a stop block 312, a sliding rod 314 and a first motor 315. The outer surface of the left end of the sliding rod 314 slidably penetrates the right end surface of the left rotating sleeve 313 and extends to the left side of the left rotating sleeve 313. The left end surface of the sliding rod 314 is fixedly connected to the right end surface of the stop block 312. The right end surface of the first motor 315 is fixedly connected to the inner wall of the right rectangular frame 311. The rotating sleeve 313, a silica gel plate 316, a first synchronous pulley 317, a rotating shaft 318, a second synchronous pulley 319 and a spring 310. The left and right silica gel plates 316 are respectively fixedly connected to the outer surfaces of the adjacent rotating sleeves 313. The left end of the spring 310 is fixedly connected to the right end surface of the left rotating sleeve 313, and the right end of the spring 310 is fixedly connected to the left end surface of the left silica gel plate 316;
[0026] The outer surface of the rotating sleeve 313 rotatably penetrates the outer surface of the rectangular frame 311 through a first bearing and extends into the rectangular frame 311. The first synchronous pulley 317 is fixedly sleeved on the outer surface of the output shaft of the first motor 315, and the second synchronous pulley 319 is fixedly sleeved on the outer surface of the rotating shaft 318;
[0027] The left end surface of the rotating shaft 318 is fixedly connected to the right end surface of the right rotating sleeve 313. The outer surfaces of the first synchronous pulley 317 and the two second synchronous pulleys 319 are connected by a synchronous belt. By setting the rectangular frame 311, the stop block 312, the rotating sleeve 313, the sliding rod 314, the first motor 315, the silica gel plate 316, the first synchronous pulley 317, the rotating shaft 318, the second synchronous pulley 319 and the spring 310, using the elastic force of the spring 310, the left and right silica gel plates 316 clamp the cross-section of the blade. Start the first motor 315, and use the first synchronous pulley 317 and the second synchronous pulley 319 to make the first motor 315 drive the rotating shaft 318 and the right rotating sleeve 313 to rotate, so that the rotating sleeve 313 drives the blade to rotate, which is convenient for coating the upper surface of the blade and making the coating layer on the blade more uniform;
[0028] A coating part 32 is arranged above the operating table 1;
[0029] The coating part 32 includes a pump body 321, a box body 322, a second motor 323 and a mounting plate 324. The right end face of the box body 322 is fixedly connected to the left end face of the mounting frame 2. A through hole is provided on the top surface of the mounting frame 2. Slide rods are slidably penetrated through the front and rear end faces of the mounting plate 324, and both the front and rear end faces of the slide rods are fixedly connected to the inner wall of the through hole. The front face of the second motor 323 is fixedly connected to the rear face of the mounting frame 2. The coating part 32 further includes a spray pipe 325. The liquid inlet pipe of the pump body 321 is fixedly and communicatively connected to the top surface of the box body 322. The bottom surface of the liquid outlet pipe of the pump body 321 fixedly penetrates through the top surface of the mounting plate 324 and extends below the mounting plate 324. The bottom surface of the liquid outlet pipe of the pump body 321 is fixedly and communicatively connected to the top surface of the spray pipe 325;
[0030] The front outer surface of the output shaft of the second motor 323 rotatably penetrates through the rear face of the mounting frame 2 through a second bearing and extends into the interior of the mounting frame 2. The front outer surface of the output shaft of the second motor 323 is threadedly penetrated through the rear face of the mounting plate 324 and extends in front of the mounting plate 324. By providing the pump body 321, the box body 322, the second motor 323, the mounting plate 324 and the spray pipe 325, when the pump body 321 is started, the paint inside the box body 322 is sucked out and sprayed downward from the spray pipe 325. When the second motor 323 is started, the mounting plate 324 and the spray pipe 325 are driven to move back and forth, making the coating more uniform;
[0031] A chute is provided on the top surface of the operating table 1. A screw rod 4 is provided in front of the operating table 1. The rear outer surface of the screw rod rotatably penetrates through the front face of the operating table 1 through a third bearing and extends into the chute. A slider 5 is threadedly sleeved on the outer surface of the screw rod 4. A U-shaped rod 6 is fixedly connected to the outer surface of the loop-shaped frame 311. The bottom surface of the U-shaped rod 6 is fixedly connected to the top surface of the slider 5. By providing the screw rod 4, the slider 5 and the U-shaped rod 6, by rotating the screw rod 4, the slider 5 and the U-shaped rod 6 are driven to move back and forth, facilitating driving the blade to move back and forth and facilitating the installation and disassembly of the blade.
[0032] During use, rotate the screw rod 4 to drive the slider 5 and the U-shaped rod 6 to move forward. Push the slide rod 314 to the left, place the blade between the left and right silicone plates 316, release the slide rod 314 to make the left and right silicone plates 316 clamp the blade, rotate the screw rod 4 to reset the U-shaped rod 6 backward, start the first motor 315, the output shaft of the first motor 315 drives the first synchronous pulley 317 to rotate, the first synchronous pulley 317 drives the second synchronous pulley 319 to rotate, the second synchronous pulley 319 drives the rotating shaft 318 and the right rotating sleeve 313 to rotate, the rotating sleeve 313 drives the blade to rotate, start the pump body 321, the pump body 321 pumps out the raw material inside the box body 322, enabling the raw material to enter the spray pipe 325 and be sprayed downward, start the second motor 323, and the second motor 323 drives the mounting plate 324 to move, and the mounting plate 324 drives the spray pipe 325 to move.
[0033] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to the embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A high-temperature resistant coating device for a blade, comprising an operation table (1), characterized in that: The top surface of the operation table (1) is fixedly connected with a mounting frame (2). Above the operation table (1), there is a coating device (3), and the coating device (3) includes a mounting part (31). The mounting part (31) includes a U-shaped frame (311), a stop block (312), a sliding rod (314), and a first motor (315). The outer surface of the left end of the sliding rod (314) slidably penetrates the right end face of the left rotating sleeve (313) and extends to the left side of the left rotating sleeve (313). The left end face of the sliding rod (314) is fixedly connected with the right end face of the stop block (312). The right end face of the first motor (315) is fixedly connected with the inner wall of the right U-shaped frame (311). Above the operation table (1), there is a coating part (32). The coating part (32) includes a pump body (321), a box body (322), a second motor (323), and a mounting plate (324). The right end face of the box body (322) is fixedly connected with the left end face of the mounting frame (2). A through hole is provided on the top surface of the mounting frame (2). The front and rear end faces of the mounting plate (324) are slidably penetrated by sliding rods, and the front and rear end faces of the sliding rods are fixedly connected with the inner wall of the through hole. The front face of the second motor (323) is fixedly connected with the back face of the mounting frame (2).
2. The coating device for high-temperature resistant coating of a blade according to claim 1, characterized in that: The rotating sleeve (313), the silicone plate (316), the first synchronous pulley (317), the rotating shaft (318), the second synchronous pulley (319), and the spring (310). The left and right silicone plates (316) are respectively fixedly connected with the outer surfaces of the adjacent rotating sleeves (313). The left end of the spring (310) is fixedly connected with the right end face of the left rotating sleeve (313). The right end of the spring (310) is fixedly connected with the left end face of the left silicone plate (316).
3. A high-temperature resistant coating device for a blade according to claim 2, characterized in that: The outer surface of the rotating sleeve (313) rotatably penetrates the outer surface of the U-shaped frame (311) through a first bearing and extends into the U-shaped frame (311).
4. A high-temperature resistant coating device for a blade according to claim 2, characterized in that: The first synchronous pulley (317) is fixedly sleeved on the outer surface of the output shaft of the first motor (315). The second synchronous pulley (319) is fixedly sleeved on the outer surface of the rotating shaft (318). The left end face of the rotating shaft (318) is fixedly connected with the right end face of the right rotating sleeve (313). The outer surfaces of the first synchronous pulley (317) and the two second synchronous pulleys (319) are connected by a synchronous belt.
5. The coating device for high-temperature resistant coating of a blade according to claim 1, characterized in that: The coating part (32) further includes a spray pipe (325). The liquid inlet pipe of the pump body (321) is fixedly and communicatively connected with the top surface of the box body (322). The bottom surface of the liquid outlet pipe of the pump body (321) fixedly penetrates the top surface of the mounting plate (324) and extends below the mounting plate (324). The bottom surface of the liquid outlet pipe of the pump body (321) is fixedly and communicatively connected with the top surface of the spray pipe (325).
6. A high-temperature resistant coating device for a blade according to claim 1, characterized in that: The front outer surface of the output shaft of the second motor (323) rotatably penetrates the back face of the mounting frame (2) through a second bearing and extends into the mounting frame (2). The front outer surface of the output shaft of the second motor (323) threadedly penetrates the back face of the mounting plate (324) and extends to the front of the mounting plate (324).
7. A high-temperature resistant coating device for a blade according to claim 1, characterized in that: A chute is provided on the top surface of the operating table (1). A screw rod (4) is provided in front of the operating table (1). The outer surface of the rear end of the screw rod rotatably penetrates through the front surface of the operating table (1) through a third bearing and extends into the chute. A slider (5) is sleeved on the outer surface of the screw rod (4) in a threaded manner. A U-shaped rod (6) is fixedly connected to the outer surface of the U-shaped frame (311). The bottom surface of the U-shaped rod (6) is fixedly connected to the top surface of the slider (5).
Citation Information
Patent Citations
Blade surface Teflon layer coating device
CN211637028U