Anti-rust treatment equipment capable of spraying liquid in all directions

The combination of the flip-type conveying component and the circulating liquid spraying component solves the problem of all-round spraying of anti-rust liquid on the track shoe, achieves uniform spraying and efficient anti-rust treatment, and reduces labor intensity.

CN120605828APending Publication Date: 2025-09-09CHANGSHU LONGTENG LIAOAN MASCH CO LTD
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Patent Information

Application Number
CN202511014319.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-23
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

The existing technology is unable to spray the track plate with anti-rust liquid in all directions, resulting in uneven anti-rust treatment and increased labor.

Method used

An anti-rust treatment equipment is designed, which includes a turnover conveying component and a circulating liquid spraying component. Through the cooperation of the turnover and spraying components, the track shoe can be sprayed with anti-rust liquid in all directions, and is equipped with a drying component for drying.

Benefits of technology

The track shoe can be sprayed with anti-rust liquid in all directions, which improves the uniformity and efficiency of the anti-rust treatment and reduces labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses anti-rust treatment equipment capable of spraying liquid in all directions, and belongs to the technical field of track shoes. The overturning type conveying assembly comprises a first transmission assembly, a supporting frame, transmission rollers, an overturning assembly and a guide assembly, the overturning assembly used for overturning the track shoe is rotationally connected to the middle of the supporting frame, the supporting frame is rotationally connected with the transmission rollers at the two ends of the overturning assembly at equal intervals through bearings, and the adjacent transmission rollers are in transmission connection through the first transmission assembly; a guide assembly used for limiting movement of the track shoe is arranged on one side of the overturning assembly and fixedly connected with the supporting frame, a transmission roller on one side of the overturning assembly makes contact with the bottoms of track teeth of the track shoe in an attached mode, and the guide assembly is slidably connected with the inner walls of the track teeth in an attached mode. A transmission roller on the other side of the overturning assembly is in attached contact with the end face, away from the track teeth, of the track shoe body, and the track shoe is overturned from one side of the overturning assembly to the other side of the overturning assembly; according to the invention, all-directional spraying of antirust liquid on the track shoe is realized.
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Description

Technical Field

[0001] The invention relates to the technical field of track shoes, and in particular to omnidirectional liquid spraying anti-rust treatment equipment. Background Art

[0002] When the track plate is processed, it needs to be sprayed with anti-rust liquid through anti-rust treatment equipment to extend its service life.

[0003] For example, Chinese patent CN221086050U discloses a spraying device for spraying anti-rust liquid on track plates. The device includes a drive roller for conveying the track plates, a spraying device, and a recovery device. The spraying devices are mounted above and below the drive roller for spraying the anti-rust liquid on the upper and lower surfaces of the track plates. The recovery device is located below the spraying device below the drive roller and is used to collect the sprayed anti-rust liquid. The spraying device sprays the anti-rust liquid on individual track plates on the drive roller, resulting in more uniform spraying. Furthermore, the automated spraying process reduces labor costs.

[0004] The above structure can only spray the anti-rust liquid on the top and the surrounding end faces of the track shoe, and cannot spray the anti-rust liquid on the track shoe in all directions.

[0005] Based on this, the present invention designs an all-round liquid spraying anti-rust treatment equipment to solve the above problems. Summary of the Invention

[0006] In view of the above-mentioned shortcomings of the prior art, the present invention provides an all-round liquid spraying anti-rust treatment equipment.

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: An all-around liquid-spraying anti-rust treatment device, comprising a turnover conveying assembly; The tilting conveying assembly includes a first transmission assembly, a support frame, a transmission roller, a tilting assembly and a guide assembly. The middle of the support frame is rotatably connected to a tilting assembly for tilting the track shoe. The support frame is rotatably connected to transmission rollers at equal intervals at both ends of the tilting assembly through bearings. Adjacent transmission rollers are connected through the first transmission assembly. A guide assembly for limiting the movement of the track shoe is provided on one side of the tilting assembly. The guide assembly is fixedly connected to the support frame. The transmission roller on one side of the tilting assembly is in contact with the bottom of the grouser of the track shoe, and the guide assembly is in contact and sliding connection with the inner wall of the grouser. The transmission roller on the other side of the tilting assembly is in contact with the end face of the track shoe body away from the grouser, and the track shoe flips from one side of the tilting assembly to the other side of the tilting assembly. A circulating spray assembly for circulating spraying of rust-proof liquid is connected to the middle end of the support frame; The circulating liquid spraying assembly is fixedly connected to a drying assembly on the other side of the flip assembly for drying the track shoe after liquid spraying. The air outlet end of the drying assembly faces the upper and lower end surfaces of the track shoe, and the drying assembly is located outside the liquid spraying end of the circulating liquid spraying assembly.

[0008] Furthermore, the flip assembly includes a first motor, a second transmission assembly, a transverse shaft, a connecting block, a first plug plate, a transverse connecting plate and a second plug plate, the first motor is located below the circulating liquid spraying assembly, the first motor is connected to the transverse shaft through the second transmission assembly, the middle end of the connecting block is fixedly connected to the transverse shaft, the transverse connecting plate is fixedly installed at the outer end of the connecting block, the upper end of the transverse connecting plate close to the guide assembly away from the connecting block is fixedly connected to the two groups of first plug plates, a second plug plate is symmetrically provided below the end of the first plug plate, and the second plug plate is fixedly connected to the lower end of the end of the transverse connecting plate close to the guide assembly away from the connecting block, the lower end of the end of the transverse connecting plate away from the guide assembly away from the connecting block is fixedly connected to the two groups of first plug plates, a second plug plate is symmetrically provided above the end of the first plug plate, and the second plug plate is fixedly connected to the upper end of the end of the transverse connecting plate away from the guide assembly away from the connecting block, and the transverse shaft is rotatably connected to the circulating liquid spraying assembly.

[0009] Furthermore, the guide assembly includes transverse limit plates and mounting straight plates, the ends of multiple groups of mounting straight plates are fixedly connected to the support frames, four groups of transverse limit plates are fixedly mounted on the multiple groups of mounting straight plates, the tops of the mounting straight plates are lower than the tops of the transmission rollers, the transverse limit plates of the first two groups are in contact with the inner walls of the grouser teeth of the first group of track shoes, and the transverse limit plates of the last two groups are in contact with the inner walls of the grouser teeth of the last group of track shoes.

[0010] Furthermore, the circulating liquid spray assembly includes a symmetrical liquid spray assembly, a collecting assembly and a self-cleaning filter assembly. The collecting assembly is connected to the self-cleaning filter assembly. The bottom of the self-cleaning filter assembly is fixedly connected to the input end of the symmetrical liquid spray assembly. The symmetrical liquid spray assembly is provided with two groups of liquid spray ends, and the liquid spray ends are symmetrically arranged on both sides of the horizontal axis.

[0011] Furthermore, the collecting assembly includes a box body, an inclined plate, a baffle and a horizontal bottom plate. The inclined plate and the horizontal bottom plate are fixedly connected to the bottom of the box body, the inclined plate and the horizontal bottom plate are fixedly connected, and the baffle is fixedly installed on the top of the horizontal bottom plate. The spray end of the symmetrical spray assembly is located above the inclined plate, and the inclined plate is located below the mounting straight plate. The drying assembly is located above the end of the horizontal bottom plate away from the inclined plate. The self-cleaning filter assembly is installed at the end of the horizontal bottom plate close to the inclined plate, and is located between the baffle and the inclined plate.

[0012] Furthermore, a liquid adding pipe for adding liquid is fixedly connected to the side wall of the box body, and the liquid outlet of the liquid adding pipe is located above the baffle.

[0013] Furthermore, a liquid level tube for liquid level display is fixedly connected to the side wall of the box body. The bottom of the through hole where the lower end of the liquid level tube is connected to the box body is flush with the horizontal bottom plate and is located at the end of the horizontal bottom plate close to the inclined plate.

[0014] Furthermore, both ends of the box are fixedly connected with heat insulation curtains.

[0015] Furthermore, the self-cleaning filter assembly includes a tapered tube, a straight tube, a scraper, a straight shaft, an impeller, a filter plate and a positioning column. A first through hole is provided at the end of the transverse bottom plate near the inclined plate, a second through hole is provided at the bottom of the first through hole, and the first through hole is larger than the second through hole. The transverse bottom plate is located at the bottom of the second through hole and is fixedly connected to the tapered tube. The bottom of the tapered tube is fixedly connected to the straight tube. The straight tube is communicated and fixedly connected with the symmetrical liquid spray assembly. The inner wall of the first through hole is in contact with the outer wall of the filter plate. The middle end of the filter plate is rotatably connected to the straight shaft through a bearing. Scrapers are fixedly connected to the straight shaft at equal intervals along the circumference, and the bottom of the scraper is in contact with the top of the filter plate for sliding. The bottom of the straight shaft is fixedly connected to the impeller. The impeller is located in the straight tube. The inner bottom of the first through hole is fixedly connected to the positioning column. The filter plate is provided with a positioning hole that is plugged into the positioning column.

[0016] Furthermore, the symmetrical liquid spray assembly includes a first pipe, a liquid pump, a second pipe, a first transverse pipe, a first nozzle, a second transverse pipe and a second nozzle. The straight pipe is fixedly connected to the second pipe, the input and output ends of the liquid pump are fixedly connected to the second pipe and the first pipe respectively, multiple groups of first transverse pipes and multiple groups of second transverse pipes are fixedly connected to the box body, and multiple groups of first transverse pipes and multiple groups of second transverse pipes are fixedly connected to the first pipe, the first transverse pipe and the second transverse pipe are respectively located on both sides of the transverse axis, the first transverse pipe is fixedly connected with the first nozzle at equal intervals, and the first nozzle is arranged toward the transverse axis, the second transverse pipe is fixedly connected with the second nozzle at equal intervals, and the second nozzle is arranged toward the transverse axis.

[0017] Beneficial effect: The present invention places the grouser of the track shoe with the grouser facing downward on the transmission roller of the flipping conveying assembly, and the inner wall of the grouser is in contact with the guide assembly, an external driving motor drives one group of transmission rollers to rotate, and drives the other transmission rollers to rotate through the first transmission assembly, and the transmission roller drives the track shoe with the grouser facing downward to move toward the circulating spray assembly, and the circulating spray assembly first sprays anti-rust liquid on the front, rear, left and right ends of the track shoe and the end of the plate body away from the grouser, and the transmission roller and the guide assembly cooperate to guide the track shoe with the grouser facing downward into the flipping assembly, and the flipping assembly drives the track shoe with the grouser facing downward to flip 180 degrees, and rotates the end face of the track shoe body away from the grouser until it contacts the transmission roller on the other side of the flipping assembly, and the transmission roller on the other side of the flipping assembly drives the track shoe to move, and the circulating spray assembly sprays anti-rust liquid on the end face away from the grouser, thereby realizing all-round spraying of anti-rust liquid on the track shoe, and then the drying assembly blows hot air to the upper and lower end faces of the track shoe after spraying, so as to facilitate drying of the track shoe. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.

[0019] Figure 1 The present invention is a three-dimensional rust prevention equipment for all-round spraying Figure 1 ; Figure 2 This is a front view of an all-around liquid spraying anti-rust treatment device of the present invention; Figure 3 This is a left view of an all-around liquid spraying anti-rust treatment device of the present invention; Figure 4 The present invention is a three-dimensional rust prevention equipment for all-round spraying Figure 2 ; Figure 5 The present invention is a three-dimensional rust prevention equipment for all-round spraying Figure 3 ; Figure 6 Schematic diagram of the installation of straight board and its connection structure; Figure 7 To follow Figure 3 AA direction cross-sectional view; Figure 8 for Figure 7 A magnified view of the structure at point C; Figure 9 To follow Figure 3 BB direction cross-section Figure 1 ; Figure 10 To follow Figure 3 BB direction cross-section Figure 2 ; Figure 11 for Figure 10 Enlarged view of the structure at point D.

[0020] The numbers in the figure represent: 1. Flip conveyor assembly 11. First transmission assembly 12. Support frame 13. First motor 14. Second transmission assembly 15. Horizontal shaft 16. Transmission roller 17. Horizontal limit plate 18. Mounting straight plate 19. Connecting block 110. First plug plate 111. Horizontal connecting plate 112. Second plug plate 2. Insulation curtain 3. Circulating spray assembly 31. Box 32. Liquid level pipe 33. First pipeline 34. Liquid pump 35. Tapered pipe 36. Straight pipe 37. Drain pipe 38. Liquid filling pipe 3 9. Second pipe 310. First transverse pipe 311. First nozzle 312. Second transverse pipe 313. Second nozzle 314. Scraper 315. First through hole 316. Straight shaft 317. Impeller 318. Second through hole 319. Filter plate 320. Inclined plate 321. Baffle 322. Transverse bottom plate 323. Positioning hole 324. Positioning column 4. Drying assembly 41. Connecting pipe 42. Inlet pipe 43. Third transverse pipe 44. Fourth transverse pipe 45. Third nozzle 46. Fourth nozzle. DETAILED DESCRIPTION

[0021] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0022] The present invention will be further described below with reference to the embodiments.

[0023] For example 1, please refer to Figures 1-11 , an all-round liquid spraying anti-rust treatment equipment, including a turnover conveying component 1; The flip conveyor assembly 1 includes a first transmission assembly 11, a support frame 12, a transmission roller 16, a flip assembly and a guide assembly. The middle of the support frame 12 is rotatably connected to a flip assembly for flipping the track shoe. The support frame 12 is rotatably connected to transmission rollers 16 at both ends of the flip assembly through bearings at equal intervals. Adjacent transmission rollers 16 are connected by transmission through the first transmission assembly 11. A guide assembly for limiting the movement of the track shoe is provided on one side of the flip assembly. The guide assembly is fixedly connected to the support frame 12. The transmission roller 16 on one side of the flip assembly is in contact with the bottom of the grouser of the track shoe, and the guide assembly is in contact and sliding connection with the inner wall of the grouser. The transmission roller 16 on the other side of the flip assembly is in contact with the end face of the track shoe body away from the grouser, and the track shoe flips from one side of the flip assembly to the other side of the flip assembly. The middle end of the support frame 12 is connected to a circulating spray assembly 3 for circulating spraying of rust-proof liquid; The circulating liquid spraying assembly 3 is fixedly connected to a drying assembly 4 on the other side of the flip assembly for drying the track shoe after liquid spraying. The air outlet end of the drying assembly 4 faces the upper and lower end surfaces of the track shoe, and the drying assembly 4 is located outside the liquid spraying end of the circulating liquid spraying assembly 3.

[0024] One set of transmission rollers 16 is fixedly connected to the output end of the external drive motor; The grouser of the track shoe is placed downward on the transmission roller 16 of the flip conveyor assembly 1, and the inner wall of the grouser is in contact with the guide assembly. The external drive motor drives one group of transmission rollers 16 to rotate, and drives the other transmission rollers 16 to rotate through the first transmission assembly 11. The transmission roller 16 drives the track shoe with the grouser facing downward to move toward the circulating spray assembly 3. The circulating spray assembly 3 first sprays the rust-proof liquid on the front, rear, left and right ends of the track shoe and the end of the plate body away from the grouser. The transmission roller 16 and the guide assembly cooperate to guide the track shoe with the grouser facing downward into the flip assembly. The flip assembly drives the track shoe with the grouser facing downward to flip 180 degrees, and rotates the end face of the track shoe body away from the grouser until it contacts the transmission roller 16 on the other side of the flip assembly. The transmission roller 16 on the other side of the flip assembly drives the track shoe to move, and the circulating spray assembly 3 sprays the rust-proof liquid on the end face away from the grouser, thereby realizing all-round spraying of the rust-proof liquid on the track shoe. Then the drying assembly 4 blows hot air to the upper and lower end faces of the track shoe after spraying, so as to facilitate drying of the track shoe.

[0025] The flip assembly includes a first motor 13, a second transmission assembly 14, a transverse shaft 15, a connecting block 19, a first plug plate 110, a transverse connecting plate 111 and a second plug plate 112. The first motor 13 is located below the circulating liquid spray assembly 3. The first motor 13 is connected to the transverse shaft 15 through the second transmission assembly 14. The middle end of the connecting block 19 is fixedly connected to the transverse shaft 15. The transverse connecting plate 111 is fixedly installed at the outer end of the connecting block 19. The upper end of the transverse connecting plate 111 close to the guide assembly is away from the end of the connecting block 19 and is fixedly connected to the two sets of first plug plates 110. The first A second plug plate 112 is symmetrically provided below the end of the plug plate 110, and the second plug plate 112 is fixedly connected to the lower end of the end of the horizontal connecting plate 111 close to the guide assembly away from the connecting block 19, and the lower end of the end of the horizontal connecting plate 111 away from the guide assembly away from the connecting block 19 is fixedly connected to the two groups of first plug plates 110, and a second plug plate 112 is symmetrically provided above the end of the first plug plate 110, and the second plug plate 112 is fixedly connected to the upper end of the end of the horizontal connecting plate 111 away from the guide assembly away from the connecting block 19, and the horizontal shaft 15 is rotatably connected to the circulating liquid spraying assembly 3.

[0026] The guide assembly includes a transverse limit plate 17 and a mounting straight plate 18. The ends of multiple groups of mounting straight plates 18 are fixedly connected to the support frame 12. Four groups of transverse limit plates 17 are fixedly mounted on the multiple groups of mounting straight plates 18. The top of the mounting straight plates 18 is lower than the top of the transmission roller 16. The transverse limit plates 17 of the first two groups are in contact with the inner wall of the grouser of the track shoe of the first group, and the transverse limit plates 17 of the last two groups are in contact with the inner wall of the grouser of the track shoe of the last group.

[0027] The first motor 13 of the flip assembly drives the second transmission assembly 14 to rotate, the second transmission assembly 14 drives the horizontal shaft 15 to rotate, the horizontal shaft 15 drives the connecting block 19 to rotate, the connecting block 19 drives the horizontal connecting plate 111 to rotate, the horizontal connecting plate 111 drives the first plug plate 110 and the second plug plate 112 to rotate, the two groups of first plug plates 110 near the horizontal limit plate 17 are located above the second plug plate 112 near the horizontal limit plate 17, and the grouser of the crawler shoe is placed downward on the drive roller 16 of the flip conveyor assembly 1, and the horizontal limit plates 17 of the first two groups are located above the second plug plate 112 near the horizontal limit plate 17. The lateral limit plates 17 of the two rear groups are in contact with the inner wall of the grouser teeth of the track shoe of the rear group, ensuring that the track shoe with the grouser teeth facing downwards can move stably and horizontally. The external drive motor drives one group of transmission rollers 16 to rotate, and drives the other transmission rollers 16 to rotate through the first transmission assembly 11. The transmission rollers 16 drive the track shoe with the grouser teeth facing downwards to move toward the circulating liquid spraying assembly 3. The circulating liquid spraying assembly 3 first sprays the anti-rust liquid on the front, rear, left and right ends of the track shoe and the end of the plate body away from the grouser teeth. The transmission rollers 16 rotate and the grouser teeth face downwards. 6 and the transverse limiting plate 17 cooperate to guide the crawler shoe with the grouser facing downward into the first plug plate 110 and the second plug plate 112 of the flipping assembly, the first plug plate 110 contacts the end surface of the crawler shoe body away from the grouser, and the second plug plate 112 is in contact with the inner wall of the grouser, and the end of the crawler shoe is in contact with the transverse connecting plate 111 close to the transverse limiting plate 17, the first motor 13 of the flipping assembly drives the second transmission assembly 14 to rotate, the second transmission assembly 14 drives the transverse shaft 15 to rotate, the transverse shaft 15 drives the connecting block 19 to rotate, and the connecting block 19 drives the transverse The connecting plate 111 rotates, and the transverse connecting plate 111 drives the first plug plate 110 and the second plug plate 112 to rotate. The first plug plate 110, the transverse connecting plate 111 and the second plug plate 112 cooperate to drive the track shoe with the grouser facing downward to flip 180 degrees, and the end face of the track shoe body away from the grouser is rotated until it contacts the transmission roller 16 on the other side of the transverse connecting plate 111 of the flipping assembly. The transmission roller 16 on the other side of the flipping assembly drives the track shoe to move, and the circulating spraying assembly 3 sprays the anti-rust liquid on the end face away from the grouser, thereby realizing all-round spraying of the anti-rust liquid on the track shoe.

[0028] The circulating liquid spraying assembly 3 includes a symmetrical liquid spraying assembly, a collecting assembly and a self-cleaning filter assembly. The collecting assembly is connected to the self-cleaning filter assembly. The bottom of the self-cleaning filter assembly is fixedly connected to the input end of the symmetrical liquid spraying assembly. The symmetrical liquid spraying assembly is provided with two groups of liquid spraying ends, and the liquid spraying ends are symmetrically arranged on both sides of the horizontal axis 15.

[0029] The collecting assembly includes a box body 31, an inclined plate 320, a baffle 321 and a horizontal bottom plate 322. The inclined plate 320 and the horizontal bottom plate 322 are fixedly connected to the bottom of the box body 31. The inclined plate 320 and the horizontal bottom plate 322 are fixedly connected, and the baffle 321 is fixedly installed on the top of the horizontal bottom plate 322. The spray end of the symmetrical spray assembly is located above the inclined plate 320, and the inclined plate 320 is located below the mounting straight plate 18. The drying assembly 4 is located above the end of the horizontal bottom plate 322 away from the inclined plate 320. The self-cleaning filter assembly is installed at the end of the horizontal bottom plate 322 close to the inclined plate 320, and is located between the baffle 321 and the inclined plate 320.

[0030] A liquid adding pipe 38 for adding liquid is fixedly connected to the side wall of the box body 31 , and the liquid outlet of the liquid adding pipe 38 is located above the baffle 321 .

[0031] A drain pipe 37 for discharging liquid is fixedly connected to the through hole at the end of the transverse bottom plate 322 close to the baffle 321 .

[0032] A liquid level tube 32 for liquid level display is fixedly connected to the side wall of the box body 31. The bottom of the through hole where the lower end of the liquid level tube 32 is connected to the box body 31 is flush with the horizontal bottom plate 322 and is located at the end of the horizontal bottom plate 322 close to the inclined plate 320. Both ends of the box body 31 are fixedly connected with a heat insulation curtain 2.

[0033] The self-cleaning filter assembly includes a tapered tube 35, a straight tube 36, a scraper 314, a straight shaft 316, an impeller 317, a filter plate 319 and a positioning column 324. The end of the horizontal bottom plate 322 near the inclined plate 320 is provided with a first through hole 315, and the horizontal bottom plate 322 is provided with a second through hole 318 at the bottom of the first through hole 315, and the first through hole 315 is larger than the second through hole 318. The horizontal bottom plate 322 is located at the bottom of the second through hole 318 and is fixedly connected to the tapered tube 35. The bottom of the tapered tube 35 is fixedly connected to the straight tube 36. The straight tube 36 is symmetrically sprayed with liquid. The components are connected and fixedly connected. The inner wall of the first through hole 315 is in contact with the outer wall of the filter plate 319. The middle end of the filter plate 319 is rotatably connected to the straight shaft 316 through a bearing. Scrapers 314 are fixedly connected to the straight shaft 316 at equal intervals along the circumference, and the bottom of the scraper 314 is in contact with the top of the filter plate 319 for sliding. The bottom of the straight shaft 316 is fixedly connected to the impeller 317. The impeller 317 is located in the straight tube 36. The inner bottom of the first through hole 315 is fixedly connected to the positioning column 324. The filter plate 319 is provided with a positioning hole 323 that is plugged into the positioning column 324.

[0034] The symmetrical liquid spray assembly includes a first pipe 33, a liquid pump 34, a second pipe 39, a first transverse pipe 310, a first nozzle 311, a second transverse pipe 312 and a second nozzle 313. The straight pipe 36 is fixedly connected to the second pipe 39. The input and output ends of the liquid pump 34 are fixedly connected to the second pipe 39 and the first pipe 33 respectively. Multiple groups of first transverse pipes 310 and multiple groups of second transverse pipes 312 are fixedly connected to the box body 31, and multiple groups of first transverse pipes 310 and multiple groups of second transverse pipes 312 are fixedly connected to the first pipe 33. The first transverse pipe 310 and the second transverse pipe 312 are respectively located on both sides of the transverse axis 15. The first transverse pipe 310 is fixedly connected with the first nozzle 311 at equal intervals, and the first nozzle 311 is arranged toward the transverse axis 15. The second transverse pipe 312 is fixedly connected with the second nozzle 313 at equal intervals, and the second nozzle 313 is arranged toward the transverse axis 15.

[0035] The first cross tube 310 and the second cross tube 312 are located above the inclined plate 320 .

[0036] The second nozzle 313 and the first nozzle 311 are inclined at an angle of 45 degrees.

[0037] The rust-proof liquid is added into the box body 31 through the liquid adding pipe 38. The rust-proof liquid exists in the space formed by the box body 31, the inclined plate 320, the baffle 321 and the transverse bottom plate 322. The liquid level tube 32 displays the liquid level, and the liquid pump 34 of the symmetrical liquid spraying assembly is started. The liquid pump 34 pumps liquid through the second pipe 39, the tapered pipe 35, the straight pipe 36, the first through hole 315 and the second through hole 318. The filter plate 319 filters the liquid. The rust-proof liquid enters the liquid pump 34, then enters the first pipe 33, and then enters the first transverse pipe 310 and the second transverse pipe 312. It is sprayed out from the first nozzle 311 and the second nozzle 313 respectively. The first nozzle 311 sprays the track shoe installed above the straight plate 18, and sprays the rust-proof liquid on the front, rear, left and right ends of the track shoe and the end of the plate body away from the grouser. After the flip assembly is flipped, the second nozzle 313 sprays the rust-proof liquid on the end face away from the grouser, so that the track shoe is sprayed with the rust-proof liquid in all directions. The mass percentage of anti-rust liquid is 10±2%; The concentration of rust-proof liquid (refractometer) is 7-9; The purity of the anti-rust liquid is 0.05ml / 100ml, and the pH value is 8-9; The transmission speed of the transmission roller 16 is 34-38 cm / min; When the rust-proof liquid flows in the straight pipe 36, the liquid drives the impeller 317 to rotate, the impeller 317 drives the straight shaft 316 to rotate, and the straight shaft 316 drives the scraper 314 to rotate. The scraper 314 rotates along the top of the second pipe 39. The scraper 314 scrapes off impurities on the top of the filter plate 319, which is beneficial to the self-cleaning of the filter plate 319 and ensures the filtering performance of the filter plate 319. The positioning holes 323 and the positioning columns 324 cooperate to position the filter plate 319 to prevent the filter plate 319 from rotating with the rotation of the scraper 314.

[0038] The drying assembly 4 includes a connecting pipe 41, an air intake pipe 42, a third transverse pipe 43, a fourth transverse pipe 44, a third nozzle 45 and a fourth nozzle 46. The air intake pipe 42 is fixedly connected to two groups of connecting pipes 41. The upper connecting pipe 41 is fixedly connected to the fourth transverse pipe 44 at equal intervals. The bottom of the fourth transverse pipe 44 is fixedly connected to the fourth nozzle 46 at equal intervals. The lower connecting pipe 41 is fixedly connected to the third transverse pipe 43 at equal intervals. The top of the third transverse pipe 43 is fixedly connected to the third nozzle 45 at equal intervals. The third nozzle 45 and the fourth nozzle 46 are arranged opposite to each other. The third transverse pipe 43 and the fourth transverse pipe 44 are both located above the end of the transverse bottom plate 322 away from the inclined plate 320. The fourth nozzle 46 is arranged above the top of the track shoe on the transmission roller 16. The bottom of the third nozzle 45 is arranged at the top of the transmission roller 16. The air inlet pipe 42 is connected to the output end of the external high-pressure hot air equipment.

[0039] After the second nozzle 313 sprays the anti-rust liquid on the end surface away from the grouser, and the transmission roller 16 drives the track shoe to move past the baffle 321, the external high-pressure hot air equipment adds hot air into the air intake pipe 42, and then enters the connecting pipe 41, and then enters the fourth transverse pipe 44 and the third transverse pipe 43, and then is sprayed out from the fourth nozzle 46 and the third transverse pipe 43. The fourth nozzle 46 sprays hot air on the upper surface of the track shoe, and the third transverse pipe 43 sprays hot air on the lower surface of the track shoe, thereby achieving all-round drying of the track shoe.

[0040] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. An all-round spraying anti-rust treatment device, comprising a turnover conveying assembly (1), characterized in that: The flip conveying assembly (1) comprises a first transmission assembly (11), a support frame (12), a transmission roller (16), a flip assembly and a guide assembly, wherein the middle of the support frame (12) is rotatably connected to a flip assembly for flipping the track shoe, the support frame (12) is rotatably connected to transmission rollers (16) at both ends of the flip assembly through bearings at equal intervals, and adjacent transmission rollers (16) are transmission-connected via the first transmission assembly (11), a guide assembly for limiting the movement of the track shoe is provided on one side of the flip assembly, the guide assembly is fixedly connected to the support frame (12), the transmission roller (16) on one side of the flip assembly is in contact with the bottom of the grouser of the track shoe, and the guide assembly is in contact with the inner wall of the grouser, and the transmission roller (16) on the other side of the flip assembly is in contact with the end face of the track shoe body away from the grouser, and the track shoe flips from one side of the flip assembly to the other side of the flip assembly; A circulating spray assembly (3) for circulating spraying of rust-proof liquid is connected to the middle end of the support frame (12); The circulating liquid spraying assembly (3) is fixedly connected to a drying assembly (4) for drying the track shoe after liquid spraying on the other side of the flip assembly. The air outlet end of the drying assembly (4) faces the upper and lower end surfaces of the track shoe. The drying assembly (4) is located outside the liquid spraying end of the circulating liquid spraying assembly (3).

2. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 1, characterized in that: The flip assembly comprises a first motor (13), a second transmission assembly (14), a transverse shaft (15), a connecting block (19), a first plug plate (110), a transverse connecting plate (111) and a second plug plate (112), wherein the first motor (13) is located below the circulating liquid spray assembly (3), the first motor (13) is connected to the transverse shaft (15) through the second transmission assembly (14), the middle end of the connecting block (19) is fixedly connected to the transverse shaft (15), the transverse connecting plate (111) is fixedly mounted on the outer end of the connecting block (19), and the upper end of the transverse connecting plate (111) close to the guide assembly and away from the connecting block (19) is fixedly connected to the two sets of first plug plates (110). A second plug plate (112) is symmetrically provided below the end of the first plug plate (110), and the second plug plate (112) is fixedly connected to the lower end of the end of the transverse connecting plate (111) close to the guide assembly away from the connecting block (19), and the lower end of the end of the transverse connecting plate (111) away from the guide assembly away from the connecting block (19) is fixedly connected to the two groups of first plug plates (110), and a second plug plate (112) is symmetrically provided above the end of the first plug plate (110), and the second plug plate (112) is fixedly connected to the upper end of the end of the transverse connecting plate (111) away from the guide assembly away from the connecting block (19), and the transverse shaft (15) is rotatably connected to the circulating liquid spraying assembly (3).

3. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 2, characterized in that: The guide assembly includes a transverse limit plate (17) and a mounting straight plate (18), the ends of the multiple groups of mounting straight plates (18) are fixedly connected to the support frame (12), and the four groups of transverse limit plates (17) are fixedly mounted on the multiple groups of mounting straight plates (18). The tops of the mounting straight plates (18) are lower than the tops of the transmission rollers (16). The transverse limit plates (17) of the first two groups are in contact with the inner walls of the grouser teeth of the track shoe of the first group, and the transverse limit plates (17) of the last two groups are in contact with the inner walls of the grouser teeth of the track shoe of the last group.

4. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 3, characterized in that: The circulating liquid spray assembly (3) comprises a symmetrical liquid spray assembly, a collecting assembly and a self-cleaning filter assembly, wherein the collecting assembly is connected to the self-cleaning filter assembly, the bottom of the self-cleaning filter assembly is fixedly connected to the input end of the symmetrical liquid spray assembly, and the symmetrical liquid spray assembly is provided with two groups of liquid spray ends, and the liquid spray ends are symmetrically arranged on both sides of the horizontal axis (15).

5. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 4, characterized in that: The collecting assembly comprises a box body (31), an inclined plate (320), a baffle (321) and a transverse bottom plate (322); the inclined plate (320) and the transverse bottom plate (322) are fixedly connected to the bottom of the box body (31); the inclined plate (320) and the transverse bottom plate (322) are fixedly connected; the baffle (321) is fixedly mounted on the top of the transverse bottom plate (322); the liquid spraying end of the symmetrical liquid spraying assembly is located above the inclined plate (320); the inclined plate (320) is located below the mounting straight plate (18); the drying assembly (4) is located above the end of the transverse bottom plate (322) away from the inclined plate (320); and the self-cleaning filter assembly is mounted on the end of the transverse bottom plate (322) close to the inclined plate (320) and is located between the baffle (321) and the inclined plate (320).

6. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 5, characterized in that: A liquid adding pipe (38) for adding liquid is fixedly connected to the side wall of the box body (31), and a liquid outlet of the liquid adding pipe (38) is located above the baffle (321).

7. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 5, characterized in that: A liquid level tube (32) for liquid level display is fixedly connected to the side wall of the box body (31), and the bottom of the through hole where the lower end of the liquid level tube (32) is connected to the box body (31) is flush with the horizontal bottom plate (322) and is located at the end of the horizontal bottom plate (322) close to the inclined plate (320).

8. The omnidirectional liquid spraying anti-rust treatment equipment according to any one of claims 5 to 7, characterized in that: Both ends of the box body (31) are fixedly connected with a heat insulation curtain (2).

9. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 7, characterized in that: The self-cleaning filter assembly includes a tapered tube (35), a straight tube (36), a scraper (314), a straight shaft (316), an impeller (317), a filter plate (319) and a positioning column (324). A first through hole (315) is provided at the end of the transverse bottom plate (322) close to the inclined plate (320). A second through hole (318) is provided at the bottom of the first through hole (315) on the transverse bottom plate (322). The first through hole (315) is larger than the second through hole (318). The transverse bottom plate (322) is located at the bottom of the second through hole (318) and is fixedly connected to the tapered tube (35). The bottom of the tapered tube (35) is fixedly connected to the straight tube (36). The straight tube (36) is fixedly connected to the tapered tube (35). The symmetrical liquid spraying components are connected and fixedly connected. The inner wall of the first through hole (315) is in contact with the outer wall of the filter plate (319). The middle end of the filter plate (319) is rotatably connected to the straight shaft (316) through a bearing. Scrapers (314) are fixedly connected to the straight shaft (316) at equal intervals along the circumference, and the bottom of the scraper (314) is in contact with the top of the filter plate (319) in a sliding manner. The bottom of the straight shaft (316) is fixedly connected to the impeller (317). The impeller (317) is located in the straight tube (36). The inner bottom of the first through hole (315) is fixedly connected to the positioning column (324). The filter plate (319) is provided with a positioning hole (323) plugged into the positioning column (324).

10. The omnidirectional liquid spraying anti-rust treatment equipment according to claim 9, characterized in that: The symmetrical liquid spray assembly includes a first pipe (33), a liquid pump (34), a second pipe (39), a first transverse pipe (310), a first nozzle (311), a second transverse pipe (312) and a second nozzle (313); the straight pipe (36) is fixedly connected to the second pipe (39); the input end and the output end of the liquid pump (34) are fixedly connected to the second pipe (39) and the first pipe (33) respectively; multiple groups of first transverse pipes (310) and multiple groups of second transverse pipes (312) are fixedly connected to the box (31); and Multiple groups of first transverse tubes (310) and multiple groups of second transverse tubes (312) are connected and fixedly connected to the first pipe (33). The first transverse tubes (310) and the second transverse tubes (312) are respectively located on both sides of the transverse axis (15). The first transverse tubes (310) are connected and fixedly connected to the first nozzles (311) at equal intervals, and the first nozzles (311) are arranged toward the transverse axis (15). The second transverse tubes (312) are connected and fixedly connected to the second nozzles (313) at equal intervals, and the second nozzles (313) are arranged toward the transverse axis (15).

Citation Information

Patent Citations

  • Spraying device for spraying anti-rust liquid on track shoe

    CN221086050U