A wind power parts transportation device for production workshops
By designing a wind power component transportation device with positioning, loading and cleaning mechanisms, the problem of time waste caused by independent positioning and measurement in traditional transportation methods is solved, and the positioning, measurement and cleaning of components are realized at the same workstation, thereby improving production efficiency and the accuracy of quality judgment.
Patent Information
- Application Number
- CN202510759172.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-09
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-06-09
AI Technical Summary
Traditional wind power component transportation methods result in independent transportation, positioning, and measurement processes, resulting in a lot of waiting time and repeated loading, wasting time and increasing labor costs.
A wind power component transportation device including a positioning mechanism, a loading mechanism and a cleaning mechanism is designed to achieve positioning, measurement and cleaning in the same workstation or the same process. The positioning mechanism is used to position and measure the components, the loading mechanism is used to control the loading interval, and the cleaning mechanism cleans the surface.
Shorten production cycles, reduce labor costs and the risk of operational errors, ensure uniform load on the production line, improve measurement accuracy and the accuracy of surface quality judgment, and reduce downtime and adjustment time.
Smart Images

Figure CN120246611B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of workshop parts transportation, and in particular to a wind power parts transportation device for a production workshop. Background Art
[0002] With the rapid growth of global demand for clean energy, the scale of the wind power industry continues to expand, and the requirements for component manufacturing precision and production efficiency continue to increase. Wind power components have characteristics such as large size, heavy weight, irregular shape, and easily damaged surface. Their transportation within the production workshop faces many challenges.
[0003] Traditional transportation methods require parts to be transported to specific workstations before positioning and measurement. This results in the independence of transportation, positioning, and measurement processes, resulting in a lot of waiting time and transfer links. Since positioning and measurement cannot be synchronized with transportation, parts need to be positioned and loaded repeatedly multiple times, resulting in a lot of time waste. Summary of the Invention
[0004] In order to remedy the above deficiencies, the present invention provides a wind power component transportation device for use in a production workshop, which overcomes the above technical problems or at least partially solves the above problems.
[0005] The present invention is achieved in that:
[0006] The present invention provides a wind power component transportation device for a production workshop, comprising a transportation platform, a positioning mechanism installed on the top of the transportation platform, and the positioning mechanism comprising:
[0007] A first bracket, wherein the first bracket is fixedly mounted on a side of the transport platform, a first motor is fixedly mounted on the top of the first bracket, a first gear is rotatably mounted on the bottom of the first bracket, and the first gear is fixedly connected to the first motor;
[0008] a first chute, the first chute being provided at the bottom of the first bracket, two first chute being provided, a first toothed plate being slidably mounted in each of the two first chute, the first toothed plate being engaged with the first gear;
[0009] A connecting plate is fixedly mounted on the bottom of the first tooth plate, a positioning plate is fixedly mounted on the bottom of the connecting plate, a first sliding rod is slidably mounted on the side of the positioning plate, and the first sliding rod runs through the entire positioning plate.
[0010] In one embodiment of the present invention, a touch plate is fixedly installed on the end of the first sliding rod, a first spring is sleeved on the surface of the first sliding rod, the first spring is arranged between the touch plate and the positioning plate, the other end of the first sliding rod is fixedly installed with a limiting plate, a first threaded rod is fixedly installed on the side of the touch plate, a first threaded cylinder is rotatably installed on the side of the positioning plate, the first threaded rod is threadedly connected to the first threaded cylinder, the first threaded cylinder passes through to the other side of the positioning plate, and a second gear is fixedly installed on the other side of the first threaded cylinder.
[0011] In one embodiment of the present invention, a partition is fixedly installed inside the first bracket, a first gear rod is rotatably installed on the inner side of the first bracket, two first gear rods are provided, both of the two first gear rods are engaged with the second gear, a third gear is fixedly installed on the ends of the two first gear rods, a second slide groove is provided on the top of the partition, two second slide grooves are provided, and an L-shaped plate is slidably installed inside the two second slide grooves.
[0012] In one embodiment of the present invention, the bottom plate of the L-shaped plate is provided with a first tooth groove, the first tooth groove is meshed with the third gear, the side of the L-shaped plate is provided with a second tooth groove, the top of the partition is rotatably installed with a fourth gear, the fourth gear is meshed with the second tooth groove, the bottom of the partition is fixedly installed with a connecting rod, the bottom of the connecting rod is fixedly installed with a disc, the surface of the disc is provided with a fixing hole, the bottom of the disc is rotatably installed with an indicator dial, the surface of the indicator dial is provided with a scale hole, the top of the disc is rotatably installed with a rotating column, the bottom of the rotating column is fixedly connected to the indicator dial, the top of the rotating column is fixedly connected to the fourth gear, the bottom of the partition is fixedly installed with a spray can, the side of the partition is fixedly installed with a touch button, and the touch button is connected to the spray can through an electrical signal.
[0013] In one embodiment of the present invention, a loading mechanism is installed on the side of the transport platform, and the loading mechanism includes a power box, which is fixedly installed on the side of the transport platform, and a second motor is fixedly installed on the bottom of the power box. The output end of the second motor passes through the interior of the power box and is rotatably connected to the power box, and a convex plate is fixedly installed on the output end of the second motor, and a top plate is fixedly installed on the top of the convex plate, and a vertical rod is fixedly installed on the top of the convex plate.
[0014] In one embodiment of the present invention, a mounting seat is fixedly installed inside the power box, a first rotating shaft is rotatably installed at the bottom of the mounting seat, a special-shaped plate is fixedly installed at the bottom of the first rotating shaft, a through groove is provided on the surface of the special-shaped plate, the vertical rod is slidably connected to the through groove, the first rotating shaft passes through the top of the mounting seat, a placement plate is fixedly installed on the top of the first rotating shaft, a through hole is provided on the surface of the placement plate, and a plurality of through holes are provided.
[0015] In one embodiment of the present invention, a fifth gear is rotatably installed at the bottom of the inner cavity of the power box, and a sliding plate is slidably installed at the bottom of the inner cavity of the power box, the sliding plate is in contact with the convex plate, and a second tooth plate is fixedly installed on the side of the sliding plate, the second tooth plate is engaged with the fifth gear, and a second sliding rod is fixedly installed on the side of the sliding plate, the second sliding rod extends to the outside of the power box and is slidably connected to the power box, and a second spring is sleeved on the surface of the second sliding rod, and the second spring is arranged between the sliding plate and the inner wall of the power box.
[0016] The top of the gear train is fixedly mounted on the driving mechanism, and the driving mechanism can be directly mounted on the driving mechanism, and the transmission mechanism can be directly mounted on the transmission mechanism, and the transmission mechanism can be directly mounted on the transmission mechanism.
[0017] In one embodiment of the present invention, a cleaning mechanism is installed on the top of the transport platform, and the cleaning mechanism includes a second bracket, a first slide rail is fixedly installed on the bottom of the second bracket, a sliding block is slidably installed inside the first slide rail, a third motor is fixedly installed on the top of the second bracket, the output end of the third motor passes through the bottom of the second bracket and is rotatably connected to the second bracket, a rotating disk is fixedly installed on the output end of the third motor, and the bottom of the rotating disk and the sliding block are both fixedly installed with fixed columns, a straight groove plate is rotatably installed on the bottom of the second bracket, and the fixed column is slidably connected to the inner groove of the straight groove plate.
[0018] In one embodiment of the present invention, a cleaning brush is provided at the bottom of the sliding block, and the cleaning brush is provided at the bottom of the fixed column, and a third threaded rod is rotatably installed inside the first slide rail, and the third threaded rod is threadedly connected to the sliding block, and a second gear rod is rotatably installed on both sides of the first slide rail, and the second gear rod is fixedly connected to the third threaded rod, and a connecting seat is rotatably installed on the surface of the second gear rod, and a first pulley is rotatably installed on the side of the connecting seat, and the first pulley is meshed with the second gear rod, and a second pulley is rotatably installed on the side of the connecting seat, and the second pulley is connected to the first pulley through a belt, and a positioning frame is fixedly installed on the side of the positioning plate, and a cleaning disk is rotatably installed on the side of the positioning frame, and the cleaning disk is fixedly connected to the second pulley.
[0019] The present invention provides a wind power component transportation device for a production workshop, which has the following beneficial effects:
[0020] 1. Through the setting of the positioning mechanism, the width of the parts can be measured while the parts are positioned, and the specific data of the width can also be marked. Positioning, measurement, and marking are completed in the same workstation or the same process. There is no need to transfer parts between different equipment, avoiding the time waste of multiple positioning and repeated loading, shortening the production cycle, reducing labor costs and the risk of operational errors, and facilitating the subsequent work of the staff.
[0021] 2. Through the setting of the loading mechanism, the loading interval time of parts can be kept consistent when loading. If the interval is too close, it is easy to cause parts to pile up on the conveyor belt, causing material jams or conveyor belt overload. If the interval is too sparse, it will cause the conveyor belt to idle, wasting transportation capacity. Consistent intervals can balance the material flow speed, make the load of each link of the production line uniform, reduce downtime and adjustment time, and ensure the stability and accuracy of subsequent processes.
[0022] 3. Through the setting of the cleaning mechanism, the surface of the parts can be cleaned. Cleaning the surface allows workers to more accurately judge the surface flatness, glossiness and other texture indicators. Contaminants may cover up minor flaws or unevenness on the surface. After cleaning, the surface quality of the parts can be more realistically reflected, which helps to discover potential quality problems in a timely manner and makes the positioning mechanism 2 more accurate in measuring the width of the parts. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0024] Figure 1 It is a schematic diagram of the overall structure provided by an embodiment of the present invention;
[0025] Figure 2 A schematic front view of a first bracket provided in an embodiment of the present invention;
[0026] Figure 3 A bottom-view structural diagram of a first bracket provided in an embodiment of the present invention;
[0027] Figure 4 A bottom-view structural diagram of a second bracket provided in an embodiment of the present invention;
[0028] Figure 5 A schematic diagram of the top structure of the transport platform provided in an embodiment of the present invention;
[0029] Figure 6 A schematic diagram of the internal structure of a loading mechanism provided in an embodiment of the present invention;
[0030] Figure 7 A schematic diagram of the overall structure of a loading mechanism provided in an embodiment of the present invention;
[0031] Figure 8 A schematic diagram of the structure of an indicator plate provided in an embodiment of the present invention;
[0032] Figure 9 Provided for the embodiments of the present invention Figure 5 Schematic diagram of the enlarged structure of part A in the middle.
[0033] In the figure: 1. Transport platform; 2. Positioning mechanism; 201. First bracket; 202. First motor; 203. First gear; 204. First slide; 205. First tooth plate; 206. Connecting plate; 207. Positioning plate; 208. First sliding rod; 209. Touch plate; 210. First spring; 211. Limiting plate; 212. First threaded rod; 213. First threaded cylinder; 214. Second gear; 215. Partition plate; 216. First tooth rod; 217. Third gear ; 218, second chute; 219, L-shaped plate; 220, first tooth groove; 221, second tooth groove; 222, fourth gear; 223, connecting rod; 224, disc; 225, fixing hole; 226, indicator plate; 227, scale hole; 228, rotating column; 229, spray can; 230, touch button; 3, loading mechanism; 301, power box; 302, second motor; 303, convex plate; 304, top plate; 305, vertical rod; 306, mounting base; 3 07, first rotating shaft; 308, special-shaped plate; 309, through groove; 310, through hole; 311, fifth gear; 312, sliding plate; 313, second tooth plate; 314, second sliding rod; 315, second spring; 316, limit groove; 317, push plate; 318, second threaded rod; 319, second threaded barrel; 320, loading plate; 321, storage rack; 322, unloading chute; 323, loading chute; 324, second rotating shaft; 325, rotating plate; 326 , connecting rod; 327, push rod; 328, loading plate; 329, placement plate; 4, cleaning mechanism; 401, second bracket; 402, first slide rail; 403, sliding block; 404, third motor; 405, rotating disk; 406, fixed column; 407, straight groove plate; 408, cleaning brush; 409, third threaded rod; 410, second gear rod; 411, connecting seat; 412, first pulley; 413, second pulley; 414, positioning frame; 415, cleaning disk. DETAILED DESCRIPTION
[0034] 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 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 creative efforts shall fall within the scope of protection of the present invention.
[0035] Reference Figures 1-9The present technical solution provides a wind power component transportation device for a production workshop, which specifically includes a transportation platform 1. A positioning mechanism 2 is installed on the top of the transportation platform 1. The positioning mechanism 2 includes a first bracket 201, a first slide 204 and a connecting plate 206. The first bracket 201 is fixedly installed on the side of the transportation platform 1. A first motor 202 is fixedly installed on the top of the first bracket 201. A first gear 203 is rotatably installed on the bottom of the first bracket 201. The first gear 203 is fixedly connected to the first motor 202. When the first motor 202 is started, it can drive the first gear 203 to rotate. The first slide 204 is opened at the bottom of the first bracket 201. There are two first slides 204. The first tooth plate is slidably installed inside the two first slides 204. 205, the first tooth plate 205 is meshed with the first gear 203. When the first gear 203 rotates, the two first tooth plates 205 can slide inside the two first slide grooves 204, and the sliding of the two first tooth plates 205 inside the first slide grooves 204 is relative sliding. The connecting plate 206 is fixedly installed at the bottom of the first tooth plate 205. A positioning plate 207 is fixedly installed at the bottom of the connecting plate 206. When the two first tooth plates 205 move, the two positioning plates 207 can be moved closer to or away from each other, so that the wind power components can be straightened and kept neatly arranged on the transport platform 1. The side of the positioning plate 207 is slidably installed with a first sliding rod 208, and the first sliding rod 208 runs through the entire A positioning plate 207 is provided, and a touch plate 209 is fixedly installed on the end of the first sliding rod 208. A first spring 210 is sleeved on the surface of the first sliding rod 208. The first spring 210 is arranged between the touch plate 209 and the positioning plate 207. A limiting plate 211 is fixedly installed on the other end of the first sliding rod 208. A first threaded rod 212 is fixedly installed on the side of the touch plate 209. A first threaded cylinder 213 is rotatably installed on the side of the positioning plate 207. The first threaded rod 212 is threadedly connected to the first threaded cylinder 213. The first threaded cylinder 213 passes through the other side of the positioning plate 207. A second gear 214 is fixedly installed on the other side of the first threaded cylinder 213. When the positioning plate 207 straightens the wind power components, the touch plate 209 contacts the wind power components. On both sides, when the two positioning plates 207 are tightly attached to the two sides of the wind power component, the touch plate 209 drives the first sliding rod 208 to move. The movement of the first sliding rod 208 can compress the first spring 210 and at the same time drive the first threaded rod 212 to move inside the first threaded cylinder 213, so that the first threaded cylinder 213 rotates. The rotating first threaded cylinder 213 can drive the second gear 214 to rotate. A partition plate 215 is fixedly installed inside the first bracket 201, and a first gear rod 216 is rotatably installed on the inner side of the first bracket 201. There are two first gear rods 216, and the two first gear rods 216 are both meshed with the second gear 214. The ends of the two first gear rods 216 are fixedly installed with a third gear 217.A second slide groove 218 is provided on the top of the partition 215. There are two second slide grooves 218. An L-shaped plate 219 is slidably installed inside the two second slide grooves 218. The bottom plate of the L-shaped plate 219 is provided with a first tooth groove 220. The first tooth groove 220 is engaged with the third gear 217. The side of the L-shaped plate 219 is provided with a second tooth groove 221. The top of the partition 215 is rotatably installed with a fourth gear 222. The fourth gear 222 is engaged with the second tooth groove 221. When the second gear 214 rotates, it can drive the first gear rod 216 to rotate. The rotating first gear rod 216 can drive the third gear 217 to rotate. The rotation of the third gear 217 can drive the L-shaped plate 219 to slide inside the second slide groove 218. The two L-shaped plates 219 move alternately, so that the L-shaped plate 219 can drive the fourth gear 222 to rotate. The bottom of the partition 215 is fixedly installed with a connecting rod 223, and the bottom of the connecting rod 223 is fixedly installed with a disk 224. The surface of the disk 224 is provided with a fixing hole 225. The bottom of the disk 224 is rotatably installed with an indicator disk 226. The surface of the indicator disk 226 is provided with a scale hole 227. The top of the disk 224 is rotatably installed with a rotating column 228. The bottom of the rotating column 228 is fixedly connected to the indicator disk 226. The rotating column 228 is fixedly connected to the indicator disk 226. The top of the partition 215 is fixedly connected to the fourth gear 222, the bottom of the partition 215 is fixedly installed with a spray can 229, and the side of the partition 215 is fixedly installed with a touch button 230. The touch button 230 is connected to the spray can 229 through an electrical signal. The rotation of the fourth gear 222 can drive the rotating column 228 to rotate, and the rotation of the rotating column 228 can drive the indicator disk 226 to rotate. The different moving distances of the touch plate 209 will cause the rotation amplitude of the indicator disk 226 to be different, resulting in different scale holes 227 exposed by the fixing hole 225 of the indicator disk 226. When the touch button 230 on the side of the partition 215 is affected by the connecting plate 209, the rotation of the fourth gear 222 can drive the rotating column 228 to rotate, and the rotation of the rotating column 228 can drive the indicator disk 226 to rotate. After the squeeze of 6, the colored paint inside the spray can 229 will be sprayed out, and the sprayed colored paint will be sprayed onto the surface of the scale hole 227 through the fixed hole 225, so that the scale marks on the scale hole 227 can be placed on the surface of the component. In this way, the width of the component can be measured while the component is positioned, and the specific data of the width can also be marked. Positioning, measurement, and marking are completed in the same station or the same process, without the need to transfer the component between different equipment, avoiding the time waste of multiple positioning and repeated loading, shortening the production cycle, reducing labor costs and the risk of operational errors, and facilitating the subsequent work of the staff.
[0036] Reference Figures 1-9, this embodiment further proposes that a loading mechanism 3 is installed on the side of the transport platform 1, and the loading mechanism 3 includes a power box 301, which is fixedly installed on the side of the transport platform 1, and a second motor 302 is fixedly installed on the bottom of the power box 301, and the output end of the second motor 302 passes through the interior of the power box 301 and is rotatably connected to the power box 301, and a convex plate 303 is fixedly installed on the output end of the second motor 302, and a top plate 304 is fixedly installed on the top of the convex plate 303, and a vertical rod 305 is fixedly installed on the top of the convex plate 303, and a mounting seat 306 is fixedly installed inside the power box 301, and a first rotating shaft 307 is rotatably installed on the bottom of the mounting seat 306, and a special-shaped plate 30 is fixedly installed on the bottom of the first rotating shaft 307. 8. A through slot 309 is provided on the surface of the special-shaped plate 308. The vertical rod 305 is slidably connected to the through slot 309. When the second motor 302 is started, the convex plate 303 can be driven to rotate. The rotating convex plate 303 can drive the vertical rod 305 to rotate. The rotation of the vertical rod 305 can drive the special-shaped plate 308 to rotate intermittently. The intermittent rotation of the special-shaped plate 308 can drive the first rotating shaft 307 to rotate. The first rotating shaft 307 passes through the top of the mounting seat 306. A placement plate 329 is fixedly installed on the top of the first rotating shaft 307. A through hole 310 is provided on the surface of the placement plate 329. There are multiple through holes 310. The rotation of the first rotating shaft 307 can drive the placement plate 329 to rotate. The power box 3 The bottom of the inner cavity of 01 is rotatably installed with a fifth gear 311, and the bottom of the inner cavity of the power box 301 is slidably installed with a sliding plate 312, which contacts the convex plate 303, and a second tooth plate 313 is fixedly installed on the side of the sliding plate 312, which meshes with the fifth gear 311, and a second sliding rod 314 is fixedly installed on the side of the sliding plate 312, which penetrates the outside of the power box 301 and is slidably connected to the power box 301, and a second spring 315 is sleeved on the surface of the second sliding rod 314, which is set between the sliding plate 312 and the inner wall of the power box 301. When the convex plate 303 rotates, it can drive the sliding plate 312 to perform reciprocating extrusion. 15, the sliding plate 312 can be made to move back and forth at the bottom of the inner cavity of the power box 301. The reciprocating sliding of the sliding plate 312 can drive the second tooth plate 313 to move back and forth. The reciprocating movement of the second tooth plate 313 can drive the fifth gear 311 to rotate back and forth. A limiting groove 316 is fixedly installed on the inner wall of the power box 301. A push plate 317 is slidably installed inside the limiting groove 316. A second threaded rod 318 is fixedly installed at the bottom of the push plate 317. A second threaded cylinder 319 is fixedly installed on the top of the fifth gear 311. The second threaded cylinder 319 is threadedly connected to the second threaded rod 318. When the fifth gear 311 rotates back and forth, it can drive the second threaded cylinder 319 to rotate back and forth.The reciprocating rotation of the second threaded cylinder 319 can drive the second threaded rod 318 to move up and down, so that the push plate 317 can move up and down inside the limiting groove 316. The intermittent rotation of the placement plate 329 makes the position of the through hole 310 always just above the limiting groove 316. When the push plate 317 moves upward, the parts placed on the top of the placement plate 329 can be lifted up. A loading plate 320 is fixedly installed inside the transport platform 1. A storage rack 321 is fixedly installed on the top of the loading plate 320. The bottom of the storage rack 321 is provided with a There is a material discharge trough 322, which is arranged on the surface of the loading plate 320, and a material loading trough 323 is opened on the surface of the loading plate 320. A second rotating shaft 324 is fixedly installed on the top of the placement plate 329, and the second rotating shaft 324 passes through the top of the loading plate 320 and is rotatably connected to the loading plate 320. A rotating plate 325 is fixedly installed on the top of the second rotating shaft 324, and a connecting rod 326 is rotatably installed on the end of the rotating plate 325. A push rod 327 is rotatably installed on the end of the connecting rod 326. A loading plate 328 is fixedly installed on the end of the push rod 327. The loading plate 328 is arranged on the top The edge of the trough 323, each rotation of the placement plate 329 can make the through hole 310 located just below the unloading trough 322, and the parts inside the storage rack 321 fall to the top of the placement plate 329 through the unloading trough 322. When the placement plate 329 rotates, it can simultaneously drive the second rotating shaft 324 to rotate, and the rotating second rotating shaft 324 can drive the rotating plate 325 to rotate, and the rotating rotating plate 325 can drive the connecting rod 326 to rotate, and the rotation of the connecting rod 326 can drive the push rod 327 to move back and forth, and the reciprocating movement of the push rod 327 can drive The dynamic loading plate 328 moves back and forth, pushing the parts being pushed onto the surface of the transport platform 1. The setting of the loading mechanism 3 can ensure that the loading interval of the parts is consistent during loading. If the interval is too close, it will easily cause the parts to pile up on the conveyor belt, causing material jams or conveyor belt overload. If the interval is too sparse, the conveyor belt will idle and waste transportation capacity. Consistent intervals can balance the material flow speed, make the load of each link of the production line uniform, reduce downtime and adjustment time, and ensure the stability and accuracy of subsequent processes.
[0037] Reference Figures 1-9, this embodiment also proposes that a cleaning mechanism 4 is installed on the top of the transport platform 1, and the cleaning mechanism 4 includes a second bracket 401, a first slide rail 402 is fixedly installed on the bottom of the second bracket 401, a sliding block 403 is slidably installed inside the first slide rail 402, and a third motor 404 is fixedly installed on the top of the second bracket 401, and the output end of the third motor 404 passes through the bottom of the second bracket 401 and is rotatably connected to the second bracket 401, and a rotating disk 405 is fixedly installed on the output end of the third motor 404, and the rotating disk 405 and the bottom of the sliding block 403 are fixedly installed with a fixed column 406, and a straight groove plate 407 is rotatably installed on the bottom of the second bracket 401, and the fixed column 406 is slidably connected to the inner groove of the straight groove plate 407, A cleaning brush 408 is provided at the bottom of the movable block 403, and the cleaning brush 408 is provided at the bottom of the fixed column 406. A third threaded rod 409 is rotatably installed inside the first slide rail 402, and the third threaded rod 409 is threadedly connected to the sliding block 403. Second gear rods 410 are rotatably installed on both sides of the first slide rail 402, and the second gear rod 410 is fixedly connected to the third threaded rod 409. A connecting seat 411 is rotatably installed on the surface of the second gear rod 410, and a first pulley 412 is rotatably installed on the side of the connecting seat 411. The first pulley 412 is meshed with the second gear rod 410, and a second pulley 413 is rotatably installed on the side of the connecting seat 411. The second pulley 413 is connected to the first pulley 412 through a belt, and the positioning plate 2 07 is fixedly installed with a positioning frame 414 on the side, and a cleaning disk 415 is rotatably installed on the side of the positioning frame 414. The cleaning disk 415 is fixedly connected to the second pulley 413. When the third motor 404 is started, it can drive the rotating disk 405 to rotate, and the rotation of the rotating disk 405 can drive the straight groove plate 407 to rotate. The rotation of the straight groove plate 407 can drive the sliding block 403 to slide back and forth inside the first slide rail 402. The reciprocating sliding of the sliding block 403 can drive the cleaning brush 408 to clean the surface of the component. When the sliding block 403 moves, it can drive the third threaded rod 409 to rotate. The rotation of the third threaded rod 409 can drive the second gear rod 410 to rotate. The second gear rod 41 The rotation of 0 can drive the first pulley 412 to rotate, the rotating first pulley 412 can drive the second pulley 413 to rotate, and the rotation of the second pulley 413 can drive the cleaning disk 415 to rotate. When the positioning plate 207 positions and measures the previous component, the positioning frame 414 clamps the subsequent component at the same time to clean the surface of the component. Cleaning the surface allows staff to more accurately judge the surface flatness, glossiness and other texture indicators. Contaminants may cover up minor flaws or unevenness on the surface. After cleaning, the surface quality of the component can be more realistically reflected, which helps to promptly discover potential quality problems and makes the positioning mechanism 2 more accurate in measuring the width of the component.
[0038] Specifically, the working process or working principle of the wind power component transportation device for a production workshop is as follows: first, the staff places the components to be transported inside the storage rack 321, and then starts the second motor 302. When the second motor 302 is started, it can drive the convex plate 303 to rotate, and the rotating convex plate 303 can drive the vertical rod 305 to rotate. The rotation of the vertical rod 305 can drive the special-shaped plate 308 to rotate intermittently, and the intermittent rotation of the special-shaped plate 308 can drive the first rotating shaft 307 to rotate. The first rotating shaft 30 The rotation of the convex plate 303 can drive the placement plate 329 to rotate. When the convex plate 303 rotates, the sliding plate 312 can be driven to perform reciprocating extrusion. Under the action of the second spring 315, the sliding plate 312 can be made to move back and forth at the bottom of the inner cavity of the power box 301. The reciprocating sliding of the sliding plate 312 can drive the second tooth plate 313 to move back and forth. The reciprocating movement of the second tooth plate 313 can drive the fifth gear 311 to rotate back and forth. When the fifth gear 311 rotates back and forth, it can drive the second threaded cylinder 319 to reciprocate. The reciprocating rotation of the second threaded cylinder 319 can drive the second threaded rod 318 to move up and down, so that the push plate 317 can move up and down inside the limiting groove 316. The intermittent rotation of the placement plate 329 makes the position of the through hole 310 always directly above the limiting groove 316. When the push plate 317 moves upward, the parts placed on the top of the placement plate 329 can be lifted up. Each rotation of the placement plate 329 can make the through hole 310 directly below the discharge trough 322, and the parts inside the storage rack 321 can be lifted up. The parts fall to the top of the placement plate 329 through the discharge chute 322. When the placement plate 329 rotates, it can simultaneously drive the second rotating shaft 324 to rotate. The rotating second rotating shaft 324 can drive the rotating plate 325 to rotate. The rotating rotating plate 325 can drive the connecting rod 326 to rotate. The rotation of the connecting rod 326 can drive the push rod 327 to move back and forth. The reciprocating movement of the push rod 327 can drive the loading plate 328 to move back and forth, so that the parts pushed up can be pushed to the surface of the transport platform 1.
[0039] Then start the third motor 404 and the first motor 202. When the third motor 404 is started, it can drive the rotating disk 405 to rotate. The rotation of the rotating disk 405 can drive the straight groove plate 407 to rotate. The rotation of the straight groove plate 407 can drive the sliding block 403 to slide back and forth inside the first slide rail 402. The reciprocating sliding of the sliding block 403 can drive the cleaning brush 408 to clean the surface of the component. When the sliding block 403 moves, it can drive the third threaded rod 409 to rotate. The rotation of the third threaded rod 409 can drive the second gear rod 410 to rotate. The rotation of the second gear rod 410 can drive the first pulley 412 to rotate. The rotating first pulley 412 can drive the second pulley 413 to rotate. The rotation of the second pulley 413 can drive the cleaning disk 415 to rotate. When the positioning plate 207 performs positioning and measurement on the previous component, the positioning frame 414 clamps the subsequent component at the same time to clean the surface of the component.
[0040] When the first motor 202 is started, it can drive the first gear 203 to rotate. When the first gear 203 rotates, the two first tooth plates 205 can slide inside the two first sliding grooves 204, and the sliding of the two first tooth plates 205 inside the first sliding grooves 204 is relative sliding. When the two first tooth plates 205 move, the two positioning plates 207 can be moved closer to or away from each other, so that the wind turbine components can be straightened, so that the wind turbine components can be kept neatly arranged on the transport platform 1. When the positioning plates 207 straighten the wind turbine components, the touch plates 209 contact the two sides of the wind turbine components. When the two positioning plates 207 are tightly attached to the two sides of the wind turbine components, the touch plates 209 drive the first sliding rod 208 to move. The movement of the first sliding rod 208 can compress the first spring 210 and at the same time drive the first threaded rod 212 to move inside the first threaded cylinder 213, so that the first threaded cylinder 213 rotates. The rotating first threaded cylinder 213 can The second gear 214 is driven to rotate. When the second gear 214 rotates, the first gear rod 216 is driven to rotate. The rotating first gear rod 216 can drive the third gear 217 to rotate. The rotation of the third gear 217 can drive the L-shaped plate 219 to slide inside the second sliding groove 218. The sliding of the L-shaped plate 219 can drive the fourth gear 222 to rotate. The rotation of the fourth gear 222 can drive the rotating column 228 to rotate. The rotation of the rotating column 228 can drive the index finger 222 to rotate. When the indicator disk 226 rotates, different movement distances of the touch plate 209 will cause different rotation amplitudes of the indicator disk 226, resulting in different scale holes 227 exposed by the fixing hole 225 of the indicator disk 226. When the touch button 230 on the side of the partition 215 is squeezed by the connecting plate 206, the colored paint inside the spray can 229 will be sprayed out, and the sprayed colored paint will be sprayed onto the surface of the scale hole 227 through the fixing hole 225, so that the scale marks on the scale hole 227 can be placed on the surface of the component.
Claims
1. A wind power component transport device for a production workshop, comprising a transport platform (1), characterized in that: A positioning mechanism (2) is installed on the top of the transport platform (1), and the positioning mechanism (2) comprises: A first bracket (201), the first bracket (201) is fixedly mounted on a side of the transport platform (1), a first motor (202) is fixedly mounted on the top of the first bracket (201), a first gear (203) is rotatably mounted on the bottom of the first bracket (201), and the first gear (203) is fixedly connected to the first motor (202); A first slide groove (204), wherein the first slide groove (204) is provided at the bottom of the first bracket (201), two first slide grooves (204) are provided, and a first tooth plate (205) is slidably installed inside the two first slide grooves (204), and the first tooth plate (205) is engaged with the first gear (203); A connecting plate (206), the connecting plate (206) is fixedly mounted on the bottom of the first tooth plate (205), a positioning plate (207) is fixedly mounted on the bottom of the connecting plate (206), a first sliding rod (208) is slidably mounted on the side of the positioning plate (207), and the first sliding rod (208) runs through the entire positioning plate (207); A touch plate (209) is fixedly mounted on the end of the first sliding rod (208), a first spring (210) is sleeved on the surface of the first sliding rod (208), the first spring (210) is arranged between the touch plate (209) and the positioning plate (207), the other end of the first sliding rod (208) is fixedly mounted on a limit plate (211), a first threaded rod (212) is fixedly mounted on the side of the touch plate (209), a first threaded barrel (213) is rotatably mounted on the side of the positioning plate (207), the first threaded rod (212) is threadedly connected to the first threaded barrel (213), the first threaded barrel (213) passes through the other side of the positioning plate (207), and a second gear (214) is fixedly mounted on the other side of the first threaded barrel (213); A partition (215) is fixedly installed inside the first bracket (201), a first gear rod (216) is rotatably installed inside the first bracket (201), two first gear rods (216) are provided, the two first gear rods (216) are meshed with the second gear (214), and a third gear (217) is fixedly installed at the end of the two first gear rods (216), a second slide groove (218) is provided on the top of the partition (215), two second slide grooves (218) are provided, and an L-shaped plate (219) is slidably installed inside the two second slide grooves (218); The bottom plate of the L-shaped plate (219) is provided with a first tooth groove (220), which is engaged with the third gear (217). The side of the L-shaped plate (219) is provided with a second tooth groove (221). The top of the partition (215) is rotatably mounted with a fourth gear (222), which is engaged with the second tooth groove (221). The bottom of the partition (215) is fixedly mounted with a connecting rod (223), and the bottom of the connecting rod (223) is fixedly mounted with a disk (224), and a fixing hole (225) is provided on the surface of the disk (224). An indicator disk (226) is rotatably mounted on the bottom of the disc (224), and a scale hole (227) is provided on the surface of the indicator disk (226). A rotating column (228) is rotatably mounted on the top of the disc (224), and the bottom of the rotating column (228) is fixedly connected to the indicator disk (226). The top of the rotating column (228) is fixedly connected to the fourth gear (222). A spray can (229) is fixedly mounted on the bottom of the partition (215), and a touch button (230) is fixedly mounted on the side of the partition (215). The touch button (230) is connected to the spray can (229) through an electrical signal.
2. The wind power component transportation device for a production workshop according to claim 1, characterized in that: A loading mechanism (3) is installed on the side of the transport platform (1), and the loading mechanism (3) includes a power box (301). The power box (301) is fixedly installed on the side of the transport platform (1). A second motor (302) is fixedly installed on the bottom of the power box (301). The output end of the second motor (302) passes through the interior of the power box (301) and is rotatably connected to the power box (301). A convex plate (303) is fixedly installed on the output end of the second motor (302). A top plate (304) is fixedly installed on the top of the convex plate (303). A vertical rod (305) is fixedly installed on the top of the convex plate (303).
3. The wind power component transportation device for a production workshop according to claim 2, characterized in that: A mounting seat (306) is fixedly installed inside the power box (301), a first rotating shaft (307) is rotatably installed at the bottom of the mounting seat (306), a special-shaped plate (308) is fixedly installed at the bottom of the first rotating shaft (307), a through groove (309) is provided on the surface of the special-shaped plate (308), the vertical rod (305) is slidably connected to the through groove (309), the first rotating shaft (307) passes through the top of the mounting seat (306), a placement plate (329) is fixedly installed on the top of the first rotating shaft (307), a through hole (310) is provided on the surface of the placement plate (329), and a plurality of through holes (310) are provided.
4. The wind power component transportation device for a production workshop according to claim 3, characterized in that: A fifth gear (311) is rotatably mounted on the bottom of the inner cavity of the power box (301), a sliding plate (312) is slidably mounted on the bottom of the inner cavity of the power box (301), the sliding plate (312) is in contact with the convex plate (303), a second tooth plate (313) is fixedly mounted on the side of the sliding plate (312), the second tooth plate (313) is meshed with the fifth gear (311), a second sliding rod (314) is fixedly mounted on the side of the sliding plate (312), the second sliding rod (314) extends to the outside of the power box (301) and is slidably connected to the power box (301), a second spring (315) is sleeved on the surface of the second sliding rod (314), and the second spring (315) is arranged between the sliding plate (312) and the inner wall of the power box (301).
5. The wind power component transportation device for a production workshop according to claim 4, characterized in that: A limiting groove (316) is fixedly installed on the inner wall of the power box (301), a push plate (317) is slidably installed inside the limiting groove (316), a second threaded rod (318) is fixedly installed on the bottom of the push plate (317), a second threaded cylinder (319) is fixedly installed on the top of the fifth gear (311), and the second threaded cylinder (319) is threadedly connected to the second threaded rod (318), a loading plate (320) is fixedly installed on the inside of the transport platform (1), a storage rack (321) is fixedly installed on the top of the loading plate (320), a material discharge trough (322) is provided at the bottom of the storage rack (321), and the material discharge trough (322) is arranged on the loading plate (3 20), a loading trough (323) is provided on the surface of the loading plate (320), a second rotating shaft (324) is fixedly installed on the top of the placement plate (329), the second rotating shaft (324) passes through the top of the loading plate (320) and is rotatably connected to the loading plate (320), a rotating plate (325) is fixedly installed on the top of the second rotating shaft (324), a connecting rod (326) is rotatably installed on the end of the rotating plate (325), a push rod (327) is rotatably installed on the end of the connecting rod (326), a loading plate (328) is fixedly installed on the end of the push rod (327), and the loading plate (328) is arranged at the edge of the loading trough (323).
6. The wind power component transportation device for a production workshop according to claim 5, characterized in that: A cleaning mechanism (4) is installed on the top of the transport platform (1), and the cleaning mechanism (4) includes a second bracket (401), a first slide rail (402) is fixedly installed on the bottom of the second bracket (401), a sliding block (403) is slidably installed inside the first slide rail (402), a third motor (404) is fixedly installed on the top of the second bracket (401), an output end of the third motor (404) passes through the bottom of the second bracket (401) and is rotatably connected to the second bracket (401), a rotating disk (405) is fixedly installed on the output end of the third motor (404), and a fixed column (406) is fixedly installed on the bottom of the rotating disk (405) and the sliding block (403), a straight groove plate (407) is rotatably installed on the bottom of the second bracket (401), and the fixed column (406) is slidably connected to the inner groove of the straight groove plate (407).
7. The wind power component transportation device for a production workshop according to claim 6, characterized in that: A cleaning brush (408) is provided at the bottom of the sliding block (403), and the cleaning brush (408) is provided at the bottom of the fixed column (406). A third threaded rod (409) is rotatably installed inside the first slide rail (402), and the third threaded rod (409) is threadedly connected to the sliding block (403). Second gear rods (410) are rotatably installed on both sides of the first slide rail (402), and the second gear rod (410) is fixedly connected to the third threaded rod (409). A connecting seat (411) is rotatably installed on the surface of the second gear rod (410). A first pulley (412) is rotatably mounted on the side of the connecting seat (411), and the first pulley (412) is meshed with the second gear rod (410). A second pulley (413) is rotatably mounted on the side of the connecting seat (411), and the second pulley (413) is connected to the first pulley (412) via a belt. A positioning frame (414) is fixedly mounted on the side of the positioning plate (207), and a cleaning disk (415) is rotatably mounted on the side of the positioning frame (414), and the cleaning disk (415) is fixedly connected to the second pulley (413).
Citation Information
Patent Citations
Positioning and focusing detection device based on visual detection
CN117053719A
Automobile tensioning wheel rocker arm machining device capable of detecting size of rocker arm
CN117226140A