An automotive parts transportation device and its transportation method

By designing automobile parts transportation equipment with automatic distributing components, the problem of manual or external equipment assisted loading in the prior art is solved, and automatic loading and processing of parts is realized, reducing costs and improving transportation efficiency.

CN119218681BActive Publication Date: 2025-05-30CHANGCHUN BODA AUTOMOTIVE PARTS CO LTD
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Patent Information

Application Number
CN202411724236.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-05-30
Estimated Expiration
2044-11-28

AI Technical Summary

Technical Problem

Existing belt conveyors require external equipment or manual auxiliary loading during the transportation of automobile parts, resulting in increased operating costs and increased labor intensity.

Method used

An automobile parts transportation equipment is designed, including a first conveyor and a second conveyor. A box is installed on the top of the second conveyor, and there are inclined plates, vertical plates and automatic material distributing components inside the box to realize automatic material distributing and processing of parts.

Benefits of technology

Through the use of automatic loading components, automatic loading of parts is achieved, the demand for manual assistance is reduced, operating costs are reduced, and transportation efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a transportation device for automotive parts and its transportation method, belonging to the technical field of conveying frames. The transportation device for automotive parts and its transportation method includes a first conveyor and a second conveyor. Support legs one, two, and three are fixedly installed on both sides of the first conveyor and the second conveyor. A box body is fixedly installed on the top surface of the second conveyor, and an automatic material dialing component is arranged inside the discharge cavity. In the present invention, since the rotating roller is in contact with the conveyor belt inside the second conveyor, when the conveyor belt inside the second conveyor operates, it can drive the rotating roller to rotate inside the discharge cavity. As the rotating roller rotates, the automotive parts in the material bin can fall into the groove through the discharge port, and as the rotating roller rotates, the automotive parts inside it are dialed onto the top surface of the second conveyor for transportation, thereby achieving the purpose of automatically dialing automotive parts.
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Description

Technical Field

[0001] The present invention relates to the technical field of conveying racks, and more particularly to an automotive parts transportation device and a transportation method thereof. Background Art

[0002] A parts transportation device refers to a device used to move and manage various parts during production, warehousing, and distribution processes. These devices can improve logistics efficiency, reduce labor costs, and ensure the safe and efficient transfer of parts. Transportation devices are widely used in industries such as automotive, electronics, and machinery manufacturing, which can effectively improve production efficiency and reduce the risks of human errors and accidents.

[0003] During the production of automotive parts, it is usually necessary to convey the manufactured parts to the next process, and a belt conveyor is required for this purpose. However, there are still some problems in the actual use of existing belt conveyors. For example, the structure of existing belt conveyors is simple, and during the feeding process, external equipment or manual assistance is needed for feeding, resulting in an increase in operating costs and the labor intensity of workers. Summary of the Invention

[0004] To make up for the above deficiencies, the present invention provides an automotive parts transportation device and a transportation method thereof that overcome the above technical problems or at least partially solve the above problems.

[0005] The present invention is implemented as follows:

[0006] The present invention provides an automotive parts transportation device, including a first conveyor and a second conveyor. Support legs one, two, and three are fixedly installed on both sides of the first conveyor and the second conveyor. A box body is fixedly installed on the top surface of the second conveyor. An inclined plate is fixedly installed inside the box body. A vertical plate one is fixedly installed on the inner top surface of the box body. A vertical plate two is fixedly installed on the inner bottom surface of the box body. A discharge port is separated between the inclined plate and the vertical plate one. A discharge bin is separated between the top surface of the inclined plate and the inner top surface of the box body. A processing chamber is separated between the vertical plate one and one inner wall of the box body. A discharge chamber is separated between the vertical plate two and one inner wall of the box body. A clamping frame is movably clamped between the inner bottom surface of the box body and the inclined plate. An air storage chamber is separated between the clamping frame and the vertical plate two. A liquid storage chamber is separated between the clamping frame and one inner wall of the box body. An automatic material dialing component is arranged inside the discharge chamber. A first part processing component is arranged on one side of the box body. A second part processing component is arranged above the second conveyor;

[0007] The automatic material dialing component includes a mounting shaft, which is rotatably installed inside the box body and located inside the discharge chamber. A roller is fixedly installed on the outer surface of the mounting shaft. The automatic material dialing component is arranged for automatically dialing the parts inside the bin;

[0008] The first component processing assembly includes a tank body, and the number of the tank bodies is two. The two tank bodies are respectively arranged on both sides of the box body. The first component processing assembly is arranged for degreasing operation of components.

[0009] The second component processing assembly includes a positioning frame, and the positioning frame is arranged above the second conveyor. The second component processing assembly is arranged for drying operation of components.

[0010] In a preferred solution, a plurality of grooves are formed on the outer surface of the roller. The plurality of grooves are evenly spaced on the outer surface of the roller. The roller is located at the discharge port. Both ends of the mounting shaft extend to the outside of the box body. Turntables are fixedly installed at both ends of the mounting shaft extending to the outside of the box body. The outer surface of the roller is in contact with the conveyor belt of the second conveyor.

[0011] In a preferred solution, a plurality of mounting grooves are formed on the outer surface of the roller. Rubber blocks are fixedly installed inside the plurality of mounting grooves. The rubber blocks are in contact with the conveyor belt of the second conveyor.

[0012] In a preferred solution, a mounting sleeve frame is fixedly installed on the outer surface of the tank body. The mounting sleeve frame is fixedly installed with the box body. A plug disk is hermetically clamped inside the tank body. A bracket is fixedly installed on one side surface of the plug disk. A water distribution frame is fixedly installed inside the processing chamber. One side surface of the water distribution frame is inclined. A plurality of liquid outlet pipes are fixedly connected to the inclined surface of the water distribution frame. Spray heads I are fixedly installed at one ends of the plurality of liquid outlet pipes. A connecting pipe I is fixedly connected to the top end of the spray head I. A rectangular pipe I is fixedly connected to the top end of the connecting pipe I. Liquid infusion pipes are fixedly connected to both ends of the bottom surface of the rectangular pipe I. The other ends of the liquid infusion pipes are fixedly connected to the tank body. One-way valves I are fixedly installed on the outer surfaces of the liquid infusion pipes.

[0013] In a preferred solution, a mounting column is fixedly installed on the outer surface of the turntable. A sleeve ring is rotatably sleeved on the outer surface of the mounting column. A connecting rod I is arranged between the sleeve ring and the plug disk. One end of the connecting rod I is fixedly connected to the outer surface of the sleeve ring. The other end of the tank body is movably installed inside the bracket. A liquid inlet pipe is fixedly connected to the outer surface of the tank body. A one-way valve II is fixedly installed on the outer surface of the liquid inlet pipe. The other end of the one-way valve II extends into the liquid storage chamber.

[0014] In a preferred embodiment, an air distribution frame is fixedly installed inside the positioning frame. A plurality of second nozzles are equidistantly installed on the bottom surface of the air distribution frame. Support rods are fixedly installed at both ends of the positioning frame, and the support rods are installed on the top surface of the installation frame. A second connecting pipe is fixedly connected to the top surface of the air distribution frame. The top end of the second connecting pipe is fixedly connected to a second rectangular pipe. Both ends of the bottom surface of the second rectangular pipe are fixedly connected to gas transmission pipes, and the other ends of the gas transmission pipes extend into the interior of the gas storage cavity. A check valve three is fixedly installed on the outer surface of the gas transmission pipe.

[0015] In a preferred embodiment, the clamping frame includes a hollow plate. A sealing clamping plate is movably clamped inside the hollow plate. A plugging plate is fixedly installed on the top surface of the sealing clamping plate. A spring is fixedly connected between the bottom surface of the sealing clamping plate and the inner bottom surface of the hollow plate. The top surface of the plugging plate is in contact with the bottom surface of the inclined plate. The bottom surface of the hollow plate is in contact with the inner bottom surface of the box body. A round rod is fixedly connected to one side surface of the plugging disc. One end of the round rod is fixedly connected to a second connecting rod. A second connecting rod is fixedly connected to one side surface of the second connecting rod. One end of the second connecting rod extends into the interior of the liquid storage cavity and is fixedly connected to one side surface of the clamping frame.

[0016] In a preferred embodiment, a plurality of spheres are placed inside the gas storage cavity. Air inlet pipes are fixedly connected to both sides of the gas storage cavity. A check valve four is fixedly installed on the outer surface of the air inlet pipe.

[0017] In a preferred embodiment, a sediment prevention assembly is arranged inside the liquid storage cavity. The sediment prevention assembly includes a first rotating rod and a second rotating rod. The first rotating rod and the second rotating rod are both rotatably installed on the inner bottom surface of the box body. Synchronous wheels are fixedly sleeved on the outer surfaces of the first rotating rod and the second rotating rod. A synchronous belt is sleeved between the two synchronous wheels. A plurality of baffle plates are equidistantly installed on the outer surface of the synchronous belt. A gear is fixedly installed at the top end of the first rotating rod. The sediment prevention assembly is provided with two groups, and the two groups of sediment prevention assemblies are arranged in a mirror image. A double-sided toothed plate is fixedly installed on the outer surface of the second connecting rod located inside the liquid storage cavity. The double-sided toothed plate meshes with the gear.

[0018] A method for transporting automotive parts includes the following steps:

[0019] S1: Place the automotive parts to be transported into the interior of the storage bin. Start the first conveyor and the second conveyor. The automotive parts inside the storage bin will first fall onto the top surface of the second conveyor and then fall onto the top surface of the first conveyor through the conveyance of the second conveyor to convey the automotive parts.

[0020] S2: When the second conveyor is started, the roller fits with the conveyor belt inside the second conveyor, which can drive the roller to rotate inside the discharge cavity, so that the auto parts inside the silo fall into the groove through the discharge port, and as the roller rotates, the auto parts inside are moved to the top surface of the second conveyor for transportation, completing automatic material transfer;

[0021] S3: When the roller rotates, the turntable is driven to rotate, so that the turntable drives the connecting rod 1 to move back and forth, and drives the plug plate to move inside the tank body, so that the cleaning liquid inside the liquid storage cavity is extracted into the inside of the tank body, and then the cleaning liquid is transported to the inside of the rectangular tube 1 through the infusion tube, and finally sprayed toward the automobile parts inside the groove through the liquid outlet pipe and the nozzle 1, and the cleaning liquid is scattered on the outer surface of the automobile parts, so that the oil stains on the outer surface of the automobile parts are cleaned;

[0022] S4: The plug disc moves back and forth inside the tank body, which can drive the round rod to move synchronously, compress the air inside the air storage chamber, compress the air inside the air storage chamber into the air delivery pipe, and then enter the inside of the rectangular tube 2 through the air delivery pipe, and finally spray it toward the automobile parts passing below through the nozzle 2, so as to blow the mixture of oil and cleaning fluid on the outer surface of the automobile parts away from the outer surface of the automobile parts;

[0023] S5: When the connecting rod 2 moves back and forth, it drives the double-sided toothed plate to move, and the double-sided toothed plate moves back and forth between the two sets of anti-sedimentation components. Then the two gears drive the rotating rod 1 in the two sets of anti-sedimentation components to rotate, thereby driving the synchronous wheel to rotate, causing the synchronous belt to move, and the cleaning liquid inside the liquid storage chamber is moved by the shifting plate to prevent the cleaning liquid inside the liquid storage chamber from precipitating.

[0024] The present invention provides an automobile parts transportation device and a transportation method thereof, and its beneficial effects include:

[0025] 1. By setting up an automatic material-feeding assembly, since the roller fits with the conveyor belt inside the second conveyor, the conveyor belt inside the second conveyor can drive the roller to rotate inside the discharge cavity during operation. As the roller rotates, the automobile parts inside the silo can fall into the inside of the groove through the discharge port, and as the roller rotates, the automobile parts inside the silo are moved to the top surface of the second conveyor for transportation, thereby achieving the purpose of automatically feeding the automobile parts.

[0026] 2. By setting up the first component for part processing, when the roller rotates, it can drive the turntable to rotate. As a result, the turntable drives the first connecting rod to move back and forth, enabling the cleaning liquid in the liquid storage cavity to be pumped into the tank and finally enter the water distribution rack inside the processing cavity. Then, through the multiple liquid outlet pipes and the first nozzle arranged on the inclined surface of the water distribution rack, the cleaning liquid is sprayed onto the automotive parts inside the groove, and the cleaning liquid scatters on the outer surface of the automotive parts, realizing the cleaning of the oil stains on the outer surface of the automotive parts.

[0027] 3. By setting up the second component for part processing, as the plug disk moves back and forth inside the tank, it can drive the round rod to move synchronously, compress the air inside the air storage cavity, compress the air inside the air storage cavity into the inside of the air delivery pipe, and finally spray it onto the automotive parts passing by below through the second nozzle, so as to blow away the mixture of the decomposed oil stains and the cleaning liquid on the outer surface of the automotive parts, realizing the secondary cleaning of the automotive parts.

[0028] 4. By setting up the anti-precipitation component, when the second connecting rod moves back and forth inside the liquid storage cavity driven by the round rod, it can drive the double-sided toothed plate to move synchronously. During the movement, the double-sided toothed plate moves back and forth between the two anti-precipitation components. Then, the two gears drive the first rotating rod in the two anti-precipitation components to rotate, thereby driving the synchronous pulley to rotate, causing the synchronous belt to move. During the movement of the synchronous belt, the cleaning liquid inside the liquid storage cavity is stirred by the baffle plate to prevent the cleaning liquid inside the liquid storage cavity from precipitating. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention, so they should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.

[0030] Figure 1 is the overall three-dimensional view provided by the embodiment of the present invention;

[0031] Figure 2 is the front view structural schematic diagram of the second conveyor provided by the embodiment of the present invention;

[0032] Figure 3 is the structural schematic diagram of the automatic material dialing component provided by the embodiment of the present invention;

[0033] Figure 4 is the sectional structural schematic diagram of the tank body provided by the embodiment of the present invention;

[0034] Figure 5Schematic cross-sectional structure diagram of the box body provided by the embodiment of the present invention;

[0035] Figure 6 Schematic cross-sectional structure diagram of the clamping plate provided by the embodiment of the present invention;

[0036] Figure 7 Schematic rear view structure diagram of the whole provided by the embodiment of the present invention;

[0037] Figure 8 Schematic structure diagram of the anti-sedimentation component provided by the embodiment of the present invention.

[0038] In the figure: 1. First conveyor; 2. Second conveyor; 3. First support leg; 4. Second support leg; 5. Third support leg; 6. Mounting frame; 7. Insertion shaft; 9. Baffle; 10. Box body; 11. Discharge chute; 12. Automatic material distribution component; 1201. Mounting shaft; 1202. Roller; 1203. Groove; 1204. Turntable; 1205. Mounting groove; 1206. Rubber block; 13. First part processing component; 1301. Tank body; 1302. Mounting sleeve frame; 1303. Water distribution frame; 1304. Liquid outlet pipe; 1305. First spray head; 1306. First connecting pipe; 1307. First rectangular pipe; 1308. Collar; 1309. Mounting column; 1310. First connecting rod; 1311. Liquid delivery pipe; 1312. First one-way valve; 1313. Plug disk; 1314. Support; 1315. Liquid inlet pipe; 1316. Second one-way valve; 1317. Round rod; 1318. Fixed rod; 1319. Second connecting rod; 1320. Double-sided toothed plate; 14. Second part processing component; 1401. Positioning frame; 1402. Air distribution frame; 1403. Second spray head; 1404. Second connecting pipe; 1405. Second rectangular pipe; 1406. Support rod; 1407. Air delivery pipe; 1408. Third one-way valve; 1409. Air inlet pipe; 1410. Fourth one-way valve; 15. Inclined plate; 16. First vertical plate; 17. Second vertical plate; 18. Feed bin; 19. Discharge port; 20. Discharge cavity; 21. Processing cavity; 22. Clamping frame; 2201. Hollow plate; 2202. Sealing clamping plate; 2203. Insertion plate; 2204. Spring; 23. Air storage cavity; 24. Liquid storage cavity; 25. Sphere; 26. Anti-sedimentation component; 2601. First rotating rod; 2602. Second rotating rod; 2603. Synchronous pulley; 2604. Synchronous belt; 2605. Paddle; 2606. Gear. Detailed implementation manners

[0039] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0040] Referring to Figures 1-8 , the present invention provides a technical solution: a transportation device for automotive parts, including a first conveyor 1 and a second conveyor 2. Support legs one 3, support legs two 4, and support legs three 5 are fixedly installed on both sides of the first conveyor 1 and the second conveyor 2. A box body 10 is fixedly installed on the top surface of the second conveyor 2. An inclined plate 15 is fixedly installed inside the box body 10. A vertical plate one 16 is fixedly installed on the inner top surface of the box body 10. A vertical plate two 17 is fixedly installed on the inner bottom surface of the box body 10. A discharge port 19 is separated between the inclined plate 15 and the vertical plate one 16. A discharge bin 18 is separated between the top surface of the inclined plate 15 and the inner top surface of the box body 10. A processing chamber 21 is separated between the vertical plate one 16 and one inner wall of the box body 10. A discharge chamber 20 is separated between the vertical plate two 17 and one inner wall of the box body 10. A clamping frame 22 is movably clamped between the inner bottom surface of the box body 10 and the inclined plate 15. An air storage chamber 23 is separated between the clamping frame 22 and the vertical plate two 17. A liquid storage chamber 24 is separated between the clamping frame 22 and one inner wall of the box body 10. An automatic material dialing assembly 12 is arranged inside the discharge chamber 20. A first part processing assembly 13 is arranged on one side of the box body 10. A second part processing assembly 14 is arranged above the second conveyor 2. A discharge groove 11 is opened on one side of the box body 10, enabling automotive parts to fall onto the top surface of the second conveyor 2 for transportation;

[0041] During operation, during the transportation of automotive parts, first, the automotive parts to be transported are placed inside the bin 18. Then, by starting the first conveyor 1 and the second conveyor 2, during the startup process of the first conveyor 1 and the second conveyor 2, the automotive parts inside the bin 18 will first fall onto the top surface of the second conveyor 2, and then through the transportation of the second conveyor 2, they will fall onto the top surface of the first conveyor 1, thus transporting the automotive parts to the required position, and further realizing the transportation operation of the automotive parts.

[0042] Mounting frames 6 are installed on the top surfaces of the support legs one 3 and the support legs two 4. Insertion shafts 7 are inserted inside the mounting frames 6. A baffle 9 is fixedly installed at one end of the insertion shaft 7. By providing the baffle 9, the limit during the transportation of automotive parts can be realized, and by controlling the distance between the two baffles 9, the overall device can be adapted to the limit transportation of parts of different sizes.

[0043] The automatic feeding component 12 includes a mounting shaft 1201 which is rotatably mounted inside the box body 10 and is located inside the discharging cavity 20. A roller 1202 is fixedly mounted on the outer surface of the mounting shaft 1201. The automatic feeding component 12 is provided for automatically feeding the parts inside the bin 18;

[0044] A plurality of grooves 1203 are formed on the outer surface of the roller 1202. The plurality of grooves 1203 are equally spaced on the outer surface of the roller 1202. The roller 1202 is located at the discharging port 19. Both ends of the mounting shaft 1201 extend to the outside of the box body 10. Turntables 1204 are fixedly mounted at both ends of the mounting shaft 1201 extending to the outside of the box body 10. The outer surface of the roller 1202 is in contact with the conveyor belt of the second conveyor 2.

[0045] During operation, when the second conveyor 2 is started, the conveyor belt inside the second conveyor 2 can be made to operate. During the operation, since the roller 1202 is in contact with the conveyor belt inside the second conveyor 2, when the conveyor belt inside the second conveyor 2 operates, it can drive the roller 1202 to rotate inside the discharging cavity 20. As the roller 1202 rotates, the automotive parts inside the bin 18 can fall into the inside of the grooves 1203 through the discharging port 19, and as the roller 1202 rotates, the automotive parts inside it are dialed to the top surface of the second conveyor 2 for conveying, thus achieving the purpose of automatically feeding the automotive parts and avoiding the problem of increased cost caused by the existing manual feeding or adding other feeding equipment.

[0046] In the above, the rotation speed of the roller 1202, that is, the feeding speed, can be controlled by the conveying speed of the second conveyor 2, so that the feeding speed is consistent with the conveying speed, thereby making the automotive parts dialed to the top of the conveyor belt of the second conveyor 2 more evenly distributed, and further increasing the overall practicality of the device. And the roller 1202 can be replaced according to the size of the automotive parts to be conveyed, that is, by replacing the grooves 1203 of different sizes, it can be suitable for the automatic feeding operation of automotive parts of different sizes, further improving the overall practicality of the device, and for the automatic feeding of automotive parts, using the power of the device itself can greatly save energy consumption.

[0047] A plurality of mounting grooves 1205 are formed on the outer surface of the roller 1202. Rubber blocks 1206 are fixedly mounted inside the plurality of mounting grooves 1205. The rubber blocks 1206 are in contact with the conveyor belt of the second conveyor 2. By providing the rubber blocks 1206, the friction between the roller 1202 and the conveyor belt inside the second conveyor 2 can be effectively increased, so that the conveyor belt can better drive the roller 1202 to rotate.

[0048] The first part processing assembly 13 includes two tanks 1301, which are respectively arranged on both sides of the box body 10. The first part processing assembly 13 is arranged for degreasing operations on parts.

[0049] An installation sleeve frame 1302 is fixedly installed on the outer surface of the tank 1301, and the installation sleeve frame 1302 is fixedly installed with the box body 10. A plug disk 1313 is hermetically clamped inside the tank 1301. A support 1314 is fixedly installed on one side surface of the plug disk 1313. A water distribution frame 1303 is fixedly installed inside the processing chamber 21. One side surface of the water distribution frame 1303 is arranged as an inclined surface. A plurality of liquid outlet pipes 1304 are fixedly connected to the inclined surface of the water distribution frame 1303. One end of each of the plurality of liquid outlet pipes 1304 is fixedly installed with a first spray head 1305. The top end of the first spray head 1305 is fixedly connected with a first connecting pipe 1306. The top end of the first connecting pipe 1306 is fixedly connected with a rectangular pipe 1307. Both ends of the bottom surface of the rectangular pipe 1307 are fixedly connected with liquid delivery pipes 1311. The other end of the liquid delivery pipe 1311 is fixedly connected with the tank 1301. A one-way valve 1312 is fixedly installed on the outer surface of the liquid delivery pipe 1311. An installation column 1309 is fixedly installed on the outer surface of the turntable 1204. A collar 1308 is rotatably sleeved on the outer surface of the installation column 1309. A first connecting rod 1310 is arranged between the collar 1308 and the plug disk 1313. One end of the first connecting rod 1310 is fixedly connected with the outer surface of the collar 1308. The other end of the tank 1301 is movably installed inside the support 1314. An inlet pipe 1315 is fixedly connected to the outer surface of the tank 1301. A one-way valve 1316 is fixedly installed on the outer surface of the inlet pipe 1315, and the other end of the one-way valve 1316 extends into the liquid storage chamber 24.

[0050] During operation, when the roller 1202 rotates, it can drive the turntable 1204 to rotate, and then the turntable 1204 drives the first connecting rod 1310 to move back and forth. During the movement, it can drive the plug disk 1313 to move inside the tank 1301. During the back-and-forth movement, the cleaning liquid in the liquid storage chamber 24 can be pumped into the tank 1301, and then the cleaning liquid is conveyed into the rectangular pipe 1307 through the liquid delivery pipe 1311, and finally enters the water distribution frame 1303 inside the processing chamber 21. Then, through the plurality of liquid outlet pipes 1304 and the first spray heads 1305 arranged on the inclined surface of the water distribution frame 1303, the cleaning liquid is sprayed onto the automotive parts inside the groove 1203. The cleaning liquid scatters on the outer surface of the automotive parts, realizing the cleaning of the oil stains on the outer surface of the automotive parts, decomposing the oil stains attached to the outer surface of the automotive parts, and further achieving the purpose of automatically degreasing the automotive parts during the conveying process. The cleaning liquid is an alkaline cleaning liquid that can remove oil stains.

[0051] During the above process, the automatic degreasing operation of automotive parts can be carried out by the rotation of the rotating roller 1202, without any other external power source, further saving the energy consumption cost.

[0052] The second part processing assembly 14 includes a positioning frame 1401, which is arranged above the second conveyor 2. The second part processing assembly 14 is used for drying the parts.

[0053] An air distribution frame 1402 is fixedly installed inside the positioning frame 1401. A plurality of second nozzles 1403 are equidistantly installed on the bottom surface of the air distribution frame 1402. Support rods 1406 are fixedly installed at both ends of the positioning frame 1401. The support rods 1406 are installed on the top surface of the installation frame 6. A second connecting pipe 1404 is fixedly connected to the top surface of the air distribution frame 1402. The top end of the second connecting pipe 1404 is fixedly connected to a second rectangular pipe 1405. Both ends of the bottom surface of the second rectangular pipe 1405 are fixedly connected to air delivery pipes 1407. The other ends of the air delivery pipes 1407 extend into the interior of the air storage cavity 23. A check valve three 1408 is fixedly installed on the outer surface of the air delivery pipe 1407. The clamping frame 22 includes a hollow plate 2201. A sealing clamping plate 2202 is movably clamped inside the hollow plate 2201. A plugging plate 2203 is fixedly installed on the top surface of the sealing clamping plate 2202. A spring 2204 is fixedly connected between the bottom surface of the sealing clamping plate 2202 and the inner bottom surface of the hollow plate 2201. The top surface of the plugging plate 2203 is in contact with the bottom surface of the inclined plate 15. The bottom surface of the hollow plate 2201 is in contact with the inner bottom surface of the box body 10. By setting like this, the plugging plate 2203 can always be in contact with the bottom surface of the inclined plate 15, so that an independent space is formed inside the air storage cavity 23. A round rod 1317 is fixedly connected to one side surface of the plugging disc 1313. One end of the round rod 1317 is fixedly connected to a second connecting rod 1319. A second connecting rod 1319 is fixedly connected to one side surface of the second connecting rod 1319. One end of the second connecting rod 1319 extends into the interior of the liquid storage cavity 24 and is fixedly connected to one side surface of the clamping frame 22.

[0054] During operation, the plug tray 1313 moves back and forth inside the tank body 1301, which can drive the round rod 1317 to move synchronously. Under the action of the fixed rod 1318 and the connecting rod II 1319, the clamping frame 22 is driven to move back and forth inside the air storage cavity 23. When the clamping frame 22 moves towards the roller 1202, the space inside the air storage cavity 23 can be compressed, that is, the air inside the air storage cavity 23 is compressed. The air inside the air storage cavity 23 is compressed into the inside of the air delivery pipe 1407, then enters the inside of the rectangular pipe II 1405 through the air delivery pipe 1407, and finally enters the inside of the air distribution frame 1402 through the connecting pipe II 1404, and then is sprayed downward onto the passing automotive parts through the spray head II 1403, so as to blow away the mixture of oil stains and cleaning liquid after decomposition on the outer surface of the automotive parts from the outer surface of the automotive parts, realizing the secondary cleaning of the automotive parts, and blowing away the mixture of oil stains and cleaning liquid on the outer surface of the automotive parts while simultaneously performing the drying operation on the automotive parts.

[0055] In the above, on the one hand, it can realize the cleaning of the mixture of oil stains and cleaning liquid on the outer surface of automotive parts, and on the other hand, it can realize the drying of the automotive parts after degreasing, so as to facilitate the subsequent processing of automotive parts.

[0056] A plurality of balls 25 are placed inside the air storage cavity 23. Both sides of the air storage cavity 23 are fixedly connected with air inlet pipes 1409, and a check valve IV 1410 is fixedly installed on the outer surface of the air inlet pipe 1409.

[0057] During operation, when the clamping frame 22 moves towards the fixed rod 1318, the outside air can be sucked into the inside of the air storage cavity 23. With the entry of the air, the plurality of balls 25 inside the air storage cavity 23 can move. It can not only make the plurality of balls 25 collide with each other to generate vibration, but also impact the bottom of the inclined plate 15, enabling the automotive parts located inside the storage bin 18 to more smoothly pass through the discharge port 19 and fall into the inside of the groove 1203, effectively preventing the automotive parts from blocking the discharge port 19.

[0058] Inside the liquid storage chamber 24, a sediment prevention component 26 is provided. The sediment prevention component 26 includes a first rotating rod 2601 and a second rotating rod 2602. Both the first rotating rod 2601 and the second rotating rod 2602 are rotatably installed on the inner bottom surface of the box body 10. Synchronous wheels 2603 are fixedly sleeved on the outer surfaces of the first rotating rod 2601 and the second rotating rod 2602. A synchronous belt 2604 is sleeved between the two synchronous wheels 2603. A plurality of baffle plates 2605 are equidistantly installed on the outer surface of the synchronous belt 2604. A gear 2606 is fixedly installed at the top end of the first rotating rod 2601. There are two groups of sediment prevention components 26, and the two groups of sediment prevention components 26 are arranged in a mirror image. A double-sided toothed plate 1320 is fixedly installed on the outer surface of the connecting rod two 1319 located inside the liquid storage chamber 24. The double-sided toothed plate 1320 meshes with the gear 2606.

[0059] During operation, when the connecting rod two 1319 moves back and forth inside the liquid storage chamber 24 driven by the round rod 1317, it can synchronously drive the double-sided toothed plate 1320 to move. During the movement, the double-sided toothed plate 1320 moves back and forth between the two groups of sediment prevention components 26. Furthermore, the two gears 2606 drive the first rotating rods 2601 in the two groups of sediment prevention components 26 to rotate, thereby driving the synchronous wheels 2603 to rotate, causing the synchronous belt 2604 to move. During the movement of the synchronous belt 2604, the cleaning liquid inside the liquid storage chamber 24 is stirred by the baffle plates 2605 to prevent the cleaning liquid inside the liquid storage chamber 24 from precipitating.

[0060] In the above, through the setting of the two groups of sediment prevention components 26, different-direction eddies can be generated in the cleaning liquid inside the liquid storage chamber 24 during the movement of the double-sided toothed plate 1320, thereby improving the sediment prevention effect. And because the double-sided toothed plate 1320 can move back and forth, it can drive the two groups of sediment prevention components 26 to stir the cleaning liquid in different directions, thereby further improving the stirring effect, that is, improving the sediment prevention effect.

[0061] A method for transporting automotive parts includes the following steps:

[0062] S1: Place the automotive parts to be transported into the inside of the bin 18, start the first conveyor 1 and the second conveyor 2. The automotive parts inside the bin 18 will first fall onto the top surface of the second conveyor 2 and be conveyed to the top surface of the first conveyor 1 through the second conveyor 2 for conveying the automotive parts.

[0063] S2: When the second conveyor 2 is started, the roller 1202 fits with the conveyor belt inside the second conveyor 2, which can drive the roller 1202 to rotate inside the discharge chamber 20, so that the automobile parts inside the silo 18 fall into the groove 1203 through the discharge port 19, and as the roller 1202 rotates, the automobile parts inside are moved to the top surface of the second conveyor 2 for transportation, completing automatic material selection;

[0064] S3: When the roller 1202 rotates, the turntable 1204 is driven to rotate, so that the turntable 1204 drives the connecting rod 1310 to move back and forth, and drives the plug disc 1313 to move inside the tank body 1301, so as to extract the cleaning liquid inside the liquid storage chamber 24 into the inside of the tank body 1301, and then transport the cleaning liquid to the inside of the rectangular tube 1307 through the liquid infusion tube 1311, and finally spray the cleaning liquid toward the automobile parts inside the groove 1203 through the liquid outlet pipe 1304 and the nozzle 1305, and the cleaning liquid is scattered on the outer surface of the automobile parts, so as to clean the oil stains on the outer surface of the automobile parts;

[0065] S4: The plug disc 1313 moves back and forth inside the tank body 1301, which can drive the round rod 1317 to move synchronously, compressing the air inside the air storage chamber 23, and compressing the air inside the air storage chamber 23 into the air delivery pipe 1407, and then entering the inside of the second rectangular tube 1405 through the air delivery pipe 1407, and finally spraying toward the automobile parts passing below through the second nozzle 1403, so as to blow the mixture of oil and cleaning liquid after decomposition on the outer surface of the automobile parts away from the outer surface of the automobile parts;

[0066] S5: When the connecting rod 2 1319 moves back and forth, it drives the double-sided toothed plate 1320 to move, and the double-sided toothed plate 1320 moves back and forth between the two groups of anti-sedimentation components 26, and then the two gears 2606 drive the rotating rod 1 2601 in the two groups of anti-sedimentation components 26 to rotate, thereby driving the synchronous wheel 2603 to rotate, causing the synchronous belt 2604 to move, and the cleaning liquid inside the liquid storage chamber 24 is moved through the shifting plate 2605 to prevent the cleaning liquid inside the liquid storage chamber 24 from precipitating.

[0067] Specifically, the working process or principle of the automotive parts transportation equipment and its transportation method is as follows: When in use, first place the automotive parts to be transported into the interior of the bin 18. Then, by starting the first conveyor 1 and the second conveyor 2, during the startup process of the first conveyor 1 and the second conveyor 2, the automotive parts inside the bin 18 will first fall onto the top surface of the second conveyor 2, and then be conveyed by the second conveyor 2 and fall onto the top surface of the first conveyor 1, thus transporting the automotive parts to the required position. When the second conveyor 2 is started, the conveyor belt inside the second conveyor 2 can be operated. Since the roller 1202 is in contact with the conveyor belt inside the second conveyor 2, it can drive the roller 1202 to rotate inside the discharge chamber 20. As the roller 1202 rotates, the automotive parts inside the bin 18 can fall into the groove 1203 through the discharge port 19, and as the roller 1202 rotates, the automotive parts inside it are dialed onto the top surface of the second conveyor 2 for transportation;

[0068] When the roller 1202 rotates, it can drive the turntable 1204 to rotate, and then the turntable 1204 drives the connecting rod one 1310 to move back and forth. During the movement, it can drive the plug disk 1313 to move inside the tank body 1301. During the back-and-forth movement, the cleaning liquid in the liquid storage chamber 24 can be pumped into the tank body 1301, and then the cleaning liquid is transported into the rectangular pipe one 1307 through the liquid delivery pipe 1311, and finally enters the water distribution frame 1303 inside the treatment chamber 21. Then, through the multiple liquid outlet pipes 1304 and the nozzle one 1305 arranged on the inclined surface of the water distribution frame 1303, it sprays towards the automotive parts inside the groove 1203, and the cleaning liquid scatters on the outer surface of the automotive parts, realizing the cleaning of the oil stains on the outer surface of the automotive parts;

[0069] By the plug disk 1313 moving back and forth inside the tank body 1301, it can drive the round rod 1317 to move synchronously. Under the action of the fixed rod 1318 and the connecting rod two 1319, it drives the clamping frame 22 to move back and forth inside the air storage chamber 23. When the clamping frame 22 moves towards the direction of the roller 1202, it can compress the space inside the air storage chamber 23, that is, compress the air inside the air storage chamber 23, compress the air inside the air storage chamber 23 into the inside of the air delivery pipe 1407, then enter the rectangular pipe two 1405 through the air delivery pipe 1407, and finally enter the air distribution frame 1402 through the connecting pipe two 1404, and then spray towards the automotive parts passing by below through the nozzle two 1403, thereby blowing the mixture of the decomposed oil stains and the cleaning liquid on the outer surface of the automotive parts away from the outer surface of the automotive parts;

[0070] When the connecting rod two 1319 moves back and forth inside the liquid storage cavity 24 driven by the round rod 1317, it can synchronously drive the double-sided toothed plate 1320 to move. During the movement, the double-sided toothed plate 1320 moves back and forth between the two anti-sediment components 26. Furthermore, the two gears 2606 drive the first rotating rods 2601 in the two anti-sediment components 26 to rotate, thereby driving the synchronous wheels 2603 to rotate, causing the synchronous belt 2604 to move. During the movement of the synchronous belt 2604, the cleaning liquid inside the liquid storage cavity 24 is stirred by the dialing plate 2605 to prevent the cleaning liquid inside the liquid storage cavity 24 from precipitating.

Claims

1. An automobile parts transportation device, comprising a first conveyor (1) and a second conveyor (2), wherein a first support leg (3), a second support leg (4) and a third support leg (5) are fixedly mounted on both sides of the first conveyor (1) and the second conveyor (2), wherein: A box body (10) is fixedly mounted on the top surface of the second conveyor (2), an inclined plate (15) is fixedly mounted inside the box body (10), a vertical plate 1 (16) is fixedly mounted on the top surface of the box body (10), a vertical plate 2 (17) is fixedly mounted on the bottom surface of the box body (10), a discharge port (19) is isolated between the inclined plate (15) and the vertical plate 1 (16), a discharge bin (18) is isolated between the top surface of the inclined plate (15) and the top surface of the box body (10), a processing chamber (21) is isolated between the vertical plate 1 (16) and the inner wall of one side of the box body (10), and the vertical plate 2 (17) is fixedly mounted on the bottom surface of the box body (10). ) and an inner wall of one side of the box body (10) to isolate a discharge cavity (20); a clamping frame (22) is movably clamped between the inner bottom surface of the box body (10) and the inclined plate (15); an air storage cavity (23) is isolated between the clamping frame (22) and the second vertical plate (17); a liquid storage cavity (24) is isolated between the clamping frame (22) and an inner wall of one side of the box body (10); an automatic material shifting assembly (12) is arranged inside the discharge cavity (20); a first part processing assembly (13) is arranged on one side of the box body (10); and a second part processing assembly (14) is arranged above the second conveyor (2); The automatic material shifting assembly (12) comprises a mounting shaft (1201), the mounting shaft (1201) being rotatably mounted inside the box body (10) and located inside the material discharging cavity (20), a roller (1202) being fixedly mounted on the outer surface of the mounting shaft (1201), and the automatic material shifting assembly (12) is configured to automatically shift materials from parts inside the silo (18); The first part processing assembly (13) comprises a tank body (1301), the number of the tank bodies (1301) is two, the two tank bodies (1301) are respectively arranged on both sides of the box body (10), and the first part processing assembly (13) is used for degreasing parts; The second part processing assembly (14) comprises a positioning frame (1401), wherein the positioning frame (1401) is arranged above the second conveyor (2), and the second part processing assembly (14) is used for drying parts; The outer surface of the roller (1202) is provided with a plurality of grooves (1203), and the plurality of grooves (1203) are equidistantly provided on the outer surface of the roller (1202); the roller (1202) is located at the discharge port (19); both ends of the installation shaft (1201) extend to the outside of the box body (10); both ends of the installation shaft (1201) extending to the outside of the box body (10) are fixedly provided with a turntable (1204); and the outer surface of the roller (1202) is in contact with the conveyor belt of the second conveyor (2); The outer surface of the rotating roller (1202) is provided with a plurality of mounting grooves (1205), and a rubber block (1206) is fixedly mounted inside each of the plurality of mounting grooves (1205), and the rubber block (1206) is in contact with the conveyor belt of the second conveyor (2); The outer surface of the tank body (1301) is fixedly mounted with a mounting sleeve (1302), the mounting sleeve (1302) being fixedly mounted to the box body (10), the interior of the tank body (1301) being sealed with a plug disc (1313), one side surface of the plug disc (1313) being fixedly mounted with a bracket (1314), the interior of the processing chamber (21) being fixedly mounted with a water distribution rack (1303), one side surface of the water distribution rack (1303) being arranged in an inclined surface, and the inclined surface of the water distribution rack (1303) being fixedly connected with a plurality of liquid outlet pipes (1304). ), a nozzle 1 (1305) is fixedly installed at one end of each of the plurality of liquid outlet pipes (1304), a connecting pipe 1 (1306) is fixedly connected to the top of each of the nozzles (1305), a rectangular tube 1 (1307) is fixedly connected to the top of each of the connecting tubes (1306), a liquid infusion pipe (1311) is fixedly connected to both ends of the bottom surface of each of the rectangular tubes (1307), the other end of each of the liquid infusion pipes (1311) is fixedly connected to the tank body (1301), and a one-way valve 1 (1312) is fixedly installed on the outer surface of each of the liquid infusion pipes (1311); A mounting post (1309) is fixedly mounted on the outer surface of the rotating disk (1204), a collar (1308) is rotatably sleeved on the outer surface of the mounting post (1309), a connecting rod (1310) is provided between the collar (1308) and the plug disk (1313), one end of the connecting rod (1310) is fixedly connected to the outer surface of the collar (1308), the other end of the tank body (1301) is movably mounted inside the bracket (1314), the outer surface of the tank body (1301) is fixedly connected to a liquid inlet pipe (1315), the outer surface of the liquid inlet pipe (1315) is fixedly mounted with a second one-way valve (1316), the other end of the second one-way valve (1316) extends to the inside of the liquid storage chamber (24).

2. The automobile parts transportation equipment according to claim 1, characterized in that: An air distribution frame (1402) is fixedly installed inside the positioning frame (1401), and a plurality of nozzles (1403) are equidistantly installed on the bottom surface of the air distribution frame (1402). Support rods (1406) are fixedly installed at both ends of the positioning frame (1401), and the support rods (1406) are installed on the top surface of the mounting frame (6). A connecting pipe (1404) is fixedly connected to the top surface of the air distribution frame (1402), and a rectangular pipe (1405) is fixedly connected to the top of the connecting pipe (1404). An air supply pipe (1407) is fixedly connected to both ends of the bottom surface of the rectangular pipe (1405). The other end of the air supply pipe (1407) extends to the inside of the air storage chamber (23), and a one-way valve (1408) is fixedly installed on the outer surface of the air supply pipe (1407).

3. The automobile parts transportation equipment according to claim 2, characterized in that: The snap-in frame (22) comprises a hollow plate (2201), a sealed snap-in plate (2202) being movably snap-in-connected inside the hollow plate (2201), a plug-in plate (2203) being fixedly mounted on the top surface of the sealed snap-in plate (2202), a spring (2204) being fixedly connected between the bottom surface of the sealed snap-in plate (2202) and the bottom surface of the hollow plate (2201), the top surface of the plug-in plate (2203) being in contact with the bottom surface of the inclined plate (15), and the hollow plate The bottom surface of (2201) fits with the inner bottom surface of the box body (10), and a round rod (1317) is fixedly connected to a side surface of the plug disc (1313), one end of the round rod (1317) is fixedly connected to a second connecting rod (1319), and a second connecting rod (1319) is fixedly connected to a side surface of the second connecting rod (1319), and one end of the second connecting rod (1319) extends to the interior of the liquid storage chamber (24) and is fixedly connected to a side surface of the clamping frame (22).

4. The automobile parts transportation equipment according to claim 3, characterized in that: A plurality of spherical balls (25) are placed inside the air storage cavity (23), and both sides of the air storage cavity (23) are fixedly connected to an air intake pipe (1409), and a one-way valve (1410) is fixedly installed on the outer surface of the air intake pipe (1409).

5. The automobile parts transportation equipment according to claim 4, characterized in that: An anti-precipitation component (26) is disposed inside the liquid storage chamber (24), and the anti-precipitation component (26) comprises a first rotating rod (2601) and a second rotating rod (2602), the first rotating rod (2601) and the second rotating rod (2602) are both rotatably mounted on the inner bottom surface of the box body (10), and the outer surfaces of the first rotating rod (2601) and the second rotating rod (2602) are both fixedly sleeved with synchronous wheels (2603), and a synchronous belt (2603) is sleeved between the two synchronous wheels (2603). 04), a plurality of shift plates (2605) are equidistantly mounted on the outer surface of the synchronous belt (2604), a gear (2606) is fixedly mounted on the top of the rotating rod 1 (2601), the anti-sedimentation components (26) are in two groups, and the two groups of anti-sedimentation components (26) are mirror-imaged, and a double-sided toothed plate (1320) is fixedly mounted on the outer surface of the connecting rod 2 (1319) located inside the liquid storage chamber (24), and the double-sided toothed plate (1320) is meshed with the gear (2606).

6. A method for transporting automobile parts, which is applicable to the automobile parts transporting equipment according to claim 5, characterized in that: The following steps are involved: S1: placing the automobile parts to be transported into the silo (18), starting the first conveyor (1) and the second conveyor (2), and causing the automobile parts in the silo (18) to first fall onto the top surface of the second conveyor (2), and then fall onto the top surface of the first conveyor (1) through the transport of the second conveyor (2), thereby transporting the automobile parts; S2: When the second conveyor (2) is started, the roller (1202) fits with the conveyor belt inside the second conveyor (2), and can drive the roller (1202) to rotate inside the discharge chamber (20), so that the automobile parts inside the silo (18) fall into the groove (1203) through the discharge port (19), and as the roller (1202) rotates, the automobile parts inside are moved to the top surface of the second conveyor (2) for transportation, thereby completing automatic material transfer; S3: When the roller (1202) rotates, the rotating disk (1204) is driven to rotate, so that the rotating disk (1204) drives the connecting rod 1 (1310) to move back and forth, driving the plug disc (1313) to move inside the tank body (1301), and the cleaning liquid inside the liquid storage chamber (24) is drawn into the inside of the tank body (1301), and then the cleaning liquid is transported to the inside of the rectangular tube 1 (1307) through the infusion tube (1311), and finally sprayed toward the automobile parts inside the groove (1203) through the liquid outlet pipe (1304) and the nozzle 1 (1305), and the cleaning liquid is scattered on the outer surface of the automobile parts, so that the oil stains on the outer surface of the automobile parts are cleaned; S4: The plug disc (1313) moves back and forth inside the tank body (1301), which can drive the round rod (1317) to move synchronously, compressing the air inside the air storage chamber (23), and the air inside the air storage chamber (23) is compressed into the air delivery pipe (1407), and then enters the inside of the second rectangular tube (1405) through the air delivery pipe (1407), and finally sprayed toward the automobile parts passing below through the second nozzle (1403), so that the mixture of oil and cleaning liquid after decomposition on the outer surface of the automobile parts is blown away from the outer surface of the automobile parts; S5: When the connecting rod 2 (1319) moves back and forth, it drives the double-sided toothed plate (1320) to move, and the double-sided toothed plate (1320) moves back and forth between the two sets of anti-sedimentation components (26), and then the two gears (2606) drive the rotating rod 1 (2601) in the two sets of anti-sedimentation components (26) to rotate, thereby driving the synchronous wheel (2603) to rotate, causing the synchronous belt (2604) to move, and the cleaning liquid inside the liquid storage chamber (24) is moved through the shifting plate (2605) to prevent the cleaning liquid inside the liquid storage chamber (24) from precipitating.

Citation Information

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