Plastic part conveying device
By designing a plastic parts conveying device, a rapid turnover and transportation of plastic parts between different conveyor belts was achieved using a transmission wheel and transition plate structure. This solved the problems of high cost and low efficiency caused by high-precision equipment in the existing technology, and improved transfer efficiency and processing capacity.
Patent Information
- Application Number
- CN202520732711.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-17
AI Technical Summary
In the existing technology, the transfer of plastic parts between different conveyor belts requires expensive equipment with high precision and high sensitivity, which leads to increased production costs and low transfer efficiency, affecting processing capacity.
A plastic parts conveying device was designed. By utilizing a transmission wheel and transition plate structure, and through a distance adjustment mechanism and a drive mechanism, the synchronous rotation of the transmission wheel is achieved, enabling rapid turnover and transportation of plastic parts between two conveyor belts, thus avoiding reliance on high-precision equipment.
It improved transfer efficiency, reduced production costs, enabled continuous and uninterrupted transfer of plastic parts, and increased processing capacity.
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Figure CN223920339U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of plastics production, especially to plastics part conveying device. BACKGROUND
[0002] Plastics parts refer to various parts or products processed by using plastics as main raw materials, which have many advantages such as light weight, corrosion resistance, good insulation, etc., and are widely used in various industries. In the production and manufacturing process of plastics parts, multiple assembly line processing is required, and a conveyor belt is mainly used to convey plastics parts.
[0003] In the existing continuous production and processing, after the plastics parts complete a certain processing, they are conveyed out of the current conveyor belt. A mechanical gripper is needed to transfer the plastics parts conveyed to the end of the current conveyor belt and place them on the conveyor belt of another processing line for next operation. The operation accuracy of the mechanical gripper is high, and the reaction is quick and agile. The required equipment cost is high, and the working efficiency of the mechanical gripper is not high. The transfer efficiency of the plastics parts is low, which affects the processing capacity of the plastics parts.
[0004] Therefore, in view of the above problems of the existing transfer and conveying of plastics parts on different conveyor belts, high-precision and high-sensitivity expensive equipment is used, which increases the production cost, and the working efficiency of such equipment is not high, the transfer efficiency is low, and further affects the processing capacity of the plastics parts. A conveying device for quickly transferring plastics parts between two conveyor belts can be designed. SUMMARY
[0005] In order to overcome the problem of the existing transfer and conveying of plastics parts on different conveyor belts, high-precision and high-sensitivity expensive equipment is used, which increases the production cost, and the working efficiency of such equipment is not high, the transfer efficiency is low, and further affects the processing capacity of the plastics parts.
[0006] The utility model discloses a technical scheme for: plastic part conveying device, including the supporting plate, still including transmission wheel and transition plate, the upper end both sides symmetry fixed connection of supporting plate has the support frame, the top between two support frames is fixedly connected with the ceiling, and the lower of ceiling is provided with the two N type beams opposite to left and right, and is provided with the distance adjusting mechanism of controlling the relative distance of two N type beams on the ceiling, the lower end fixedly connected with four fixed plates of ceiling, four fixed plates are fixedly connected with the transition plate of lower end, and the transition plate is set below two N type beams, and the front end fixedly connected with the central guide plate of two N type beams, the inside equal interval rotationally connected with a plurality of rotating columns of two N type beams, the outside fixedly connected with two transmission wheels of each rotating column, the outside fixedly connected with the rubber ring of each transmission wheel, the upper end equal interval rotationally connected with a plurality of gear one of N type beam, and each gear one is fixedly connected with corresponding rotating column through the pivot, and the meshing connection of two gear one between adjacent is provided with gear two, and each gear two is rotationally connected on the surface of N type beam, and the driving mechanism of setting up on N type beam is rotated to one side gear two.
[0007] Preferably, the device is arranged in advance between two processing assembly lines conveying belts, and the transition plate is adjusted to be horizontally attached to the surface of the two conveying belts, the appropriate distance between the two N type beams is adjusted by the distance adjusting mechanism, so that the transmission wheels on both sides can be attached to the plastic parts being conveyed, the gears two on both sides are driven to rotate by the driving mechanism, the gears one of each meshing connection are further driven to rotate, and then each rotating column is driven to rotate, the rotating column further drives the transmission wheel and the rubber ring of each side to rotate, when the plastic parts are conveyed to the end by the conveying belt on one side, the plastic parts fall on the transition plate through the central guide of the two central guide plates, and then the plastic parts are further conveyed to the other side by the transmission wheels on both sides, and then fall on the conveying belt on the other side to accept the next assembly line processing.
[0008] Preferably, the distance adjusting mechanism comprises a bidirectional screw, an L-shaped connecting plate one and a distance adjusting motor; the inside middle part of the ceiling is rotationally connected with the bidirectional screw, the two ends of the bidirectional screw are symmetrically connected with the L-shaped connecting plate one, the lower ends of the two L-shaped connecting plates are fixedly connected with the two N type beams, the right middle part of the ceiling is rotationally connected with the distance adjusting motor, and the output shaft of the distance adjusting motor is fixedly connected with the bidirectional screw.
[0009] Preferably, the distance adjusting mechanism further comprises a fixed rod and an L-shaped connecting plate two; the inside front and back ends of the ceiling are symmetrically fixedly connected with the fixed rod, the left and right ends of the two fixed rods are symmetrically movably sleeved with the L-shaped connecting plate two, and the lower end of each L-shaped connecting plate two is fixedly connected with the N type beam on the same side.
[0010] As preferred, the driving mechanism comprises an L-shaped hanging plate and a driving motor; the upper end of the N-shaped beam is fixedly connected with the L-shaped hanging plate, the inner top end of the L-shaped hanging plate is rotatably connected with the driving motor, and the output shaft of the driving motor is fixedly connected with the corresponding gear two below.
[0011] As preferred, the transition plate is symmetrically fixedly connected with the slope plate at the front and rear ends, and the N-shaped beam and the middle guide plate are fixedly connected with the reinforcing plate at the middle part.
[0012] As preferred, the bottom plate is provided below the supporting plate, four air cylinders are uniformly fixedly connected with the upper end of the bottom plate, and the output end of the four air cylinders is fixedly connected with the bottom of the supporting plate.
[0013] As preferred, four brake universal wheels are fixedly connected with the bottom of the bottom plate, and the opposite distal ends of the two supporting frames are symmetrically fixedly connected with the handle.
[0014] The beneficial effects of the utility model are as follows:
[0015] The device can be erected above the two flow line conveying belts, the N-shaped beams with adjustable distance are arranged below the ceiling through the distance adjusting mechanism, a plurality of rotating columns are arranged in the two N-shaped beams to drive the rotating transmission wheels, the driving mechanism is used for the meshing transmission of gear one and gear two, the transmission wheels are driven to rotate synchronously, the plastic parts on the transition plate are transported, the rapid turnover transportation of the plastic parts on the two different conveying belts is realized, the continuous and uninterrupted transportation is realized, compared with the transmission of the traditional mechanical claw and other precision equipment, the efficiency is higher, the speed is faster, and the cost is lower, therefore, the production cost is greatly reduced, and the turnover production efficiency of the plastic parts is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The overall three-dimensional structure schematic view of the utility model is shown;
[0017] Figure 2 The partial exploded three-dimensional structure schematic view of the utility model is shown;
[0018] Figure 3 The N-shaped beam three-dimensional structure schematic view of the utility model is shown;
[0019] Figure 4 The transition plate three-dimensional structure schematic view of the utility model is shown;
[0020] Figure 5 The rotating column three-dimensional structure schematic view of the utility model is shown.
[0021] Explanation of reference signs: 1, supporting plate; 2, supporting frame; 3, ceiling; 4, N-shaped beam; 501, bidirectional screw rod; 502, L-shaped connecting plate one; 503, distance adjusting motor; 504, fixed rod; 505, L-shaped connecting plate two; 6, rotating column; 7, transmission wheel; 8, rubber ring; 9, gear one; 10, gear two; 1101, L-shaped suspension plate; 1102, driving motor; 12, centering guide plate; 13, transition plate; 14, fixed plate; 15, inclined plate; 16, reinforcing plate; 17, bottom plate; 18, air cylinder; 19, brakeable universal wheel; 20, handle. DETAILED DESCRIPTION
[0022] The utility model will be further explained in connection with the drawings and examples.
[0023] Please refer to Figures 1-5The utility model provides a kind of embodiment: plastic part conveying device, including support plate 1;Further include transmission wheel 7 and transition plate 13, the upper end of support plate 1 left and right two sides symmetry fixedly connected with support frame 2, the top between two support frames 2 is fixedly connected with ceiling 3, the below of ceiling 3 is provided with the two N type beams 4 of left and right opposition, and distance adjusting mechanism that ceiling 3 is provided with on the control two N type beams 4 relative distance, the lower end of ceiling 3 is fixedly connected with four fixed plates 14, the lower end of four fixed plates 14 is fixedly connected with transition plate 13, and transition plate 13 is arranged below two N type beams 4, the front end of two N type beams 4 is fixedly connected with central guide plate 12, the inside of two N type beams 4 is equally spaced rotationally connected with multiple rotating columns 6, the outside of each rotating column 6 is fixedly connected with two transmission wheels 7, the outside of each transmission wheel 7 is fixedly connected with rubber ring 8, the upper end of N type beam 4 is equally spaced rotationally connected with multiple gear one 9, and each gear one 9 is fixedly connected with corresponding rotating column 6 by pivot, meshing connection has gear two 10 between adjacent two gear one 9, and each gear two 10 is rotationally connected on the surface of N type beam 4, N type beam 4 is provided with the drive mechanism that one side gear two 10 is rotated, device is arranged in advance between two processing assembly line conveyer belts, and adjust transition plate 13 to cross and adhere on the surface of two conveyer belts, the appropriate distance between two N type beams 4 is adjusted by distance adjusting mechanism, so that the transmission wheel 7 of two sides can adhere on the plastic part of transmission, the rotation of two sides gear two 10 is driven by drive mechanism, each meshing connection gear two 10 further drives gear one 9 to rotate, and then drives each rotating column 6 to rotate, rotating column 6 further drives each transmission wheel 7 and rubber ring 8 to rotate, when one side conveyer belt conveys plastic part to end, by the central guidance of two central guide plates 12, fall in on transition plate 13, further by the driving of transmission wheel 7 of two sides, continue to convey plastic part to another side, and then fall in on the conveyer belt of another side, accept next step's flow processing, distance adjusting mechanism includes bidirectional screw rod 501, L type connecting plate one 502 and distance adjusting motor 503;The inside middle part of ceiling 3 is rotationally connected with bidirectional screw rod 501, the two ends outside of bidirectional screw rod 501 are symmetrically screw-connected with L type connecting plate one 502, the lower end of two L type connecting plate one 502 is fixedly connected with two N type beams 4 respectively, the right end middle part of ceiling 3 is rotationally connected with distance adjusting motor 503, and the output shaft of distance adjusting motor 503 is fixedly connected with bidirectional screw rod 501, the rotation of bidirectional screw rod 501 is driven by the distance adjusting motor 503 in distance adjusting mechanism, bidirectional screw rod 501 drives two L type connecting plate one 502 relative motion, and then adjust the relative appropriate distance of two N type beams 4, distance adjusting mechanism further includes fixed rod 504 and L type connecting plate two 505;The inner side of the ceiling 3 is symmetrically fixed and connected with a fixed rod 504, and the outer side of the left and right ends of the two fixed rods 504 is symmetrically movably sleeved with an L-shaped connecting plate two 505. The lower end of each L-shaped connecting plate two 505 is fixedly connected between the N-shaped beams 4 on the same side. When the relative appropriate distance of the two N-shaped beams 4 is adjusted, the two groups of L-shaped connecting plate two 505 slide on the corresponding fixed rods 504, thereby ensuring the stability of the relative movement of the two N-shaped beams 4. The driving mechanism comprises an L-shaped suspension plate 1101 and a driving motor 1102. The upper end of the N-shaped beam 4 is fixedly connected with the L-shaped suspension plate 1101, and the inner side top end of the L-shaped suspension plate 1101 is rotatably connected with the driving motor 1102. The output shaft of the driving motor 1102 is fixedly connected with the corresponding gear two 10 below. Starting the driving motor 1102 in the driving mechanism drives the corresponding gear two 10 to rotate, and then drives each rotating column 6 to rotate synchronously through the meshing transmission between each gear one 9 and gear two 10.
[0024] Please refer to Figures 1-4 In this embodiment, the front and rear ends of the transition plate 13 are symmetrically fixedly connected with inclined plates 15, and the middle part between the N-shaped beams 4 and the center guide plate 12 is fixedly connected with a reinforcing plate 16. The surface of the inclined plate 15 has a certain inclination, which can conveniently convey the plastic parts to move stably on the transition plate 13, or stably fall from the transition plate 13 to the other side of the conveying belt. The reinforcing plate 16 strengthens the support of the center guide plate 12. The bottom plate 17 is arranged below the supporting plate 1, and the upper end of the bottom plate 17 is uniformly fixedly connected with four air cylinders 18. The output end of the four air cylinders 18 is fixedly connected to the bottom of the supporting plate 1. At the same time, the four air cylinders 18 are started to push the supporting plate 1 up and down, thereby adjusting the height position of the ceiling 3 to adapt to the use requirements of conveying belts of different heights. The bottom of the bottom plate 17 is fixedly connected with four brake universal wheels 19. The opposite ends of the two supporting frames 2 are symmetrically fixedly connected with handles 20. The brake universal wheels 19 facilitate the rapid movement of the whole device, and the handles 20 facilitate the force pushing of the device.
[0025] In the process of work, the device is set in advance between two processing pipeline conveyors, and then four cylinders 18 are started to push the supporting plate 1 down, reduce the height of the roof 3, make the transition plate 13 cross and adhere to the surface of the two conveyors, rotate the bidirectional screw 501 in the distance adjusting mechanism by starting the distance adjusting motor 503, drive the two L-shaped connecting plates 502 to move relatively close, adjust the relative distance of the two N-shaped beams 4, so that the transmission wheels 7 on both sides can adhere to the plastic parts, rotate the corresponding gear two 10 by starting the driving motor 1102 in the driving mechanism, and then drive the rotating columns 6 to rotate synchronously through the meshing transmission between the gear one 9 and the gear two 10, and then drive the transmission wheels 7 and the rubber rings 8 to rotate. When the plastic parts are conveyed to the end of the conveyor on one side, they fall on the transition plate 13 through the centering of the two centering plates 12, and then continue to be conveyed to the other side by the transmission wheels 7 on both sides, and then fall on the conveyor on the other side for the next step of processing.
[0026] Through the above steps, the device is erected between the two pipeline conveyors, the transition plate 13 is adjusted to cross and adhere to the surface of the two conveyors, the distance between the two N-shaped beams 4 is adjusted by the distance adjusting mechanism, the transmission wheels 7 on the outside of the rotating columns 6 are driven to rotate synchronously by the meshing transmission of the gear one 9 and the gear two 10 in the driving mechanism, and the plastic parts on the transition plate 13 are transported, realizing rapid turnover, continuous and uninterrupted. Compared with the delivery of traditional mechanical claws and other precision equipment, the efficiency is higher, the speed is faster, and the cost is lower, so the production cost is greatly reduced, the turnover production efficiency of the plastic parts is improved, the existing turnover and delivery of the plastic parts on different conveyors are solved, the high-precision and high-sensitivity expensive equipment is used, the production cost is increased, and the working efficiency of such equipment is not high, the turnover efficiency is low, and the problem of further affecting the processing capacity of the plastic parts is solved.
Claims
1. A device for transporting plastic parts, comprising a support plate (1); characterized in that: The utility model also includes transmission wheel (7) and transition plate (13), the upper end of support plate (1) is fixedly connected with support frame (2) symmetry left and right, the top between two support frames (2) is fixedly connected with ceiling (3), the below of ceiling (3) is provided with two N type beams (4) opposite left and right, and ceiling (3) is provided with distance adjusting mechanism of controlling the relative distance of two N type beams (4), the lower end of ceiling (3) is fixedly connected with four fixed plate (14), the lower end of four fixed plate (14) is fixedly connected with transition plate (13), and transition plate (13) is arranged below two N type beams (4), the front end of two N type beams (4) is fixedly connected with central guide plate (12), the inside of two N type beams (4) is rotatably connected with a plurality of rotating column (6) equal interval, the outside of every rotating column (6) is fixedly connected with two transmission wheel (7), the outside of every transmission wheel (7) is fixedly connected with rubber ring (8), the upper end of N type beam (4) is rotatably connected with a plurality of gear one (9) equal interval, and every gear one (9) is fixedly connected with corresponding rotating column (6) through pivot, the meshing connection of two adjacent gear one (9) is provided with gear two (10), and every gear two (10) is rotatably connected on the surface of N type beam (4), N type beam (4) is provided with drive mechanism of rotating to one side gear two (10).
2. The plastic part conveying apparatus of claim 1, wherein: The distance adjusting mechanism comprises a bidirectional screw rod (501), an L-shaped connecting plate one (502) and a distance adjusting motor (503); the inner middle part of the ceiling (3) is rotatably connected with the bidirectional screw rod (501), the outer sides of the two ends of the bidirectional screw rod (501) are symmetrically threadedly connected with the L-shaped connecting plate one (502), the lower ends of the two L-shaped connecting plate one (502) are fixedly connected with the two N type beams (4), respectively, the right end middle part of the ceiling (3) is rotatably connected with the distance adjusting motor (503), and the output shaft of the distance adjusting motor (503) is fixedly connected with the bidirectional screw rod (501).
3. The plastic part conveying apparatus of claim 2, wherein: The distance adjusting mechanism further comprises a fixed rod (504) and an L-shaped connecting plate two (505); the inner front and back ends of the ceiling (3) are fixedly connected with the fixed rod (504) symmetrically, the outer sides of the left and right ends of the two fixed rods (504) are symmetrically movably sleeved with the L-shaped connecting plate two (505), respectively, and the lower end of each L-shaped connecting plate two (505) is fixedly connected with the N type beam (4) on the same side.
4. The plastic part conveying apparatus of claim 1, wherein: The drive mechanism comprises an L-shaped suspension plate (1101) and a drive motor (1102); the upper end of the N type beam (4) is fixedly connected with the L-shaped suspension plate (1101), the inner top end of the L-shaped suspension plate (1101) is rotatably connected with the drive motor (1102), and the output shaft of the drive motor (1102) is fixedly connected with the corresponding gear two (10) below.
5. The plastic part conveying apparatus of claim 1, wherein: The front and back ends of the transition plate (13) are fixedly connected with the inclined plates (15) symmetrically, and the middle part between the N type beam (4) and the central guide plate (12) is fixedly connected with the reinforcing plate (16).
6. The plastic part conveying apparatus of claim 1, wherein: The lower part of the supporting plate (1) is provided with a bottom plate (17), the upper end of the bottom plate (17) is uniformly fixedly connected with four air cylinders (18), and the output ends of the four air cylinders (18) are fixedly connected to the bottom of the supporting plate (1).
7. The plastic part conveying apparatus of claim 6, wherein: The bottom of the bottom plate (17) is fixedly connected with four brake universal wheels (19), and the opposite far ends of the two supporting frames (2) are fixedly connected with handles (20) in a symmetrical mode.