Speed-adjustable horizontal reversing conveying device for medicine transportation
By designing a drug transportation device including gear plates, rack plates and arc-shaped transfer plates, the problem that the existing horizontal reversing conveyor cannot adjust the drug transportation speed, and the flexible adjustment of transportation speed and the improvement of transportation efficiency are achieved.
Patent Information
- Application Number
- CN202422302219.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Most of the existing horizontal reversing conveying devices can only perform a single transmission and cannot adjust the speed of drug transportation according to needs.
A horizontal reversing conveying device for drug transportation is designed. Through the meshing structure of the gear plate and the rack plate, the cylindrical slider and the arc-shaped rotary plate are driven to move, and the size of the circular plate is changed, thereby adjusting the rotation speed of the roller and adjusting the transportation speed.
It realizes flexible adjustment of drug transportation speed, avoids the limitation that traditional devices can only be transmitted in a single way, and improves transportation efficiency and convenience.
Smart Images

Figure CN222960647U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drug transportation, in particular to a speed-adjustable horizontal reversing conveying device for drug transportation. Background Art
[0002] In the technical field of medical supplies, the development of drug transportation devices has attracted increasing attention. Traditional drug transportation methods may have problems such as low efficiency and high labor intensity. Therefore, it is particularly important to develop a drug transportation device that can achieve horizontal reversing. Such a device can greatly improve the efficiency and convenience of drug transportation and reduce labor intensity.
[0003] Most of the horizontal reversing conveying devices on the market can only perform single conveying and cannot adjust the drug transportation speed according to requirements.
[0004] Therefore, a speed-adjustable horizontal reversing conveying device for drug transportation is needed. Summary of the Utility Model
[0005] The speed-adjustable horizontal reversing conveying device for drug transportation proposed by the utility model solves the problem that most of the existing horizontal reversing conveying devices can only perform single conveying and cannot adjust the drug transportation speed according to requirements.
[0006] To achieve the above object, the utility model provides the following technical solutions:
[0007] A speed-adjustable horizontal reversing conveying device for drug transportation includes a support chassis and a preparation mechanism installed on one side of the support chassis. The preparation mechanism includes a moving component;
[0008] The moving component includes a hollow plate. One side of the support chassis is fixed with a hollow plate. One end of the hollow plate is provided with a first bearing. The inner side of the first bearing is installed with a first threaded column. One end of the first threaded column is fixed with a first hand crank. The periphery of the first threaded column is threadedly connected with a first threaded plate. The side wall of the first threaded plate is fixed with a first slider. The outside of the first slider is provided with a first slide rail. Above the first threaded plate is fixed with a support plate;
[0009] Above the said support plate is fixed a second motor. The rotating end of the second motor is provided with a first rotating shaft. The other end of the first rotating shaft is fixed with a rotating plate. The side wall of the rotating plate is provided with a second bearing. The inner side of the second bearing is provided with a first connecting column. The top end of the first connecting column is fixed with a second hand crank. The periphery of the first connecting column is fixed with a gear plate. One side of the gear plate is provided with a rack plate. The inner side of the rack plate is provided with a third bearing. An arc-shaped sliding groove is formed inside the rack plate. The inner side of the arc-shaped sliding groove is provided with a cylindrical slider. The bottom end of the cylindrical slider is fixed with a telescopic rod. A limiting groove is arranged outside the telescopic rod. The top end of the telescopic rod is fixed with an arc-shaped rotating plate. A threaded bolt is arranged at the toothed part of the rack plate. A transmission belt is arranged outside the arc-shaped rotating plate. The other inner side of the transmission belt is provided with a roller. The periphery of the other end of the roller is provided with a conveyor belt.
[0010] Preferably, above the support chassis is fixed a support frame. Inside the support frame is fixed a third motor. The rotating end of the third motor is provided with a second rotating shaft. The other end of the second rotating shaft is fixed with a first bevel gear. One side of the first bevel gear is provided with a second bevel gear. Inside the second bevel gear is fixed a second connecting column. The top end of the second connecting column is fixedly connected with a second threaded column. The periphery of the other end of the second threaded column is provided with a fourth bearing. The periphery of the second threaded column is threadedly connected with a second threaded plate. The side wall of the second threaded plate is fixed with a second slider. A second sliding rail is arranged outside the second slider. The other side of the second threaded plate is fixed with a correction plate.
[0011] Preferably, the first hand crank and the first threaded column form a fixed structure, and the first threaded column and the first threaded plate form a threaded connection. Moreover, the first threaded plate forms a sliding structure with the first sliding rail through the first slider, and the first threaded plate and the support plate form a fixed structure.
[0012] Preferably, the gear plate and the rack plate form a meshing structure, and the rack plate forms a sliding structure with the cylindrical slider through the arc-shaped sliding groove.
[0013] Preferably, the cylindrical slider and the arc-shaped rotating plate form a fixed structure through the telescopic rod, and the telescopic rod forms a sliding structure with the rotating plate through the limiting groove.
[0014] Preferably, the first bevel gear and the second rotating shaft form a rotating structure through the operation of the third motor, and the first bevel gear and the second bevel gear form a meshing structure. Moreover, the second bevel gear and the second threaded column form a fixed structure through the second connecting column.
[0015] Preferably, the second threaded post and the second threaded plate form a threaded connection, and the second threaded plate forms a sliding structure with the second sliding rail through the second slider, and the second threaded plate and the correction plate form a fixed structure.
[0016] The utility model provides a speed-adjustable horizontal reversing conveying device for drug transportation. Compared with the prior art, the beneficial effects of the utility model are as follows:
[0017] The speed-adjustable horizontal reversing conveying device for drug transportation is provided with a gear plate and a rack plate. By externally rotating the second hand crank, the gear plate can be driven to rotate. Through the meshing structure of the gear plate and the rack plate, the rotation of the gear plate can cause the rack plate to rotate, and the rotation of the rack plate can cause the cylindrical slider to move through the arc-shaped chute. The movement of the cylindrical slider can cause the arc-shaped rotating plate to move. Multiple arc-shaped rotating plates can form a circular plate, and the movement of multiple arc-shaped rotating plates can change the size of the circular plate. The rotation of the circular plate can cause the roller to rotate. Different sizes of circular plates can make the rotation speed of the roller different, so as to adjust the transportation speed, avoiding that most horizontal reversing conveying devices can only perform single conveying and cannot adjust the drug transportation speed according to requirements;
[0018] 2. The speed-adjustable horizontal reversing conveying device for drug transportation is provided with a first bevel gear and a second bevel gear. By starting the third motor, the second rotating shaft and the first bevel gear can be driven to rotate. Through the meshing structure of the first bevel gear and the second bevel gear, the rotation of the first bevel gear can cause the second bevel gear to rotate, indirectly driving the second threaded post to rotate. Then, through the threaded connection between the second threaded post and the second threaded plate, the rotation of the second threaded post can cause the second threaded plate to move, which can drive the correction plate to move. Through the symmetrical arrangement of two groups of second threaded posts, the two groups of correction plates can move relatively or away from each other, so as to adjust the distance between the correction plates and facilitate the correction of the position of the drugs during transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a left view structural schematic diagram of a speed-adjustable horizontal reversing conveying device for drug transportation proposed by the utility model;
[0020] Figure 2 It is a right view structural schematic diagram of a speed-adjustable horizontal reversing conveying device for drug transportation proposed by the utility model;
[0021] Figure 3 It is a structural schematic diagram of an adjustment component of a speed-adjustable horizontal reversing conveying device for drug transportation proposed by the utility model;
[0022] Figure 4Schematic cross-sectional structure diagram of a speed-adjustable horizontal reversing conveyor device for drug transportation proposed by the present utility model.
[0023] In the figure: 1, support chassis; 2, hollow plate; 3, first bearing; 4, first threaded column; 5, first hand crank; 6, first threaded plate; 7, first slider; 8, first slide rail; 9, support plate; 10, second motor; 11, first rotating shaft; 12, rotating plate; 13, second bearing; 14, first connecting column; 15, second hand crank; 16, gear plate; 17, rack plate; 18, third bearing; 19, arc-shaped chute; 20, cylindrical slider; 21, limiting groove; 22, telescopic rod; 23, arc-shaped rotating plate; 24, threaded bolt; 25, transmission belt; 26, roller; 27, conveyor belt; 28, support frame; 29, third motor; 30, second rotating shaft; 31, first bevel gear; 32, second bevel gear; 33, second connecting column; 34, second threaded column; 35, second threaded plate; 36, fourth bearing; 37, second slider; 38, second slide rail; 39, correction plate. Specific implementation mode
[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0025] Please refer to Figures 1-4 , the present utility model provides a technical solution: a speed-adjustable horizontal reversing conveyor device for drug transportation, including a support chassis 1 and a preparation mechanism installed on one side of the support chassis 1, and the preparation mechanism includes a moving component;
[0026] The moving component includes a hollow plate 2. A hollow plate 2 is fixed on one side of the support chassis 1. One end of the hollow plate 2 is provided with a first bearing 3. The inner side of the first bearing 3 is installed with a first threaded column 4. One end of the first threaded column 4 is fixed with a first hand crank 5. The outer periphery of the first threaded column 4 is threadedly connected with a first threaded plate 6. The side wall of the first threaded plate 6 is fixed with a first slider 7. The outer side of the first slider 7 is provided with a first slide rail 8. The upper part of the first threaded plate 6 is fixed with a support plate 9;
[0027] Further, a second motor 10 is fixed above the support plate 9. A first rotating shaft 11 is provided at the rotating end of the second motor 10. The other end of the first rotating shaft 11 is fixed with a rotating plate 12. A second bearing 13 is provided on the side wall of the rotating plate 12. A first connecting column 14 is provided inside the second bearing 13. The top end of the first connecting column 14 is fixed with a second hand crank 15. A gear plate 16 is fixed around the first connecting column 14. A rack plate 17 is provided on one side of the gear plate 16. A third bearing 18 is provided inside the rack plate 17. An arc-shaped sliding groove 19 is formed inside the rack plate 17. A cylindrical slider 20 is provided inside the arc-shaped sliding groove 19. The bottom end of the cylindrical slider 20 is fixed with a telescopic rod 22. A limiting groove 21 is provided on the outer side of the telescopic rod 22. The top end of the telescopic rod 22 is fixed with an arc-shaped rotating plate 23. A threaded bolt 24 is provided at the toothed part of the rack plate 17. A transmission belt 25 is provided on the outer side of the arc-shaped rotating plate 23. Another inner side of the transmission belt 25 is provided with a roller 26. A conveyor belt 27 is provided around the other end of the roller 26.
[0028] Further, a support frame 28 is fixed above the support chassis 1. A third motor 29 is fixed inside the support frame 28. A second rotating shaft 30 is provided at the rotating end of the third motor 29. The other end of the second rotating shaft 30 is fixed with a first bevel gear 31. A second bevel gear 32 is provided on one side of the first bevel gear 31. A second connecting column 33 is fixed inside the second bevel gear 32. The top end of the second connecting column 33 is fixedly connected with a second threaded column 34. A fourth bearing 36 is provided around the other end of the second threaded column 34. A second threaded plate 35 is threadedly connected around the second threaded column 34. A second slider 37 is fixed on the side wall of the second threaded plate 35. A second sliding rail 38 is provided on the outer side of the second slider 37. A correction plate 39 is fixed on the other side of the second threaded plate 35.
[0029] Further, the first hand crank 5 and the first threaded column 4 form a fixed structure, and the first threaded column 4 and the first threaded plate 6 form a threaded connection. Moreover, the first threaded plate 6 forms a sliding structure with the first sliding rail 8 through the first slider 7, and the first threaded plate 6 and the support plate 9 form a fixed structure. By externally rotating the first hand crank 5, the first threaded column 4 can be driven to rotate. Through the threaded connection between the first threaded column 4 and the first threaded plate 6, the rotation of the first threaded column 4 can move the first threaded plate 6, thereby adjusting the position of the adjustment assembly and making the transmission belt 25 in a taut state.
[0030] Furthermore, the gear plate 16 and the rack plate 17 form a meshing structure, and the rack plate 17 and the cylindrical slider 20 form a sliding structure through the arc-shaped sliding groove 19. By externally rotating the second hand crank 15, the gear plate 16 can be driven to rotate. Through the meshing structure of the gear plate 16 and the rack plate 17, the rotation of the gear plate 16 can cause the rack plate 17 to rotate. The rack plate 17 can be fixed by the threaded bolt 24, and the rotation of the rack plate 17 can cause the cylindrical slider 20 to move through the arc-shaped sliding groove 19.
[0031] Furthermore, the cylindrical slider 20 and the arc-shaped rotating plate 23 form a fixed structure through the telescopic rod 22, and the telescopic rod 22 and the rotating plate 12 form a sliding structure through the limiting groove 21. The movement of the cylindrical slider 20 can cause the arc-shaped rotating plate 23 to move. Multiple arc-shaped rotating plates 23 can form a circular plate, and the movement of multiple arc-shaped rotating plates 23 can change the size of the circular plate. The rotation of the circular plate can cause the roller 26 to rotate. Different sizes of circular plates can cause the roller 26 to rotate at different speeds, thereby adjusting the transportation speed.
[0032] Furthermore, the first bevel gear 31 and the second rotating shaft 30 form a rotating structure through the operation of the third motor 29, the first bevel gear 31 and the second bevel gear 32 form a meshing structure, and the second bevel gear 32 and the second threaded column 34 form a fixed structure through the second connecting column 33.
[0033] Furthermore, the second threaded column 34 and the second threaded plate 35 are in threaded connection, and the second threaded plate 35 and the second slide rail 38 form a sliding structure through the second slider 37. The second threaded plate 35 and the correction plate 39 form a fixed structure. By turning on the third motor 29, the second rotating shaft 30 and the first bevel gear 31 can be driven to rotate. Through the meshing structure of the first bevel gear 31 and the second bevel gear 32, the rotation of the first bevel gear 31 can cause the second bevel gear 32 to rotate, indirectly driving the second threaded column 34 to rotate. Then, through the threaded connection between the second threaded column 34 and the second threaded plate 35, the rotation of the second threaded column 34 can cause the second threaded plate 35 to move, which can drive the correction plate 39 to move. Through the symmetrical arrangement of the two second threaded columns 34, the two correction plates 39 can move relatively or away from each other, thereby adjusting the distance between the correction plates 39 to facilitate the correction of the position of the transported drugs.
[0034] In use, first, the staff needs to rotate the second hand crank 15 by an external force, which can drive the gear plate 16 to rotate. The rotation of the gear plate 16 can cause the rack plate 17 to rotate. The rack plate 17 can be fixed by the threaded bolt 24. The rotation of the rack plate 17 can cause the cylindrical slider 20 to move through the arc-shaped chute 19. The movement of the cylindrical slider 20 can cause the arc-shaped rotating plate 23 to move. Multiple arc-shaped rotating plates 23 can form a circular plate, and the movement of multiple arc-shaped rotating plates 23 can change the size of the circular plate. The rotation of the circular plate can cause the roller 26 to rotate. Different sizes of circular plates can make the rotation speed of the roller 26 different, so as to adjust the transportation speed.
[0035] By rotating the first hand crank 5 by an external force, the first threaded column 4 can be driven to rotate. Through the threaded connection between the first threaded column 4 and the first threaded plate 6, the rotation of the first threaded column 4 can cause the first threaded plate 6 to move, so as to adjust the position of the adjusting component and make the conveyor belt 25 in a taut state. By turning on the second motor 10, the conveyor belt 27 can be driven to operate. Finally, by turning on the third motor 29, the second rotating shaft 30 and the first bevel gear 31 can be driven to rotate. The rotation of the first bevel gear 31 can cause the second bevel gear 32 to rotate, indirectly driving the second threaded column 34 to rotate. The rotation of the second threaded column 34 can cause the second threaded plate 35 to move, which can drive the correction plate 39 to move. Through the symmetrical arrangement of two second threaded columns 34, the two correction plates 39 can move relatively or away from each other, so as to adjust the distance between the correction plates 39 and facilitate the correction of the position of the medicine during transportation.
[0036] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A speed-adjustable horizontal reversing conveyor for transporting medicines, comprising a supporting frame (1) and a preparation mechanism mounted on one side of the supporting frame (1), characterized in that: The preparation mechanism includes a moving assembly; The moving assembly comprises a hollow plate (2), the hollow plate (2) being fixed on one side of the supporting base frame (1), a first bearing (3) being arranged at one end of the hollow plate (2), a first threaded column (4) being installed on the inner side of the first bearing (3), a first hand-turned handle (5) being fixed at one end of the first threaded column (4), a first threaded plate (6) being threadedly connected to the outer periphery of the first threaded column (4), a first sliding block (7) being fixed to the side wall of the first threaded plate (6), a first sliding rail (8) being arranged on the outer side of the first sliding block (7), and a supporting plate (9) being fixed above the first threaded plate (6).
2. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 1, characterized in that: A second motor (10) is fixed above the support plate (9); a first rotating shaft (11) is provided at a rotating end of the second motor (10); a rotating plate (12) is fixed at the other end of the first rotating shaft (11); a second bearing (13) is provided on a side wall of the rotating plate (12); a first connecting column (14) is provided on the inner side of the second bearing (13); a second hand handle (15) is fixed on the top end of the first connecting column (14); a gear plate (16) is fixed on the outer periphery of the first connecting column (14); a rack plate (17) is provided on one side of the gear plate (16); a third bearing (17) is provided on the inner side of the rack plate (17); 8), an arc-shaped slide groove (19) is provided inside the rack plate (17), a cylindrical slider (20) is provided on the inner side of the arc-shaped slide groove (19), a telescopic rod (22) is fixed to the bottom end of the cylindrical slider (20), a limiting groove (21) is provided on the outer side of the telescopic rod (22), an arc-shaped rotating plate (23) is fixed to the top end of the telescopic rod (22), a threaded bolt (24) is provided at the meshing teeth of the rack plate (17), a transmission belt (25) is provided on the outer side of the arc-shaped rotating plate (23), a roller (26) is provided on the other inner side of the transmission belt (25), and a conveyor belt (27) is provided on the outer periphery of the other end of the roller (26).
3. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 1, characterized in that: A support frame (28) is fixed above the support base frame (1), a third motor (29) is fixed inside the support frame (28), a second rotating shaft (30) is provided at the rotating end of the third motor (29), a first bevel gear (31) is fixed at the other end of the second rotating shaft (30), a second bevel gear (32) is provided on one side of the first bevel gear (31), a second connecting column (33) is fixed inside the second bevel gear (32), a second threaded column (34) is fixedly connected to the top end of the second connecting column (33), a fourth bearing (36) is provided on the periphery of the other end of the second threaded column (34), a second threaded plate (35) is threadedly connected to the periphery of the second threaded column (34), a second slider (37) is fixed to the side wall of the second threaded plate (35), a second slide rail (38) is provided on the outer side of the second slider (37), and a correction plate (39) is fixed to the other side of the second threaded plate (35).
4. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 1, characterized in that: The first hand-turned handle (5) and the first threaded column (4) form a fixed structure, and the first threaded column (4) and the first threaded plate (6) form a threaded connection, and the first threaded plate (6) forms a sliding structure with the first slide rail (8) through the first sliding block (7), and the first threaded plate (6) and the support plate (9) form a fixed structure.
5. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 2, characterized in that: The gear plate (16) and the rack plate (17) form a meshing structure, and the rack plate (17) forms a sliding structure with a cylindrical slider (20) via an arc-shaped sliding groove (19).
6. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 2, characterized in that: The cylindrical slider (20) forms a fixed structure through the telescopic rod (22) and the arc-shaped rotating plate (23), and the telescopic rod (22) forms a sliding structure through the limiting groove (21) and the rotating plate (12).
7. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 3, characterized in that: The first bevel gear (31) and the second rotating shaft (30) form a rotating structure through the operation of the third motor (29), the first bevel gear (31) and the second bevel gear (32) form a meshing structure, and the second bevel gear (32) forms a fixed structure through the second connecting column (33) and the second threaded column (34).
8. The speed-adjustable horizontal reversing conveyor for drug transportation according to claim 3, characterized in that: The second threaded column (34) and the second threaded plate (35) are threadedly connected, and the second threaded plate (35) forms a sliding structure with the second slide rail (38) via the second sliding block (37), and the second threaded plate (35) and the correction plate (39) form a fixed structure.