Novel reverse pushing jacking transverse moving mechanism

By designing a reverse-pushing lifting and lateral movement mechanism, using a telescopic cylinder to drive the synchronous belt for transmission, and combining it with water pump cooling measures, the problem of insufficient heat dissipation due to friction between the synchronous belt and the guide bar was solved, thus achieving stable transmission and extended service life of the equipment.

CN223645645UActive Publication Date: 2025-12-09SHENZHEN AOTO ELECTROMECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202520097946.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-09
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

The heat generated by the friction between the synchronous belt and the guide bar in the existing transfer device cannot be dissipated quickly and effectively, which causes the temperature of the synchronous belt and guide bar to rise, shortening their service life and increasing maintenance costs.

Method used

A novel reverse-push lifting and lateral movement mechanism was designed, which adopts a telescopic cylinder to drive the synchronous belt for transmission, and uses a water pump to transport water from the water tank to the stabilizing plate for cooling. Heat sinks are used to improve heat dissipation efficiency and avoid high-temperature wear of the synchronous belt and guide strip.

Benefits of technology

It achieves stable transmission of synchronous belts, avoids high-temperature wear of synchronous belts and guide bars, extends equipment service life, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of automatic conveying, and discloses a novel reverse pushing jacking transverse moving mechanism which comprises a first bottom plate, telescopic cylinders are fixedly connected to the front end and the rear end of the upper surface of the first bottom plate, the telescopic ends of the two telescopic cylinders are jointly and fixedly connected with a second bottom plate, and vertical plates are fixedly connected to the left end and the right end of the upper surface of the first bottom plate. The upper surface of the first bottom plate and the surface of one side of the vertical plate are jointly provided with a transverse moving piece. A protection mechanism is arranged on the lower surface of the stabilizing plate; according to the utility model, the transverse moving piece is arranged, and the motor in the transverse moving piece drives the rotating rod to rotate through the first synchronous belt, so that the second synchronous belt is driven to rotate and is used for jacking and transversely moving materials; and a water pump in the protection mechanism pumps out water in a water tank and conveys the water into the stabilizing plate for cooling the stabilizing plate, so that the second synchronous belt is cooled, and the situation that the service life of the second synchronous belt is affected by high temperature generated by friction between the second synchronous belt and the stabilizing plate is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of automated conveying technology, specifically a novel reverse-pushing lifting and transverse movement mechanism. Background Technology

[0002] In automated production and conveying processes, multiple conveyor lines often process simultaneously. Multiple transverse conveyor lines are built at both ends of the longitudinal conveyor line to branch off the flow. Multiple materials are fed from one place and need to be diverted to workstations on multiple conveyor lines for processing. As a result, a device for moving workpieces from the longitudinal conveyor line to the transverse conveyor line has emerged.

[0003] Existing transfer devices generally use a chain structure, which requires lubrication and maintenance during use. The workpiece pallet is in direct contact with the chain, which can easily cause oil contamination of the pallet.

[0004] A Chinese patent has been published (authorization announcement number). In this patented technology, the motor driver drives the motor to rotate, and the chain transmission uses friction to move the pallet horizontally and linearly on the surface of the synchronous belt to the conveying medium on the mutually perpendicular transverse conveying section, thereby realizing the transfer of the pallet. Compared with the existing chain structure conveying, it has higher precision and is less prone to contamination.

[0005] However, it has certain drawbacks: the synchronous belt will rub against the guide bar during operation. The heat generated by this friction cannot be dissipated quickly and effectively, causing the temperature of the synchronous belt and guide bar to rise. The long-term high temperature environment will accelerate the wear of the synchronous belt and guide bar, thereby shortening their service life. This not only increases maintenance costs, but also affects the continuous operation of the production line due to frequent replacements. Utility Model Content

[0006] The purpose of this invention is to provide a novel reverse-push lifting and lateral movement mechanism to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution:

[0008] A novel reverse-push lifting and lateral movement mechanism includes a first base plate. Telescopic cylinders are fixedly connected to both the front and rear ends of the upper surface of the first base plate. The telescopic ends of the two telescopic cylinders are jointly fixedly connected to a second base plate. Two support rods are symmetrically fixed to both the left and right sides of the upper surface of the second base plate. A support plate is jointly fixedly connected to the upper ends of the front and rear support rods. Vertical plates are fixedly connected to both the left and right ends of the upper surface of the first base plate. A stabilizing plate is fixedly connected to the side surface of the vertical plate away from the telescopic cylinders. A lateral movement component is jointly provided on the upper surface of the first base plate and one side surface of the vertical plate.

[0009] The stable plate is a hollow structure component, and the lower surface of the stable plate is provided with a protection mechanism, the protection mechanism comprises a water tank, a plurality of heat dissipation fins are throughly and fixedly connected to the side surface away from the vertical plate of the water tank, and a water supply mechanism is arranged on the front surface of the water tank, and a circulating pipe is throughly and fixedly connected to the rear surface of the water tank.

[0010] As a further scheme of the utility model: the horizontal moving piece includes a motor and a rotating rod located behind the motor, the output end of the motor and the outside of the rotating rod are fixedly connected with a first synchronous wheel, the outside of two first synchronous wheels is connected with a first synchronous belt, the outside of the rotating rod is rotatably connected with a rotating sleeve on the left and right sides of the first synchronous wheel, the left and right sides of the motor are provided with a second synchronous belt, and the inside of the second synchronous belt is connected with a second synchronous wheel at the front and rear ends.

[0011] As a further scheme of the utility model: the water supply mechanism includes a fixed plate, the upper surface of the fixed plate is fixedly connected with a water pump, the water inlet end of the water pump is fixedly connected with a first water pipe, and the water outlet end of the water pump is fixedly connected with a second water pipe.

[0012] As a further scheme of the utility model: the second bottom plate is located below the first bottom plate, the supporting rod is movably through the first bottom plate, the supporting plate is located above the first bottom plate, and the upper end of the water tank is fixedly connected to the lower surface of the stable plate.

[0013] As a further scheme of the utility model: the motor and the rotating sleeve are fixedly connected to the upper surface of the first bottom plate, the second synchronous belt is located outside the stable plate, the second synchronous wheel at the rear side is fixedly connected to the end of the rotating rod, and the second synchronous wheel at the front side is rotatably connected to one side surface of the vertical plate.

[0014] As a further scheme of the utility model: the rear end of the fixed plate is fixedly connected to the front surface of the water tank, the first water pipe is throughly connected to the front surface of the water tank, the second water pipe is throughly and fixedly connected to the lower surface of the stable plate, and the circulating pipe is throughly and fixedly connected to the lower surface of the stable plate.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] 1、The utility model discloses a horizontal moving piece is set up, two telescopic cylinders are symmetrically arranged, can drive the first bottom plate to ascend after stretching out, thereby drive the horizontal moving piece to ascend, the motor in the horizontal moving piece drives the rotating rod to rotate through the first synchronous belt, thereby drive the second synchronous belt to rotate, for the jacking horizontal movement of material, through the conveying form of synchronous belt, will not produce pollution, the stable plate supports the second synchronous belt, improves the stability when the second synchronous belt operates.

[0017] 2. This utility model is equipped with a protective mechanism. The water pump in the protective mechanism draws water from the water tank and delivers it to the stabilizing plate to cool the stabilizing plate, thereby cooling the second synchronous belt and preventing the friction between the second synchronous belt and the stabilizing plate from generating high temperatures that would affect the service life of the second synchronous belt. The heat sink dissipates heat from the water, improving the cooling efficiency. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of a novel reverse thrust lifting and lateral movement mechanism;

[0019] Figure 2 This is a partial schematic diagram of a novel reverse thrust lifting and lateral movement mechanism;

[0020] Figure 3 This is a schematic diagram of the transverse moving component in a novel reverse thrust lifting and transverse moving mechanism;

[0021] Figure 4 This is a schematic diagram of the protective mechanism in a novel reverse thrust lifting and lateral movement mechanism.

[0022] In the diagram: 1. First base plate; 2. Telescopic cylinder; 3. Second base plate; 4. Support rod; 5. Support plate; 6. Vertical plate; 7. Stabilizing plate; 8. Lateral movement component; 9. Motor; 10. Rotating rod; 11. First synchronous pulley; 12. First synchronous belt; 13. Rotating sleeve; 14. Second synchronous belt; 15. Second synchronous pulley; 16. Protective mechanism; 17. Water tank; 18. Heat sink; 19. Water supply mechanism; 20. Fixing plate; 21. Water pump; 22. First water pipe; 23. Second water pipe; 24. Circulation pipe. Detailed Implementation

[0023] Please see Figures 1-3In this embodiment of the present invention, a novel reverse-push lifting and lateral movement mechanism includes a first base plate 1. Telescopic cylinders 2 are fixedly connected to both the front and rear ends of the upper surface of the first base plate 1. A second base plate 3 is fixedly connected to the telescopic ends of the two telescopic cylinders 2. The second base plate 3 is located below the first base plate 1. Two support rods 4 are symmetrically fixed to the left and right sides of the upper surface of the second base plate 3. The support rods 4 movably penetrate the first base plate 1. A support plate 5 is fixedly connected to the upper ends of the two support rods 4. The support plate 5 is located above the first base plate 1. Vertical plates 6 are fixedly connected to both the left and right ends of the upper surface of the first base plate 1. A stabilizing plate 7 is fixedly connected to the side of the vertical plate 6 away from the telescopic cylinders 2. A lateral movement component 8 is provided on the upper surface of the first base plate 1 and one side surface of the vertical plate 6. The transverse component 8 includes a motor 9 and a rotating rod 10 located behind the motor 9. The output end of the motor 9 and the outside of the rotating rod 10 are both fixedly connected to a first synchronous pulley 11. The outside of the two first synchronous pulleys 11 are both connected to a first synchronous belt 12. The outside of the rotating rod 10 is rotatably connected to the left and right sides of the first synchronous pulleys 11. The motor 9 and the rotating sleeves 13 are both fixedly connected to the upper surface of the first base plate 1. The left and right sides of the motor 9 are both equipped with second synchronous belts 14. The second synchronous belts 14 are located outside the stabilizing plate 7. The front and rear ends of the second synchronous belts 14 are both connected to second synchronous pulleys 15. The rear second synchronous pulley 15 is fixedly connected to the end of the rotating rod 10, and the front second synchronous pulley 15 is rotatably connected to one side surface of the vertical plate 6.

[0024] The second base plate 3 is fixed to the conveying equipment by Z-shaped plates on the front and rear sides of the upper surface;

[0025] The motor 9 drives the rotating rod 10 to rotate via the first synchronous belt 12, which in turn drives the two second synchronous belts 14 to rotate.

[0026] The telescopic cylinder 2 is initially in the retracted state. When it extends, it can drive the first base plate 1 to rise, thereby driving the two vertical plates 6 to rise, and then driving the second synchronous belt 14 to rise, which is used to lift and move the material laterally. The two telescopic cylinders 2 are symmetrically arranged, which improves the lifting stability.

[0027] The upper surface of the stabilizing plate 7 has a concave groove, in which the second synchronous belt 14 slides to provide stable support for the second synchronous belt 14.

[0028] exist Figures 2-4In the middle: the stabilizing plate 7 is a hollow structure component. The lower surface of the stabilizing plate 7 is provided with a protective mechanism 16. The protective mechanism 16 includes a water tank 17. The upper end of the water tank 17 is fixed to the lower surface of the stabilizing plate 7. Multiple heat sinks 18 are fixedly connected to the side surface of the water tank 17 away from the vertical plate 6. The front surface of the water tank 17 is provided with a water supply mechanism 19. The water supply mechanism 19 includes a fixing plate 20. The rear end of the fixing plate 20 is fixed to the front surface of the water tank 17. A water pump 21 is fixed to the upper surface of the fixing plate 20. A first water pipe 22 is fixed to the inlet end of the water pump 21. The first water pipe 22 is connected to the front surface of the water tank 17. A second water pipe 23 is fixed to the outlet end of the water pump 21. The second water pipe 23 is connected to the lower surface of the stabilizing plate 7. A circulation pipe 24 is fixedly connected to the rear surface of the water tank 17. The circulation pipe 24 is fixedly connected to the lower surface of the stabilizing plate 7.

[0029] The water tank 17 contains clean water, and the water pump 21 is used to pump the clean water in the water tank 17 into the stabilizing plate 7, thereby cooling the second synchronous belt 14.

[0030] The water in the stabilizing plate 7 flows back to the water tank 17 through the circulation pipe 24;

[0031] The heat sink 18 is used to dissipate the heat absorbed by the water, thereby improving the heat dissipation efficiency of the water.

[0032] The materials of the stabilizing plate 7 and the heat sink 18 are preferably aluminum alloy or other materials with high thermal conductivity.

[0033] The working principle of this utility model is as follows: First, the transverse movement mechanism is fixed to the conveying equipment by the Z-shaped plates at both ends of the upper surface of the second base plate 3; the motor 9 drives the rotating rod 10 to rotate through the first synchronous belt 12, thereby driving the two second synchronous belts 14 to rotate; when it is necessary to lift and transverse the material, the telescopic cylinder 2 extends to drive the first base plate 1 to rise, thereby driving the transverse movement component 8 to rise, and then transversely moving the material; during the rotation of the second synchronous belt 14, the stabilizing plate 7 supports the second synchronous belt 14; at the same time, the water pump 21 draws water from the water tank 17 and delivers it to the stabilizing plate 7, thereby dissipating heat from the stabilizing plate 7, and thus dissipating heat from the second synchronous belt 14.

[0034] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

[0035] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

Claims

1. A novel reverse-push lifting and transverse movement mechanism, comprising a first base plate (1), wherein telescopic cylinders (2) are fixedly connected to both the front and rear ends of the upper surface of the first base plate (1), and the telescopic ends of the two telescopic cylinders (2) are jointly fixedly connected to a second base plate (3), wherein two support rods (4) are symmetrically fixedly connected to the left and right sides of the upper surface of the second base plate (3), and a support plate (5) is jointly fixedly connected to the upper ends of the front and rear support rods (4), wherein vertical plates (6) are fixedly connected to both the left and right ends of the upper surface of the first base plate (1), and a stabilizing plate (7) is fixedly connected to the side surface of the vertical plate (6) away from the telescopic cylinders (2), and a transverse movement component (8) is jointly provided on the upper surface of the first base plate (1) and one side surface of the vertical plate (6); Its features are, The stabilizing plate (7) is a hollow structure component, and a protective mechanism (16) is provided on the lower surface of the stabilizing plate (7). The protective mechanism (16) includes a water tank (17). Multiple heat sinks (18) are fixedly connected to the side surface of the water tank (17) away from the vertical plate (6). A water supply mechanism (19) is provided on the front surface of the water tank (17). A circulation pipe (24) is fixedly connected to the rear surface of the water tank (17).

2. The novel reverse thrust lifting and lateral movement mechanism according to claim 1, characterized in that, The transverse component (8) includes a motor (9) and a rotating rod (10) located behind the motor (9). The output end of the motor (9) and the outside of the rotating rod (10) are fixedly connected to a first synchronous pulley (11). The two first synchronous pulleys (11) are connected to a first synchronous belt (12). The rotating rod (10) is rotatably connected to a rotating sleeve (13) on both the left and right sides of the first synchronous pulley (11). The left and right sides of the motor (9) are equipped with a second synchronous belt (14). The front and rear ends of the second synchronous belt (14) are connected to a second synchronous pulley (15).

3. The novel reverse thrust lifting and lateral movement mechanism according to claim 1, characterized in that, The water supply mechanism (19) includes a fixed plate (20), a water pump (21) is fixedly connected to the upper surface of the fixed plate (20), a first water pipe (22) is fixedly connected to the water inlet end of the water pump (21), and a second water pipe (23) is fixedly connected to the water outlet end of the water pump (21).

4. The novel reverse thrust lifting and lateral movement mechanism according to claim 1, characterized in that, The second base plate (3) is located below the first base plate (1), the support rod (4) is movably inserted through the first base plate (1), the support plate (5) is located above the first base plate (1), and the upper end of the water tank (17) is fixed to the lower surface of the stabilizing plate (7).

5. A novel reverse thrust lifting and lateral movement mechanism according to claim 2, characterized in that, The motor (9) and the rotating sleeve (13) are both fixed to the upper surface of the first base plate (1). The second synchronous belt (14) is located outside the stabilizing plate (7). The rear second synchronous wheel (15) is fixed to the end of the rotating rod (10). The front second synchronous wheel (15) is rotatably connected to one side surface of the vertical plate (6).

6. A novel reverse thrust lifting and lateral movement mechanism according to claim 3, characterized in that, The rear end of the fixed plate (20) is fixed to the front surface of the water tank (17), the first water pipe (22) is connected through the front surface of the water tank (17), the second water pipe (23) is fixed through the lower surface of the stabilizing plate (7), and the circulation pipe (24) is fixed through the lower surface of the stabilizing plate (7).