Damping vibration attenuation sleeve for automatic mother machine lifting machine

By designing a damping and vibration-absorbing sleeve on the automatic lifting machine, using the buffer structure of the auxiliary cylinder and rubber plate, and combining the limit function of the adjustment rod, the bolt breakage problem caused by the vibration of the elastic motor is solved, and the stability and safety of the equipment are improved.

CN223227776UActive Publication Date: 2025-08-15JIAOZUO WANFANG ALUMINUM MANUFACTURING CO LTD
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Patent Information

Application Number
CN202421940909.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-08-15
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The elastic motor of the traditional automatic lifting machine has a large vibration amplitude and the gap between the fixing bolts is too large, resulting in frequent breakage of the bolts and serious wear of the drive shaft, which increases maintenance costs and poses safety hazards.

Method used

A damping and vibration-absorbing sleeve is designed, including components such as auxiliary cylinder, rubber plate, spring and adjustment rod. Through the use of auxiliary cylinder and rubber plate, the rubber plate is used to drive the rubber plate to buffer vibration, and through the cooperation of the adjustment rod and the butt plate, the elastic motor is quickly erected and dismantled.

Benefits of technology

It effectively reduces the vibration impact of the elastic motor, protects the fixing bolts, reduces maintenance costs, and improves the stability and safety of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mother lifting machines, and discloses a damping vibration attenuation sleeve for an automatic mother lifting machine, which comprises a mother lifting machine body, a side plate is arranged on the side surface of the mother lifting machine body, an elastic motor is fixedly assembled on the side surface of the side plate, a notch is formed in the side surface of the side plate, a through groove is formed in the side surface of the mother lifting machine body, and the elastic motor is fixedly assembled on the side surface of the through groove. The inner wall of the notch is slidably sleeved with an auxiliary cylinder, the side face of the auxiliary cylinder is fixedly connected with a first spring, the end, away from the side face of the auxiliary cylinder, of the first spring is fixedly connected with a rubber plate, the outer edge of the rubber plate is in lap joint with the inner wall of the notch and the inner wall of the through groove, and a first sliding groove is formed in the side face of the auxiliary cylinder. Through cooperative use of an auxiliary cylinder and a rubber plate, the elastic motor vibrates to drive the auxiliary cylinder to vibrate, so that the auxiliary cylinder drives the rubber plate to perform auxiliary cushioning through a first spring, a third spring pushes a push plate to move, and a butt joint cylinder and the push plate assist the first spring and the rubber plate to be stably erected.
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Description

Technical Field

[0001] The utility model relates to the technical field of automatic lifting machines, in particular to a damping and vibration reduction sleeve for automatic lifting machines. Background Art

[0002] The automatic lifting machine is mainly composed of a frame, legs, top cylinder, clamp cylinder, clamp, clamp jaw, ground support, air circuit control and other parts. The anode busbar hoist is lifted to the top of the aluminum electrolysis cell by the aluminum electrolysis multifunctional overhead crane and connected to compressed air through a quick connector.

[0003] When traditional automatic lifting machines are performing lifting operations, the tensioning motor vibrates greatly and is used frequently. The gap between the four fixing bolts at the bottom of the motor is too large, and there is no protective device. The bolts directly hit the fixed base, causing frequent bolt breakage and severe wear of the drive shaft. The fixing bolts at the bottom of the motor often break, and the broken bolts often cause damage to spare parts in other parts, increasing maintenance costs, seriously affecting the progress of lifting, and also causing great safety hazards. Utility Model Content

[0004] In view of the deficiencies in the prior art, the present invention provides a damping and vibration reduction sleeve for an automatic jacking machine to solve the problems raised by the above background technology.

[0005] The utility model provides the following technical solutions: a damping and vibration-damping sleeve for an automatic lifting machine, comprising a lifting machine body, a side panel is provided on the side of the lifting machine body, a tensioning motor is fixedly installed on the side of the side panel, a slot is provided on the side of the side panel, a through slot is provided on the side of the lifting machine body, an auxiliary cylinder is slidably sleeved on the inner wall of the slot, a spring is fixedly connected to the side of the auxiliary cylinder, an end of the spring away from the side of the auxiliary cylinder is fixedly connected to a rubber plate, and the outer edge of the rubber plate overlaps the inner wall of the slot and the inner wall of the through slot, a sliding groove is provided on the side of the auxiliary cylinder, and a docking cylinder is overlapped on the side of the lifting machine body.

[0006] As a preferred technical solution of the present invention, a second slide groove is provided on the side of the docking tube, a circular groove is provided on the side of the inner wall of the second slide groove, and a docking groove is provided on the side of the inner wall of the circular groove.

[0007] As an optimal technical solution of the present invention, a second spring is fixedly connected to the side of the inner wall of the circular groove, and one end of the second spring away from the inner wall of the circular groove is fixedly connected to a circular plate, and the outer edge of the circular plate is slidably connected to the inner wall of the circular groove.

[0008] As an optimal technical solution of the present invention, the inner wall of the first slide is slidably sleeved with a docking plate, and the shape and size of the outer edge of the docking plate are adapted to the shape and size of the inner wall of the docking groove, and the shape and size of the inner wall of the first slide is completely consistent with the shape and size of the inner wall of the second slide.

[0009] As a preferred technical solution of the present invention, an adjusting rod is fixedly installed on the side of the docking plate, a spring three is fixedly connected to the side of the inner wall of the adjusting rod, an end of the spring three away from the inner wall of the adjusting rod is fixedly connected to a push plate, and the inner wall of the push plate is slidably connected to the outer edge of the adjusting rod.

[0010] As a preferred technical solution of the present invention, there are four adjusting rods, and the connection structures of the outer edges and side surfaces of the four adjusting rods are completely consistent.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] 1. The automatic lifting machine uses a damping vibration reduction sleeve. Through the cooperation of the auxiliary cylinder and the rubber plate, the tensioning motor drives the auxiliary cylinder to vibrate when it vibrates, so that the auxiliary cylinder drives the rubber plate to assist in shock absorption through the spring 1, and the spring 3 is used to push the push plate to move, so that the docking cylinder and the push plate are used to assist the spring 1 and the rubber plate to be stably installed.

[0013] 2. The automatic lifting machine uses a damping vibration reduction sleeve, which is used in conjunction with the adjusting rod and the docking plate. The adjusting rod is used to drive the docking plate to move until the side of the docking plate passes through the inner wall of the slide groove one and the inner wall of the slide groove two to the inner wall of the circular groove. Then, the adjusting rod is rotated to drive the docking plate to rotate. Then, the adjusting rod is released to push the circular plate to move using spring two, and then the circular plate is used to drive the outer edge of the docking plate to dock with the inner wall of the docking groove to limit the position, thereby assisting the lifting machine body and the tensioning motor to quickly set up and disassemble. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0015] Figure 2 This is a schematic diagram of the front cross-section structure of the adjusting rod of the utility model;

[0016] Figure 3 This is a schematic diagram of the front cross-section structure of the auxiliary cylinder of the utility model;

[0017] Figure 4 This is a schematic diagram of the partially disassembled structure of the utility model;

[0018] Figure 5 For this utility model Figure 4 Enlarged structural diagram at point A in the middle.

[0019] In the figure: 1. Carriage lifting machine body; 2. Side panel; 3. Tensioning motor; 4. Auxiliary cylinder; 5. Slide groove 1; 6. Spring 1; 7. Rubber plate; 8. Docking plate; 9. Docking cylinder; 10. Slide groove 2; 11. Docking groove; 12. Circular groove; 13. Spring 2; 14. Circular plate; 15. Adjusting rod; 16. Spring 3; 17. Push plate; 18. Notch; 19. Through groove. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0021] See also Figure 1-Figure 5 The cam 2 is provided with a plurality of springs, and the springs 2 are provided with a plurality of springs, and the springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of springs 2 are provided with a plurality of springs, and the plurality of

[0022] In a preferred embodiment, a slide groove 2 10 is provided on the side of the docking tube 9, a circular groove 12 is provided on the side of the inner wall of the slide groove 2 10, and a docking groove 11 is provided on the side of the inner wall of the circular groove 12. Through the coordinated use of the slide groove 2 10 and the circular groove 12, the inner wall of the slide groove 1 5 passes through the inner wall of the slide groove 2 10 and is connected with the inner wall of the circular groove 12, thereby assisting the docking plate 8 to pass through the inner wall of the slide groove 1 5 and the inner wall of the slide groove 2 10 to the inner wall of the circular groove 12, and move to the inner wall of the docking groove 11.

[0023] In a preferred embodiment, a spring 2 13 is fixedly connected to the side surface of the inner wall of the circular groove 12, and a circular plate 14 is fixedly connected to the end of the spring 2 13 away from the inner wall of the circular groove 12, and the outer edge of the circular plate 14 is slidably engaged with the inner wall of the circular groove 12. By using the spring 2 13 and the circular plate 14 in coordination, the spring 2 13 is used to push the circular plate 14 to move in the inner wall of the circular groove 12, and then the circular plate 14 is used to push the outer edge of the docking plate 8 to dock with the inner wall of the docking groove 11 to limit the position.

[0024] In a preferred embodiment, the inner wall of the chute 1 5 is slidably sleeved with a docking plate 8, and the shape and size of the outer edge of the docking plate 8 are adapted to the shape and size of the inner wall of the docking groove 11, and the shape and size of the inner wall of the chute 1 5 are completely consistent with the shape and size of the inner wall of the chute 2 10. Through the coordinated use of the chute 1 5 and the chute 2 10, the outer edge of the docking plate 8 is used to pass through the inner wall of the chute 1 5 and the inner wall of the chute 2 10 to the inner cavity of the circular groove 12.

[0025] In a preferred embodiment, an adjusting rod 15 is fixedly assembled on the side of the docking plate 8, and a spring three 16 is fixedly connected to the side of the inner wall of the adjusting rod 15. The end of the spring three 16 away from the inner wall of the adjusting rod 15 is fixedly connected to a push plate 17, and the inner wall of the push plate 17 is slidably connected to the outer edge of the adjusting rod 15. Through the cooperation of the spring three 16 and the push plate 17, the spring three 16 is used to push the push plate 17 to move, and then the push plate 17 is used to assist the tensioning motor 3 and the lifting machine body 1 to stabilize the limit.

[0026] In a preferred embodiment, there are four adjusting rods 15, and the connection structures of the outer edges and sides of the four adjusting rods 15 are completely consistent. By using the four adjusting rods 15 in coordination, the four adjusting rods 15 are used to assist the tensioning motor 3 and the lifting machine body 1 in stabilizing the limit.

[0027] Working principle: when the device is in use, the tensioning motor 3 vibrates and drives the auxiliary cylinder 4 to vibrate, thereby using the auxiliary cylinder 4 to drive the rubber plate 7 through the spring 1 6 to assist in shock absorption, and using the spring 3 16 to push the push plate 17 to move, thereby using the docking cylinder 9 and the push plate 17 to assist the spring 1 6 and the rubber plate 7 to be stably erected, and using the adjusting rod 15 to drive the docking plate 8 to move until the side of the docking plate 8 passes through the inner wall of the slide groove 1 5 and the inner wall of the slide groove 2 10 to the inner wall of the circular groove 12, and then rotate the adjusting rod 15, thereby using the adjusting rod 15 to drive the docking plate 8 to rotate, and then release the adjusting rod 15, thereby using the spring 2 13 to push the circular plate 14 to move, and then using the circular plate 14 to drive the outer edge of the docking plate 8 to dock with the inner wall of the docking groove 11 to limit, thereby assisting the lifting machine body 1 and the tensioning motor 3 to be quickly erected and disassembled.

[0028] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A damping and vibration reduction sleeve for an automatic lifting machine, comprising a lifting machine body (1), characterized in that: The side of the lifting machine body (1) is provided with a side plate (2), and the side of the side plate (2) is fixedly equipped with a tensioning motor (3), the side of the side plate (2) is provided with a slot (18), and the side of the lifting machine body (1) is provided with a through slot (19), the inner wall of the slot (18) is slidably sleeved with an auxiliary cylinder (4), the side of the auxiliary cylinder (4) is fixedly connected with a spring (6), and the end of the spring (6) away from the side of the auxiliary cylinder (4) is fixedly connected with a rubber plate (7), and the outer edge of the rubber plate (7) overlaps with the inner wall of the slot (18) and the inner wall of the through slot (19), the side of the auxiliary cylinder (4) is provided with a slide groove (5), and the side of the lifting machine body (1) is overlapped with a docking cylinder (9).

2. The damping and vibration reduction sleeve for an automatic jack-up machine according to claim 1, characterized in that: A second slide groove (10) is provided on the side of the docking tube (9), a circular groove (12) is provided on the side of the inner wall of the second slide groove (10), and a docking groove (11) is provided on the side of the inner wall of the circular groove (12).

3. The damping and vibration reduction sleeve for an automatic jack-up machine according to claim 2, characterized in that: A second spring (13) is fixedly connected to the side surface of the inner wall of the circular groove (12); an end of the second spring (13) away from the inner wall of the circular groove (12) is fixedly connected to a circular plate (14); and the outer edge of the circular plate (14) is slidably sleeved with the inner wall of the circular groove (12).

4. The damping and vibration reduction sleeve for an automatic jack-up machine according to claim 1, characterized in that: The inner wall of the first slideway (5) is slidably connected with a docking plate (8), and the shape and size of the outer edge of the docking plate (8) are adapted to the shape and size of the inner wall of the docking groove (11). The shape and size of the inner wall of the first slideway (5) are completely consistent with the shape and size of the inner wall of the second slideway (10).

5. The damping and vibration reduction sleeve for an automatic jack-up machine according to claim 4, characterized in that: The side of the docking plate (8) is fixedly equipped with an adjusting rod (15), the side of the inner wall of the adjusting rod (15) is fixedly connected with a spring three (16), one end of the spring three (16) away from the inner wall of the adjusting rod (15) is fixedly connected with a push plate (17), and the inner wall of the push plate (17) is slidably sleeved with the outer edge of the adjusting rod (15).

6. The damping and vibration reduction sleeve for an automatic jack-up machine according to claim 5, characterized in that: The number of the adjusting rods (15) is four, and the connection structures of the outer edges and sides of the four adjusting rods (15) are completely consistent.