Mechatronics continuous elevator

Through the design of installing components A and B, the rapid disassembly and assembly and stability of the lifting roller are achieved, which solves the problems of difficult replacement and poor stability of the lifting roller in the existing technology, and realizes continuous transportation and low-cost operation that can adapt to items of different specifications.

CN223316332UActive Publication Date: 2025-09-09张莉
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Patent Information

Application Number
CN202422689888.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-09
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The existing mechatronic continuous elevator cannot quickly replace the lifting rollers, cannot adapt to the transportation of items of different specifications and shapes, has a complex structure, high production costs and poor stability.

Method used

The installation components A and B are used to realize the rapid disassembly and assembly of the lifting roller through the cooperation of the inclined rod and the spring; the combination of the motor, sprocket, chain shaft and limit rod improves the transmission stability and lifting stability.

Benefits of technology

The lifting roller can be quickly replaced, which is convenient for adapting to the transportation of objects of different specifications and shapes. It has a simple structure, low cost and strong stability.

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Abstract

The utility model belongs to the technical field of continuous lifting equipment, and particularly relates to a mechanical and electrical integration continuous lifting machine which comprises two fixing plates, limiting rods are symmetrically and fixedly connected between the two fixing plates, a sliding plate is connected to the outer portions of the two limiting rods in a sliding mode, a sliding groove is formed in the sliding plate, and a mounting assembly A is arranged in the sliding groove. The mounting assembly A comprises a sliding block, movable grooves are symmetrically formed in the sliding block, inserting grooves are symmetrically formed in the sliding block, each inserting groove communicates with the corresponding movable groove, a limiting plate is slidably connected to the interior of each movable groove, one side of each limiting plate is fixedly connected with a slope clamping block, and a mounting assembly B is arranged outside the mounting assembly A. According to the utility model, the mounting component A and the mounting component B are quickly disassembled and assembled, so that the lifting roller can be quickly replaced, and the specification and the shape of the lifting roller can be conveniently replaced according to different use conditions, thereby adapting to continuous lifting of more products.
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Description

Technical Field

[0001] The utility model relates to the technical field of continuous lifting equipment, in particular to a mechatronic continuous lifting machine. Background Art

[0002] A hoist is a type of engineering machinery that can transport materials. It is suitable for residential buildings, freight yards, warehouses, shopping malls, restaurants, individual workshops, and small factories and mines. It can move, lift, load and unload materials. It is a small lifting tool.

[0003] The prior art has the following defects or problems: The prior art publication number is: CN215974751U which discloses a mechatronic continuous elevator, including a base, a support plate is provided on the base, a rotating gear is provided on the support plate, a transmission chain is provided on the rotating gear, and a lifting rod for transmitting the material is provided on the transmission chain. A support plate is provided at the top center of the base along the length direction of the base, and two rotating gears are provided up and down on the cross-section of one side of the outer length of the support plate. The rotating gears are rotatably connected to the support plate through a rotating shaft, and a transmission motor and a unloading motor are provided on the cross-section of one side of the length of the original rotating gear on the outer periphery of the support plate, and the output shaft of the transmission motor passes through the support plate and is fixedly connected to the rotating shaft on the rotating gear near the top of the support plate.

[0004] During use, the above-mentioned equipment can continuously load and unload items through the provided rotating gears, transmission chains, lifting rods, loading rods and unloading rods, and realize fully automatic transportation, which greatly improves the efficiency and portability of the equipment.

[0005] In actual use, the above content cannot quickly replace the lifting rollers, which is inconvenient for conveying items of different specifications and shapes. In addition, its structure is complex and the production cost is high. The method of transporting goods by relying solely on the chain shaft to drive the lifting rod has no limit and load-bearing capacity, poor stability, and is easily damaged. Therefore, it is necessary to propose a mechatronic continuous elevator.

[0006] It should be noted that the above content falls within the technical knowledge of the inventor and does not necessarily constitute prior art. Utility Model Content

[0007] In view of the deficiencies in the prior art, the present invention provides a mechatronic continuous elevator that solves the existing problems.

[0008] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a mechatronic continuous elevator, comprising two fixed plates, wherein a limiting rod is symmetrically fixedly connected between the two fixed plates, and a slide is slidably connected to the outside of the two limiting rods, and a slide groove is provided inside the slide, and the slide groove is provided with an installation component A; the installation component A includes a slider, and movable grooves are symmetrically provided inside the slider, and slots are symmetrically provided inside the slider, each of the slots is connected to the corresponding movable groove, and the interior of each movable slot is slidably connected to a limiting plate, and one side of each limiting plate is fixedly connected to a bevel block, and the other end of each bevel block is located inside the corresponding slot, and an installation component B is provided outside the installation component A.

[0009] As a preferred technical solution of the present invention, the slider also includes two pull rods, one end of each pull rod is fixedly connected to the corresponding limit plate, the other end of each pull rod passes through the slider and is fixedly connected to a pull ring, and a spring is fixedly connected between each limit plate and the inner wall of the corresponding slider.

[0010] As an optimal technical solution of the present invention, the mounting assembly B includes a mounting plate, one side of which is symmetrically fixedly connected with an inclined insertion rod for use with a slot, each of the inclined insertion rods is provided with a slot for use with an inclined clamping block, and the other side of the mounting plate is fixedly connected with multiple lifting rollers.

[0011] As a preferred technical solution of the present invention, a vertical plate is fixedly connected between the two fixed plates, a sprocket is symmetrically rotatably connected inside the vertical plate, and the two sprockets are connected by a chain.

[0012] As a preferred technical solution of the present invention, a motor is fixedly connected to the outside of the vertical plate, a driving end of the motor is fixedly connected to one of the sprockets, and the other end of the other sprocket is fixedly connected to a limiting head.

[0013] As a preferred technical solution of the present invention, the outside of the slider is fixedly connected to a chain shaft, and the chain shaft is rotatably connected to the inside of the chain.

[0014] Compared with the existing technology, the present invention provides a mechatronic continuous hoist with the following beneficial effects:

[0015] 1. This mechatronic continuous elevator is equipped with mounting components A and B. The mounting plate drives the inclined rod to be inserted into the slot and squeezes the inclined clamping block, causing it to retract under force and drive the limit plate to move. The limit plate drives the pull rod to move and squeezes the spring. When the inclined rod is completely inserted into the slot, the inclined clamping block is affected by the rebound force of the spring, rebounds and resets and is clamped into the slot. The pull ring drives the inclined clamping block out of the slot, and the mounting plate drives the lifting roller to be removed. The lifting roller can be quickly disassembled and assembled, which is convenient for replacement. The specifications and shapes of the lifting roller can be changed according to different usage conditions, which facilitates the continuous lifting of more products.

[0016] 2. This mechatronic continuous elevator is equipped with a motor, a sprocket, a chain shaft, a limit rod and a slide. The motor drives the two sprockets and the chain to rotate, and the chain shaft drives the slider to follow the movement trajectory of the chain. The slider drives the lifting roller to move. At the same time, the slider drives the slide to slide outside the two limit rods. The limit rods and the slide are used in conjunction with each other to limit the slider and improve the lifting stability. When the chain shaft drives the slider to rotate, the slider is limited by the slide and slides inside the slide groove, thereby performing reciprocating motion to achieve the continuous lifting effect of the lifting roller. It has a simple structure, strong stability, low use cost and high practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 This is a side structural diagram of the utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the installation mechanism A of the present utility model;

[0020] Figure 4 This is a structural diagram of the installation mechanism B of the present utility model.

[0021] In the figure: 1. Fixed plate; 2. Limit rod; 3. Slide plate; 4. Slide groove; 5. Mounting component A; 501. Slider; 502. Movable groove; 503. Slot; 504. Limit plate; 505. Inclined block; 506. Pull rod; 507. Spring; 508. Pull ring; 6. Mounting component B; 601. Mounting plate; 602. Inclined rod; 603. Slot; 604. Lifting roller; 7. Vertical plate; 8. Sprocket; 9. Motor; 10. Limit head; 11. Chain shaft. DETAILED DESCRIPTION

[0022] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0023] 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.

[0024] Example 1

[0025] like Figures 1-4 As shown, the utility model provides a technical solution: a mechatronic continuous hoist, comprising two fixed plates 1, a limit rod 2 symmetrically fixedly connected between the two fixed plates 1, a slide plate 3 slidably connected to the outside of the two limit rods 2, a slide groove 4 is provided inside the slide plate 3, and a mounting assembly A5 is provided in the slide groove 4; the mounting assembly A5 comprises a slider 501, a movable groove 502 is symmetrically provided inside the slider 501, a slot 503 is symmetrically provided inside the slider 501, each slot 503 is communicated with the corresponding movable groove 502, a limit plate 504 is slidably connected to the inside of each movable groove 502, and a sloped block 505 is fixedly connected to one side of each limit plate 504, and the other end of each sloped block 505 is positioned Inside the corresponding slot 503, an installation component B6 is provided on the outside of the installation component A5, and the slider 501 also includes two pull rods 506, one end of each pull rod 506 is fixedly connected to the corresponding limit plate 504, and the other end of each pull rod 506 passes through the slider 501 and is fixedly connected to a pull ring 508, and a spring 507 is fixedly connected between each limit plate 504 and the inner wall of the corresponding slider 501, and the installation component B6 includes a mounting plate 601, and one side of the mounting plate 601 is symmetrically fixedly connected with an inclined insertion rod 602 used to cooperate with the slot 503, and the interior of each inclined insertion rod 602 is provided with a card slot 603 used to cooperate with the inclined card block 505, and the other side of the mounting plate 601 is fixedly connected with multiple lifting rollers 604.

[0026] In this embodiment, the installation plate 601 drives the inclined surface rod 602 to be inserted into the interior of the slot 503, and squeezes the inclined surface block 505, so that it is forced to retract and drives the limit plate 504 to move. When the limit plate 504 moves, it drives the pull rod 506 to move and squeezes the spring 507 to cause it to deform. When the pull rod 506 moves, it drives the pull ring 508 to move. When the inclined surface rod 602 completely enters the interior of the slot 503, the inclined surface block 505 has no resistance and is at the same level as the slot 603. The inclined block 505 is affected by the rebound force of the spring 507, rebounds and resets and is stuck in the inside of the card slot 603, so that the lifting roller 604 can be quickly installed. The inclined block 505 is driven out of the inside of the card slot 603 by the pull ring 508, and the installation plate 601 can drive the lifting roller 604 to be removed. The lifting roller 604 can be quickly disassembled and assembled for easy replacement. The specifications and shapes of the lifting roller 604 can be replaced according to different usage conditions to facilitate the continuous lifting of more products.

[0027] Example 2

[0028] like Figures 1-4 As shown, a vertical plate 7 is fixedly connected between the two fixed plates 1, and a sprocket 8 is symmetrically connected to the inside of the vertical plate 7 for rotation. The two sprockets 8 are connected by a chain, and a motor 9 is fixedly connected to the outside of the vertical plate 7. The driving end of the motor 9 is fixedly connected to one of the sprockets 8, and the other end of the other sprocket 8 is fixedly connected to the limiting head 10. The outside of the slider 501 is fixedly connected to the chain shaft 11, and the chain shaft 11 is rotationally connected to the inside of the chain.

[0029] In this embodiment, the connected sprocket 8 is driven to rotate by the motor 9, and this sprocket 8 drives another sprocket 8 to rotate through the chain. The limit head 10 can limit the sprocket 8 to improve the transmission stability. The chain is rotated by the two sprockets 8, and the chain shaft 11 follows the movement trajectory of the chain. When the chain shaft 11 drives the slider 501 to move, the slider 501 drives the skateboard 3 to slide on the outside of the two limit rods 2. The combination of the limit rod 2 and the skateboard 3 can limit the slider 501 to improve the lifting stability. When the chain shaft 11 drives the slider 501 to rotate, the slider 501 is limited by the skateboard 3 and slides inside the slide groove 4, thereby reciprocating to achieve a continuous lifting effect. It has a simple structure, low operating cost and strong practicality.

[0030] When the pull ring 508 is used to pull the inclined surface 505 out of the slot 603, the lifting roller 604 can be quickly installed. The sprocket 8 is connected to the lifting roller 604 and the lifting roller 604 is replaced according to different usage conditions, so as to facilitate the continuous lifting of more products. The motor 9 drives the connected sprocket 8 to rotate, and the sprocket 8 drives the other sprocket 8 to rotate through the chain. The limit head 10 can limit the sprocket 8 to improve the transmission stability. The chain is rotated by the two sprockets 8, and the chain shaft 11 moves along the movement trajectory of the chain. When the chain shaft 11 drives the slider 501 to move, the slider 501 drives the slide plate 3 to slide on the outside of the two limit rods 2. The limit rod 2 and the slide plate 3 are used in conjunction with each other to limit the slider 501 to improve the lifting stability. The chain shaft 11 drives the slider 501 to rotate, and the slider 501 drives the lifting roller 604 to move. The slider 501 is limited by the slide plate 3 and slides inside the slide groove 4, thereby reciprocating to achieve the continuous lifting effect of the lifting roller 604.

[0031] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A mechatronic continuous hoist, characterized by: The invention comprises two fixed plates (1), wherein the two fixed plates (1) are symmetrically fixedly connected with a limiting rod (2), the outside of the two limiting rods (2) is slidably connected with a slide plate (3), the inside of the slide plate (3) is provided with a slide groove (4), and the slide groove (4) is provided with a mounting assembly A (5); the mounting assembly A (5) comprises a slider (501), the inside of the slider (501) is symmetrically provided with a movable groove (502), the inside of the slider (501) is symmetrically provided with a slot (503), each of the slots (503) is communicated with the corresponding movable groove (502), the inside of each movable groove (502) is slidably connected with a limiting plate (504), one side of each limiting plate (504) is fixedly connected with an inclined block (505), and the other end of each inclined block (505) is located inside the corresponding slot (503), and the outside of the mounting assembly A (5) is provided with a mounting assembly B (6).

2. The mechatronic continuous hoist according to claim 1, characterized in that: The slider (501) further comprises two pull rods (506), one end of each pull rod (506) is fixedly connected to the corresponding limit plate (504), the other end of each pull rod (506) passes through the slider (501) and is fixedly connected to a pull ring (508), and a spring (507) is fixedly connected between each limit plate (504) and the inner wall of the corresponding slider (501).

3. The mechatronic continuous hoist according to claim 1, characterized in that: The mounting assembly B (6) comprises a mounting plate (601), one side of which is symmetrically fixedly connected with an inclined insertion rod (602) for use with a slot (503), each inclined insertion rod (602) having a slot (603) for use with an inclined clamping block (505) formed therein, and the other side of the mounting plate (601) is fixedly connected with a plurality of lifting rollers (604).

4. The mechatronic continuous hoist according to claim 1, characterized in that: A vertical plate (7) is fixedly connected between the two fixed plates (1), a sprocket (8) is symmetrically rotatably connected inside the vertical plate (7), and the two sprockets (8) are connected via a chain.

5. The mechatronic continuous hoist according to claim 4, characterized in that: The outside of the vertical plate (7) is fixedly connected to a motor (9), the driving end of the motor (9) is fixedly connected to one of the sprockets (8), and the other end of the other sprocket (8) is fixedly connected to a limiting head (10).

6. The mechatronic continuous hoist according to claim 1, characterized in that: The outside of the slider (501) is fixedly connected to a chain shaft (11), and the chain shaft (11) is rotatably connected to the inside of the chain.

Citation Information

Patent Citations

  • Mechatronics continuous elevator

    CN215974751U