Anti-leakage vibration elevator

The combined design of the Z-shaped frame, counterweight and lifting device solves the problems of the elevator's stability and leakage prevention during movement, achieving the elevator's stability and leakage prevention effects.

CN223357315UActive Publication Date: 2025-09-19HEBEI IRON & STEEL CONSTR GRP LETING NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202422971761.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-09-19
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

The existing elevator has low stability when moving and is prone to material leakage during the movement.

Method used

It adopts Z-shaped frame structure, counterweight design and universal wheel combination, combined design of lifting part and support part, and uses the limit mechanism of arc-shaped bracket and lifting device to ensure the stability and trajectory control of the hopper during movement.

Benefits of technology

The stability and leakage prevention effect of the elevator during movement are achieved, and the flexibility and stability of use are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a vibration elevator capable of preventing materials from leaking. The vibration elevator comprises a machine frame and an elevating hopper. The rack comprises a moving part, a lifting part and a supporting part which are sequentially arranged from bottom to top, the lifting part comprises a triangular support and a lifting frame, and the supporting part comprises an arc-shaped support connected to the top of the triangular support and a supporting frame fixedly arranged between the arc-shaped support and the lifting frame; the arc-shaped support is arranged in a quarter arc shape, an opening of the arc-shaped support inclines downwards, the supporting frame and the moving part are arranged in a Z shape, a lifting device drive is arranged between the supporting frame and the lifting hopper, and the lifting hopper moves up and down along the lifting frame and moves in the mode of being attached to the lifting frame in the moving process, and the moving position and track of the lifting hopper are limited. And the situation of material scattering caused by shaking in the moving process is avoided. The utility model belongs to the technical field of hoisters, and particularly provides a vibration hoister capable of preventing material leakage, which is used for solving the problem that the hoister structure is inconvenient to move and use stably.
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Description

Technical Field

[0001] The utility model belongs to the technical field of elevators, in particular to a vibration elevator that prevents material leakage. Background Art

[0002] The elevator is an elevator equipment used for conveying materials at an angle and vertically. The elevator equipment needs to use a hopper to convey the materials. The materials are not easily broken and the integrity of the conveyed materials can be ensured.

[0003] In the existing technology, conveyor elevators are generally fixed in a fixed position when in use. Although this can ensure stability, it has low flexibility and can only lift materials at a certain position. In addition, some elevators are equipped with moving wheels at the bottom for easy movement. Although this makes movement easier, it reduces stability during movement. Utility Model Content

[0004] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a vibration elevator with anti-leakage material, which is used to solve the problem that the elevator structure is inconvenient to move and use stably.

[0005] The technical solutions adopted in this application are as follows:

[0006] This solution provides a leakage-proof vibration elevator, comprising a frame and a lifting hopper;

[0007] The frame includes a moving part, a lifting part and a supporting part which are arranged in sequence from bottom to top, the lifting part includes triangular brackets fixedly arranged on both sides of the moving part, a lifting frame fixedly arranged on the oblique sides of the triangular brackets is provided between the triangular brackets, the upper and lower ends of the lifting frame are connected between the moving part and the supporting part, the supporting part includes an arc-shaped bracket connected to the top of the triangular bracket, and a supporting frame fixedly arranged between the arc-shaped bracket and the lifting frame, the arc-shaped bracket is arranged in a quarter arc shape and the opening is inclined downward, the supporting frame and the moving part are arranged in a Z shape, and the arc-shaped bracket is used to rest on the outer side of the receiving part to improve the stability of the lifting work, and reinforcing ribs are also provided between the horizontal surfaces of the lifting frame to enhance the strength of the overall structure;

[0008] A lifting device drive is provided between the support frame and the lifting hopper. The lifting hopper is arranged to move up and down along the lifting frame. During the movement, the lifting hopper moves in conjunction with the lifting frame, limiting the moving position and trajectory of the lifting hopper to avoid shaking during the movement and causing material to be scattered.

[0009] Preferably, the lifting device includes a lifting motor, a reel, a limit plate, a lifting wire drum and a pulling wire. The lifting motor is fixed on the top of the support frame, and the reel is rotatable on one side of the lifting motor through a support. The output shaft of the lifting motor is connected to the reel, and the limit plate is fixed on both sides of the reel. The lifting wire drum is rotatable on the top side of the support frame about the lifting frame through a support. The cross-section of the lifting wire drum is H-shaped and is provided with a wire groove. The bottom of the pulling wire is connected to the lifting hopper and passes through the wire groove and is wrapped around the outer periphery of the reel. The setting of the wire groove is used to limit the pulling wire, thereby improving the stability of the operation of the lifting hopper.

[0010] Preferably, the lifting device also includes a splint, which is arranged in an inverted concave shape and has a wire loop on the top for fixing the pulling line. One side of the lifting hopper is provided with a bevel matching the lifting frame, and the outer bottom of the lifting hopper is provided with a positioning sleeve. A rotatable positioning shaft is provided between the positioning sleeves. The bottom free end of the splint is rotatably connected to the positioning shaft, and a slideway is provided on the opposite sides of the lifting frame. The upper and lower ends of the bevel are provided with roller seats, and rollers matching the slideway are installed on the roller seats, thereby realizing the movement of lifting materials up and down.

[0011] The beneficial effects achieved by the utility model using the above structure are as follows:

[0012] 1. The frame is arranged in a Z shape, and a counterweight is set at the bottom to increase the stability of the bottom. A universal wheel with a brake mechanism is set at the bottom to facilitate movement and fixation. In addition, the arc-shaped bracket on the top is not only convenient for lifting the hopper to unload and flip the material, but also can use the arc-shaped bracket to support and fix the receiving part, thereby enhancing the stability of use.

[0013] 2. Through the composition of the lifting part and the supporting part structure in the frame, the lifting hopper moves in conjunction with the lifting frame during movement, and the moving trajectory of the lifting hopper is limited by the rollers and slides to avoid shaking and leakage during movement. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the overall structure of a leakage-proof vibration elevator provided by this solution;

[0015] Figure 2 for Figure 1 The main view;

[0016] Figure 3 This is a partially enlarged schematic diagram of the lifting device in this scheme;

[0017] Figure 4 A schematic diagram of the structure of the lifting hopper provided for this solution;

[0018] Figure 5 Schematic diagram of the structure of the wire pressing assembly in this embodiment.

[0019] The meanings of the numbers in the accompanying drawings are as follows:

[0020] 1. Frame, 2. Hoisting hopper, 3. Lifting device, 4. Wire pressing assembly;

[0021] 11. Moving part, 12. Lifting part, 13. Support part, 14. Triangular bracket, 15. Lifting frame, 16. Arc bracket, 17. Support frame, 18. Universal wheel;

[0022] 101, slide one, 102, slide two;

[0023] 21. Clamping plate, 22. Wire ring, 23. Positioning sleeve, 24. Positioning shaft, 25. Upper roller seat, 26. Lower roller seat;

[0024] 31. Lifting motor, 32. Reel, 33. Limiting disk, 34. Lifting wire drum, 35. Pulling wire;

[0025] 41. Wire crimping rack, 42. Pressing piece 1, 43. Pressing piece 2. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0027] Example 1

[0028] Please refer to Figure 1 and Figure 2 As shown, this embodiment provides a vibration elevator for preventing leakage of materials, including a frame 1 and a lifting hopper 2. The frame 1 includes a moving part 11, a lifting part 12 and a supporting part 13 arranged in sequence from bottom to top. The bottom of the moving part 11 is provided with a universal wheel 18 with a brake mechanism to facilitate the movement and use of this structure. In addition, a counterweight is preferably provided on the moving part 11 to increase the stability of the bottom. The lifting part 12 includes triangular brackets 14 fixedly arranged on both sides of the moving part 11, and a lifting frame 15 fixedly arranged on the oblique side of the triangular bracket 14 is provided between the triangular brackets 14. The upper and lower ends of the lifting frame 15 are connected between the moving part 11 and the support part 13. The support part 13 includes an arc-shaped bracket 16 connected to the top of the triangular bracket 14, and a support frame 17 fixed between the arc-shaped bracket 16 and the lifting frame 15. The arc-shaped bracket 16 is set in a quarter arc shape and the opening is tilted downward. The support frame 17 and the moving part 11 are set in a Z shape. The arc-shaped bracket 16 is used to lean against the outside of the supporting part to improve the stability of the lifting work. Reinforcing ribs are also provided between the horizontal surfaces of the lifting frame 15 to enhance the strength of the overall structure.

[0029] When using this structure, a Z-shaped frame 1 is used, and a counterweight is provided at the bottom to increase the stability of the bottom. The universal wheel 18 is designed to facilitate movement and fixation. In addition, the arc-shaped bracket 16 on the top is not only convenient for lifting the hopper 2 for unloading and flipping, but also can be used to support and fix the receiving part, thereby enhancing the stability of use.

[0030] Example 2

[0031] refer to Figure 1 、 Figure 2 and Figure 3 As shown, a lifting device 3 is provided between the support frame 17 and the lifting hopper 2, and the lifting hopper 2 is arranged to move up and down along the lifting frame 15. During the movement, the lifting hopper 2 moves in close proximity to the lifting frame 15, limiting the moving position and trajectory of the lifting hopper 2 to avoid shaking during the movement and causing material spillage.

[0032] Among them, the lifting device 3 includes a lifting motor 31, a reel 32, a limit plate 33, a lifting wire drum 34 and a pulling wire 35. The lifting motor 31 is fixed on the top of the support frame 17, and the reel 32 is rotated on one side of the lifting motor 31 through a support. The output shaft of the lifting motor 31 is connected to the reel 32, and the limit plate 33 is fixed on both sides of the reel 32. The lifting wire drum 34 is rotated on the top side of the support frame 17 about the lifting frame 15 through a support. The cross-section of the lifting wire drum 34 is H-shaped and has a wire groove. The bottom of the pulling wire 35 is connected to the lifting hopper 2 and passes through the wire groove and is wrapped around the outer periphery of the reel 32.

[0033] refer to Figure 4 As shown, the lifting device 3 also includes a splint 21, which is arranged in an inverted concave shape and has a wire loop 22 on the top for fixing the pulling wire 35. One side of the lifting hopper 2 is provided with a bevel matching the lifting frame 15, and the outer bottom of the lifting hopper 2 is provided with a positioning sleeve 23, and a rotatable positioning shaft 24 is provided between the positioning sleeves 23. The bottom free end of the splint 21 is rotatably connected to the positioning shaft 24, and a slide 101 is provided on the opposite sides of the lifting frame 15. The upper and lower ends of the bevel are provided with roller seats, and the roller seats are installed with rollers matching the slide, so as to realize the movement of moving up and down to lift the material.

[0034] As an example to further illustrate:

[0035] In addition to the above-mentioned slide 101, a slide 2 102 is provided between the oblique sides of the arc-shaped bracket 16 and the triangular bracket 14 and on opposite sides. The roller seat is provided with an upper roller seat 25 and a lower roller seat 26 on the upper and lower sides respectively. The upper roller seat 25 is arranged in the slide 101 by the roller movement, and the lower roller is arranged in the slide 2 102 by the roller movement, and the top arc is used to realize the function of flipping the hopper.

[0036] When using the present invention, the triangular bracket 14 of the frame 1 is close to the receiving part, and the arc-shaped bracket 16 is located above the receiving part. Through the composition of the lifting part 12 and the supporting part 13 structure in the frame 1, the lifting hopper 2 moves in contact with the lifting frame 15 during the movement, and the lifting motor 31 drives the reel 32 to rotate, so that the pulling line 35 is wound up, and the lifting hopper 2 moves upward along the slide 101 and the slide 2 102. When it moves to the arc-shaped bracket 16, the lifting hopper 2 is flipped. After the unloading is completed, the lifting motor 31 is reversed to make the lifting hopper 2 return to its initial position. During use, the roller and the slide limit the moving trajectory of the lifting hopper 2 to avoid shaking during movement and causing leakage.

[0037] Example 3

[0038] refer to Figure 5 As shown, a wire pressing assembly 4 for guiding the pulling wire 35 is provided on the top of the support two, and the wire pressing assembly 4 includes a wire pressing frame 41 fixed on the top of the support two, and the wire pressing frame 41 is in an inverted concave structure and is inclined to the top surface of the support frame 17. The top of the wire pressing frame 41 is set toward one side of the reel 32, and a pressing plate 1 42 and a pressing plate 2 43 are provided on both sides of the inner wall of the wire pressing frame 41, and a wire hole for moving the pulling wire 35 is opened between the pressing plate 1 42 and the pressing plate 2 43.

[0039] Preferably, the reel 32, wire hole, wire groove, and wire ring 22 are located on the same plane, which is used to ensure the stability of the operation of the pulling wire 35. During the up and down movement of the pulling wire 35, the pressing plate 1 42 and the pressing plate 2 43 are used to realize its guiding function, and the wire pressing frame 41 that contacts the pulling wire 35 at the top is used to generate pressure on the pulling wire 35, so that it has a straightening effect during use, avoiding looseness and causing instability in the operation of the lifting hopper 2.

[0040] It should be noted that although the embodiments of the present invention have been shown and described, for ordinary technicians in this field, without departing from the inventive purpose of the present invention, any structural methods and embodiments similar to the technical solution designed without creative design should fall within the scope of protection of the present invention.

Claims

1. A vibration elevator for preventing leakage of materials, comprising a frame (1) and a lifting hopper (2), characterized in that: The frame (1) comprises a moving part (11), a lifting part (12) and a supporting part (13) which are arranged in sequence from bottom to top, the lifting part (12) comprises triangular brackets (14) fixedly arranged on both sides of the moving part (11), a lifting frame (15) fixedly arranged on the oblique sides of the triangular brackets (14) is provided between the triangular brackets (14), the upper and lower ends of the lifting frame (15) are connected between the moving part (11) and the supporting part (13), the supporting part (13) comprises an arc-shaped bracket (16) connected to the top of the triangular bracket (14), and a supporting frame (17) fixedly arranged between the arc-shaped bracket (16) and the lifting frame (15), the arc-shaped bracket (16) is arranged in a quarter arc shape and its opening is inclined downward, and the supporting frame (17) and the moving part (11) are arranged in a Z shape; A lifting device (3) is provided between the support frame (17) and the lifting hopper (2) to drive the lifting hopper (2), and the lifting hopper (2) moves up and down along the lifting frame (15) to avoid shaking.

2. The leakage-proof vibration elevator according to claim 1, characterized in that: The lifting device (3) includes a lifting motor (31), a reel (32), a limiting plate (33), a lifting wire drum (34) and a pulling wire (35), wherein the lifting motor (31) is fixedly arranged on the top of the support frame (17), the reel (32) is rotatably arranged on one side of the lifting motor (31) through a support 1, the output shaft of the lifting motor (31) is connected to the reel (32), the limiting plate (33) is respectively fixedly arranged on both sides of the reel (32), the lifting wire drum (34) is rotatably arranged on one side of the top of the support frame (17) relative to the lifting frame (15) through a support 2, the lifting wire drum (34) has an H-shaped cross section and is provided with a wire groove, and the pulling wire (35) is connected to the lifting hopper (2) at the bottom and passes through the wire groove and is wound around the outer periphery of the reel (32).

3. The leakage-proof vibration elevator according to claim 2, characterized in that: The lifting device (3) also includes a splint (21), which is arranged in an inverted concave shape and has a wire loop (22) on the top for fixing the pulling wire (35). One side of the lifting hopper (2) is provided with a bevel that matches the lifting frame (15). The outer bottom of the lifting hopper (2) is provided with a positioning sleeve (23), and a rotatable positioning shaft (24) is provided between the positioning sleeves (23). The bottom free end of the splint (21) is rotatably connected to the positioning shaft (24). The lifting frame (15) is provided with a slideway (101) on the opposite sides, and the upper and lower ends of the bevel are provided with roller seats, and the roller seats are equipped with rollers that match the slideway.

4. The leakage-proof vibration elevator according to claim 3, characterized in that: The arc bracket (16) is connected to the oblique side of the triangular bracket (14) and a slideway 2 (102) is provided on opposite sides. The roller seat is provided with an upper roller seat (25) and a lower roller seat (26) on the upper and lower sides respectively. The upper roller seat (25) is arranged in the slideway 1 (101) by roller movement, and the lower roller is arranged in the slideway 2 (102) by roller movement.

5. The leakage-proof vibration elevator according to claim 4, characterized in that: The top of the support two is provided with a wire pressing assembly (4) for guiding the movement of the pulling wire (35), and the wire pressing assembly (4) includes a wire pressing frame (41) fixed on the top of the support two, and the wire pressing frame (41) is in an inverted concave structure and is inclined to the top surface of the support frame (17). The top of the wire pressing frame (41) is set toward one side of the reel (32), and the inner wall of the wire pressing frame (41) is provided with a pressing plate (42) and a pressing plate (43) on both sides, and a wire hole for the movement of the pulling wire (35) is opened between the pressing plate (42) and the pressing plate (43).

6. The leakage-proof vibration elevator according to claim 5, characterized in that: The reel (32), the wire hole, the wire groove, and the wire ring (22) are located on the same plane.

7. The leakage-proof vibration elevator according to claim 1, characterized in that: A universal wheel (18) with a brake mechanism is provided at the bottom of the moving part (11).