Forklift for liquid batching workshop

By designing the transmission device and lifting device of the forklift for liquid dispensing workshop, the automatic adjustment of the lifting fork distance and the prevention of liquid material flow are achieved, and the problem of manual adjustment of the lifting fork distance and irregular flow of liquid material in the prior art is solved, thereby improving the operation efficiency.

CN222861098UActive Publication Date: 2025-05-13QINGDAO FEIYING BIOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202421974304.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-05-13
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The distance between the lifting forks of existing forks needs to be adjusted manually, and irregular flow of liquid materials leads to uneven force under the lifting forks, which easily damages and reduces operating efficiency.

Method used

A forklift for liquid dispensing workshop is designed to automatically adjust the distance of the lifting fork through transmission and lifting device, and to prevent liquid flow and lifting fork from being damaged through monitoring devices and double-layer protective measures.

Benefits of technology

Automatic adjustment of the lifting fork distance is realized, preventing liquid material flow and lifting fork damage, and improving the operation convenience and work efficiency of staff.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222861098U_ABST
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Abstract

A forklift for a liquid batching workshop belongs to the technical field of forklift equipment for liquid batching, comprises a transmission device, lifting devices, a connecting vertical plate, a connecting rear plate, a monitoring device, a rotating motor and a positioning transverse plate, and is characterized in that the lifting devices are symmetrically inserted into the left edge and the right edge of the side surface of the transmission device; connecting vertical plates are symmetrically inserted in the circle centers of the left side surface and the right side surface of the transmission device, a connecting rear plate is connected between the lower portions of the rear surfaces of the two connecting vertical plates, a monitoring device is inserted in the middle of the upper edge of the front surface of the connecting rear plate, and a rotating motor is connected to the middle of the upper portion of the outer side surface of the connecting vertical plate on the left side. A positioning transverse plate is connected to the rear edge of the lower portion between the inner side surfaces of the two connecting vertical plates, an operator can adjust the distance between the lifting forks without manual operation, liquid can be prevented from flowing randomly to damage the lifting forks during lifting, and the operator sets double-layer protection to prevent the lifting forks from being damaged.
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Description

Technical Field

[0001] The utility model relates to a forklift for a liquid batching workshop and belongs to the technical field of forklifts for liquid batching. Background Art

[0002] In long-term work practice, the distance between the lifting forks of existing forklifts needs to be adjusted manually by workers, and the lifting forks are unevenly stressed due to the irregular flow of liquid materials during lifting, which can easily damage the lifting forks and spill the liquid materials, making it inconvenient for workers to operate and use and reducing work efficiency. Utility Model Content

[0003] The purpose of the utility model is to allow the staff to adjust the distance between the lifting forks without manual adjustment, and to prevent the liquid material from flowing freely and damaging the lifting forks during lifting. The staff can set double-layer protection to prevent the lifting forks from being damaged, which is convenient for the staff to operate and use and improve work efficiency. The technical solution is as follows:

[0004] A forklift for a liquid batching workshop, comprising a transmission device 1, a lifting device 2, a connecting vertical plate 3, a connecting rear plate 4, a monitoring device 5, a rotating motor 6, and a positioning horizontal plate 7, characterized in that: the lifting device 2 is symmetrically inserted at the left and right edges of the side surface of the transmission device 1, the connecting vertical plates 3 are symmetrically inserted at the center of the left and right side surfaces of the transmission device 1, the connecting rear plate 4 is connected between the lower parts of the rear surfaces of the two connecting vertical plates 3, the monitoring device 5 is inserted at the middle of the upper edge of the front surface of the connecting rear plate 4, and the connecting vertical plate 3 is connected at the middle of the upper outer surface of the left side. A rotating motor 6 is connected, and a positioning horizontal plate 7 is connected at the lower rear edge between the inner surfaces of the two connecting vertical plates 3. The transmission device 1 includes a rotating shaft 1-1, a bearing 1-2, an external thread 1-3 and a steel bar 1-4. The bearings 1-2 are symmetrically inserted at the left and right edges of the outer surface of the rotating shaft. The outer surface of the rotating shaft 1-1 is provided with external threads 1-3 around the outer surface. A plurality of steel bars 1-4 are evenly distributed and inserted around the inside of the rotating shaft 1-1. The left and right threads of the external threads 1-3 are opposite. The bearing 1-2 is inserted inside the connecting vertical plate 3. The rotating end on the machine 6 penetrates the connecting vertical plate 3 and is connected to the center of the left surface of the rotating shaft 1-1. The lifting device 2 includes a supporting plate 2-1, a slot 2-2, a through hole 2-3 and a top screw 2-4. A slot 2-2 is provided in the middle of the lower part of the rear surface of the supporting plate 2-1, a through hole 2-3 is provided in the middle of the upper part of the outer surface of the supporting plate 2-1, and a top screw 2-4 is inserted in the middle of the upper part of the rear surface of the supporting plate 2-1. The rotating shaft 1-1 penetrates and is inserted in the through hole 2-3. The supporting plate 2-1 is L-shaped, and the front edge of the upper surface of the supporting plate 2-1 is connected There is a protective pad, the positioning cross plate 7 is inserted in the card slot 2-2, the front surface of the support plate 2-1 is inclined, the monitoring device 5 includes a card block 5-1, a threaded column 5-2, a nut 5-3, a probe 5-4 and a bulb 5-5, the middle of the rear surface of the card block 5-1 is connected with a threaded column 5-2, the side surface of the threaded column 5-2 is inserted with a nut 5-3, the middle of the front surface of the card block 5-1 is inserted with a probe 5-4, the four corners of the front surface of the card block 5-1 are inserted with bulbs 5-5, and the card block 5-1 is inserted on the front surface of the connecting rear plate 4.

[0005] The beneficial effects of the utility model are as follows: the staff can adjust the distance between the lifting forks without manual adjustment, and can prevent liquid materials from flowing freely and damaging the lifting forks during lifting. The staff sets double-layer protection to prevent the lifting forks from being damaged, which is convenient for the staff to operate and use and improves work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0006] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0007] Figure 2 It is a schematic structural diagram of the transmission device 1 of the utility model;

[0008] Figure 3 It is a structural schematic diagram of the lifting device 2 of the utility model;

[0009] Figure 4 It is a schematic diagram of the structure of the monitoring device 5 of the present utility model. DETAILED DESCRIPTION

[0010] When in use, the staff releases and connects the locomotive connector and the connecting rear plate 1, and then the staff starts the rotating motor 6 and drives the rotating shaft 1-1 on the transmission device 1 to rotate on the connecting vertical plate 3 with the bearing 1-2 as the center. At the same time, the external thread 1-3 cooperates with the through hole 2-3 on the lifting device 2 to move the support plate 2-1 in the opposite direction to adjust the distance between the two support plates 2-1. At the same time, the slot 2-2 slides on the positioning cross plate 7. After the statistics are completed, the top screw 2-4 is rotated to fix the support plate 2-1 on the rotating shaft 1-1, and then the support plate 2-1 is inserted into the liquid material container and lifted. Finally, the staff monitors the distance of the goods through the probe 5-4 on the monitoring device 5.

[0011] When lifting, the steel bar 1-4 can increase the bearing capacity of the rotating shaft 1-1, and the clamping groove 2-2 clamped on the positioning horizontal plate 7 can increase the bearing capacity of the supporting plate 2-1.

[0012] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A forklift for a liquid batching workshop, comprising a transmission device (1), a lifting device (2), a connecting vertical plate (3), a connecting rear plate (4), a monitoring device (5), a rotating motor (6), and a positioning horizontal plate (7), characterized in that: The lifting devices (2) are symmetrically inserted at the left and right edges of the side surface of the transmission device (1), and the connecting vertical plates (3) are symmetrically inserted at the center of the left and right side surfaces of the transmission device (1). A connecting rear plate (4) is connected between the lower rear surfaces of the two connecting vertical plates (3), and a monitoring device (5) is inserted in the middle of the upper edge of the front surface of the connecting rear plate (4). A rotating motor (6) is connected to the middle of the upper outer surface of the left connecting vertical plate (3), and a positioning horizontal plate (7) is connected to the lower rear edge between the inner surfaces of the two connecting vertical plates (3).

2. A forklift for a liquid batching workshop according to claim 1, characterized in that: The transmission device (1) comprises a rotating shaft (1-1), a bearing (1-2), an external thread (1-3) and a steel bar (1-4); the bearings (1-2) are symmetrically inserted at the left and right edges of the outer surface of the rotating shaft; the outer surface of the rotating shaft (1-1) is provided with external threads (1-3) around the periphery; a plurality of steel bars (1-4) are evenly distributed and inserted around the inside of the rotating shaft (1-1); the left and right threads of the external threads (1-3) are in opposite directions; the bearing (1-2) is inserted inside the connecting vertical plate (3); and the rotating end of the rotating motor (6) penetrates the connecting vertical plate (3) and is connected to the center of the left surface of the rotating shaft (1-1).

3. A forklift for a liquid batching workshop according to claim 2, characterized in that: The lifting device (2) comprises a support plate (2-1), a slot (2-2), a through hole (2-3) and a top screw (2-4); a slot (2-2) is provided at the middle of the lower part of the rear surface of the support plate (2-1); a through hole (2-3) is provided at the middle of the upper part of the outer surface of the support plate (2-1); a top screw (2-4) is inserted at the middle of the upper part of the rear surface of the support plate (2-1); the rotating shaft (1-1) is inserted into the through hole (2-3); the support plate (2-1) is L-shaped; a protective pad is connected to the front edge of the upper surface of the support plate (2-1); the positioning cross plate (7) is inserted into the slot (2-2); and the front surface of the support plate (2-1) is an inclined surface.

4. A forklift for use in a liquid batching workshop according to claim 1, characterized in that: The monitoring device (5) comprises a card block (5-1), a threaded column (5-2), a nut (5-3), a probe (5-4) and a light bulb (5-5); the threaded column (5-2) is connected to the middle of the rear surface of the card block (5-1); the nut (5-3) is inserted into the side surface of the threaded column (5-2); the probe (5-4) is inserted into the middle of the front surface of the card block (5-1); the light bulbs (5-5) are inserted into the four corners of the front surface of the card block (5-1); and the card block (5-1) is inserted into the front surface of the connecting rear plate (4).