Forklift convenient unloading frame

CN224739845UActive Publication Date: 2026-09-11HENAN BAOSHENG PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202522362266.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-07
Publication Date
2026-09-11
Estimated Expiration
2035-11-07

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是为了解决现有技术中以下缺点,叉车并不能准确的在卸料框中心处托起,导致将卸料框被托起时容易发生略微的倾斜,由于叉车移动过程中会出现抖动,容易造成卸料箱内的物料倾倒,因此不便对卸料框稳定的运输,而提出的一种叉车便卸料框

Benefits of technology

齿条板在移动时能够带动啮合连接的旋转杆转动,旋转杆转动能够带动螺纹连接的挤压板在钢板上滑动,两个挤压板居住于移动时能够分别挤压在叉齿上,由于两个叉齿为固定距离设置,两个挤压板能够形成对叉齿的夹持作用避免在叉齿托运本装置时发生偏移以及不稳定的现象。

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Abstract

The utility model relates to unloading frame technical field especially, relates to a fork truck convenient unloading frame, including bottom support and frame, bottom support fixedly connected again on the frame, a plurality of cross beams are fixedly connected on the frame, the frame with fixedly connected on the bottom support is the inclined plate, the steel sheet is fixedly connected on the bottom support, the bottom support is equipped with the adjusting part, the adjusting part includes fixed block, rotating lever, extruded plate, rack plate, two fixed blocks are fixedly connected in bottom support respectively, two rotating levers are rotatably connected on the fixed block respectively, the fixed block is equipped with the through slot, the rack plate is connected in the through slot slidingly, the rack plate is engagedly connected with the rotating lever, in the utility model, because two prongs are set up with fixed distance, two extruded plates can form the clamping action to prong and avoid the phenomenon that the device is offset and unstable when prong toting.
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Description

Technical Field

[0001] This utility model relates to the field of unloading frame technology, and in particular to a forklift unloading frame. Background Technology

[0002] A workpiece unloading frame is a storage basket used in the workpiece processing and production process to store and transfer workpieces. The main function is to load the workpieces into the unloading frame, and then use a forklift to lift the unloading frame for transfer.

[0003] When unloading frames need to be transported, they are lifted by forklifts using their forks. However, forklifts cannot accurately lift the unloading frames at the center, causing them to tilt slightly when lifted. Due to the vibration during forklift movement, the material inside the unloading box is prone to tipping over, making it difficult to transport the unloading frames stably. Utility Model Content

[0004] The purpose of this utility model is to solve the following shortcomings in the prior art: the forklift cannot accurately lift the unloading frame at the center, which makes it easy for the unloading frame to tilt slightly when it is lifted. Due to the shaking during the movement of the forklift, the material in the unloading box is easy to tip over, which makes it inconvenient to transport the unloading frame stably. Therefore, a forklift-operated unloading frame is proposed.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A forklift unloading frame includes a base and a frame, wherein the base is fixedly connected to the frame. Multiple crossbeams are fixedly connected to the frame. An inclined plate is fixedly connected to the frame and the base. A steel plate is fixedly connected to the base. An adjusting component is installed on the base. The adjusting component includes a fixed block, a rotating rod, an extrusion plate, and a rack plate. Two fixed blocks are fixedly connected to the base. Two rotating rods are rotatably connected to the fixed blocks. A through groove is opened on the fixed block. The rack plate is slidably connected in the through groove and meshes with the rotating rod. Two extrusion plates are threadedly connected to the rotating rod and slidably connected to the steel plate.

[0006] Preferably, vertical plates are fixedly connected to both sides of the base, and rotating shafts are rotatably connected to the two vertical plates.

[0007] Preferably, a support plate is fixedly connected between the two rotating shafts, and the support plate is slidably connected to the vertical plate.

[0008] Preferably, a pull plate is fixedly connected to the rotating shaft, and a spring is hinged between the pull plate and the rack plate.

[0009] Preferably, the end of the base away from the steel plate has a protrusion.

[0010] Preferably, anti-slip blocks are provided at the four corners of the frame.

[0011] Compared with the prior art, the beneficial effects of this utility model are: When the rack plate moves, it can drive the meshing rotating rod to rotate. The rotation of the rotating rod can drive the threaded pressing plate to slide on the steel plate. When the two pressing plates move, they can press on the fork teeth respectively. Since the two fork teeth are set at a fixed distance, the two pressing plates can form a clamping effect on the fork teeth to prevent the fork teeth from shifting or becoming unstable when carrying the device. Attached Figure Description

[0012] Figure 1 This is a front structural diagram of a forklift unloading frame proposed in this utility model; Figure 2 for Figure 1 A magnified schematic diagram of the structure of part A in the diagram; Figure 3 This is a schematic diagram of the extrusion plate structure of a forklift unloading frame proposed in this utility model; Figure 4 This is a schematic diagram of the pallet structure of a forklift unloading frame proposed in this utility model.

[0013] In the diagram: 1. Base support, 2. Crossbeam, 3. Frame, 4. Inclined plate, 5. Steel plate, 6. Support plate, 7. Shaft, 8. Rack plate, 9. Fixing block, 10. Spring, 11. Pull plate, 12. Vertical plate, 13. Extrusion plate, 14. Rotating rod. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0015] The terms used in this utility model, such as "upper", "lower", "left", "right", "middle" and "one", are only for clarity of description and are not intended to limit the scope of implementation of this utility model. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered as within the scope of implementation of this utility model.

[0016] Reference Figure 1 A forklift unloading frame includes a base 1 and a frame 3. The base 1 is fixedly connected to the frame 3. The base 1, the crossbeam 2, and the frame 3 together form a box body. Anti-slip blocks are provided at the four corners of the frame 3.

[0017] Reference Figures 1-4Multiple crossbeams 2 are fixedly connected to the frame 3. An inclined plate 4 is fixedly connected to the base 1, reinforcing the connection between the base 1 and the frame 3. A steel plate 5 is fixedly connected to the base 1 to prevent the fork-tooth bracket from pressing against the crossbeams 2. The fork teeth contact the steel plate 5. An adjusting component is installed on the base 1, including a fixing block 9, a rotating rod 14, a pressing plate 13, and a rack plate 8. Two fixing blocks 9 are fixedly connected to the base 1, and two rotating rods 14 are rotatably connected to the fixing blocks 9. The outer surface of the rotating rod 14 away from the base 1 has threads. When the rotating rod 14 rotates, it can drive the pressing plate 13 to move horizontally, thus compressing the pressure plate. Plate 13 is limited by steel plate 5 and can only move horizontally when rotating rod 14 rotates. A through groove is provided on fixed block 9, and rack plate 8 is slidably connected in the through groove. The outer surface of the part of rotating rod 14 inside fixed block 9 is provided with teeth. Rotating rod 14 is meshed with rack plate 8. When rack plate 8 moves, it can drive rotating rod 14 to rotate. Rack plate 8 is meshed with rotating rod 14. Two pressing plates 13 are threadedly connected to rotating rod 14. Pressing plates 13 are slidably connected to steel plate 5. When pressing plates 13 press too much on fork teeth, they can adjust the device so that the center of gravity of the device is between the two fork teeth, so as to ensure the stability of the device when it is supported by fork teeth.

[0018] Reference Figures 2-4 Vertical plates 12 are fixedly connected to both sides of the base 1. Rotating shafts 7 are rotatably connected to the two vertical plates 12. A support plate 6 is fixedly connected between the two rotating shafts 7. The support plate 6 is slidably connected to the vertical plates 12. The support plate 6 rotates on the vertical plates 12 with the rotating shafts 7 as the fulcrum. A pull plate 11 is fixedly connected to the rotating shafts 7. A spring 10 is hinged between the pull plate 11 and the rack plate 8. The clamping force of the two extrusion plates 13 on the fork teeth depends on the elastic potential energy of the spring 10. The greater the elastic potential energy of the spring 10 and the heavier the material inside the unloading box, the greater the extrusion force. A protrusion is provided at the end of the base 1 away from the steel plate 5. One end of the fork teeth is on the lower surface of the support plate 6, and the other end is on the lower surface of the protrusion. The lower surface of the protrusion is flush with the lower surface of the support plate 6 in a horizontal state.

[0019] In this utility model, goods can be placed on the base tray 1 during use, and then the forklift forks are placed on the underside of the pallet 6. As the forklift forks rise, they can push the inclined pallet 6 to flip to a horizontal state with the pivot 7 as the fulcrum, and fit into the base tray 1 and the steel plate 5. When the pivot 7 rotates with the pallet 6, it can drive the pull plate 11 to rotate clockwise. The pull plate 11 can pull the rack plate 8 to move on the fixed block 9 through the spring 10. When the rack plate 8 moves, it can drive the meshing rotating rod 14 to rotate. The rotation of the rotating rod 14 can drive the threaded pressing plate 13 to slide on the steel plate 5. When the two pressing plates 13 move, they can press on the forklift forks respectively. Since the two forklift forks are set at a fixed distance, the two pressing plates 13 can form a clamping effect on the forklift forks to prevent the forklift forks from shifting or becoming unstable when carrying this device.

[0020] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "connection", "linking", "fixing", etc., should be interpreted broadly.

[0021] 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.

Claims

1. A frame for easy unloading of a fork lift truck, comprising a base support (1) and a frame (3), characterized in that, The base (1) is fixedly connected to the frame (3); Multiple crossbeams (2) are fixedly connected to the frame (3). An inclined plate (4) is fixedly connected to the frame (3) and the base (1). A steel plate (5) is fixedly connected to the base (1). An adjusting component is installed on the base (1). The adjusting component includes a fixed block (9), a rotating rod (14), an extrusion plate (13), and a rack plate (8). Two fixed blocks (9) are fixedly connected to the base (1). Two rotating rods (14) are rotatably connected to the fixed blocks (9). A through groove is provided on the fixed block (9). The rack plate (8) is slidably connected in the through groove. The rack plate (8) is meshed with the rotating rod (14). Two extrusion plates (13) are threadedly connected to the rotating rod (14). The extrusion plate (13) is slidably connected to the steel plate (5).

2. A pallet according to claim 1, wherein, The base (1) is fixedly connected to two vertical plates (12) on both sides, and the two vertical plates (12) are rotatably connected to a rotating shaft (7).

3. A pallet according to claim 2, wherein, A support plate (6) is fixedly connected between the two rotating shafts (7), and the support plate (6) is slidably connected to the vertical plate (12).

4. A pallet according to claim 3, wherein, A pull plate (11) is fixedly connected to the rotating shaft (7), and a spring (10) is hinged between the pull plate (11) and the rack plate (8).

5. The pallet according to claim 1, wherein, The bottom support (1) has a protrusion at the end away from the steel plate (5).

6. A pallet according to claim 1, wherein, Anti-slip blocks are provided at the four corners of the frame (3).