Transfer trolley for transporting power distribution installation assembly
By designing a transfer vehicle with a compartmentalized slot structure, the problems of scratches and difficulty in locating power distribution installation components during transportation were solved, achieving component protection and efficiency improvement.
Patent Information
- Application Number
- CN202423261796.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing transport vehicles cannot effectively prevent scratches between power distribution installation components during transportation, and the mixing of components of different sizes makes it difficult for workers to find them, reducing work efficiency.
A transfer vehicle was designed, comprising a frame, base plate, columns, partitions, and slot structures. Different sizes of power distribution installation components are separated by vertical and horizontal slots to prevent scratches, and the hierarchical differentiation improves retrieval efficiency.
It effectively prevents the power distribution installation components from being scratched during transportation, and improves work efficiency by increasing the speed at which workers can find the required components through hierarchical differentiation and slot structure.
Smart Images

Figure CN223644794U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of transporting power distribution installation components, and in particular to a transfer vehicle for transporting power distribution installation components. Background Technology
[0002] During the production of power distribution equipment, numerous power distribution installation components of varying sizes are required, and these components are moved using specialized transfer vehicles. These transfer vehicles are crucial tools for transporting power distribution installation components to different stages of the power distribution equipment production process.
[0003] The existing transfer vehicle consists of a frame and a platform fixed to the frame, with wheels installed at the bottom of the frame. In use, workers place multiple power distribution installation components of different sizes on the platform, and then push the frame, which in turn moves the platform and the power distribution installation components on the platform synchronously, thereby transporting the multiple power distribution installation components to the production process of the power distribution equipment.
[0004] However, although this type of transport vehicle is usable, it still has the following technical defects during use:
[0005] I. Multiple power distribution installation components of different sizes are placed haphazardly on the platform. During transportation, surface scratches occur between the power distribution installation components, which fails to protect them.
[0006] II. Large-size and small-size power distribution installation components are mixed together, making it difficult for workers to quickly find the required size of power distribution installation components, which undoubtedly reduces the workers' work efficiency.
[0007] Therefore, there is an urgent need for a transport vehicle that can prevent scratches on the surface of power distribution installation components during transportation and improve workers' work efficiency. Utility Model Content
[0008] The purpose of this invention is to overcome the shortcomings of the prior art and provide a transport vehicle for transporting power distribution installation components that can prevent scratches on the surface of the components during transportation and improve worker efficiency.
[0009] The purpose of this utility model is achieved through the following technical solution: a transfer vehicle for transporting power distribution installation components, which includes a frame, the frame including a bottom plate and a back plate, a column fixed on the top surface of the bottom plate and at its four corners, a middle partition fixed between the four columns, the area enclosed by the middle partition and the bottom plate is the lower space, the area above the middle partition is the upper space, three back plates fixed between the two columns on the rear side, wherein two back plates are located in the lower space and the other back plate is located in the upper space, vertical pads are fixed on the inner end faces of the three back plates, and multiple vertical clips are fixed on the inner end faces of the vertical pads at intervals along their length, and a vertical slot is formed between each pair of adjacent vertical clips;
[0010] A horizontal pad is fixed on the top surface of both the base plate and the middle partition plate. Multiple horizontal clips are fixed on the top surface of the horizontal pad at intervals along its length, and a horizontal groove is formed between each two adjacent horizontal clips.
[0011] Two fixed casters and two movable casters are installed on the bottom surface of the base plate. The two fixed casters are located at two corners of the base plate, and the two movable casters are located at the other two corners of the base plate.
[0012] Multiple side beams are fixed between the front and rear pillars inside the frame.
[0013] The height of the lower space is greater than the height of the upper space.
[0014] The spacing between any two adjacent vertical strips is equal, and the spacing between any two adjacent horizontal strips is equal.
[0015] Both the horizontal and vertical pads are anti-static rubber pads.
[0016] This utility model has the following advantages: it can prevent the surface of the power distribution installation components from being scratched during transportation and improve the work efficiency of workers. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 for Figure 1 AA section view;
[0019] Figure 3 for Figure 1 Top view;
[0020] Figure 4 This is a schematic diagram of the large-size and small-size power distribution installation components of this utility model;
[0021] In the picture:
[0022] 1-Frame, 2-Base plate, 3-Back plate, 4-Post, 5-Middle partition, 6-Lower space, 7-Upper space, 8-Vertical pad, 9-Vertical clip, 10-Vertical slot, 11-Horizontal pad, 12-Horizontal clip, 13-Horizontal slot, 14-Fixed caster, 15-Swivel caster, 16-Side beam, 17-Large-size power distribution installation assembly, 18-Outer protrusion plate, 19-Small-size power distribution installation assembly. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings. The scope of protection of the present invention is not limited to the following description:
[0024] like Figures 1-3 As shown, a transfer vehicle for transporting power distribution installation components includes a frame 1, which includes a base plate 2 and a back plate 3. A column 4 is fixed on the top surface of the base plate 2 at each of its four corners. A middle partition 5 is fixed between the four columns 4. The area enclosed by the middle partition 5 and the base plate 2 is a lower space 6, and the area above the middle partition 5 is an upper space 7. The height of the lower space 6 is greater than the height of the upper space 7. Three back plates 3 are fixed between the two rear columns 4, with two back plates 3 located in the lower space 6 and the other back plate 3 located in the upper space 7.
[0025] Vertical pads 8 are fixed on the inner end faces of the three back plates 3. Multiple vertical clips 9 are fixed on the inner end faces of the vertical pads 8 along their length direction. The spacing between each pair of adjacent vertical clips 9 is equal, and a vertical groove 10 is formed between each pair of adjacent vertical clips 9.
[0026] Horizontal pads 11 are fixedly provided on the top surfaces of the base plate 2 and the intermediate partition plate 5. Multiple horizontal clips 12 are fixedly provided on the top surface of the horizontal pads 11 at intervals along their length. The spacing between any two adjacent horizontal clips 12 is equal, and a horizontal groove 13 is formed between any two adjacent horizontal clips 12. Both the horizontal pads 11 and the vertical pads 8 are antistatic rubber pads.
[0027] Two fixed casters 14 and two movable casters 15 are installed on the bottom surface of the base plate 2. The two fixed casters 14 are located at two corners of the base plate 2, and the two movable casters 15 are located at the other two corners of the base plate 2. Multiple side beams 16 are fixed between the front and rear columns 4 inside the frame 1.
[0028] The working process of this utility model is as follows:
[0029] The specific loading method for large-size power distribution installation components is as follows:
[0030] S1. The worker takes out a large-size power distribution installation component 17 and inserts the vertical edge of the outer protrusion plate 18 on the large-size power distribution installation component 17 from top to bottom into a vertical slot 10 located in the lower space 6. The worker also inserts the bottom edge of the outer protrusion plate 18 into a horizontal slot 13 in the lower space 6. At this time, the bottom edge of the outer protrusion plate 18 on the large-size power distribution installation component 17 is just supported on the horizontal pad 11 of the base plate 2, thereby realizing the installation of the first large-size power distribution installation component 17 in the lower space 6.
[0031] S2. By repeating step S1 multiple times, workers can load multiple large-size power distribution installation components 17 into the lower space 6. Figure 4 As shown;
[0032] The specific loading method for small-sized power distribution installation components is as follows:
[0033] S3. The worker takes out a small-sized power distribution installation component 19 and inserts the vertical edge of the outer protrusion plate 18 on the small-sized power distribution installation component 19 from top to bottom into a vertical slot 10 located in the upper space 7. The worker also inserts the bottom edge of the outer protrusion plate 18 into a horizontal slot 13 in the upper space 7. At this time, the bottom edge of the outer protrusion plate 18 on the small-sized power distribution installation component 19 is just supported on the horizontal pad 11 of the middle partition 5, thereby realizing the installation of the first small-sized power distribution installation component 19 in the upper space 7.
[0034] S4. The worker repeats step S3 multiple times to load multiple small-sized power distribution installation components 19 into the upper space 7, such as... Figure 4 As shown;
[0035] After both the large-size power distribution installation component 17 and the small-size power distribution installation component 19 are loaded onto the transfer vehicle, the worker pushes the frame 1, thereby causing the large-size power distribution installation component 17 and the small-size power distribution installation component 19 loaded on it to move synchronously, and then transports multiple power distribution installation components to the production process of the power distribution equipment.
[0036] Because the large-size power distribution installation components 17 and the small-size power distribution installation components 19 are separated from each other, and the large-size power distribution installation components 17 are also separated from each other, the power distribution installation components will not scratch each other during transportation, thus effectively protecting them. Furthermore, the large-size power distribution installation components 17 are located in the lower space 6, while the small-size power distribution installation components 19 are located in the upper space 7, achieving hierarchical separation. This facilitates workers in quickly finding the required size power distribution installation component, thereby improving worker efficiency.
[0037] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A transfer vehicle for transporting power distribution installation components, characterized in that: It includes a frame (1), the frame (1) includes a bottom plate (2) and a back plate (3), a column (4) is fixed on the top surface of the bottom plate (2) and at its four corners, a middle partition (5) is fixed between the four columns (4), the area enclosed by the middle partition (5) and the bottom plate (2) is the lower space (6), the area above the middle partition (5) is the upper space (7), three back plates (3) are fixed between the two columns (4) on the rear side, two back plates (3) are located in the lower space (6), and the other back plate (3) is located in the upper space (7), vertical pads (8) are fixed on the inner end face of the three back plates (3), and multiple vertical strips (9) are fixed on the inner end face of the vertical pads (8) at intervals along their length, and a vertical groove (10) is formed between each two adjacent vertical strips (9). A horizontal pad (11) is fixed on the top surface of both the base plate (2) and the middle partition plate (5). A plurality of horizontal clips (12) are fixed on the top surface of the horizontal pad (11) at intervals along its length. A horizontal groove (13) is formed between each two adjacent horizontal clips (12).
2. A transfer vehicle for transporting power distribution installation components according to claim 1, characterized in that: Two fixed casters (14) and two movable casters (15) are installed on the bottom surface of the base plate (2). The two fixed casters (14) are located at two corners of the base plate (2), and the two movable casters (15) are located at the other two corners of the base plate (2).
3. A transfer vehicle for transporting power distribution installation components according to claim 1, characterized in that: Multiple side beams (16) are fixed between the front and rear columns (4) inside the frame (1).
4. A transfer vehicle for transporting power distribution installation components according to claim 1, characterized in that: The height of the lower space (6) is greater than the height of the upper space (7).
5. A transfer vehicle for transporting power distribution installation components according to claim 1, characterized in that: The spacing between any two adjacent vertical strips (9) is equal, and the spacing between any two adjacent horizontal strips (12) is equal.
6. A transfer vehicle for transporting power distribution installation components according to claim 1, characterized in that: Both the horizontal pad (11) and the vertical pad (8) are antistatic rubber pads.