Assembly wire frame
By designing an assembly frame, the problem of mixed materials in wire assembly operations was solved, enabling the separate packaging and assembly of wires and components, improving efficiency and reducing operational difficulty, and achieving the classification of good and defective products.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU KIM ELECTRONICS TECH CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-12
AI Technical Summary
The current wire assembly operation involves mixed materials and a chaotic workspace, resulting in low efficiency and high operational difficulty.
Design an assembly frame, including a first frame, a second frame and a third frame, for vertically and inclinedly placing wire drums, combined with a workbench and a wire hanging rack, to realize the sorting and assembly of wires and components.
It improved the assembly efficiency of wires and components, reduced the difficulty of operation, enabled the classification of good and bad products, and improved sorting efficiency.
Smart Images

Figure CN224223869U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wire frame technology, and in particular to an assembly wire frame. Background Technology
[0002] In existing wire assembly operations, operators typically need to directly stack various wires, components, and other materials on the workbench according to assembly habits, and then manually sort, organize, and assemble them. This method of operation suffers from problems such as mixed materials, chaotic workspace, and lack of placement standards, resulting in low work efficiency and high operational difficulty. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an assembly wire frame that enables the separate packaging of wires and components, thereby improving assembly efficiency and reducing assembly difficulty.
[0004] The technical solution adopted by this utility model to solve its technical problem is: an assembly frame, including a first frame for vertically placing multiple wire spools, a second frame for supporting the multiple wire spools, and a third frame for tilting the multiple wire spools. The first frame is installed on the side of the second frame, and the third frame is installed on the top of the second frame.
[0005] The second frame has a workbench for assembling wires at one end away from the first frame, and a wire hanging rack at the side of the second frame away from the first frame.
[0006] In one embodiment, the third frame of the assembly frame includes a first support rod, a second support rod, a third support rod, and a fourth support rod. The first support rod, the second support rod, the third support rod, and the fourth support rod are symmetrically and vertically installed on the second frame. A first connecting rod is horizontally arranged between the first support rod and the third support rod, and a second connecting rod is arranged between the second support rod and the fourth support rod. The installation height of the first connecting rod is higher than that of the second connecting rod. A first connecting frame is provided on the top of the first support rod, the second support rod, the third support rod, and the fourth support rod. Multiple wire spools are placed on the first connecting rod and the second connecting rod.
[0007] In one embodiment, a second connecting frame is provided on the second support rod and the fourth support rod of the assembly line frame. Two L-shaped hanging rods are provided at both ends of the second connecting frame. The two L-shaped hanging rods are used to hang the good product line and the defective product line, respectively. The second connecting frame and the two L-shaped hanging rods are located above the second connecting rod.
[0008] In one embodiment, the first frame of the assembly frame includes four vertically arranged fifth support rods, and a plurality of third connecting frames are arranged in parallel between the four fifth support rods. Each third connecting frame includes two third connecting rods, and a plurality of fourth connecting rods are arranged between the two third connecting rods. A gap is provided between two adjacent fourth connecting rods for the cable spool to pass through.
[0009] In one embodiment, the second frame of the assembly frame includes two vertically arranged sixth support rods. The upper and lower ends of the two sixth support rods are connected to the first frame through four fifth connecting rods. The two sixth support rods are connected to each other through two sixth connecting rods. Two limiting rods and two reinforcing rods are provided between the two fifth connecting rods at the top. A gap is provided between the two limiting rods for limiting the position of the wire spool. The two reinforcing rods are located below the third frame. The workbench is mounted on the sixth connecting rod at the top and the limiting rod near the sixth connecting rod.
[0010] In one embodiment, the wire hanging frame of the assembly frame includes two first wire hanging rods and two second wire hanging rods, the length of the first wire hanging rods being longer than the length of the two second wire hanging rods, and the second wire hanging rods being located below the first wire hanging rods.
[0011] The beneficial effects of this application are as follows:
[0012] This application provides an assembly wire rack that, through the arrangement of a first frame, a second frame, and a third frame, enables the vertical and inclined placement of multiple wire spools. Various types of wires and components can be placed in the inclined spools. The inclined spools allow the wires and components to slide down to one side of the workbench under the influence of gravity, facilitating assembly by the operator. The third frame further enables the mounting of assembled wires. This assembly wire rack not only facilitates the separate packaging of wires and components but also simplifies assembly for operators, reducing assembly difficulty and improving assembly efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of an assembly wire frame according to an embodiment of this application;
[0014] Figure 2 This is a schematic diagram showing the placement of the wire drum in the assembly wire rack according to an embodiment of this application;
[0015] in:
[0016] 1. First frame; 2. Second frame; 3. Third frame; 4. Workbench; 5. Wire hanging frame; 6. Wire spool; 11. Fifth support rod; 12. Third connecting frame; 121. Third connecting rod; 122. Fourth connecting rod; 21. Sixth support rod; 22. Fifth connecting rod; 23. Sixth connecting rod; 24. Limiting rod; 25. Reinforcing rod; 31. First support rod; 32. Second support rod; 33. Third support rod; 34. Fourth support rod; 35. First connecting rod; 36. Second connecting rod; 37. First connecting frame; 38. Second connecting frame; 39. L-shaped wire hanging rod; 51. First wire hanging rod; 52. Second wire hanging rod. Detailed Implementation
[0017] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0018] like Figure 1 and Figure 2 As shown, an embodiment of this application provides an assembly frame, including a first frame 1 for vertically placing multiple cable spools 6, a second frame 2 for supporting the multiple cable spools 6, and a third frame 3 for tilting the multiple cable spools 6. The first frame 1 is installed on the side of the second frame 2, and the third frame 3 is installed on the top of the second frame 2.
[0019] The second frame 2 is provided with a workbench 4 for assembling wires at one end away from the first frame 1, and a wire hanging rack 5 is provided at the side end of the second frame 2 away from the first frame 1.
[0020] Specifically, multiple wire spools 6 are placed vertically between the first frame 1, and then multiple wire spools 6 are placed at an angle on the third frame 3 and the second frame 2, with the vertically placed wire spools 6 corresponding one-to-one with the angled wire spools 6. Various wires and components are placed into the angled wire spools 6 according to assembly requirements. Since the wires are long, the assembly ends of various wires can be placed in the angled wire spools 6, and the tail ends of various wires can be placed in the vertically placed wire spools 6. Operators assemble the wires and components on the workbench 4. If the wires are long, they can be hung on the wire hanger 5 to prevent them from falling and being damaged. After assembly, the operator can hang the assembled wires on the third frame 3.
[0021] In the above structure, the first frame 1, the second frame 2, and the third frame 3 enable the vertical and inclined placement of multiple wire spools 6. The inclined placement of the wire spools 6 allows the wires and components to slide onto one side of the workbench 4 under the influence of gravity, facilitating assembly by the operator on the workbench 4. The third frame 3 also enables the mounting of the assembled wires. This assembly frame not only facilitates the separate packaging of wires and components but also makes assembly easier for operators, reducing assembly difficulty and improving assembly efficiency.
[0022] like Figure 1 As shown, in one embodiment, the third frame 3 of the assembly frame includes a first support rod 31, a second support rod 32, a third support rod 33, and a fourth support rod 34. The first support rod 31, second support rod 32, third support rod 33, and fourth support rod 34 are symmetrically and vertically installed on the second frame 2. A first connecting rod 35 is horizontally arranged between the first support rod 31 and the third support rod 33, and a second connecting rod 36 is arranged between the second support rod 32 and the fourth support rod 34. The installation height of the first connecting rod 35 is higher than that of the second connecting rod 36. A first connecting frame 37 is provided at the top of the first support rod 31, second support rod 32, third support rod 33, and fourth support rod 34. Multiple wire spools 6 are placed on the first connecting rod 35 and the second connecting rod 36. One end of the wire spool 6 is placed on the first connecting rod 35 and the second connecting rod 36, the wire spool 6 is tilted, and the port of the wire spool 6 is located between the two limiting rods 24 of the second frame 2 and on one side of the workbench 4. The first support rod 31, the second support rod 32, the third support rod 33, and the fourth support rod 34 provide support for the multiple cable spools 6. The third frame 3 facilitates the tilting and support of the cable spools 6.
[0023] like Figure 1 As shown, in one embodiment, a second connecting frame 38 is provided on the second support rod 32 and the fourth support rod 34 of the assembly frame. Two L-shaped hanging rods 39 are provided at both ends of the second connecting frame 38. The two L-shaped hanging rods 39 are used to hang good and defective lines respectively. The second connecting frame 38 and the two L-shaped hanging rods 39 are located above the second connecting rod 36. After the lines are assembled, the operator hangs the lines on the defective L-shaped hanging rods 39 or the good L-shaped hanging rods 39 according to the assembly quality. This arrangement facilitates the classification of good and defective products and improves sorting efficiency.
[0024] like Figure 1As shown, in one embodiment, the first frame 1 of the assembly frame includes four vertically arranged fifth support rods 11. A plurality of third connecting frames 12 are arranged parallel to each of the four fifth support rods 11. Each third connecting frame 12 includes two third connecting rods 121, and a plurality of fourth connecting rods 122 are arranged between the two third connecting rods 121. A gap is provided between adjacent fourth connecting rods 122 for the cable spool 6 to pass through. Three third connecting frames 12 are arranged between the four symmetrically and vertically arranged fifth support rods 11. The three third connecting frames 12 are respectively installed at the top, middle, and bottom ends of the four fifth support rods 11. The two ends of one third connecting rod 121 of the third connecting frame 12 are connected to two fifth support rods 11, and the two ends of the other third connecting rod 121 are connected to the other two fifth support rods 11. The two ends of the four fourth connecting rods 122 are respectively connected to two third connecting rods 121, and the gap between adjacent fourth connecting rods 122 can be adjusted according to the placement requirements of the cable spool 6. The cable spool 6 is sequentially passed through the top third connecting frame 12, the middle third connecting frame 12, and the bottom third connecting frame 12. The bottom of the cable spool 6 is on the ground, and the top of the cable spool 6 corresponds to the inclined cable spool 6. The side of the cable spool 6 abuts against the fourth connecting rod 122 of the three third connecting frames 12. Multiple cable spools 6 can be vertically placed between two adjacent fourth connecting rods 122 of the three third connecting frames 12. This arrangement facilitates the vertical placement of multiple cable spools 6 and improves the stability of the cable spool 6 placement.
[0025] like Figure 1As shown, in one embodiment, the second frame 2 of the assembly frame includes two vertically arranged sixth support rods 21. The upper and lower ends of the two sixth support rods 21 are connected to the first frame 1 through four fifth connecting rods 22. The two sixth support rods 21 are connected to each other through two sixth connecting rods 23. Two limiting rods 24 and two reinforcing rods 25 are arranged between the two fifth connecting rods 22 at the top. A gap is provided between the two limiting rods 24 for limiting the position of the wire spool 6. The two reinforcing rods 25 are located below the third frame 3. The workbench 4 is installed on the sixth connecting rod 23 at the top and the limiting rod 24 near the sixth connecting rod 23. The upper and lower ends of the two sixth support rods 21 are connected to the two adjacent fifth support rods 11 through four fifth connecting rods 22 to form a rectangular support frame. The two ends of one reinforcing rod 25 on the two fifth connecting rods 22 at the top correspond to the first support rod 31 and the third support rod 33, and the two ends of the other reinforcing rod 25 correspond to the third support rod 33 and the fourth support rod 34, thus providing support and stability for the third frame 3. Two limiting rods 24 position the port of the tilted wire spool 6. The workbench 4 is mounted on the sixth connecting rod 23 at the top and the reinforcing rod 25 near the sixth connecting rod 23, so that the port of the wire spool 6 abuts against the side of the workbench 4. This arrangement facilitates the positioning and support of the wire spool 6 and also facilitates the installation of the workbench 4, thereby improving the assembly efficiency of the operator.
[0026] like Figure 1 As shown, in one embodiment, the cable hanger 5 of the assembly frame includes two first cable hangers 51 and two second cable hangers 52. The length of the first cable hangers 51 is longer than the length of the two second cable hangers 52, and the second cable hangers 52 are located below the first cable hangers 51. When assembling the cable ends, since the cables are relatively long, the cable tails can be hung on the first cable hangers 51 or the second cable hangers 52 to prevent the cables from falling to the ground and causing wear. This arrangement facilitates the hanging of cables during assembly and prevents the cables from falling to the ground and causing wear.
[0027] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. An assembly frame, characterized in that, It includes a first frame (1) for vertically placing multiple cable drums (6), a second frame (2) for supporting the multiple cable drums (6), and a third frame (3) for tilting the multiple cable drums (6). The first frame (1) is installed on the side of the second frame (2), and the third frame (3) is installed on the top of the second frame (2). The second frame (2) is provided with a workbench (4) for assembling wires at one end away from the first frame (1), and a wire hanging rack (5) is provided at the side end of the second frame (2) away from the first frame (1).
2. The assembly frame according to claim 1, characterized in that, The third frame (3) includes a first support rod (31), a second support rod (32), a third support rod (33), and a fourth support rod (34). The first support rod (31), the second support rod (32), the third support rod (33), and the fourth support rod (34) are symmetrically and vertically installed on the second frame (2). A first connecting rod (35) is horizontally arranged between the first support rod (31) and the third support rod (33). A second connecting rod (36) is arranged between the second support rod (32) and the fourth support rod (34). The installation height of the first connecting rod (35) is higher than that of the second connecting rod (36). A first connecting frame (37) is provided on the top of the first support rod (31), the second support rod (32), the third support rod (33), and the fourth support rod (34). Multiple cable spools (6) are placed on the first connecting rod (35) and the second connecting rod (36).
3. The assembly frame according to claim 2, characterized in that, The second support rod (32) and the fourth support rod (34) are provided with a second connecting frame (38). Two L-shaped hanging rods (39) are provided at both ends of the second connecting frame (38). The two L-shaped hanging rods (39) are used to hang the good product line and the defective product line respectively. The second connecting frame (38) and the two L-shaped hanging rods (39) are located above the second connecting rod (36).
4. The assembly frame according to claim 1, characterized in that, The first frame (1) includes four vertically arranged fifth support rods (11), and several third connecting frames (12) are arranged in parallel between the four fifth support rods (11). Each third connecting frame (12) includes two third connecting rods (121), and several fourth connecting rods (122) are arranged between the two third connecting rods (121). A gap is provided between two adjacent fourth connecting rods (122) for the cable spool (6) to pass through.
5. The assembly frame according to claim 1, characterized in that, The second frame (2) includes two vertically arranged sixth support rods (21). The upper and lower ends of the two sixth support rods (21) are connected to the first frame (1) through four fifth connecting rods (22). The two sixth support rods (21) are connected to each other through two sixth connecting rods (23). Two limiting rods (24) and two reinforcing rods (25) are provided between the two fifth connecting rods (22) at the top. A gap is provided between the two limiting rods (24) for limiting the wire spool (6). The two reinforcing rods (25) are located below the third frame (3). The workbench (4) is installed on the sixth connecting rod (23) at the top and the limiting rod (24) near the sixth connecting rod (23).
6. The assembly frame according to claim 1, characterized in that, The wire hanging frame (5) includes two first wire hanging rods (51) and two second wire hanging rods (52). The length of the first wire hanging rods (51) is longer than that of the two second wire hanging rods (52), and the second wire hanging rods (52) are located below the first wire hanging rods (51).