Aluminum wire wiring trough
By designing the tilt and plate structure of the aluminum wire conductor trough, the problems of suitability and threading difficulties of traditional aluminum wire trough are solved, rapid installation and efficient production are achieved, extending the service life of the aluminum wire and reducing costs.
Patent Information
- Application Number
- CN202422546788.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-22
AI Technical Summary
Traditional aluminum wire conductor troughs can only be suitable for unique welding processes, resulting in idle and waste of equipment, and threading time and effort, affecting production efficiency and service life of aluminum wire.
An aluminum wire conductor groove is designed, including an inclined body and a plate body. A cavity and threading hole are provided in the inclined body. The aluminum wire is connected to the wire nozzle through the threading hole and cavity of the inclined body. Multiple openings are set to facilitate the installation and heat dissipation of the aluminum wire, and reduce the number of friction and bends.
It improves the installation efficiency of aluminum wires, extends the service life of aluminum wires, enhances the stability and production efficiency of the wires, and reduces production costs.
Smart Images

Figure CN223250739U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of welding machinery, in particular to an aluminum wire guide duct. Background Art
[0002] Among traditional wire troughs, one type is designed specifically for aluminum wire machines. This single-hole design is suitable only for specialized soldering processes and cannot be used for conventional chip soldering, resulting in idle equipment. Furthermore, threading with this existing trough is time-consuming and labor-intensive for technicians, making it difficult to thread the aluminum wire through the trough and the guide slots. During guide installation, technicians thread the wire through the guide slots and connect it to the front end of the chip soldering tool. Therefore, being able to quickly thread the aluminum wire into the guide and securely install it is crucial to production line efficiency. Utility Model Content
[0003] In order to solve the above problems, the utility model provides an aluminum wire guide duct.
[0004] To achieve the above-mentioned purpose, the present invention adopts the following technical solution: the present invention relates to an aluminum wire conductor trough, comprising an inclined body and a plate body, the rear end of the inclined body being connected to the front end of the plate body, the plate body and the inclined body being integrally formed, a cavity being provided inside the inclined body, a wire threading hole being provided at the rear end of the inclined body, the wire threading hole passing through the surface of the inclined body and passing through the cavity, a wire nozzle being provided at the front end of the wire nozzle close to the cavity, a front wire trough being provided at the end of the front wire trough being provided with a trumpet-shaped wire inlet, a rear wire trough being provided at the end of the wire nozzle away from the cavity, the openings of the front wire trough and the rear wire trough facing opposite directions, the wire threading hole, the cavity, the front wire trough, the wire inlet and the rear wire trough being connected in sequence, and the axis of the wire threading hole coincides with the axis of the wire inlet.
[0005] The use of the utility model can quickly install the aluminum wire in place, effectively improve the efficiency of production and use, reduce the scratches on the aluminum wire, increase the service life of the wire guide, and effectively improve the quality and stability of the chip.
[0006] Preferably, the rear end of the inclined body is the wire entry surface, the two adjacent surfaces of the wire entry surface are the inclined surface and the assembly surface, the inclined surface is the opposite surface of the assembly surface, the inclined surface gradually approaches the assembly surface, and a wire nozzle is provided at the intersection of the inclined surface and the assembly surface.
[0007] Preferably, the threading hole is arranged on the wire entry surface, and the threading hole is provided with a first notch, and the first notch is located on the surface of the inclined surface; the rear section line is provided with a second notch, and the second notch is located on the surface of the assembly surface, and the first notch and the second notch are in opposite directions.
[0008] Preferably, the threading hole is provided with a first curved surface, and the first curved surface is away from the inclined surface; the rear section wire groove is provided with a second curved surface, and the second curved surface is away from the assembly surface.
[0009] Preferably, a first opening is provided on the inclined surface, and the first opening is connected to the cavity.
[0010] Preferably, a second opening is provided on the line entry surface, and the second opening is connected to the cavity.
[0011] Preferably, the second opening is rectangular and gradually narrows inwardly, which can provide a certain guiding function, making it easier for the chip bonding tool to enter the second opening, and may also help to fix or position the chip bonding tool.
[0012] Preferably, a third opening is provided on the assembly surface, and the third opening is connected to the cavity.
[0013] Preferably, a boss is provided at one end of the plate away from the tilting block.
[0014] The beneficial effect of the utility model is that the utility model relates to an aluminum wire guide trough, in which the wire threading holes and the wire inlet are distributed along a straight line. During operation, the aluminum wire will pass through the wire threading holes, the cavity and the wire inlet of the inclined body in the guide trough in sequence, reducing the number of bending times of the aluminum wire when passing through the guide trough, thereby reducing the friction between the aluminum wire and the guide trough, avoiding problems such as excessive bending or scratching of the aluminum wire, thereby improving service life and production efficiency.
[0015] The present invention also provides a first opening, a second opening, and a third opening on the inclined body. These first openings, second openings, and third openings communicate with the cavity within the inclined body, allowing air to flow more smoothly into the cavity. This effectively improves heat dissipation, prevents damage to the aluminum wire duct due to overheating, and increases the service life of the aluminum wire duct. Furthermore, the first opening, second opening, and third opening can be detachably connected to external components, thereby improving space utilization and reducing manufacturing costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a front structural schematic diagram of the utility model.
[0017] Figure 2 It is a schematic diagram of the overall structure of the utility model.
[0018] Figure 3 This is a structural schematic diagram of the utility model from another angle.
[0019] Figure 4 It is a schematic diagram of the cross-sectional structure of the utility model.
[0020] Figure 5 It is a schematic diagram of the rear end structure of the inclined body of the utility model.
[0021] Reference numerals
[0022] 1. Inclined body; 11. Wire hole; 111. First curved surface; 12. Rear wire duct; 121. Second curved surface; 13. First opening; 14. Second opening; 15. Third opening; 16. Cavity; 17. Front wire duct; 18. Wire inlet; 2. Plate; 21. Boss; 3. Wire nozzle; 4. Wire entry surface; 5. Inclined surface; 6. Assembly surface. DETAILED DESCRIPTION
[0023] See also Figure 1-5 As shown, the utility model relates to an aluminum wire conductor trough, which includes an inclined body 1 and a plate body 2, the rear end of the inclined body 1 being connected to the front end of the plate body 2, and the plate body 2 and the inclined body 1 being integrally formed, wherein a cavity 16 is provided inside the inclined body 1, and a wire threading hole 11 is provided at the rear end of the inclined body 1, the wire threading hole 11 passes through the inclined body 1 and is connected to the cavity 16, the front end of the inclined body 1 is a wire nozzle 3, and the end of the wire nozzle 3 close to the cavity 16 is provided with a front wire trough 17, and a trumpet-shaped wire inlet 18 is provided at the end of the front wire trough 17, and a rear wire trough 12 is provided at the end of the wire nozzle 3 away from the cavity 16, the openings of the front wire trough 17 and the rear wire trough 12 are in opposite directions, the wire threading hole 11, the cavity 16, the front wire trough 17, the wire inlet 18 and the rear wire 12 groove are sequentially connected, and the axis of the wire threading hole 11 coincides with the axis of the wire inlet 18.
[0024] Furthermore, the rear end of the inclined body 1 is a wire entry surface 4 , which is connected to the inclined surface 5 and the assembly surface 6 respectively. The other ends of the inclined surface 5 and the assembly surface 6 are connected to the wire nozzle 3 respectively.
[0025] The rear end of the inclined body 1 is the wire entry surface 4. The two adjacent surfaces of the wire entry surface 4 are the inclined surface 5 and the mounting surface 6. The inclined surface 5 is opposite the mounting surface 6 and gradually approaches the mounting surface 6. A wire nozzle 3 is located at the intersection of the inclined surface 5 and the mounting surface 6. A wire threading hole 11 is provided on the wire entry surface 4 and communicates with the inclined surface 5. A rear-stage wire trough 12 is provided on the wire nozzle 3 and communicates with the mounting surface 6.
[0026] The threading hole 11 has a first curved surface 111, which is away from the inclined surface 12. The rear wire groove 12 has a second curved surface 121, which is away from the assembly surface 6. The curved shapes of the first and second curved surfaces 111 and 121 can more effectively disperse external scraping forces, reducing the risk of scratches or damage.
[0027] In the above structure, during operation, the aluminum wire will sequentially pass through the threading hole 11, cavity 16, and rear section wire trough 12 of the inclined body 1 in the aluminum wire guide trough. The threading hole 11 and rear section wire trough 12 are arranged on the same central axis, which reduces the number of bends of the aluminum wire when passing through the guide trough, thereby reducing the friction between the aluminum wire and the guide trough, avoiding problems such as excessive bending or scratching of the aluminum wire, thereby improving service life and production efficiency.
[0028] Furthermore, in this embodiment, a first opening 13 is provided on the inclined surface 5, and the first opening 13 is connected to the cavity 16. In this embodiment, a second opening 14 is provided on the line entry surface 4, and the second opening 14 is connected to the cavity 16. The second opening 14 has a rectangular shape, and is wide on the outside and narrow on the inside, with the second opening 14 gradually narrowing from the outside opening to the inside opening. In this embodiment, a third opening 15 is provided on the assembly surface 6, and the third opening 15 is connected to the cavity 16. The third opening 15 has a rectangular shape.
[0029] In the above structure, by providing the first opening 13, the second opening 14, and the third opening 15 on the inclined body 1, the first opening 13, the second opening 14, and the third opening 15 are connected to the cavity 16 within the inclined body 1, allowing air to flow more smoothly into the cavity 16, thereby effectively improving the heat dissipation effect, preventing the aluminum wire guide duct from being damaged due to overheating, and extending the service life of the aluminum wire guide duct. Furthermore, the first opening 13, the second opening 14, and the third opening 15 can be detachably connected to external components, thereby improving space utilization and reducing manufacturing costs.
[0030] Furthermore, in this embodiment, a boss 21 is provided at one end of the plate body 2 away from the tilting block, and the boss 21 is used for being fixedly connected to an external component in a detachable manner.
[0031] The above embodiments are merely descriptions of preferred embodiments of the present invention and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering technicians in this field should fall within the scope of protection determined by the claims of the present invention.
Claims
1. An aluminum wire guide trough, comprising an inclined body and a plate body, wherein the rear end of the inclined body is connected to the front end of the plate body, and the plate body and the inclined body are integrally formed, characterized in that: A cavity is provided inside the inclined body, and a threading hole is provided at the rear end of the inclined body. The threading hole passes through the surface of the inclined body and penetrates the cavity. A wire nozzle is provided at the front end of the inclined body, and a front wire groove is provided at the end of the wire nozzle close to the cavity. A trumpet-shaped wire inlet is provided at the end of the front wire groove, and a rear wire groove is provided at the end of the wire nozzle away from the cavity. The openings of the front wire groove and the rear wire groove are in opposite directions. The threading hole, cavity, front wire groove, wire inlet and rear wire groove are sequentially connected, and the axis of the threading hole coincides with the axis of the wire inlet.
2. The aluminum wire guide duct according to claim 1, wherein: The rear end of the inclined body is the wire entry surface, and the two adjacent surfaces of the wire entry surface are the inclined surface and the assembly surface. The inclined surface is the opposite surface of the assembly surface, and the inclined surface gradually approaches the assembly surface. A wire nozzle is provided at the intersection of the inclined surface and the assembly surface.
3. The aluminum wire guide duct according to claim 2, wherein: The threading hole is set on the wire entry surface, and the threading hole is provided with a first notch, and the first notch is located on the surface of the inclined surface; the rear section line is provided with a second notch, and the second notch is located on the surface of the assembly surface, and the first notch and the second notch are in opposite directions.
4. The aluminum wire guide duct according to claim 3, wherein: The threading hole is provided with a first curved surface, and the first curved surface is away from the inclined surface; the rear section wire groove is provided with a second curved surface, and the second curved surface is away from the assembly surface.
5. The aluminum wire guide duct according to claim 2, wherein: A first opening is provided on the inclined surface, and the first opening is communicated with the cavity.
6. The aluminum wire guide duct according to claim 2, wherein: A second opening is provided on the line entry surface, and the second opening is communicated with the cavity.
7. The aluminum wire guide duct according to claim 6, characterized in that: The second opening is rectangular and gradually narrows inwardly.
8. The aluminum wire guide duct according to claim 2, wherein: A third opening is provided on the assembly surface, and the third opening is communicated with the cavity.
9. The aluminum wire guide duct according to claim 1, wherein: A boss is provided at one end of the plate body away from the tilting block.