V-shaped groove composite die casting
By designing independent sliding devices in V-groove die castings, including motors, fixing blocks, fixing plates, bearings and pulleys, the problem of the lack of sliding structure of existing V-groove die castings is solved, and higher adaptability and flexibility are achieved.
Patent Information
- Application Number
- CN202421504863.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The lack of a independently operated sliding structure in existing V-groove die castings leads to limited functionality in scenarios where sliding or position adjustment is required.
A V-groove composite die casting is designed, including independent sliding devices, including motors, fixing blocks, fixing plates, bearings and pulleys, through which the sliding function of the die casting is realized.
This design allows the V-groove composite die-casting to slide independently, improves its adaptability and flexibility, and makes up for the lack of sliding structure in the prior art.
Smart Images

Figure CN223000040U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of molds, in particular to a V-groove composite die casting. Background Art
[0002] As a component with unique structural and performance advantages, V-groove composite die castings play an important role in many fields. It combines advanced die-casting technology with a special V-groove design, showing a high degree of precision and reliability. This die casting performs well in improving product performance, optimizing structure and realizing specific functions. Whether it is to enhance the stability of key components in automobile manufacturing or to ensure good connection and heat dissipation in the field of electronic equipment, V-groove composite die castings have shown their indispensable value. In-depth research and continuous innovation will further promote the development of related industries and bring more possibilities and opportunities to modern industry. In the existing technical system, V-groove die castings are widely used in the construction of fixed structures. As far as aluminum alloy materials are concerned, it has the characteristics of easy processing such as punching and cutting, which enables it to serve the assembly of die castings well, so as to complete specific functional settings. However, in real life, we often find that there is often a lack of necessary sliding structures that can operate independently. This lack is an important problem facing current technology, which needs to be improved urgently. For this reason, we propose a V-groove composite die casting. Utility Model Content
[0003] In view of the deficiencies in the prior art, the utility model provides a V-groove composite die casting to solve the above-mentioned problems.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a V-groove composite die-casting, including a belt fixing block, bearings are provided on both sides of the V-groove die-casting, a belt is fixed to a groove on one side of the V-groove die-casting, an independent sliding device is provided on the upper surface of the V-groove die-casting, a plurality of grooves are provided on the surface of the V-groove die-casting, the V-groove die-casting is composed of two parallel strips, each parallel strip of the V-groove die-casting has a convex portion, the interior of the V-groove die-casting is connected by grooves, and the shape of the V-groove die-casting presents a vertical arrangement.
[0005] Preferably, the sliding device includes a motor, a fixed block, a fixed plate, a V-groove die casting 2, a bearing and a pulley, two fixed plates are fixed at both ends of the V-groove die casting 2, the two ends of the outer surface of the V-groove die casting 2 are movably connected to the fixed blocks by hexagon socket screws, a motor is fixed to the outer surface of one side of the V-groove die casting 2, and the lower surface of the motor is rotatably connected to the pulley.
[0006] Preferably, each fixing block is triangular in shape, with a groove inside. A hexagonal nut is provided at one end of each fixing block. A motor is provided between the two fixing blocks. The lower surface of the fixing block is movably connected to a bearing by an internal hexagonal screw, and the height of the bearing is the same as the height of the groove of the V-groove die casting one.
[0007] Preferably, a belt is fixed to both ends of the V-groove die casting one through belt fixing blocks at both ends of the groove on one side surface of the V-groove die casting one, and the belt fixing blocks are fixed at both ends of the V-groove die casting one.
[0008] Preferably, the fixing plate is square in shape, and the four corners of the fixing plate are rounded.
[0009] Preferably, sleeves, bearings and hexagonal nuts are sleeved on the surface of the internal hexagonal screws under the two fixing blocks on one side of the motor. Two hexagonal nuts and a bearing are sleeved on the surface of the internal hexagonal screws on the lower surface of the fixing block on the other side of the V-groove die casting one, and a bearing is connected between the two hexagonal nuts.
[0010] Preferably, circular holes are provided inside both the V-groove die casting one and the V-groove die casting two.
[0011] Compared with the prior art, the present utility model provides a V-groove composite die casting, having the following beneficial effects:
[0012] 1. For this V-groove composite die casting, by providing an independent sliding device on the V-groove composite die casting, including components such as a motor, fixing blocks, fixing plates, bearings and belt pulleys, the sliding function of the die casting is realized, thus making up for the deficiency of the lack of a sliding structure in the prior art. This design enables the V-groove composite die casting to operate independently in scenarios where sliding or position adjustment is required, greatly improving its adaptability and flexibility.
[0013] 2. For this V-groove composite die casting, the V-groove die casting one is composed of two parallel long strips, each long strip having a protruding part and being connected by a groove. This design not only enhances the stability of the die casting but also makes its shape arranged vertically, facilitating installation and use. In addition, the designs of the fixing blocks and the fixing plates also fully consider the structural stability and ease of use.
[0014] 3. For this V-groove composite die casting, by movably connecting the fixing block and the bearing through an internal hexagonal screw, the installation and disassembly of the entire sliding device become convenient and fast. At the same time, the shape designs of the fixing block and the fixing plate also enable them to closely fit the V-groove die casting one, ensuring the stability and reliability of the device. Improving work efficiency: The combined use of the motor and the belt pulley enables the sliding device to operate efficiently and stably, thus improving work efficiency. In addition, the circular holes provided inside the V-groove die casting one also facilitate the installation and connection of other components. Brief Description of the Drawings
[0015] Figure 1 is a schematic structural view of the present utility model;
[0016] Figure 2 is an isometric schematic view of the present utility model;
[0017] Figure 3 is a schematic view below the present utility model;
[0018] Figure 4 is a schematic upper view of the present utility model.
[0019] In the figure: 1, motor; 2, fixed block; 3, first V-groove die-casting part; 4, belt fixed block; 5, bearing; 6, belt pulley; 7, belt; 8, fixed plate; 9, second V-groove die-casting part; 10, hexagon nut; 11, sleeve. Detailed Description of the Preferred Embodiment
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0021] Please refer to Figures 1-4 , a V-groove composite die-casting part, including a belt fixed block 4. Bearings 5 are provided on both sides of the first V-groove die-casting part 3. A belt 7 is fixed in a groove on one side of the first V-groove die-casting part 3. An independent sliding device is provided on the upper surface of the first V-groove die-casting part 3. Multiple grooves are provided on the surface of the first V-groove die-casting part 3. The first V-groove die-casting part 3 is composed of two parallel long strips. Each parallel long strip of the first V-groove die-casting part 3 has a protruding part. The inside of the first V-groove die-casting part 3 is connected through grooves. The shape of the first V-groove die-casting part 3 presents a vertically arranged manner.
[0022] Furthermore, the sliding device includes a motor 1, a fixed block 2, a fixed plate 8, a second V-groove die-casting part 9, a bearing 5 and a belt pulley 6. Two fixed plates 8 are respectively fixed at both ends of the second V-groove die-casting part 9. Fixed blocks 2 are respectively movably connected to both ends of the outer surface of the second V-groove die-casting part 9 through socket head cap screws. A motor 1 is fixed on one outer surface of the second V-groove die-casting part 9. A belt pulley 6 is rotatably connected to the lower surface of the motor 1.
[0023] Furthermore, each fixed block 2 is in the shape of a triangle, a groove is provided inside the fixed block 2, a hexagonal nut 10 is provided at one end of the fixed block 2, a motor 1 is provided between the two fixed blocks 2, and a bearing 5 is movably connected to the lower surface of the fixed block 2 through a hexagon socket screw, and the height of the bearing 5 is consistent with the height of the groove of the V-groove die-casting 3.
[0024] Furthermore, belts 7 are fixed to both ends of the groove on one side surface of the V-groove die casting 3 through belt fixing blocks 4, and the belt fixing blocks 4 are fixed to both ends of the V-groove die casting 3.
[0025] Furthermore, the shape of the fixing plate 8 is a square, and the four corners of the fixing plate 8 are all rounded.
[0026] Furthermore, the surface of the hexagon socket screw below the two fixed blocks 2 on one side of the motor 1 is sleeved with a sleeve 11, a bearing 5 and a hexagonal nut 10, and the surface of the hexagon socket screw on the lower surface of the fixed block 2 on the other side of the V-groove die-casting 3 is sleeved with two hexagonal nuts 10 and a bearing 5, and the bearing 5 is connected between the two hexagonal nuts 10.
[0027] Furthermore, circular holes are provided inside the V-groove die casting 1 3 and the V-groove die casting 2 9 .
[0028] Working principle: After the motor 1 is started, the motor 1 drives the pulley 6 to rotate back and forth, and the V-groove die-casting 3 slides in a specific direction through the belt 7. The bearing 5 supports and reduces the sliding friction to ensure stability. The fixing plate 8 and the fixing block 2 form a stable structure to enhance the overall stability. During installation, first fix the V-groove die-casting 9, then connect the fixing block 2 to its outside, and install the motor 1 and the pulley 6. Then, fix the belt 7 and adjust the tightness of the sliding device by adjusting the hexagonal nut 10. When in use, start the motor 1 to achieve sliding. The V-groove design and the raised part not only enhance stability, but also provide convenience for installation and use. The entire device is exquisitely designed and easy to operate. It can be widely used in scenarios where sliding functions are required to meet different needs. Through simple adjustments, a smooth and reliable sliding effect can be achieved, which greatly improves work efficiency and practicality.
[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A V-groove composite die casting, comprising a V-groove die casting (3) and a belt fixing block (4), characterized in that: The V-groove die casting part (3) is provided with bearings (5) on both sides, a belt (7) is fixed to a groove on one side of the V-groove die casting part (3), an independent sliding device is provided on the upper surface of the V-groove die casting part (3), a plurality of grooves are provided on the surface of the V-groove die casting part (3), the V-groove die casting part (3) is composed of two parallel strips, each parallel strip of the V-groove die casting part (3) has a convex portion, the interior of the V-groove die casting part (3) is connected by grooves, and the shape of the V-groove die casting part (3) presents a vertical arrangement.
2. A V-groove composite die casting according to claim 1, characterized in that: The sliding device comprises a motor (1), a fixing block (2), a fixing plate (8), a V-groove die casting part 2 (9), a bearing (5) and a pulley (6); two fixing plates (8) are respectively fixed at both ends of the V-groove die casting part 2 (9); both ends of the outer surface of the V-groove die casting part 2 (9) are movably connected to the fixing blocks (2) via hexagon socket screws; the motor (1) is fixed to one outer surface of the V-groove die casting part 2 (9); and the lower surface of the motor (1) is rotatably connected to the pulley (6).
3. A V-groove composite die casting according to claim 2, characterized in that: Each of the fixing blocks (2) is triangular in shape, a groove is provided inside the fixing block (2), a hexagonal nut (10) is provided at one end of each fixing block (2), a motor (1) is provided between the two fixing blocks (2), a bearing (5) is movably connected to the lower surface of the fixing block (2) via a hexagon socket screw, and the height of the bearing (5) is consistent with the height of the groove of the V-groove die casting (3).
4. The V-groove composite die casting according to claim 1, characterized in that: Belts (7) are fixed to the two ends of the groove on one side surface of the V-groove die casting (3) via belt fixing blocks (4), and the belt fixing blocks (4) are fixed to the two ends of the V-groove die casting (3).
5. The V-groove composite die casting according to claim 2, characterized in that: The fixing plate (8) is in the shape of a square, and the four corners of the fixing plate (8) are all rounded.
6. A V-groove composite die casting according to claim 2, characterized in that: The hexagon socket screw surface below the two fixing blocks (2) on one side of the motor (1) is sleeved with a sleeve (11), a bearing (5) and a hexagon nut (10); the hexagon socket screw surface below the fixing block (2) on the other side of the V-groove die casting (3) is sleeved with two hexagon nuts (10) and a bearing (5), and the bearing (5) is connected between the two hexagon nuts (10).
7. The V-groove composite die casting according to claim 1, characterized in that: The V-groove die casting part 1 (3) and the V-groove die casting part 2 (9) are both provided with circular holes inside.