Material pouring assembly for aluminizing machining
By designing an aluminum-permeable pouring component that combines the inverted conical body to connect the column and the spherical output and stable column, the problem of low conveying and discharge efficiency in aluminum-permeable processing is solved, and efficient and smooth conveying of aluminum water and convenient coordination of large-space molding molds is achieved.
Patent Information
- Application Number
- CN202422630388.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The existing aluminum-permeable pouring components are inefficient during the conveying and discharge process, and the circulation force is insufficient, which cannot meet the convenient transportation needs of large-space molding molds.
An aluminum-processed pouring component including a reverse conical body combination connecting column and a spherical output and stable column is designed. The spherical and conical conveying structure is adopted to increase the space of the conveying channel and ensure the smoothness of the aluminum water and the flow force of the discharge port.
It improves the smoothness of aluminum water conveying and discharge efficiency, meets the convenient transportation needs of large-space molding molds, and enhances the circulation force of the discharge port.
Smart Images

Figure CN223239199U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminizing production and processing, in particular to an aluminizing processing dumping component. Background Art
[0002] During the production and processing of aluminized products, the molten aluminum is melted and then processed, which usually requires the cooperation of a conveying channel for the conveying of the molten aluminum. The existing pouring assembly adopts a tubular structure for conveying. During the conveying, the internal space is consistent, and the internal air cannot assist in the conveying. The overall efficiency during the discharge process is relatively low, and the position of the discharge port is connected to the main conveying space, so the flow force during the discharge is relatively small. Utility Model Content
[0003] The purpose of the utility model is to provide an aluminizing processing pouring component, which can be combined and connected with different installation structures according to needs during use, and has greater flexibility during installation. Its main structure is provided with spherical and conical conveying structures, and the spherical conveying structure is larger than the conveying channels at other positions, thereby ensuring better conveying smoothness of molten aluminum during input and final output, making the air smoother during the internal pouring process, and improving the overall discharge efficiency. In addition, the flow force at the discharge port position is greater, which can meet the needs of convenient conveying and matching of forming molds with relatively large spaces.
[0004] The technical solution of the utility model is as follows:
[0005] An aluminizing processing pouring assembly, characterized in that: it includes an inverted conical main body combined connecting column, the lower end of the main body combined connecting column is provided with an integral cylindrical stable support connecting column, the upper end of the main body combined connecting column is provided with an integral cylindrical mounting combined connecting seat, the upper end of the mounting combined connecting seat is provided with an integrally fastened positioning connecting column evenly distributed around the circumference, the lower end of the stable support connecting column is provided with an integrally formed spherical output matching stabilizing column, the lower end of the output matching stabilizing column is provided with an integrally formed inverted conical main body output matching seat, and the upper end of the mounting combined connecting seat is provided with There is an inverted conical main body input matching hole, the interior of the output matching stabilizing column is a spherical main body conveying safety and stability groove, the upper end of the main body conveying safety and stability groove is connected with the main body input matching hole through a transition conveying hole, the main body conveying safety and stability groove and the outer side of the output matching stabilizing column are parallel to each other, the projections of the stabilizing support connecting column, the main body combination connecting column and the installation combination connecting seat in the upper and lower directions are located in the area of the main body conveying safety and stability groove, and the lower end of the main body conveying safety and stability groove is provided with an inverted conical main body discharge port that passes through the main body output matching seat.
[0006] Furthermore, the upper and lower sides of the mounting assembly connecting seat are respectively provided with safety chamfers for avoiding positioning.
[0007] Furthermore, the integral fastening position connecting column is provided with an integral fastening connection thread.
[0008] Furthermore, the upper end position of the main body discharge port is smoothly transitioned to the connection position of the main body conveying safety and stability groove.
[0009] Furthermore, an integral fastening spare connection support plate is provided on the outer side of the mounting combination connection seat.
[0010] Beneficial effects of the utility model:
[0011] The utility model can be combined and connected with different installation structures according to needs during use, and has greater flexibility during installation. Its main structure is provided with spherical and conical conveying structures, and the spherical conveying structure is larger than the conveying channels at other positions, thereby ensuring better conveying smoothness of molten aluminum during input and final output, making air flow smoother during the internal pouring process, and improving the overall discharge efficiency. In addition, the flow force at the discharge port is greater, which can meet the needs of convenient conveying and coordination of forming molds with relatively large spaces. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0013] Figure 2 It is a front schematic diagram of the utility model;
[0014] Figure 3 It is a schematic diagram of the left side of the utility model;
[0015] Figure 4 It is a cross-sectional schematic diagram of the AA position of the present invention;
[0016] Figure 5 It is a top view schematic diagram of the utility model;
[0017] Figure 6 This is a bottom view schematic diagram of the present utility model;
[0018] Figure 7 This is a schematic diagram of the three-dimensional structure of the utility model in the second direction;
[0019] In the figure: 1. Main body combination connecting column, 2. Stable support connecting column, 3. Installation combination connecting seat, 4. Overall tight positioning connecting column, 5. Output matching stabilizing column, 6. Main body output matching seat, 7. Main body input matching hole, 8. Main body discharge port. DETAILED DESCRIPTION
[0020] like Figures 1 to 7As shown, an aluminizing processing material discharging assembly includes an inverted conical main body assembly connecting column 1. The lower end of the main body assembly connecting column 1 is provided with an integrally formed cylindrical stabilizing support connecting column 2. The upper end of the main body assembly connecting column 1 is provided with an integrally formed cylindrical mounting assembly connecting seat 3. This structure allows for overall installation and coordination. For overall tightening installation, the assembly can be directly tightened through the structure at the upper end, or clamped from the side at the position of the main body assembly connecting column 1, providing greater assembly flexibility during installation. The upper end of the mounting assembly connecting seat 3 is provided with integrally formed tightening positioning connecting columns 4 evenly distributed around the circumference, which can ensure higher assembly accuracy at the upper end during assembly and enable tighter integration with the mating channel assembly at the material input position. The lower end of the stabilizing support connecting column 2 is provided with an integrally formed spherical output mating stabilizing column 5. The lower end of the output mating stabilizing column 5 is provided with an integrally formed inverted conical main body output mating seat 6. The upper end of the mounting assembly connecting seat 3 is provided with an inverted conical main body input mating hole 7, which is the mating structure for overall material input. The interior of the output matching stabilizing column 5 is a spherical main body conveying safety and stability groove. The upper end of the main body conveying safety and stability groove is connected to the main body input matching hole 7 through a transition conveying hole. The main body conveying safety and stability groove is parallel to the outer side of the output matching stabilizing column 5. The vertical projections of the stabilizing support connecting column 2, the main body combination connecting column 1, and the installation combination connecting seat 3 are located within the area of the main body conveying safety and stability groove, ensuring that the internal spherical structure has a larger space. When material is conveyed, there can be a smooth air flow inside, ensuring better smoothness when the material is finally discharged. The lower end of the main body conveying safety and stability groove is provided with an inverted conical main body discharge port 8 that passes through the main body output matching seat 6. When in use, it can be combined and connected with different installation structures as needed, and has greater flexibility in installation. Its main structure is equipped with spherical and conical conveying structures, and the spherical conveying structure is larger than the conveying channels in other positions, ensuring that the aluminum liquid is conveyed more smoothly during input and final output, and the air can be more smooth during the internal pouring process, the overall discharge efficiency is higher, and the flow force at the discharge port position is greater, which can meet the convenient conveying coordination of forming molds with relatively large spaces. When in use, it can cooperate with intelligent components to achieve output coordination at different angles, and has greater flexibility in use.
[0021] Preferably, the upper and lower sides of the installation combination connecting seat 3 are respectively provided with avoidance safety chamfers, so that the space on the upper and lower sides is larger, with better avoidance effect, making the operation during installation and tightening more convenient.
[0022] Preferably, the integral fastening position connecting column 4 is provided with an integral fastening connection thread, which makes the cooperation operation during the fastening connection more convenient.
[0023] Preferably, the upper end of the main body discharge port 8 is smoothly connected to the connection position of the main body conveying safety and stability groove, so that the internal material conveying and coordination are smoother and easier during production and processing.
[0024] Preferably, an integral fastening spare connection support plate is provided on the outer side of the mounting combination connection seat 3, which can make the fastening operation of the mounting position more convenient as needed and can play a role in reinforcing the connection. This structure is not shown in the accompanying drawings.
[0025] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements or substitutions can be made without departing from the principles described in the present invention. These improvements or substitutions should also be regarded as the scope of protection of the present invention.
Claims
1. An aluminizing processing dumping assembly, characterized in that: The invention comprises an inverted conical main body combined connecting column (1), wherein the lower end of the main body combined connecting column (1) is provided with an integral cylindrical stabilizing support connecting column (2), the upper end of the main body combined connecting column (1) is provided with an integral cylindrical mounting combined connecting seat (3), the upper end of the mounting combined connecting seat (3) is provided with integrally fastened positioning connecting columns (4) evenly distributed around the circumference, the lower end of the stabilizing support connecting column (2) is provided with an integrally formed spherical output matching stabilizing column (5), the lower end of the output matching stabilizing column (5) is provided with an integrally formed inverted conical main body output matching seat (6), the upper end of the mounting combined connecting seat (3) is provided with an inverted conical main body output matching seat (6), and the upper end of the mounting combined connecting seat (3) is provided with an inverted conical main body output matching seat (6). The main body input matching hole (7) is provided, and the interior of the output matching stabilizing column (5) is a spherical main body conveying safety and stability groove. The upper end of the main body conveying safety and stability groove is connected with the main body input matching hole (7) through a transition conveying hole. The main body conveying safety and stability groove and the outer side of the output matching stabilizing column (5) are parallel to each other. The projections of the stabilizing support connecting column (2), the main body combination connecting column (1) and the installation combination connecting seat (3) in the upper and lower directions are located in the area of the main body conveying safety and stability groove. The lower end of the main body conveying safety and stability groove is provided with an inverted cone-shaped main body discharge port (8) that passes through the main body output matching seat (6).
2. The aluminizing processing dumping assembly according to claim 1, characterized in that: The upper and lower sides of the mounting assembly connection seat (3) are respectively provided with safety chamfers for avoiding positioning.
3. The aluminizing processing dumping assembly according to claim 1, characterized in that: The integral fastening position connecting column (4) is provided with an integral fastening connection thread.
4. The aluminizing processing pouring assembly according to claim 1, characterized in that: The upper end position of the main body discharge port (8) is smoothly transitionally connected to the connection position of the main body conveying safety and stability groove.
5. The aluminizing processing dumping assembly according to claim 1, characterized in that: An integral fastening standby connection support plate is provided on the outer side of the mounting combined connection seat (3).