Zinc-aluminum alloy machining die with stable structure
By designing a stable zinc-aluminum alloy processing mold and adopting structures such as a movable top seat, telescopic rod, and stabilizing bar, the stability problem of the mold under high pressure and high temperature environment was solved, achieving efficient production and high-quality molding, and enhancing the stability and heat dissipation performance of the mold.
Patent Information
- Application Number
- CN202520273398.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Existing alloy processing molds are not stable enough in use and are prone to deformation, cracking and other problems, which lead to surface defects and increased friction.
A stable zinc-aluminum alloy processing mold was designed, which adopts a stabilizing structure such as a movable top and base, telescopic rod, and stabilizing bar, in conjunction with a cylinder body and pressure rod, to ensure the stability of the mold under high pressure and high temperature environment, and effectively dissipates heat through a cooling fan and ventilation port.
It significantly improves mold stability and production efficiency, prevents deformation or damage, enhances product quality and ease of operation, and improves mold heat dissipation performance.
Smart Images

Figure CN223699290U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mould equipment technical field, concretely relates to a zinc aluminum alloy processing mould with stable structure. BACKGROUND
[0002] Alloy processing mould is an important tool for manufacturing alloy products, which has high precision, wear resistance, high temperature resistance and other characteristics, and is widely used in automobile, electronic, aerospace and other fields. Alloy processing mould is a special tool for manufacturing alloy products. Through specific design and manufacturing process, alloy materials are formed according to predetermined shape and structure. They can be applied to the processing of various alloy materials, such as aluminum alloy, magnesium alloy, titanium alloy, etc., and have a wide range of applications.
[0003] The existing alloy processing mould is not high in stability in use, for example, the aluminum alloy mobile phone shell processing mould disclosed in the application number CN202420059670. The existing alloy processing mould does not have the structure of increasing stability, and the structure strength is insufficient, the stability is not high enough, which may cause deformation, cracking and other problems of the mould in use, and the instability of the mould may increase the friction between the surface of the mould and the alloy material, thereby producing scratches, depressions and other surface defects.
[0004] Therefore, it is necessary to invent a zinc aluminum alloy processing mould with stable structure to solve the above problems. CONTENT OF THE UTILITY MODEL
[0005] The utility model aims at providing a zinc aluminum alloy processing mould with stable structure to solve the problem of insufficient stability in use in the prior art.
[0006] In order to achieve the above purpose, the utility model provides the following technical scheme: a zinc aluminum alloy processing mould with stable structure, comprising a processing frame, a top seat, a base, a cylinder body, a mould frame, a control console, a cooling fan and a ventilation opening, the inside of the processing frame is provided with the top seat, the inside of the processing frame is provided with the base, the top surface of the top seat is provided with the cylinder body, the middle of the base is provided with the mould frame, the lower side of the front side of the processing frame is provided with the control console, the lower side of one side of the outer wall of the processing frame is provided with the cooling fan, the horizontal direction of the cooling fan is provided with the ventilation opening, and the ventilation opening is located below the other side of the outer wall of the processing frame.
[0007] Preferably, the inside of the top seat is movably arranged in the processing frame, and the base is fixedly installed at the lower side of the inner wall of the processing frame.
[0008] Preferably, the surface of the top base is provided with first telescopic rods at four corners, top ends of the first telescopic rods are penetrated through the inner top surface of the processing frame, and motors are connected above the first telescopic rods and located at four corners of the top surface of the processing frame.
[0009] Preferably, the bottom surface of the top base is provided with second telescopic rods at four corners, and bottom ends of the second telescopic rods are fixedly connected with the surface of the base.
[0010] Preferably, the surface of the top base is penetrated and provided with a stabilizing strip, the bottom end of the stabilizing strip is fixed on the surface of the mold frame, the stabilizing strip is provided in an L-shaped cross section, and the stabilizing strip is installed in close fit with the edges of parts below the top base.
[0011] Preferably, the outer wall of the top base is provided with sliding blocks at two sides, and the inner wall of the processing frame is provided with sliding grooves matched with the sliding blocks at two sides.
[0012] Preferably, the lower output end of the cylinder body is connected with a pressing rod, and the output end of the pressing rod is provided with a pressing die seat.
[0013] Preferably, the middle part of the mold frame is provided with a pressing die cavity, the pressing die cavity is internally provided with a top die block, the bottom surface of the top die block is connected with a top rod, the bottom of the top rod is provided with a driver, the driver is located below the inside of the processing frame, the cooling fan and the air vent are respectively located at two sides of the driver, and the bottom surface edges of the pressing die cavity are provided with limiting strips at four sides, and the limiting strips are in close fit with the shapes of four corners of the top die block.
[0014] In the above technical solution, the technical effects and advantages of the zinc-aluminum alloy processing die provided by the utility model are as follows:
[0015] The zinc-aluminum alloy processing die with the stable structure has the following advantages: the die structure is reasonable, the cylinder body, the pressing rod and the pressing die seat and other components are closely matched, the zinc-aluminum alloy can be quickly and efficiently pressure die formed, the production efficiency is significantly improved, the movable top base and the base are designed for the die, the first telescopic rod, the second telescopic rod and the stabilizing strip and other stable structures are arranged, the stability of the die under the high-pressure and high-temperature working environment is effectively enhanced, the die deformation or damage is prevented, the stability of the die during the pressing die process is increased by arranging the stabilizing strips and the limiting strips, the zinc-aluminum alloy processing die with the stable structure has various beneficial effects, the production efficiency and the product quality are improved, the stability and the heat dissipation performance of the die are enhanced, the die is convenient to operate and maintain, and has strong adaptability. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure schematic view of the utility model;
[0017] Figure 2 It is a rear view structure schematic view of the utility model;
[0018] Figure 3 It is the front side view structural schematic diagram of the utility model;
[0019] Figure 4 It is the mold frame side view structural schematic diagram of the utility model;
[0020] Figure 5 It is the front view structural schematic diagram of the utility model.
[0021] Mark explanation:
[0022] 1, processing frame;2, top seat;201, first telescopic rod;202, motor;203, second telescopic rod;204, stabilizing strip;205, sliding block;206, sliding slot;3, base;4, cylinder body;401, pressing rod;402, pressing die seat;5, mold frame;501, pressing die cavity;502, top die block;503, ejector pin;504, limiting strip;6, control console;7, cooling fan;8, air vent. Specific implementation
[0023] In order to make the technical personnel of the prior art better understand the technical scheme of the utility model, the utility model will be introduced further in detail below in conjunction with the drawings.
[0024] The utility model provides a kind of zinc-aluminum alloy processing die of stable structure as shown in Figures 1-5 The utility model discloses a kind of zinc-aluminum alloy processing die of stable structure as shown in Figure 1, including processing frame 1, top seat 2 and base 3 processing frame 1 is provided with top seat 2 in the inside upper portion, the surface four corners of top seat 2 are all installed with first telescopic rod 201, the top end of first telescopic rod 201 is penetrated with the inner top surface four corners of processing frame 1, the upper portion of first telescopic rod 201 is connected with motor 202, motor 202 is located on the top surface four corners of processing frame 1, the bottom surface four corners of top seat 2 are installed with second telescopic rod 203, the bottom end of second telescopic rod 203 is fixedly connected with the surface four corners of base 3, the surface of top seat 2 is penetrated and installed with stabilizing strip 204, the bottom end of stabilizing strip 204 is fixed on the surface of mold frame 5, the section of stabilizing strip 204 is L-shaped and is arranged, and stabilizing strip 204 is installed with top seat 2 lower part part edge, the outer wall both sides of top seat 2 are all installed with sliding block 205, the inner wall both sides of processing frame 1 are all set with sliding slot 206 that is slidably matched with sliding block 205, the inside lower portion of processing frame 1 is provided with base 3, top seat 2 is movably arranged in the inside of processing frame 1, and base 3 both ends are fixedly installed in the lower portion both sides of the inner wall of processing frame 1;
[0025] The middle of the top surface of the top base 2 is provided with a cylinder body 4, the lower output end of the cylinder body 4 is connected with a pressing rod 401, the output end of the pressing rod 401 is provided with a pressing die base 402, the middle of the base 3 is provided with a die frame 5, the middle of the die frame 5 is provided with a pressing die cavity 501, the pressing die cavity 501 is internally provided with a top die block 502, the middle of the bottom surface of the top die block 502 is connected with a top rod 503, the lower side of the top rod 503 is provided with a driver, the driver is located at the lower side of the inside of the machining rack 1, the heat dissipation fan 7 and the air vent 8 are respectively located at the two sides of the driver, the bottom surface edges of the four sides of the pressing die cavity 501 are all provided with limiting strips 504, the shape of the limiting strips 504 is matched with the quadrangular shape of the top die block 502, the lower side of the front side of the machining rack 1 is provided with a control console 6, the lower side of the one side of the outer wall of the machining rack 1 is provided with the heat dissipation fan 7, the horizontal direction of the heat dissipation fan 7 is provided with the air vent 8, and the air vent 8 is located at the lower side of the other side of the outer wall of the machining rack 1.
[0026] The utility model discloses a working principle:
[0027] Referring to the drawings in the specification Figures 1-5 For the stable zinc-aluminum alloy processing die of this structure, when using, first, the pressing rod 401 connected to the lower output end of the cylinder body 4 and the pressing die base 402 are used to high-pressure inject the molten zinc-aluminum alloy material into the pressing die cavity 501 in the die frame 5, in this process, the top die block 502 is pressed down, and the complete die cavity is formed in cooperation with the pressing die cavity 501, the precise control of the die is mainly reflected in the stable connection of the top base 2 and the base 3, and the stability and precision of the die in the forming process are ensured through the structures such as the first telescopic rod 201, the second telescopic rod 203 and the stabilizing strip 204, in addition, the sliding matching of the sliding block 205 and the sliding groove 206 also provides additional stability, in the forming process, the heat dissipation fan 7 and the air vent 8 work cooperatively to ensure the heat dissipation of the die and the driver and the like, prevent overheating from causing the die to deform or be damaged, at the same time, this heat dissipation mode also helps to accelerate the cooling speed of the zinc-aluminum alloy and improve the production efficiency;
[0028] When using the device, first check whether each part of the mold is intact, especially the key parts such as the mold frame 5 and the die holder 402, ensure that the power supply of the cylinder body 4, the driver, the cooling fan 7 and other equipment is normal, prepare the molten zinc-aluminum alloy material and ensure its temperature is appropriate for high-pressure forming, pour the molten zinc-aluminum alloy material into the die cavity 501 in the mold frame 5, adjust the pressure and speed of the cylinder body 4 through the console 6 to ensure the stability and precision of the forming process, adjust the speed of the cooling fan 7 and the opening degree of the air vent 8 to meet the heat dissipation needs of the mold, start the cylinder body 4 to make the pressure rod 401 and the die holder 402 press down, and high-pressure inject the molten zinc-aluminum alloy material into the die cavity 501, closely monitor the temperature and pressure of the mold during the forming process to ensure the stability and precision of the forming process, stop the operation of the cylinder body 4 when the zinc-aluminum alloy material is completely cooled and solidified, start the driver to make the ejector rod 503 rise and push the ejector block 502 to eject the formed zinc-aluminum alloy part from the mold, clean the residues on the mold frame 5 and the die holder 402 and other parts after taking out the part to prepare for the next forming operation, turn off the cooling fan 7 and the air vent 8, disconnect the power supply, and ensure the safe storage of the mold. The zinc-aluminum alloy processing mold has the advantages of stable structure, high precision and high production efficiency, and is suitable for the forming processing of various zinc-aluminum alloy parts. During use, it is necessary to strictly follow the operation procedures and safety specifications to ensure the normal operation of the mold and the safety of the operators.
Claims
1. A structurally stable zinc-aluminum alloy processing die comprising a processing frame (1), a top base (2), a bottom base (3), a cylinder body (4), a die frame (5), a control console (6), a heat dissipation fan (7) and a ventilation opening (8), characterized in that, The top seat (2) is movably arranged in the inside of the processing rack (1), and the bottom seat (3) is fixedly installed at both ends of the inner wall of the processing rack (1).
2. A structurally stable zinc-aluminum alloy processing die according to claim 1, characterized in that: The surface of the top seat (2) is provided with a first telescopic rod (201) at each corner, the top end of the first telescopic rod (201) penetrates the four corners of the inner top surface of the processing rack (1), the upper side of the first telescopic rod (201) is connected with a motor (202), and the motor (202) is located at the four corners of the top surface of the processing rack (1).
3. The structural stable zinc-aluminum alloy processing die of claim 1, wherein: The bottom surface of the top seat (2) is provided with a second telescopic rod (203) at each corner, and the bottom end of the second telescopic rod (203) is fixedly connected with the surface of the bottom seat (3).
4. The structural stable zinc-aluminum alloy processing die of claim 1, wherein: The surface of the top seat (2) is provided with a stabilizing strip (204), the bottom end of the stabilizing strip (204) is fixed on the surface of the mold frame (5), the stabilizing strip (204) is provided in an L-shaped cross section, and the stabilizing strip (204) is installed in close contact with the edges of the parts below the top seat (2).
5. The structural stable zinc-aluminum alloy processing die of claim 1, wherein: The outer wall of the top seat (2) is provided with a sliding block (205) on both sides, and the inner wall of the processing rack (1) is provided with a sliding groove (206) matched with the sliding block (205) on both sides.
6. A structurally stable zinc-aluminum alloy processing die according to claim 1, wherein: The lower output end of the cylinder body (4) is connected with a pressing rod (401), and the output end of the pressing rod (401) is provided with a pressing die seat (402).
7. The structurally stable zinc-aluminum alloy processing die of claim 1, wherein: The middle part of the mold frame (5) is provided with a pressing die cavity (501), the inside of the pressing die cavity (501) is provided with a top die block (502), the bottom surface of the top die block (502) is connected with a top rod (503), the lower side of the top rod (503) is provided with a driver, the driver is located below the inside of the processing rack (1), the heat dissipation fan (7) and the air vent (8) are located on both sides of the driver respectively, the bottom surface edge of the pressing die cavity (501) is provided with a limiting strip (504) on four sides, and the shape of the limiting strip (504) is matched with the shape of the four corners of the top die block (502).
8. The structurally stable zinc-aluminum alloy processing die of claim 1, wherein:
Citation Information
Patent Citations
Aluminum alloy mobile phone shell machining die
CN221620799U