Raw material briquetting device for antenna alloy material accessory production
Through the design of hydraulic rods and support channels, the circular and rectangular pressing components of the blocking device are converted, which solves the problem of inconvenient mold replacement and improves the efficiency of block forming and operation convenience.
Patent Information
- Application Number
- CN202510467838.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2045-04-15
AI Technical Summary
The existing block pressing device is troublesome when replacing the mold, which affects the block forming efficiency and is not convenient to quickly replace the molding shape according to needs.
A block pressing device is designed to achieve the conversion of circular and rectangular pressing components through the hydraulic rod and support channel matching the moving holes. The position adjustment of the molding sleeve is driven by the load bar and the joint drive slat, and the pressing of different shapes is achieved, simplifying the mold replacement process.
It realizes rapid conversion of pressing in different shapes without disassembly operation, improves the efficiency of block forming and operation convenience, and reduces the burden on staff.
Smart Images

Figure CN120243922A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of antenna production, and particularly to a raw material briquetting device for the production of antenna alloy material fittings. Background Technique
[0002] An antenna is a device that can effectively radiate electromagnetic waves in a specific direction in space or effectively receive electromagnetic waves coming from a specific direction in space, and it plays a crucial role in a wireless communication system.
[0003] The alloy fittings on the antenna usually adopt materials with good electrical conductivity such as copper and aluminum. These materials usually need to go through a series of processing techniques to be formed when producing alloy fittings. The initial production raw material of the alloy fittings on the antenna is metal powder. During the production process, multiple processing treatments need to be carried out on the metal powder. Among them, the briquetting treatment of the metal powder is a very important step. Usually, a briquetting machine or a briquetting device is used to realize the forming of the metal raw material. As a part of the metal intelligent heat treatment production line, it is used as a metal additive manufacturing equipment. The so-called briquetting treatment is to press the metal powder into blocks, which is not only convenient for transportation and storage, but also can improve the smelting efficiency and the finished product quality. However, the existing briquetting devices have certain inconveniences in use. That is, when carrying out the briquetting treatment on the metal powder, it needs to be pressed into a cylindrical shape or a rectangular shape according to actual needs to facilitate the smooth progress of subsequent processes. In this way, different molds need to be replaced according to different shapes to meet the production requirements. The existing briquetting devices are rather troublesome to operate when replacing the molds, not very convenient, not only time-consuming and laborious, but also affecting the working efficiency of briquetting forming. Summary of the Invention
[0004] The purpose of the present invention is to provide a raw material briquetting device for the production of antenna alloy material fittings to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the present invention provides the following technical solutions: A raw material briquetting device for the production of antenna alloy material fittings, including a briquetting workbench, on which a briquetting work frame is fixedly arranged. A hydraulic rod is fixedly installed on the briquetting work frame. On both sides of the lower end of the briquetting work frame, support channels are symmetrically opened, and a matching moving hole is opened on the briquetting work frame above the support channels; A circular pressing component is fixedly arranged on the hydraulic rod, and a cylindrical block bearing component is installed on the briquetting workbench. The circular pressing component and the cylindrical block bearing component cooperate to realize the pressing of the metal powder into a cylindrical block; A rectangular pressing component conversion mechanism is installed on the circular pressing component, and the rectangular pressing component conversion mechanism and the circular pressing component cooperate to realize the transformation of the pressing shape; The cylindrical block bearing assembly is connected with a rectangular block bearing assembly, and the rectangular block bearing assembly is used for pressing a rectangular block of metal powder. A support assembly is also fixedly arranged on the press block workbench, and the support assembly is used for supporting the rectangular block bearing assembly.
[0006] Preferably, the support assembly is a lateral bearing frame, and the lateral bearing frames are symmetrically and fixedly arranged on both sides of the press block workbench. The upper end of the lateral bearing frame is fixedly connected with the press block working frame, and a bearing cooperation block is fixedly arranged on the lateral bearing frame, and a bearing track plate is fixedly arranged between the bearing cooperation blocks on the lateral bearing frame.
[0007] Preferably, the circular pressing assembly is a circular pressing plate, and load-bearing support rods are symmetrically and fixedly arranged on the upper end surface of the circular pressing plate, and a connecting mounting plate is fixedly arranged at the upper end of the load-bearing support rods. Activity cooperation through holes are symmetrically arranged on the connecting mounting plate, and limit cooperation frames are symmetrically and fixedly arranged on the connecting mounting plate.
[0008] Preferably, the rectangular pressing assembly conversion mechanism includes a rectangular pressing plate and a regulation connection plate, and a circular channel is arranged on the rectangular pressing plate. Connecting convex frames are symmetrically and fixedly arranged on the rectangular pressing plate, guiding and limiting through holes are arranged on the connecting convex frames, load-bearing support rods are inserted in the guiding and limiting through holes, and an adjusting activity rod is also hinged on the connecting convex frames.
[0009] Preferably, the upper end of the adjusting activity rod is hinged with the regulation connection plate. An adjusting cooperation plate is fixedly arranged on the regulation connection plate, and an engagement cooperation hole is arranged at one end of the adjusting cooperation plate far away from the regulation connection plate. Supporting activity rods are symmetrically and fixedly arranged on the regulation connection plate, the supporting activity rods are inserted in the activity cooperation through holes, and load-bearing bars are fixedly arranged on the supporting activity rods.
[0010] Preferably, an installation channel is arranged on the load-bearing bar, installation rods are symmetrically arranged in the installation channel, and connecting springs are sleeved on the installation rods. An operation load plate is fixedly arranged on the installation rod, a limit load-bearing bar is fixedly arranged on the operation load plate, limit cooperation convex blocks are symmetrically and fixedly arranged at both ends of the limit load-bearing bar, and limit cooperation grooves are arranged on the limit cooperation convex blocks.
[0011] Preferably, the cylindrical block bearing assembly is a combined drive bar, and a stable cooperation plug rod is fixedly arranged at the upper end of the combined drive bar, and the stable cooperation plug rod is inserted in the support insertion hole. Inside the combined drive strip, an inner bearing connecting member is fixedly arranged. The inner bearing connecting member is matched with the connecting and fitting hole, and symmetrically fixed at the lower end of the combined drive strip is a channel bearing plate, which is inserted into the support channel.
[0012] Preferably, at the other end of the channel bearing plate, a fitting mounting plate is fixedly arranged. On the fitting mounting plate, a support strengthening load bar is fixedly arranged. The support strengthening load bar is inserted into the fitting moving hole, and a first forming sleeve is fixedly arranged on the support strengthening load bar.
[0013] Preferably, a cylindrical forming cavity is formed on the first forming sleeve, and a compression-resistant bottom platform is fixedly arranged at the lower end of the first forming sleeve. A support rotating roller is installed on the compression-resistant bottom platform; A conversion connecting rod is hinged on the first forming sleeve, and the conversion connecting rod is connected with the rectangular block bearing assembly.
[0014] Preferably, the rectangular block bearing assembly is a second forming sleeve. A rectangular forming cavity is formed on the second forming sleeve, and symmetrically arranged support rail grooves are also formed on the second forming sleeve. The support rail grooves are matched with the bearing track plate; At the lower end of the second forming sleeve, a downward extension fitting plate is fixedly arranged, and the downward extension fitting plate is hinged with the conversion connecting rod.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, with the following advantages: 1. When it is necessary to press metal powder into blocks of different shapes, only by pushing the bearing bar can the conversion between the circular pressing plate and the rectangular pressing plate be realized. At the same time, as the bearing bar moves, it will also drive the combined drive strip to move. In this way, the positions of the first forming sleeve and the second forming sleeve can also be adjusted, so that the circular pressing plate can be adapted to the first forming sleeve, and the rectangular pressing plate can be adapted to the second forming sleeve, realizing the pressing of different shapes. The operation is simple, convenient and fast, without the need for installation and disassembly operations.
[0016] 2. When pressing a rectangular block, at this time, the rectangular pressing plate is sleeved on the circular pressing plate. The circular channel on the rectangular pressing plate is filled by the circular pressing plate, and then it is matched with the second forming sleeve to complete the pressing of the rectangular block. When it is necessary to press a cylindrical block, drive the two operation carrier plates at the same time to separate the limit fitting groove from the limit fitting frame, and then the movement of the adjustment connecting plate can be controlled, thereby driving the rectangular pressing plate to move upward and separate from the circular pressing plate. In this way, the circular pressing plate can be exposed, facilitating the pressing work.
[0017] 3. Controlling the movement of the adjustment connecting plate will also drive the combined drive slat to move, thereby causing the first forming sleeve to move to the working position to facilitate cooperation with the circular pressing plate to achieve the pressing of the cylindrical block. At the same time, as the first forming sleeve moves, it will also drive the second forming sleeve away from the working position to avoid hindering the pressing work. By controlling the movement of the adjustment connecting plate, the conversion between the first forming sleeve and the second forming sleeve can be achieved, greatly facilitating the pressing work. Description of the Drawings
[0018] Figure 1 The first perspective schematic diagram of the assembly of the briquetting workbench.
[0019] Figure 2 The second perspective schematic diagram of the assembly of the briquetting workbench.
[0020] Figure 3 The structural schematic diagram of the briquetting workbench.
[0021] Figure 4 The assembly schematic diagram of the circular pressing plate, rectangular pressing plate and adjustment connecting plate.
[0022] Figure 5 The structural schematic diagram of the circular pressing plate.
[0023] Figure 6 The structural schematic diagram of the rectangular pressing plate.
[0024] Figure 7 The exploded schematic diagram of the assembly of the adjustment connecting plate.
[0025] Figure 8 The assembly schematic diagram of the adjustment connecting plate and the combined drive slat.
[0026] Figure 9 The first perspective schematic diagram of the assembly of the combined drive slat and the second forming sleeve.
[0027] Figure 10 The second perspective schematic diagram of the assembly of the combined drive slat and the second forming sleeve.
[0028] In the figure: 1. Billet pressing workbench; 11. Billet pressing work frame; 12. Support channel; 13. Matching moving hole; 14. Support insertion hole; 15. Hydraulic rod; 16. Lateral bearing frame; 17. Bearing matching block; 18. Bearing track plate; 2. Circular pressing plate; 21. Load-bearing connecting rod; 22. Connecting mounting plate; 23. Movable matching through hole; 24. Limit matching frame; 3. Rectangular pressing plate; 31. Circular channel; 32. Connecting convex frame; 33. Guide limit through hole; 34. Adjusting movable rod; 4. Regulation connection plate; 41. Adjusting matching plate; 42. Connection matching hole; 43. Support movable rod; 44. Bearing strip; 45. Installation channel; 46. Installation rod; 47. Connecting spring; 48. Operation load plate; 49. Limit bearing strip; 491. Limit matching convex block; 492. Limit matching groove; 5. Combined drive strip; 51. Stable matching insertion rod; 52. Inner bearing connecting rod; 53. Channel bearing plate; 54. Matching mounting plate; 55. Support strengthening load rod; 56. First forming sleeve; 57. Cylindrical forming cavity; 58. Compression-resistant bottom platform; 581. Support roller; 59. Conversion connection rod; 6. Second forming sleeve; 61. Rectangular forming cavity; 62. Support rail groove; 63. Lower extension matching plate. Detailed implementation mode
[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0030] The present invention provides a technical solution: As Figure 1 and Figure 2 shown, a raw material pressing device for producing antenna alloy material fittings includes a pressing workbench 1, on which a pressing work frame 11 is fixedly arranged. A hydraulic rod 15 is fixedly installed on the pressing work frame 11. On both sides of the lower end of the pressing work frame 11, support channels 12 are symmetrically opened. On the pressing work frame 11 above the support channels 12, a matching moving hole 13 is opened. A circular pressing component is fixedly arranged on the hydraulic rod 15. A cylindrical block bearing component is installed on the pressing workbench 1. The circular pressing component and the cylindrical block bearing component cooperate to realize the pressing of the metal powder cylindrical block. A rectangular pressing component conversion mechanism is installed on the circular pressing component. The rectangular pressing component conversion mechanism and the circular pressing component cooperate to realize the change of the pressing shape. The cylindrical block bearing component is connected with a rectangular block bearing component, which is used for the pressing of the metal powder rectangular block. A support component is also fixedly arranged on the pressing workbench 1, which is used for the support of the rectangular block bearing component.
[0031] As Figure 3 shown, the support component is the lateral bearing frame 16. The lateral bearing frames 16 are symmetrically and fixedly arranged on both sides of the briquetting table 1. The upper ends of the lateral bearing frames 16 are fixedly connected to the briquetting working frame 11, and a bearing matching block 17 is fixedly arranged on the lateral bearing frame 16. A bearing track plate 18 is fixedly arranged between the bearing matching blocks 17 on the lateral bearing frame 16. The rectangular block bearing component is supported by the bearing track plate 18 so that it can move on the bearing track plate 18.
[0032] As Figure 5 shown, the circular pressing component is the circular pressing plate 2. Load-bearing support rods 21 are symmetrically and fixedly arranged on the upper end surface of the circular pressing plate 2. A connecting mounting plate 22 is fixedly arranged at the upper ends of the load-bearing support rods 21. Movable fitting through holes 23 are symmetrically formed in the connecting mounting plate 22, and limit fitting frames 24 are also symmetrically and fixedly arranged on the connecting mounting plate 22. The surface of the circular pressing plate 2 is smooth and free of burrs.
[0033] As Figure 4 and Figure 6 shown, the rectangular pressing component conversion mechanism includes a rectangular pressing plate 3 and a regulation connecting plate 4. A circular channel 31 is formed in the rectangular pressing plate 3. Connecting convex frames 32 are symmetrically and fixedly arranged on the rectangular pressing plate 3. A guiding and limiting through hole 33 is formed in the connecting convex frame 32, and the load-bearing support rod 21 is inserted into the guiding and limiting through hole 33. An adjusting movable rod 34 is also hinged on the connecting convex frame 32. When pressing the rectangular block of metal powder, the rectangular pressing plate 3 is sleeved on the circular pressing plate 2, and at this time, the circular channel 31 cooperates with the circular pressing plate 2.
[0034] As Figure 4 shown, the upper end of the adjusting movable rod 34 is hinged to the regulation connecting plate 4. An adjusting fitting plate 41 is fixedly arranged on the regulation connecting plate 4. An engagement fitting hole 42 is formed at one end of the adjusting fitting plate 41 away from the regulation connecting plate 4. Support movable rods 43 are also symmetrically and fixedly arranged on the regulation connecting plate 4. The support movable rods 43 are inserted into the movable fitting through holes 23, and a bearing bar 44 is fixedly arranged on the support movable rods 43.
[0035] As Figure 4 and Figure 7 shown, an installation channel 45 is formed on the bearing bar 44. Installation rods 46 are symmetrically formed in the installation channel 45. A connecting spring 47 is sleeved on the installation rods 46, and an operation carrier plate 48 is fixedly arranged on the installation rods 46. In addition, both ends of the connecting spring 47 are respectively fixed on the bearing bar 44 and the operation carrier plate 48.
[0036] As Figure 4 and Figure 7As shown, a limiting bearing bar 49 is fixedly arranged on the operating carrier plate 48. Limiting mating bumps 491 are symmetrically and fixedly arranged at both ends of the limiting bearing bar 49. A limiting mating groove 492 is arranged on the limiting mating bump 491. When the limiting bearing bar 49 fixes the regulating connecting plate 4, the limiting mating frame 24 is inserted into the limiting mating groove 492.
[0037] As Figure 1 , Figure 8 , Figure 9 and Figure 10 shown, the cylindrical block bearing assembly is the combined driving bar 5. A stable mating plug rod 51 is fixedly arranged at the upper end of the combined driving bar 5. The stable mating plug rod 51 is inserted into the support insertion hole 14. An inner bearing connecting member 52 is fixedly arranged inside the combined driving bar 5. The inner bearing connecting member 52 is matched with the connection and cooperation hole 42. The regulating connecting plate 4 can move up and down along the inner bearing connecting member 52. Symmetrically and fixedly arranged at the lower end of the combined driving bar 5 are channel bearing plates 53. The channel bearing plates 53 are inserted into the support channels 12. The inner wall of the support channel 12 is smooth and free of burrs, and the channel bearing plates 53 can move along the support channels 12.
[0038] As Figure 2 and Figure 9 shown, at the other end of the channel bearing plate 53, a mating mounting plate 54 is fixedly arranged. A support strengthening rod 55 is fixedly arranged on the mating mounting plate 54. The support strengthening rod 55 is inserted into the mating moving hole 13. And a first forming sleeve 56 is fixedly arranged on the support strengthening rod 55.
[0039] As Figure 9 and Figure 10 shown, a cylindrical forming cavity 57 is formed on the first forming sleeve 56. And a compression-resistant bottom platform 58 is fixedly arranged at the lower end of the first forming sleeve 56. A support roller 581 is installed on the compression-resistant bottom platform 58. In addition, a conversion connecting rod 59 is hinged on the first forming sleeve 56. The conversion connecting rod 59 is connected to the rectangular block bearing assembly. The rectangular block bearing assembly is driven to move by the first forming sleeve 56.
[0040] As Figure 1 and Figure 9 shown, the rectangular block bearing assembly is the second forming sleeve 6. A rectangular forming cavity 61 is formed on the second forming sleeve 6. Support rail grooves 62 are symmetrically formed on the second forming sleeve 6. The support rail grooves 62 are matched with the bearing track plate 18. A downward extension mating plate 63 is fixedly arranged at the lower end of the second forming sleeve 6. The downward extension mating plate 63 is hinged to the conversion connecting rod 59.
[0041] When pressing the rectangular block of metal powder, the rectangular pressing plate 3 is sleeved on the circular pressing plate 2 at this time. The circular pressing plate 2 fills the circular channel 31. At this time, the second forming sleeve 6 is directly below the rectangular pressing plate 3. In this way, the pressing of the rectangular block of metal powder can be realized under the cooperation of the circular pressing plate 2, the rectangular pressing plate 3 and the second forming sleeve 6. That is, the metal powder is added to the rectangular cavity 61, and the pressing of the rectangular block of metal powder can be carried out through the cooperation of the rectangular pressing plate 3 and the rectangular cavity 61. When the pressing of the cylindrical block of metal powder is required, at this time, two operation carrier plates 48 are simultaneously pushed in the direction of the bearing bar 44, so that the limit fitting groove 492 at the end of the limit bearing bar 49 away from the bearing bar 44 is separated from the limit fitting frame 24. In this way, the adjustment connection plate 4 can be rotated actively, and then the rectangular pressing plate 3 is also in an active state. Then, the bearing bar 44 is pushed in the direction of the connection mounting plate 22. With the movement of the bearing bar 44, under the action of the adjustment lever 34, the rectangular pressing plate 3 will be driven to move upward and separate from the circular pressing plate 2. In this way, the circular pressing plate 2 can be exposed until the limit fitting groove 492 at the end of the limit bearing bar 49 close to the bearing bar 44 is aligned with the limit fitting frame 24. At this time, when the operation carrier plate 48 is released, the operation carrier plate 48 will move in the reverse direction under the action of the connection spring 47, and then the limit fitting frame 24 will be inserted into the limit fitting groove 492 at the end of the limit bearing bar 49 close to the bearing bar 44 to realize the fixation of the adjustment connection plate 4 again, and then realize the fixation of the rectangular pressing plate 3. In addition, during the movement of the adjustment connection plate 4, since the connection fitting hole 42 is sleeved on the inner bearing connecting member 52, with the movement of the adjustment connection plate 4, it will also drive the combined drive bar 5 to move. With the movement of the combined drive bar 5, it will drive the first forming sleeve 56 to move downward below the circular pressing plate 2, and then align it with the circular pressing plate 2 up and down. In this way, the pressing of the cylindrical block of metal powder can be carried out under the cooperation of the circular pressing plate 2 and the cylindrical forming cavity 57 on the first forming sleeve 56. When the first forming sleeve 56 moves, since the first forming sleeve 56 is connected to the second forming sleeve 6 through the conversion connecting rod 59, under the action of the conversion connecting rod 59, the second forming sleeve 6 will be driven to move, so that it is no longer directly below the rectangular pressing plate 3. In this way, there is no obstacle between the circular pressing plate 2 and the first forming sleeve 6, ensuring the smooth pressing of the cylindrical block of metal powder. In addition, since the inner bearing connecting member 52 is inserted into the connection fitting hole 42, when the adjustment connection plate 4 is fixed in the horizontal direction, the combined drive bar 5 is also fixed in the horizontal direction at the same time. In this way, when the adjustment connection plate 4 is locked in the horizontal direction, the first forming sleeve 56 and the second forming sleeve 6 are also locked, ensuring the stability of the first forming sleeve 56 and the second forming sleeve 56 during the pressing process. When the pressing of the rectangular block of metal powder is required again,Similarly, push the operating carrier plate 48 towards the bearing bar 44 again, so that the limit fitting groove 492 at the end of the limit bearing bar 49 close to the bearing bar 44 is separated from the limit fitting frame 24. Then, pull the bearing bar 44 in the opposite direction, so that the rectangular pressing plate 3 moves downward and is sleeved on the circular pressing plate 2, and at the same time, it will also drive the first forming sleeve 56 and the second forming sleeve 6 to move. The operation is simple, convenient and fast. The conversion of the metal powder pressing shape can be completed without disassembly and installation operations, which greatly facilitates the pressing work. At the same time, it also greatly facilitates the staff, reduces the operation difficulty of the staff, and improves the work efficiency.
[0042] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A raw material briquetting device for the production of antenna alloy material fittings, including a briquetting workbench, a briquetting work frame is fixedly arranged on the briquetting workbench, and a hydraulic rod is fixedly installed on the briquetting work frame, and it is characterized in that: On both sides of the lower end of the briquetting workbench, support channels are symmetrically opened, and cooperation moving holes are opened on the briquetting workbench above the support channels; A circular pressing assembly is fixedly arranged on the hydraulic rod, a cylindrical block bearing assembly is installed on the briquetting workbench, and the circular pressing assembly and the cylindrical block bearing assembly cooperate to realize the pressing of the metal powder cylindrical block; A rectangular pressing assembly conversion mechanism is installed on the circular pressing assembly, and the rectangular pressing assembly conversion mechanism and the circular pressing assembly cooperate to realize the change of the pressing shape; The cylindrical block bearing assembly is connected with a rectangular block bearing assembly, and the rectangular block bearing assembly is used for pressing the metal powder rectangular block; A support assembly is also fixedly arranged on the briquetting workbench, and the support assembly is used for supporting the rectangular block bearing assembly.
2. The raw material briquetting device for producing antenna alloy material fittings according to claim 1, characterized in that: The support assembly is a lateral bearing frame, and the lateral bearing frames are symmetrically and fixedly arranged on both sides of the briquetting workbench; The upper end of the lateral bearing frame is fixedly connected with the briquetting workbench, and a bearing cooperation block is fixedly arranged on the lateral bearing frame, and a bearing track plate is fixedly arranged between the bearing cooperation blocks on the lateral bearing frame.
3. The raw material briquetting device for producing antenna alloy material fittings according to claim 2, characterized in that: The circular pressing assembly is a circular pressing plate, and load-bearing support rods are symmetrically and fixedly arranged on the upper end surface of the circular pressing plate, and a connection mounting plate is fixedly arranged at the upper end of the load-bearing support rod; Activity cooperation through holes are symmetrically opened on the connection mounting plate, and limit cooperation frames are also symmetrically and fixedly arranged on the connection mounting plate.
4. The raw material briquetting device for producing antenna alloy material fittings according to claim 3, characterized in that: The rectangular pressing assembly conversion mechanism includes a rectangular pressing plate and a regulation connection plate, and a circular channel is opened on the rectangular pressing plate; Connection convex frames are symmetrically and fixedly arranged on the rectangular pressing plate, a guiding limit through hole is opened on the connection convex frame, a load-bearing support rod is inserted in the guiding limit through hole, and an adjusting activity rod is also hinged on the connection convex frame.
5. The raw material briquetting device for producing antenna alloy material fittings according to claim 4, characterized in that: The upper end of the adjusting activity rod is hinged with a regulation connection plate; An adjusting cooperation plate is fixedly arranged on the regulation connection plate, and an engagement cooperation hole is opened at one end of the adjusting cooperation plate away from the regulation connection plate; Support activity rods are also symmetrically and fixedly arranged on the regulation connection plate, the support activity rods are inserted in the activity cooperation through holes, and a load-bearing strip rod is fixedly arranged on the support activity rod.
6. The raw material briquetting device for producing antenna alloy material fittings according to claim 5, characterized in that: An installation channel is arranged on the load-bearing strip rod, installation rods are symmetrically opened in the installation channel, and connection springs are sleeved on the installation rods; An operation load plate is fixedly arranged on the installation rod, a limit load-bearing strip is fixedly arranged on the operation load plate, limit cooperation convex blocks are symmetrically and fixedly arranged at both ends of the limit load-bearing strip, and limit cooperation grooves are arranged on the limit cooperation convex blocks.
7. The raw material briquetting device for the production of antenna alloy material fittings according to claim 6, characterized in that: The cylindrical block bearing assembly is a combined drive strip, and a stable cooperation insertion rod is fixedly arranged at the upper end of the combined drive strip, and the stable cooperation insertion rod is inserted in the support insertion hole; An inner bearing connecting member is fixedly arranged inside the combined drive strip, the inner bearing connecting member is matched with the engagement cooperation hole, and channel bearing plates are symmetrically and fixedly arranged at the lower end of the combined drive strip, and the channel bearing plates are inserted in the support channels.
8. The raw material briquetting device for producing antenna alloy material fittings according to claim 7, characterized in that: The other end of the channel bearing plate is fixedly provided with a mating mounting plate, and a support and reinforcement load bar is fixedly provided on the mating mounting plate. The support and reinforcement load bar is inserted into the mating moving hole, and a first forming sleeve is fixedly provided on the support and reinforcement load bar.
9. The raw material briquetting device for producing antenna alloy material fittings according to claim 8, characterized in that: A cylindrical forming cavity is formed in the first forming sleeve, and a compression-resistant bottom platform is fixedly provided at the lower end of the first forming sleeve. A support rotating roller is installed on the compression-resistant bottom platform; A conversion and connection rod is hinged on the first forming sleeve, and the conversion and connection rod is connected to the rectangular block body bearing assembly.
10. The raw material briquetting device for producing antenna alloy material fittings according to claim 9, characterized in that: The rectangular block body bearing assembly is a second forming sleeve. A rectangular forming cavity is formed in the second forming sleeve, and support rail grooves are symmetrically formed in the second forming sleeve. The support rail grooves are matched with the bearing track plate; A downward extension mating plate is fixedly provided at the lower end of the second forming sleeve, and the downward extension mating plate is hinged to the conversion and connection rod.
Citation Information
Patent Citations
Blank forming press for powder metallurgy
CN110722155A
Powder pressing die and heater
CN218080399U
Powder compression molding equipment
CN218366663U
Powder metallurgy pressing device
CN218744848U
Press for shaping pellets in a restricted and hostile environment and method for assembling the press
WO2015181121A1