Raw material briquetting device for producing antenna alloy material accessories
By designing a pressure block device with hydraulic rods and a conversion mechanism, the problem of cumbersome mold replacement was solved, enabling rapid shape conversion and efficient pressing, thus improving the efficiency and quality of antenna alloy parts production.
Patent Information
- Application Number
- CN202510467838.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2045-04-15
AI Technical Summary
Existing briquetting devices for producing antenna alloy accessories are cumbersome to operate when changing molds, affecting briquetting efficiency and making it difficult to quickly change the molding shape according to needs.
A pressing block device was designed, which includes a hydraulic rod, a circular pressing component, and a rectangular pressing component conversion mechanism. The device converts the circular and rectangular pressing plates by pushing the support bar, and can press different shapes by cooperating with different forming sleeves, thus simplifying the mold changing process.
It enables rapid conversion between pressing different shapes, simplifies the operation process, improves work efficiency, reduces manpower consumption, and improves molding quality.
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Figure CN120243922B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of antenna production, in particular to a raw material briquetting device for antenna alloy material accessory production. BACKGROUND
[0002] An antenna is a device capable of effectively radiating electromagnetic waves in a certain direction in space or effectively receiving electromagnetic waves from a certain direction in space, and plays a vital role in a wireless communication system.
[0003] Alloy accessories on an antenna are usually made of materials such as copper and aluminum with good electrical conductivity. These materials usually need to undergo a series of processing techniques to be formed during the production of alloy accessories. The initial production raw material of the alloy accessory on the antenna is metal powder. During the production process, the metal powder needs to be processed in multiple steps. The briquetting of the metal powder is a very important step. The briquetting is to press the metal powder into a block, which is convenient for transportation and storage, and can improve the smelting efficiency and product quality. However, the existing briquetting device has certain inconvenience in use. When the metal powder is briquetted, it needs to be pressed into a cylindrical or rectangular shape according to actual needs to facilitate the smooth progress of the subsequent process. Therefore, different molds need to be replaced according to different shapes to meet the production needs. The existing briquetting device is relatively troublesome to operate when replacing the mold, which is not convenient. Not only time and effort are wasted, but also the working efficiency of briquetting is affected. SUMMARY
[0004] The purpose of the present application is to provide a raw material briquetting device for antenna alloy material accessory production to solve the problems raised in the background.
[0005] To achieve the above purpose, the present application provides the following technical scheme:
[0006] A raw material briquetting device for antenna alloy material accessory production, comprising a briquetting workbench, a briquetting workstand is fixedly arranged on the briquetting workbench, a hydraulic rod piece is fixedly installed on the briquetting workstand, support channels are symmetrically formed on the lower ends of the two sides of the briquetting workstand, and a matching moving hole is formed in the briquetting workstand on the upper side of the support channel.
[0007] A circular pressing assembly is fixedly arranged on the hydraulic rod piece, a cylindrical block bearing assembly is installed on the briquetting workbench, and the circular pressing assembly and the cylindrical block bearing assembly are matched to realize the pressing of the cylindrical metal powder block.
[0008] 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 are matched to realize the conversion of the pressing shape.
[0009] The cylindrical block bearing assembly is connected with a rectangular block bearing assembly, which is used for pressing of a metal powder rectangular block.
[0010] The support assembly is further fixed on the briquetting workbench and used for supporting the rectangular block bearing assembly.
[0011] Preferably, the support assembly is a lateral bearing frame, which is symmetrically fixed on both sides of the briquetting workbench.
[0012] The upper end of the lateral bearing frame is fixedly connected with the briquetting workbench, and a bearing matching block is fixedly arranged on the lateral bearing frame.
[0013] Preferably, the circular pressing assembly is a circular pressing plate, and a matching bearing rod is symmetrically fixed on the upper end face of the circular pressing plate.
[0014] An active matching through hole is symmetrically arranged on the connecting mounting plate, and a limiting matching frame is further symmetrically fixed on the connecting mounting plate.
[0015] Preferably, the rectangular pressing assembly conversion mechanism comprises a rectangular pressing plate and a regulating connecting plate, and a circular channel is arranged on the rectangular pressing plate.
[0016] A connecting convex frame is symmetrically fixed on the rectangular pressing plate, a guide limiting through hole is arranged on the connecting convex frame, a matching bearing rod is inserted into the guide limiting through hole, and an adjusting movable rod is further hinged on the connecting convex frame.
[0017] Preferably, the upper end of the adjusting movable rod is hinged with a regulating connecting plate.
[0018] An adjusting matching plate is fixed on the regulating connecting plate, and an engaging matching hole is arranged on the end of the adjusting matching plate away from the regulating connecting plate.
[0019] A supporting movable rod is further symmetrically fixed on the regulating connecting plate, the supporting movable rod is inserted into the active matching through hole, and a bearing strip rod is fixed on the supporting movable rod.
[0020] Preferably, an installation channel is arranged on the bearing strip rod, an installation rod member is symmetrically arranged in the installation channel, and a connecting spring is sleeved on the installation rod member.
[0021] An operation bearing plate is fixed on the installation rod member, a limiting bearing strip is fixed on the operation bearing plate, limiting matching protrusions are symmetrically fixed on both ends of the limiting bearing strip, and limiting matching grooves are arranged on the limiting matching protrusions.
[0022] Preferably, the cylindrical block bearing assembly is a joint driving batten, the upper end of which is fixedly provided with a stable matching plug rod, which is inserted into a supporting plug hole;
[0023] The inner part of the joint driving batten is fixedly provided with an inner bearing connecting rod, which is matched with a linking hole, and the lower end of the joint driving batten is symmetrically fixedly provided with a channel bearing plate, which is inserted into a supporting channel.
[0024] Preferably, the other end of the channel bearing plate is fixedly provided with a matching mounting plate, the supporting reinforcing load rod is fixedly arranged on the matching mounting plate and is inserted into a matching moving hole, and the first forming sleeve is fixedly arranged on the supporting reinforcing load rod.
[0025] Preferably, a cylindrical forming cavity is formed in the first forming sleeve, and a pressure-resistant bottom table is fixedly arranged at the lower end of the first forming sleeve, and a supporting rotating roller is arranged on the pressure-resistant bottom table.
[0026] The first forming sleeve is hingedly connected with a conversion linking rod, and the conversion linking rod is connected with a rectangular block bearing assembly.
[0027] Preferably, the rectangular block bearing assembly is a second forming sleeve, a rectangular forming cavity is formed in the second forming sleeve, and supporting rail grooves are symmetrically formed in the second forming sleeve, which are matched with bearing rail plates.
[0028] The lower end of the second forming sleeve is fixedly provided with a lower extension matching plate, which is hingedly connected with the conversion linking rod.
[0029] Compared with the prior art, the present application has the advantages of reasonable structure and strong functionality, and has the following advantages:
[0030] 1. When metal powder needs to be pressed into blocks of different shapes, only the bearing bar needs to be pushed to realize the conversion of the circular pressing plate and the rectangular pressing plate, and the joint driving batten will also be moved along with the movement of the bearing bar, so that the position adjustment of the first forming sleeve and the second forming sleeve can be realized, the circular pressing plate can be matched with the first forming sleeve, and the rectangular pressing plate can be matched with the second forming sleeve, different shapes can be pressed, and the operation is simple, convenient and fast, and does not need to be disassembled and assembled.
[0031] 2. When the rectangular block is pressed, the rectangular pressing plate is sleeved on the circular pressing plate at this time, the circular channel on the rectangular pressing plate is filled through the circular pressing plate, and then it is matched with the second forming sleeve to complete the pressing of the rectangular block. When the cylindrical block needs to be pressed, the two operation carriers are driven at the same time so that the limiting and matching groove is separated from the limiting and matching frame, the movement of the regulating and connecting plate is regulated and connected, and then the rectangular pressing plate is moved upward and separated from the circular pressing plate. In this way, the circular pressing plate can be exposed to facilitate the pressing work.
[0032] 3. The movement of the regulating and connecting plate also drives the joint driving plate to move, so that the first forming sleeve moves to the working point to facilitate the cooperation with the circular pressing plate to realize the pressing of the cylindrical block. At the same time, with the movement of the first forming sleeve, the second forming sleeve will also move away from the working point to avoid hindering the pressing work. The movement of the regulating and connecting plate can realize the transformation of the first forming sleeve and the second forming sleeve, which greatly facilitates the pressing work. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 The first perspective view of the block pressing workbench.
[0034] Figure 2 The second perspective view of the block pressing workbench.
[0035] Figure 3 The structure diagram of the block pressing workbench.
[0036] Figure 4 The assembly diagram of the circular pressing plate, the rectangular pressing plate and the regulating and connecting plate.
[0037] Figure 5 The structure diagram of the circular pressing plate.
[0038] Figure 6 The structure diagram of the rectangular pressing plate.
[0039] Figure 7 The explosion diagram of the regulating and connecting plate assembly.
[0040] Figure 8 The assembly diagram of the regulating and connecting plate and the joint driving plate.
[0041] Figure 9 The first perspective view of the joint driving plate and the second forming sleeve assembly.
[0042] Figure 10 The second perspective view of the joint driving plate and the second forming sleeve assembly.
[0043] In the figure: 1, briquetting workbench; 11, briquetting workbench; 12, support channel; 13, matching moving hole; 14, support plug-in hole; 15, hydraulic rod; 16, lateral bearing frame; 17, bearing matching block; 18, bearing rail plate; 2, circular pressing plate; 21, matching bearing rod; 22, connecting mounting plate; 23, movable matching through hole; 24, limiting matching frame; 3, rectangular pressing plate; 31, circular channel; 32, connecting convex frame; 33, guide limiting through hole; 34, adjusting movable rod; 4, control connection plate; 41, adjusting matching plate; 42, connection matching hole; 43, supporting movable rod; 44, bearing strip rod; 45, mounting channel; 46, mounting rod; 47, connecting spring; 48, operation bearing plate; 49, limiting bearing strip; 491, limiting matching convex block; 492, limiting matching groove; 5, joint drive plate; 51, stable matching plug-in rod; 52, inner bearing connecting rod; 53, channel bearing plate; 54, matching mounting plate; 55, supporting reinforced bearing rod; 56, first forming sleeve; 57, cylindrical forming cavity; 58, compression base; 581, supporting rotating roller; 59, conversion connecting rod; 6, second forming sleeve; 61, rectangular forming cavity; 62, supporting rail groove; 63, downward matching plate. DETAILED DESCRIPTION
[0044] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0045] The present application provides a technical solution:
[0046] As shown in Figure 1 and Figure 2 , a raw material briquetting device for producing an antenna alloy material accessory, comprising a briquetting workbench 1, a briquetting workbench 1 is fixedly provided with a briquetting workbench 11, a hydraulic rod 15 is fixedly installed on the briquetting workbench 11, support channels 12 are symmetrically opened at the lower ends of the briquetting workbench 11, matching moving holes 13 are opened on the upper side of the briquetting workbench 11, a circular pressing assembly is fixedly arranged on the hydraulic rod 15, a cylindrical block body bearing assembly is installed on the briquetting workbench 1, the circular pressing assembly and the cylindrical block body bearing assembly are matched to realize the pressing of the metal powder cylindrical block body, a rectangular pressing assembly conversion mechanism is installed on the circular pressing assembly, the rectangular pressing assembly conversion mechanism and the circular pressing assembly are matched to realize the shape change of the pressing, the cylindrical block body bearing assembly is connected with a rectangular block body bearing assembly, the rectangular block body bearing assembly is used for the pressing of the metal powder rectangular block body, and a supporting assembly is further fixedly arranged on the briquetting workbench 1, the supporting assembly is used for supporting the rectangular block body bearing assembly.
[0047] As shown in Figure 3 , the support assembly is a lateral carrier 16, which is symmetrically fixed on both sides of the briquetting workbench 1, the upper end of the lateral carrier 16 is fixedly connected with the briquetting workbench 11, and a bearing matching block 17 is fixedly arranged on the lateral carrier 16. The bearing track plate 18 is fixedly arranged between the bearing matching blocks 17 on the lateral carrier 16, and the rectangular block body bearing assembly is supported by the bearing track plate 18 to move on the bearing track plate 18.
[0048] As shown in Figure 5 , the circular pressing assembly is a circular pressing plate 2, and a matching bearing rod 21 is symmetrically fixed on the upper end face of the circular pressing plate 2. The upper end of the matching bearing rod 21 is fixedly provided with a connecting mounting plate 22, the connecting mounting plate 22 is symmetrically provided with a movable matching hole 23, and the connecting mounting plate 22 is also symmetrically fixedly provided with a limiting matching frame 24. The surface of the circular pressing plate 2 is smooth and free of burrs.
[0049] As shown in Figure 4 and Figure 6 , the rectangular pressing assembly conversion mechanism includes a rectangular pressing plate 3 and a regulating connecting plate 4. The rectangular pressing plate 3 is provided with a circular channel 31, and the connecting convex bracket 32 is symmetrically fixed on the rectangular pressing plate 3. The connecting convex bracket 32 is provided with a guide limiting hole 33, the guide limiting hole 33 is inserted with the matching bearing rod 21, and the connecting convex bracket 32 is also hingedly connected with an adjusting movable rod 34. When the metal powder rectangular block is pressed, the rectangular pressing plate 3 is sleeved on the circular pressing plate 2, and the circular channel 31 cooperates with the circular pressing plate 2 at this time.
[0050] As shown in Figure 4 , the upper end of the adjusting movable rod 34 is hingedly connected with the regulating connecting plate 4, the regulating connecting plate 4 is fixedly provided with an adjusting matching plate 41, the adjusting matching plate 41 is provided with a connecting matching hole 42 at the end away from the regulating connecting plate 4, and the regulating connecting plate 4 is also symmetrically fixedly provided with a supporting movable rod 43. The supporting movable rod 43 is inserted into the movable matching hole 23, and the supporting movable rod 43 is fixedly provided with a bearing strip rod 44.
[0051] As shown in Figure 4 and Figure 7 , the bearing strip rod 44 is provided with a mounting channel 45, the mounting channel 45 is symmetrically provided with a mounting rod 46, the mounting rod 46 is sleeved with a connecting spring 47, and the mounting rod 46 is fixedly provided with an operating load plate 48. In addition, the two ends of the connecting spring 47 are fixedly connected with the bearing strip rod 44 and the operating load plate 48, respectively.
[0052] As shown in Figure 4 and Figure 7As shown, the operating carrier plate 48 is fixedly provided with a limiting bearing strip 49, and the limiting bearing strip 49 is symmetrically fixedly provided with a limiting matching protrusion 491, and the limiting matching protrusion 491 is provided with a limiting matching groove 492, and when the limiting bearing strip 49 regulates and connects the connecting plate 4, the limiting matching frame 24 is inserted into the limiting matching groove 492.
[0053] As shown in Figure 1 , Figure 8 , Figure 9 and Figure 10 , the cylindrical block bearing assembly is a joint driving plate strip 5, and the upper end of the joint driving plate strip 5 is fixedly provided with a stable matching plug rod 51, and the stable matching plug rod 51 is inserted into the support plug-in hole 14, and the inside of the joint driving plate strip 5 is fixedly provided with an inner bearing connecting rod 52, and the inner bearing connecting rod 52 is matched with the connecting matching hole 42, and the regulating and connecting plate 4 can move up and down along the inner bearing connecting rod 52, and the lower end of the joint driving plate strip 5 is symmetrically fixedly provided with a channel bearing plate 53, and the channel bearing plate 53 is inserted into the support channel 12, and the inner wall of the support channel 12 is smooth without burrs, and the channel bearing plate 53 can move along the support channel 12.
[0054] As shown in Figure 2 and Figure 9 , the other end of the channel bearing plate 53 is fixedly provided with a matching installation plate 54, and the matching installation plate 54 is fixedly provided with a support reinforcing carrier 55, and the support reinforcing carrier 55 is inserted into the matching moving hole 13, and the support reinforcing carrier 55 is fixedly provided with a first forming sleeve 56.
[0055] As shown in Figure 9 and Figure 10 , the first forming sleeve 56 is provided with a cylindrical forming cavity 57, and the lower end of the first forming sleeve 56 is fixedly provided with a pressure-resistant bottom table 58, and the pressure-resistant bottom table 58 is installed with a support rotating roller 581, in addition, the first forming sleeve 56 is hingedly connected with a conversion connecting rod 59, and the conversion connecting rod 59 is connected with the rectangular block bearing assembly, and the rectangular block bearing assembly is moved by the first forming sleeve 56.
[0056] As shown in Figure 1 and Figure 9 , the rectangular block bearing assembly is a second forming sleeve 6, and the second forming sleeve 6 is provided with a rectangular forming cavity 61, and the second forming sleeve 6 is also symmetrically provided with a support rail groove 62, and the support rail groove 62 is matched with the bearing rail plate 18, and the lower end of the second forming sleeve 6 is fixedly provided with a lower extension matching plate 63, and the lower extension matching plate 63 is hingedly connected with the conversion connecting rod 59.
[0057] When the metal powder rectangular block is pressed, the rectangular pressing plate 3 at this time is sleeved on the circular pressing plate 2, the circular channel 31 is filled by the circular pressing plate 2, and the second forming sleeve 6 at this time is directly below the rectangular pressing plate 3, so that the metal powder rectangular block can be pressed by 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 into the rectangular forming cavity 61, and the cooperation of the rectangular pressing plate 3 and the rectangular forming cavity 61 can press the metal powder rectangular block. When the metal powder cylindrical block needs to be pressed, the two operation carriers 48 are pushed towards the bearing strip rod 44 at the same time, so that the limiting cooperation groove 492 on the limiting bearing strip 49 away from the one end of the bearing strip rod 44 is separated from the limiting cooperation frame 24, so that the regulating connecting plate 4 is in active rotation, and then the bearing strip rod 44 is pushed towards the connecting mounting plate 22, and the rectangular pressing plate 3 is driven to move upwards under the action of the adjusting movable rod 34 and is separated from the circular pressing plate 2, so that the circular pressing plate 2 is exposed, and the limiting cooperation groove 492 on the limiting bearing strip 49 close to the one end of the bearing strip rod 44 is aligned with the limiting cooperation frame 24. At this time, the operation carrier 48 is released and is reversely moved under the action of the connecting spring 47, so that the limiting cooperation frame 24 is inserted into the limiting cooperation groove 492 on the limiting bearing strip 49 close to the one end of the bearing strip rod 44, the regulating connecting plate 4 is fixed again, the rectangular pressing plate 3 is fixed, and the first forming sleeve 56 is moved downwards under the action of the adjusting movable rod 34 and is aligned with the circular pressing plate 2, so that the metal powder cylindrical block can be pressed 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, the second forming sleeve 6 is moved under the action of the conversion connecting rod 59, so that the second forming sleeve 6 is no longer directly below the rectangular pressing plate 3, so that there is no obstacle between the circular pressing plate 2 and the first forming sleeve 56, and the metal powder cylindrical block is smoothly pressed. In addition, when the regulating connecting plate 4 is fixed in the horizontal direction, the joint driving plate strip 5 is also fixed in the horizontal direction, so that the first forming sleeve 56 and the second forming sleeve 6 are locked when the regulating connecting plate 4 is locked in the horizontal direction, and the stability of the first forming sleeve 56 and the second forming sleeve 6 in the pressing process is ensured. When the metal powder rectangular block needs to be pressed again,Similarly, pushing the operation plate 48 again in the direction of the bearing strip 44 makes the limiting fitting groove 492 on the limiting bearing strip 49 close to one end of the bearing strip 44 separate from the limiting fitting frame 24, then pulling the bearing strip 44 in the opposite direction makes the rectangular pressing plate 3 move downward to be sleeved on the circular pressing plate 2, and at the same time, the first forming sleeve 56 and the second forming sleeve 6 are also moved, which is simple, convenient and fast, the conversion of the shape of the metal powder pressing can be completed without disassembly and assembly, greatly facilitates the pressing work, and at the same time, greatly facilitates the workers, reduces the operation difficulty of the workers, and improves the work efficiency.
[0058] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A raw material briquetting device for producing antenna alloy material accessories, comprising a briquetting worktable, a briquetting frame fixedly disposed on the briquetting worktable, and a hydraulic rod fixedly mounted on the briquetting frame, characterized in that: The lower end of the briquetting workbench is symmetrically provided with support channels, and the upper end of the support channels is provided with matching moving holes. The hydraulic rod is fixedly provided with a circular pressing assembly, the pressing table is provided with a cylindrical block bearing assembly, the circular pressing assembly and the cylindrical block bearing assembly are matched to press the cylindrical metal powder block, the circular pressing assembly is a circular pressing plate, the upper end surface of the circular pressing plate is symmetrically fixedly provided with a matching bearing rod, and the upper end of the matching bearing rod is fixedly provided with a connecting mounting plate. The circular pressing assembly is provided with a rectangular pressing assembly conversion mechanism, the rectangular pressing assembly conversion mechanism is matched with the circular pressing assembly to change the pressing shape, the rectangular pressing assembly conversion mechanism comprises a rectangular pressing plate and a control connecting plate, the rectangular pressing plate is provided with a circular channel, the control connecting plate is symmetrically fixedly provided with a support movable rod, and the support movable rod is fixedly provided with a bearing strip. The control connecting plate is fixedly provided with an adjusting matching plate, and the adjusting matching plate is provided with a connecting matching hole at the end away from the control connecting plate. The bearing strip is provided with a mounting channel, the mounting channel is symmetrically provided with a mounting rod, and the mounting rod is sleeved with a connecting spring. The mounting rod is fixedly provided with an operation bearing plate, the operation bearing plate is fixedly provided with a limiting bearing strip, the limiting bearing strip is symmetrically fixedly provided with a limiting matching protrusion at both ends, and the limiting matching protrusion is provided with a limiting matching groove. The cylindrical block bearing assembly is a joint driving plate strip, the upper end of the joint driving plate strip is fixedly provided with a stable matching plug rod, and the stable matching plug rod is inserted into the support plug hole. The joint driving plate strip is fixedly provided with an inner bearing connecting rod inside, the inner bearing connecting rod is matched with the connecting matching hole, and the lower end of the joint driving plate strip is symmetrically fixedly provided with a channel bearing plate, and the channel bearing plate is inserted into the support channel. The other end of the channel bearing plate is fixedly provided with a matching mounting plate, the matching mounting plate is fixedly provided with a support reinforcing bearing rod, and the support reinforcing bearing rod is fixedly provided with a first forming sleeve. The first forming sleeve is provided with a cylindrical forming cavity, and the lower end of the first forming sleeve is fixedly provided with a pressure-resistant bottom table. The cylindrical block bearing assembly is connected with a rectangular block bearing assembly, the rectangular block bearing assembly is used for pressing the rectangular metal powder block, and the pressing table is also fixedly provided with a support assembly, and the support assembly is used for supporting the rectangular block bearing assembly. The support assembly is a lateral bearing frame, and the lateral bearing frame is symmetrically fixedly arranged at both sides of the pressing table. The upper end of the lateral bearing frame is fixedly connected with the pressing workbench, the lateral bearing frame is fixedly provided with a bearing matching block, and the bearing matching blocks on the lateral bearing frame are fixedly provided with a bearing track plate. The rectangular block bearing assembly is a second forming sleeve, the second forming sleeve is provided with a rectangular forming cavity, and the second forming sleeve is also symmetrically provided with a support rail groove, and the support rail groove is matched with the bearing track plate.
2. The raw material briquetting device for producing an antenna alloy material fitting according to claim 1, characterized in that: The connecting mounting plate is symmetrically provided with a movable matching through hole, and the connecting mounting plate is also symmetrically fixedly provided with a limiting matching frame.
3. The raw material briquetting device for producing an antenna alloy material fitting according to claim 2, characterized in that: Symmetrically fixed on the rectangular pressing plate is a connecting lug, a guide limiting through hole is formed in the connecting lug, a matched supporting rod is inserted into the guide limiting through hole, and an adjusting movable rod is hingedly connected to the connecting lug.
4. The raw material briquetting device for producing an antenna alloy material fitting according to claim 3, characterized in that: An upper end of the adjusting movable rod is hingedly connected with a control connecting plate. The supporting movable rod is inserted into the movable matching through hole.
5. The raw material briquetting device for producing an antenna alloy material fitting according to claim 4, characterized in that: The supporting reinforcing load rod is inserted into the matching moving hole.
6. The raw material briquetting device for producing an antenna alloy material fitting according to claim 5, characterized in that: A supporting rotating roller is mounted on the compression-resistant base. A conversion connecting rod is hingedly connected to the first forming sleeve, and the conversion connecting rod is connected with the rectangular block bearing assembly.
7. The kind of raw material briquetting device for producing an antenna alloy material fitting according to claim 6, characterized in that: A lower extension matching plate is fixedly arranged at a lower end of the second forming sleeve, and the lower extension matching plate is hingedly connected with the conversion connecting rod.
Citation Information
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