Wire drawing mechanism for aluminum material processing
The design of the pneumatic wheel and relay box solves the problem of dimensional change of the aluminum plate due to thermal expansion during wire drawing, achieves the cleaning and lubrication effect of the aluminum plate surface, and improves the processing quality.
Patent Information
- Application Number
- CN202510734363.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-10-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the wire drawing process, the aluminum plate undergoes dimensional changes due to thermal expansion, which affects the processing accuracy and quality.
A wire drawing mechanism with a pneumatic wheel and a relay box is used. The pneumatic wheel absorbs and discharges airflow to adjust the temperature of the aluminum plate, and the surface of the aluminum plate is cleaned by spraying organic solvents and lubricating oil and brushing to prevent heat accumulation and debris interference.
It effectively prevents local heat accumulation on the aluminum plate from damaging the surface structure, improves processing quality, has a significant cleaning effect, evenly distributes lubricating oil, and improves wire drawing processing quality.
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Figure CN120734837A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of aluminum material processing, in particular to an aluminum material processing wire drawing mechanism. Background Art
[0002] Wire drawing is an important metalworking process that applies pressure to metal materials through tools such as drawing wheels to reduce the cross-sectional area of metal wires or plates, thereby changing their dimensions. This process can improve the strength and surface quality of the material and is widely used in many industries such as construction and electronics.
[0003] The patent cited in China with publication number "CN212168541U" discloses an aluminum processing wire drawing mechanism, including a base, a hollow cavity is opened in the middle position inside the base, a tool drawer is placed inside the hollow cavity, two limit frames are symmetrically installed on the side walls near the outer end of the tool drawer, and several accommodating cavities are opened near the inner end of the tool drawer. Limit blocks are placed horizontally inside the two limit frames, and the two limit blocks are rotatably connected to the base through a rotating shaft.
[0004] When aluminum plates are subjected to metal wire drawing, a rotating wire drawing wheel is used for processing, which easily generates heat. The thermal expansion coefficient of aluminum plates is relatively large, and thermal expansion is easily generated at high temperatures, causing the size of the aluminum plates to change, which may affect the matching accuracy with other components and affect the final processing quality. Summary of the Invention
[0005] In view of the deficiencies in the prior art, the present invention provides an aluminum material processing wire drawing mechanism to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: an aluminum processing wire drawing mechanism, comprising a processing table, a telescopic lifting rod fixedly connected to the top of the processing table, a movable guide rod fixedly connected to the top of the telescopic lifting rod, a wire drawing mechanism movably connected to the outer wall of the movable guide rod, an anti-wear mechanism fixedly connected to the outer wall of the wire drawing mechanism, a movable groove provided on the top of the processing table at the front face of the telescopic lifting rod, a fixed clamp movably connected inside the movable groove, and a movable roller movably connected to the corresponding position of the movable groove on the top of the processing table;
[0007] The wire drawing mechanism includes:
[0008] A movable slider, wherein the movable slider is movably connected to the outer wall of the movable guide rod;
[0009] A driving motor, wherein the driving motor is fixedly connected to the top of the moving slider;
[0010] The wire drawing wheel is movably connected to the bottom of the movable slider.
[0011] Preferably, a pulley is fixedly connected to the back of the drawing wheel, and the pulley is movably connected to the driving motor through the pulley. The driving motor can drive the drawing wheel to rotate through the pulley, and the bottom of the movable slider is located at the top of the drawing wheel and is fixedly connected to a baffle.
[0012] Preferably, the outer walls of the movable slider are respectively fixedly connected to fixed frames on the left and right sides of the drawing wheel, the fixed frame located on the right side of the drawing wheel is movably connected to the first pneumatic wheel, the first pneumatic wheel is fixedly connected to the first spiral plate, the fixed frame located on the left side of the drawing wheel is movably connected to the second pneumatic wheel, the second pneumatic wheel is movably connected to the second spiral plate, and the outer walls of the first and second pneumatic wheels are movably connected to the limit rod through a conveyor belt.
[0013] Preferably, the back of the movable slider is fixedly connected to a relay box, and the second pneumatic wheel and the second pneumatic wheel are movably connected to the relay box through a sealed bearing, and the movable slider is fixedly connected to isolation channels at corresponding positions of the first pneumatic wheel and the second pneumatic wheel respectively, and the two isolation channels are movably connected to movable filter plates, and filter holes are provided on the movable filter plates, and the isolation channels are fixedly connected to limit strips at corresponding positions on the front of the movable filter plates, and the front of the movable filter plates is movably connected to two movable plates, and the two movable plates can close all the filter holes on the movable filter plates, and the front of the movable filter plates is fixedly connected to limit rods at corresponding positions on the movable plate, and the limit rods can limit the opening angles of the two corresponding movable plates.
[0014] Preferably, the anti-wear mechanism includes a rotating fixed tube, which is movably connected to the front of the movable slider, a rotating outflow head is fixedly connected to the bottom of the rotating fixed tube, a first mating slider is fixedly connected to the right side of the movable slider, a solvent tank is provided on the outside of the movable slider, and the solvent tank is fixedly connected to the first metering pump through a pipeline, and the first metering pump is movably connected to the rotating fixed tube through a pipeline.
[0015] Preferably, the front of the movable slider is fixedly connected to a gear motor, and the gear motor is provided with gears, the outer wall of the rotating fixed tube is provided with external teeth corresponding to the gear motor, and the pipeline on the first metering pump connected to the rotating fixed tube is rotatably connected to the rotating fixed tube through a sealing shaft.
[0016] Preferably, a brush is fixedly connected to the bottom of the rotating outflow head, and a blade inclined plate is fixedly connected to the top of the rotating outflow head.
[0017] Preferably, a second mating slider is fixedly connected to the left side of the movable slider, a second metering pump is fixedly connected to the bottom of the second mating slider, a second metering pump is fixedly connected to the outer wall of the second mating slider, a lubricating liquid tank is provided on the outside of the movable slider, and the lubricating liquid tank is fixedly connected to the second metering pump through a pipeline, and the second metering pump is fixedly connected to the lubrication outflow head through a pipeline.
[0018] The present invention provides an aluminum material processing wire drawing mechanism, which has the following beneficial effects:
[0019] 1. The aluminum processing wire drawing mechanism drives the drawing wheel to rotate through the driving motor, and simultaneously drives the first pneumatic wheel and the second pneumatic wheel to rotate. One of them will inhale the gas passing through the processed area, and let the flowing airflow absorb the heat generated by the processing, so as to discharge the heat-absorbing gas into the processing area to preheat the aluminum plate. This can prevent the local heat accumulation of the aluminum plate from damaging the surface structure of the aluminum plate during the wire drawing process, thereby affecting the final processing quality.
[0020] 2. The aluminum processing wire drawing mechanism is driven to rotate by the rotation of the first pneumatic wheel and the second pneumatic wheel, which will suck the debris generated in the wire drawing process into the relay box, and will keep the debris inside the relay box under the barrier of the movable filter plate, so as to prevent the debris from floating outside and participating in the wire drawing process, which can help improve the quality of the wire drawing process.
[0021] 3. The aluminum processing wire drawing mechanism sprays the organic solvent onto the aluminum plate, and at the same time the brush brushes the surface of the filter plate, so that the organic solvent can better dissolve the residual grease on the surface of the metal plate, and the blade inclined plate on the rotating outflow head is rotated to generate airflow to accelerate the evaporation of the organic solvent, to remove the grease on the aluminum plate, to make the lubricating oil play a better role and improve the processing quality.
[0022] 4. The aluminum processing wire drawing mechanism will disperse the hot air flow on the surface of the aluminum plate when the first or second pneumatic wheel discharges the hot air flow at the same time, allowing the hot air flow to act on the area where the brush is brushing, accelerating the evaporation of the organic solvent to evaporate the grease and further improve the cleaning effect of the grease on the aluminum plate, which can indirectly improve the processing quality.
[0023] 5. The aluminum processing wire drawing mechanism can make the lubricating oil more evenly distributed on the surface of the aluminum plate by blowing the gas discharged from the lubricating outflow head first, and then let the wire drawing wheel perform wire drawing to further improve the working effect of the lubricating oil and improve the processing quality of wire drawing. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1This is a schematic diagram of the main three-dimensional structure of the present invention;
[0025] Figure 2 for Figure 1 A schematic diagram of the enlarged structure of the middle part A;
[0026] Figure 3 This is a left-side perspective structural diagram of the present invention;
[0027] Figure 4 This is a schematic diagram of the three-dimensional structure of the present invention from the right side;
[0028] Figure 5 This is a schematic structural diagram of the wire drawing wheel of the present invention;
[0029] Figure 6 for Figure 5 A schematic diagram of the enlarged structure of the middle B part;
[0030] Figure 7 This is a schematic cross-sectional structural diagram of the relay box of the present invention;
[0031] Figure 8 This is a schematic diagram of the isolation channel structure of the present invention;
[0032] Figure 9 This is a schematic diagram of the movable plate structure of the present invention;
[0033] Figure 10 for Figure 5 Schematic diagram of the enlarged structure of part C in the middle.
[0034] In the figure: 1, processing table; 2, telescopic lifting rod; 3, movable guide rod; 4, wire drawing mechanism; 401, movable slider; 402, driving motor; 403, wire drawing wheel; 404, baffle; 405, fixing frame; 406, first pneumatic wheel; 407, second pneumatic wheel; 408, first spiral plate; 409, second spiral plate; 410, relay box; 411, isolation channel; 412, movable filter plate; 413, limit strip; 414, movable plate; 415. Limit rod; 416. Pulley; 5. Anti-wear mechanism; 501. Rotating fixed tube; 502. Rotating outflow head; 503. Brush; 504. Blade inclined plate; 505. First metering pump; 506. First matching slider; 507. Solvent tank; 508. Second matching slider; 509. Lubricating outflow head; 510. Second metering pump; 511. Lubricating liquid tank; 512. Gear motor; 6. Moving groove; 7. Fixing clamp; 8. Moving roller. DETAILED DESCRIPTION
[0035] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0036] Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but are not to be construed as limiting the present invention.
[0037] Example 1: Please refer to Figure 1-9 The present invention provides a technical solution: an aluminum material processing wire drawing mechanism, comprising a processing table 1, a telescopic lifting rod 2 is fixedly connected to the top of the processing table 1, a movable guide rod 3 is fixedly connected to the top of the telescopic lifting rod 2, a wire drawing mechanism 4 is movably connected to the outer wall of the movable guide rod 3, an anti-wear mechanism 5 is fixedly connected to the outer wall of the wire drawing mechanism 4, a movable groove 6 is provided on the top of the processing table 1 at the front of the telescopic lifting rod 2, a fixed clamp 7 is movably connected inside the movable groove 6, and a movable roller 8 is movably connected to the corresponding position of the movable groove 6 on the top of the processing table 1;
[0038] The wire drawing mechanism 4 includes:
[0039] The movable slider 401 is movably connected to the outer wall of the movable guide rod 3;
[0040] A driving motor 402 is fixedly connected to the top of the moving slider 401;
[0041] The wire drawing wheel 403 is movably connected to the bottom of the movable slider 401.
[0042] Place the aluminum plate on top of the processing table 1 and let the two fixing clamps 7 hold the aluminum plate. At this time, pushing the aluminum plate forward can allow the aluminum rod to be transported forward on the top of the moving roller 8 to gradually complete the processing of the aluminum plate.
[0043] A pulley 416 is fixedly connected to the back of the drawing wheel 403, and the pulley 416 is movably connected to the drive motor 402 through the pulley. The drive motor 402 can drive the drawing wheel 403 to rotate through the pulley. The bottom of the movable slider 401 is located at the top of the drawing wheel 403 and is fixedly connected to a baffle 404. The baffle 404 will prevent the debris generated by processing from splashing everywhere.
[0044] The telescopic lifting rod 2 contracts to move the movable guide rod 3 downward, and the driving motor 402 rotates the pulley 416 through the conveyor belt, and the pulley 416 rotates the drawing wheel 403. At the same time, the moving slider 401 moves back and forth on the movable guide rod 3 once to perform wire drawing on the aluminum plate.
[0045] The outer walls of the movable slider 401 are respectively fixedly connected to the fixed frames 405 on the left and right sides of the drawing wheel 403. The fixed frame 405 located on the right side of the drawing wheel 403 is movably connected to the first pneumatic wheel 406, and the first pneumatic wheel 406 is fixedly connected to the first spiral plate 408. The fixed frame 405 located on the left side of the drawing wheel 403 is movably connected to the second pneumatic wheel 407, and the second pneumatic wheel 407 is movably connected to the second spiral plate 409. The outer walls of the first pneumatic wheel 406 and the second pneumatic wheel 407 are movably connected to the limit rod 415 through a conveyor belt.
[0046] When the movable slider 401 moves to the left, the drawing wheel 403 will be driven to rotate counterclockwise. When the driving motor 402 drives the pulley 416 to rotate through the conveyor belt, the pulley 416 will drive the first pneumatic wheel 406 and the second pneumatic wheel 407 to rotate through the conveyor belt. When the first pneumatic wheel 406 is driven to rotate, the internal first spiral plate 408 will be driven to rotate together, causing the first pneumatic wheel 406 to suck the external gas into the first pneumatic wheel 406. When the second pneumatic wheel 407 is passively driven to rotate, the internal second spiral plate 409 will also be driven to rotate, causing the external side of the second pneumatic wheel 407 to continuously discharge gas.
[0047] When the movable slider 401 moves to the right, the drawing wheel 403 will be driven to rotate clockwise. When the driving motor 402 drives the pulley 416 to rotate through the conveyor belt, the pulley 416 will drive the first pneumatic wheel 406 and the second pneumatic wheel 407 to rotate through the conveyor belt. When the first pneumatic wheel 406 is driven to rotate, the internal first spiral plate 408 will be driven to rotate together, causing the first pneumatic wheel 406 to discharge the outside gas to the outside. When the second pneumatic wheel 407 is passively driven to rotate, the internal second spiral plate 409 will also be driven to rotate, causing the second pneumatic wheel 407 to suck the outside gas into the second pneumatic wheel 407.
[0048] The back of the movable slider 401 is fixedly connected to a relay box 410, and the second pneumatic wheel 407 and the second pneumatic wheel 407 are movably connected to the relay box 410 through sealed bearings. The movable slider 401 is fixedly connected to the corresponding positions of the first pneumatic wheel 406 and the second pneumatic wheel 407. The two isolation channels 411 are movably connected to a movable filter plate 412. The movable filter plate 412 is provided with filter holes. The isolation channel 411 is fixedly connected to a limiting strip 413 at a corresponding position on the front of the movable filter plate 412. The front of the movable filter plate 412 is movably connected to two movable plates 414. The two movable plates 414 can close all the filter holes on the movable filter plate 412. The front of the movable filter plate 412 is fixedly connected to a limiting rod 415 at a corresponding position on the movable plate 414. The limiting rod 415 can limit the opening angle of the two corresponding movable plates 414.
[0049] When the slider 401 moves to the left, the gas sucked in by the first pneumatic wheel 406 will suck the debris generated by the wire drawing process into the relay box 410. At the same time, the sucked gas will pass through the processed area, allowing the flowing airflow to absorb the heat generated by the processing, and the hot gas will be sent into the relay box 410. When the gas is sent in, the gas will push the corresponding movable plate 414, and the movable filter plate 412 will be opened through the movable plate 414, so that the hot airflow and the mixed debris will be sent into the relay box 410. 10, the rotation of the second pneumatic wheel 407 will discharge the gas inside the relay box 410 to the outside, and the corresponding movable filter plate 412 will be restricted by the limit bar 413, and the corresponding two movable plates 414 will be opened, so that the air flow can be discharged from the filter holes on the movable filter plate 412, and the inhaled debris will be isolated inside the relay box 410, and the heated gas discharged from the relay box 410 will be blown to the surface of the aluminum plate to be processed, so as to preheat the unprocessed aluminum plate, which can prevent the surface structure of the aluminum plate from being damaged by the heat accumulated during processing.
[0050] When the slider 401 moves to the right, the second pneumatic wheel 407 absorbs the heat and debris after processing, and allows the debris to remain inside the relay box 410, allowing the first pneumatic wheel 406 to discharge the heated air to the surface of the aluminum plate to be processed.
[0051] Example 2: Please refer to Figure 1-10 Based on the first embodiment, the present invention provides a technical solution:
[0052] The anti-wear mechanism 5 includes a rotating fixed tube 501, which is movably connected to the front of the movable slider 401. A rotating outflow head 502 is fixedly connected to the bottom of the rotating fixed tube 501. A first mating slider 506 is fixedly connected to the right side of the movable slider 401. A solvent tank 507 is provided on the outside of the movable slider 401, and the solvent tank 507 is fixedly connected to the first metering pump 505 through a pipeline, and the first metering pump 505 is movably connected to the rotating fixed tube 501 through a pipeline.
[0053] The first metering pump 505 delivers the organic solvent inside the solvent box 507 to the rotating fixed tube 501 through a pipeline, and discharges it from the rotating outflow head 502 to the aluminum plate, so that the organic solvent dissolves the residual grease on the aluminum plate, and prevents the grease from mixing into the lubricating oil, causing changes in key performance indicators such as the viscosity of the lubricating oil, thereby reducing the performance of the lubricating oil and affecting the wire drawing mechanism. When the movable slider 401 moves to the right, the baffle 404 stops delivering the organic solvent to the rotating fixed tube 501.
[0054] A gear motor 512 is fixedly connected to the front of the movable slider 401, and the gear motor 512 is provided with gears. The outer wall of the rotating fixed tube 501 is provided with external teeth corresponding to the gear motor 512, and the pipeline on the first metering pump 505 connected to the rotating fixed tube 501 is rotatably connected to the rotating fixed tube 501 through a sealing shaft.
[0055] The gear motor 512 rotates the rotating fixed tube 501 through the gears. When the rotating fixed tube 501 rotates, the rotating outflow head 502 will rotate together. The rotating outflow head 502 will allow the brush 503 at the bottom to brush the surface of the filter plate, allowing the organic solvent to better dissolve the residual grease on the surface of the metal plate. At the same time, when the first pneumatic wheel 406 or the second pneumatic wheel 407 discharges hot air, it will spread on the surface of the aluminum plate, allowing the hot air to act on the area brushed by the brush 503. The heat will accelerate the reaction speed, accelerate the fusion and evaporation of the organic solvent and grease, evaporate the grease and take it away, and further improve the cleaning effect of the grease on the aluminum plate.
[0056] A brush 503 is fixedly connected to the bottom of the rotating outflow head 502 , and a blade inclined plate 504 is fixedly connected to the top of the rotating outflow head 502 .
[0057] At the same time, the blade inclined plate 504 on the rotating outflow head 502 is driven to rotate to generate airflow to accelerate the evaporation of the organic solvent.
[0058] A second mating slider 508 is fixedly connected to the left side of the movable slider 401, a second metering pump 510 is fixedly connected to the bottom of the second mating slider 508, and the second metering pump 510 is fixedly connected to the outer wall of the second mating slider 508. A lubricating liquid tank 511 is provided on the outside of the movable slider 401, and the lubricating liquid tank 511 is fixedly connected to the second metering pump 510 through a pipeline, and the second metering pump 510 is fixedly connected to the lubrication outflow head 509 through a pipeline.
[0059] The second metering pump 510 delivers the lubricant in the lubricating liquid tank 511 into the lubricating outlet head 509 through a pipeline and discharges it onto the aluminum plate. Since the organic solvent discharged by the rotating outlet head 502 first removes the residual grease on the metal aluminum plate, the working effect of the lubricating oil can be more fully exerted, and when the movable slider 401 moves to the right, the second metering pump 510 stops delivering lubricating oil to the lubricating outlet head 509. When the lubricating oil is discharged from the lubricating outlet head 509, it will first be blown by the gas discharged by the second pneumatic wheel 407, which can make the lubricating oil more evenly distributed on the surface of the aluminum plate, and then the drawing wheel 403 will perform wire drawing processing, which can further improve the working effect of the lubricating oil.
[0060] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. An aluminum material processing wire drawing mechanism, comprising a processing table (1), characterized in that: The top of the processing table (1) is fixedly connected to a telescopic lifting rod (2), the top of the telescopic lifting rod (2) is fixedly connected to a movable guide rod (3), the outer wall of the movable guide rod (3) is movably connected to a wire drawing mechanism (4), the outer wall of the wire drawing mechanism (4) is fixedly connected to an anti-wear mechanism (5), the top of the processing table (1) is provided with a movable groove (6) located on the front of the telescopic lifting rod (2), the interior of the movable groove (6) is movably connected to a fixed clamp (7), and the top of the processing table (1) is movably connected to a movable roller (8) at a corresponding position of the movable groove (6); The wire drawing mechanism (4) comprises: A movable slider (401), wherein the movable slider (401) is movably connected to the outer wall of the movable guide rod (3); A driving motor (402), wherein the driving motor (402) is fixedly connected to the top of the moving slider (401); A wire drawing wheel (403) is movably connected to the bottom of the movable slider (401).
2. The aluminum material processing wire drawing mechanism according to claim 1, characterized in that: The back of the drawing wheel (403) is fixedly connected to a pulley (416), and the pulley (416) is movably connected to the driving motor (402) via the pulley. The driving motor (402) can drive the drawing wheel (403) to rotate via the pulley. The bottom of the movable slider (401) is located at the top of the drawing wheel (403) and is fixedly connected to a baffle (404).
3. The aluminum material processing wire drawing mechanism according to claim 2, characterized in that: The outer walls of the movable slider (401) are respectively fixedly connected to fixed frames (405) on the left and right sides of the drawing wheel (403); the fixed frame (405) located on the right side of the drawing wheel (403) is movably connected to a first pneumatic wheel (406); the first pneumatic wheel (406) is fixedly connected to a first spiral plate (408); the fixed frame (405) located on the left side of the drawing wheel (403) is movably connected to a second pneumatic wheel (407); the second pneumatic wheel (407) is movably connected to a second spiral plate (409); the outer walls of the first pneumatic wheel (406) and the second pneumatic wheel (407) are both movably connected to a limiting rod (415) via a conveyor belt.
4. The aluminum material processing wire drawing mechanism according to claim 3, characterized in that: The back of the movable slider (401) is fixedly connected to a relay box (410), and the second pneumatic wheel (407) and the second pneumatic wheel (407) are both movably connected to the relay box (410) via a sealed bearing. Isolation channels (411) are fixedly connected to the corresponding positions of the first pneumatic wheel (406) and the second pneumatic wheel (407) inside the movable slider (401), and movable filter plates (412) are movably connected inside the two isolation channels (411). Filter holes are provided on the movable filter plates (412). A limiting strip (413) is fixedly connected to a position corresponding to the front face of the movable filter plate (412) inside the isolation channel (411). Two movable plates (414) are movably connected to the front face of the movable filter plate (412). The two movable plates (414) can close all the filter holes on the movable filter plate (412). A limiting rod (415) is fixedly connected to a position corresponding to the front face of the movable filter plate (412). The limiting rod (415) can limit the opening angle of the two corresponding movable plates (414).
5. The aluminum material processing wire drawing mechanism according to claim 1, characterized in that: The anti-wear mechanism (5) comprises a rotating fixed tube (501), the rotating fixed tube (501) is movably connected to the front of the movable slider (401), a rotating outflow head (502) is fixedly connected to the bottom of the rotating fixed tube (501), a first matching slider (506) is fixedly connected to the right side of the movable slider (401), a solvent box (507) is provided on the outside of the movable slider (401), and the solvent box (507) is fixedly connected to the first metering pump (505) through a pipeline, and the first metering pump (505) is movably connected to the rotating fixed tube (501) through a pipeline.
6. The aluminum material processing wire drawing mechanism according to claim 5, characterized in that: The front face of the movable slider (401) is fixedly connected to a gear motor (512), and the gear motor (512) is provided with gears. The outer wall of the rotating fixed tube (501) is provided with external teeth corresponding to the gear motor (512), and a pipeline on the first metering pump (505) connected to the rotating fixed tube (501) is rotatably connected to the rotating fixed tube (501) via a sealing shaft.
7. The aluminum material processing wire drawing mechanism according to claim 5, characterized in that: The bottom of the rotating outflow head (502) is fixedly connected to a brush (503), and the top of the rotating outflow head (502) is fixedly connected to a blade inclined plate (504).
8. The aluminum material processing wire drawing mechanism according to claim 1, characterized in that: A second mating slider (508) is fixedly connected to the left side of the movable slider (401), a second metering pump (510) is fixedly connected to the bottom of the second mating slider (508), and the second metering pump (510) is fixedly connected to the outer wall of the second mating slider (508). A lubricating liquid tank (511) is provided on the outer side of the movable slider (401), and the lubricating liquid tank (511) is fixedly connected to the second metering pump (510) through a pipeline, and the second metering pump (510) is fixedly connected to the lubricating outflow head (509) through a pipeline.
Citation Information
Patent Citations
Wire drawing mechanism for aluminum material machining
CN212168541U