Aluminum rod peeling machine capable of collecting waste materials conveniently
Through the combined structure of threaded rod and annular blade and the design of high-pressure air pump and roller, the problem of incomplete cutting of ribbon chips in the aluminum rod peeling machine is solved, efficient debris collection and surface cleaning of aluminum rods is achieved, and the overall effect of aluminum rod peeling is improved.
Patent Information
- Application Number
- CN202510608920.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2025-07-29
AI Technical Summary
Existing aluminum rod peeling machines are prone to blind spots for chipping during peeling. When the aluminum chip is tougher or the peeling speed is fast, the chipping wheel may not be completely cut off or coiled away the aluminum chips, resulting in belt-shaped chips entanglement, affecting the peeling effect of the aluminum rod.
An aluminum rod peeling machine is designed to facilitate the collection of waste materials. It adopts a combined structure of a threaded rod driving the L-shaped plate and annular blade. The rotational cutting of the annular blade is achieved through the spring telescopic rod and friction force, and combined with the use of a high-pressure air pump and roller, ensuring effective cutting and collection of ribbon-shaped chips on the outer peripheral side of the aluminum rod.
Faster strip chip cutting is achieved, avoiding chip accumulation, improving the efficiency of the peeling process and debris collection effect, and ensuring the cleanliness of the aluminum rod surface.
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Figure CN120382372A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of aluminum rod peeling machines, and specifically relates to an aluminum rod peeling machine convenient for collecting waste materials. Background Art
[0002] An aluminum rod peeling machine is a metal wire processing device specifically used to remove metal oxides, oil stains, and other impurities on the surface of aluminum rods. It is mainly applied to the pre-treatment process of the production of bimetallic composite wires to ensure the surface cleanliness of the aluminum rods to meet the process requirements of subsequent cladding welding.
[0003] For example, Chinese Patent CN 107470713 discloses an aluminum alloy rod peeling and chipping device. In this patent, a pair of chipping wheels are arranged on both sides of the aluminum rod, and a double-sided toothed synchronous belt is used to achieve the reverse rotation of the left and right chipping wheels, so that the aluminum alloy strip chips generated at the peeling die are taken away by the chipping knife as soon as they appear, which can avoid the accumulation of strip chips on the outer periphery of the aluminum rod and interfere with the peeling process of the aluminum rod.
[0004] However, when the above chipping device is in operation, since the chipping wheels are arranged on both sides of the aluminum rod, it is very easy to have a chipping blind area. And when the aluminum chips are tough or the peeling speed is fast, the chipping wheels may not be able to completely cut or roll away the aluminum chips, resulting in the strip chips winding around the chipping wheels or the aluminum rod, affecting the peeling effect of the aluminum rod. Based on this, an aluminum rod peeling machine convenient for collecting waste materials is proposed to solve the above problems. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides an aluminum rod peeling machine convenient for collecting waste materials, which can cut off the strip chips on the outer periphery of the aluminum rod more quickly, has a better cutting effect, and effectively avoids the accumulation of strip chips on the outer periphery of the aluminum rod and interfering with the peeling process of the aluminum rod.
[0006] To achieve the above object, the present invention provides the following technical solution: An aluminum rod peeling machine convenient for collecting waste materials, comprising:
[0007] A support frame, a debris collection box is arranged inside the support frame, and an aluminum rod introduction mechanism, an aluminum rod peeling mechanism, and an aluminum rod export mechanism are sequentially arranged on the support frame. The aluminum rod introduction mechanism aligns and feeds the aluminum rod into the aluminum rod peeling mechanism for peeling operation, and the aluminum rod export mechanism exports the peeled aluminum rod to the subsequent process, and the debris collection box can also collect the strip chips peeled from the aluminum rod;
[0008] An aluminum rod peeling mechanism, which includes a peeling chamber with an open bottom, and a peeling module for peeling the surface of the aluminum rod is installed on the right inner wall of the peeling chamber. When the aluminum rod enters the peeling chamber, it can be peeled by the peeling module;
[0009] It further includes a threaded rod disposed in the peeling bin and rotatably connected to the right inner wall of the peeling bin. A threaded sleeve is sleeved on the outer periphery of the threaded rod, and an L-shaped plate that is restricted to linear movement only is provided. A connecting ring is connected to the L-shaped plate through a plurality of spring telescopic rods. A rotating ring is rotatably disposed in the connecting ring. An annular blade is installed on the inner peripheral wall of the rotating ring. An abutting ring is fixed to the outer periphery of the rotating ring. A retaining ring is fixed to the outer periphery of the threaded rod. The outer peripheries of the retaining ring and the abutting ring are relatively inclined. A limiting ring corresponding to the annular blade and located outside the peeling module is fixed to the right inner wall of the peeling bin. The L-shaped plate drives the movable ring to move rightward through the spring telescopic rods until the abutting ring is in close fit with the retaining ring. At this time, the end of the annular blade moves into the annular groove of the limiting ring and cannot continue to move to the right. However, the threaded rod can still rotate. The L-shaped plate moves rightward, causing the spring telescopic rods to compress. During this process, the threaded rod continuously drives the retaining ring to rotate, and the retaining ring can drive the abutting ring to rotate together, so that the annular blade rotates to cut the strip-shaped chips on the outer periphery of the aluminum rod.
[0010] Further, a driving motor is fixed to the inner top wall of the peeling bin. The output shaft of the driving motor is fixed to the end of the threaded rod. By starting the driving motor, the output shaft of the driving motor can drive the threaded rod to rotate.
[0011] Further, a circle of annular grooves corresponding to the annular blade is provided on the limiting ring.
[0012] Further, a limiting chute is provided on the inner top wall of the peeling bin. A limiting slider slidably connected to the limiting chute is fixed to the L-shaped plate. Under the guiding action of the limiting slider and the limiting chute, the L-shaped plate can perform left-right linear movement on the outer periphery of the threaded rod.
[0013] Further, a plurality of spring telescopic rods are fixed to the right side of the L-shaped plate and are distributed annularly. The other side of the spring telescopic rod is fixed to the connecting ring. An inner movable ring is fixed to the inner side of the connecting ring. The rotating ring is rotatably connected to the inner peripheral wall of the movable ring through a bearing.
[0014] Further, a mounting ring is fixed inside the L-shaped plate. An annular air duct is provided inside the mounting ring. A plurality of air pipes with one end penetrating and extending into the inside of the mounting ring are fixed to one inner wall of the annular air duct. A ventilation hose with one end penetrating and extending outside the peeling bin is fixed to the other inner wall of the annular air duct. The ventilation hose is externally connected to a high-pressure air pump, and high-pressure air can be introduced into the annular air duct and blown onto the aluminum rod through the air pipes, which is convenient for blowing away the chips on the outer periphery of the aluminum rod, so that the chips are more likely to fall into the chip collection box, further improving the chip collection effect.
[0015] Further, a fixing ring is fixed to the inner wall of the mounting ring. A positioning ring is fixed to the fixing ring. The annular air duct is fixed to the positioning ring to provide a mounting basis through the fixing ring and the positioning ring.
[0016] Furthermore, several air ducts are annularly distributed inside the installation ring, and the air outlet heads of several said air ducts are all inclined towards the central axis of the installation ring, which can better blow air on the aluminum rod.
[0017] Furthermore, a pair of rotating shafts located below both sides of the aluminum rod are rotatably arranged inside the peeling bin. A roller is fixed on the outer side of the rotating shaft, and several swing bars are annularly distributed on the outer periphery of the roller. The swing bars on the outer peripheries of the pair of rollers swing inwards, and can scrape off the debris on the outer periphery of the aluminum rod and fall into the debris collection box, further improving the collection effect of the debris.
[0018] Furthermore, a pair of rotating motors are fixed on the peeling bin, and the output shafts of the rotating motors are fixed to the ends of the corresponding rotating shafts. When the rotating motors are started, the output shafts of the pair of rotating motors respectively drive the pair of rollers to rotate relatively.
[0019] Compared with the prior art, the technical solution of the present application has the following beneficial effects:
[0020] 1. For this aluminum rod peeling machine that facilitates waste collection, the L-shaped plate drives the movable ring to move rightwards through the spring telescopic rod until the abutting ring is in close fit with the retaining ring. At this time, the end of the annular blade moves into the annular groove of the limiting ring and cannot continue to move to the right, while the threaded rod can still rotate. The L-shaped plate moves rightwards and compresses the spring telescopic rod. During this process, the threaded rod drives the retaining ring to rotate, and under the action of friction, the retaining ring can drive the abutting ring to rotate together, so that the annular blade rotates to cut the strip-shaped chips on the outer periphery of the aluminum rod. The process of the spring telescopic rod being compressed to the limit is a cutting stroke. When the spring telescopic rod is compressed to the limit, the L-shaped plate will retract to its original position, repeat the above operation, and complete multiple cuts, so as to more quickly cut the strip-shaped chips on the outer periphery of the aluminum rod, with a better cutting effect, effectively avoiding the accumulation of strip-shaped chips on the outer periphery of the aluminum rod and interfering with the peeling process of the aluminum rod.
[0021] 2. For this aluminum rod peeling machine that facilitates waste collection, during the cutting process, the ventilation hose can be externally connected to a high-pressure air pump to introduce a high-pressure air source into the annular air duct and blow it towards the aluminum rod, which is convenient for blowing away the debris on the outer periphery of the aluminum rod, so that the debris is more likely to fall into the debris collection box, further improving the collection effect of the debris.
[0022] 3. For this aluminum rod peeling machine that facilitates waste collection, when the rotating motors are started, the output shafts of the pair of rotating motors respectively drive the pair of rollers to rotate relatively, and the swing bars on the outer peripheries of the pair of rollers swing inwards, and can scrape off the debris on the outer periphery of the aluminum rod and fall into the debris collection box, further improving the collection effect of the debris. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic structural diagram of the present invention;
[0024] Figure 2 It is a schematic structural diagram of the aluminum rod peeling mechanism of the present invention;
[0025] Figure 3 It is a structural sectional view of the aluminum rod peeling mechanism of the present invention;
[0026] Figure 4 For the present invention Figure 3 The enlarged schematic structural diagram of part A in it;
[0027] Figure 5 For the present invention Figure 3 The enlarged schematic structural diagram of part B in it.
[0028] In the figure: 1, support frame; 2, debris collection box; 3, aluminum rod introduction mechanism; 4, aluminum rod peeling mechanism; 401, peeling bin; 402, peeling module; 403, drive motor; 404, threaded rod; 405, L-shaped plate; 406, spring telescopic rod; 407, connecting ring; 408, movable ring; 409, rotating ring; 410, annular blade; 411, abutting ring; 412, retaining ring; 413, limiting ring; 414, annular groove; 415, limiting chute; 416, limiting slider; 417, mounting ring; 418, fixing ring; 419, positioning ring; 420, annular air duct; 421, air duct; 422, ventilation hose; 423, rotating motor; 424, rotating shaft; 425, drum; 426, swing bar; 5, aluminum rod export mechanism. Specific embodiments
[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] Please refer to Figures 1-5 , A kind of aluminum rod peeling machine convenient for collecting waste in this embodiment includes a support frame 1 arranged on the support tabletop. A debris collection box 2 is arranged inside the support frame 1. An aluminum rod introduction mechanism 3, an aluminum rod peeling mechanism 4 and an aluminum rod export mechanism 5 are sequentially arranged on the support frame 1. The aluminum rod introduction mechanism 3 centers and feeds the aluminum rod into the aluminum rod peeling mechanism 4 for peeling operation. The aluminum rod export mechanism 5 then exports the peeled aluminum rod to the subsequent process, and the debris collection box 2 can also collect the strip-shaped chips peeled from the aluminum rod. There is an opening corresponding to the debris collection box 2 on the support frame 1, which is convenient for the peeled chips to fall into the debris collection box 2 for collection. And there is a handle on the front side of the debris collection box 2, and the debris collection box 2 can be pulled out from the front opening of the support frame 1, which is convenient for cleaning the chips collected in the debris collection box 2.
[0031] Among them, both the aluminum rod inlet mechanism 3 and the aluminum rod outlet mechanism 5 are devices for guiding aluminum rods that are well-known in the art, and their specific structures and working principles will not be elaborated here.
[0032] In this embodiment, as Figures 2-5 shown, the aluminum rod peeling mechanism 4 includes a peeling bin 401 with an open bottom. A peeling module 402 for peeling the surface of the aluminum rod is installed on the right inner wall of the peeling bin 401. A driving motor 403 is fixed to the inner top wall of the peeling bin 401. A threaded rod 404, whose output shaft is fixed and rotatably connected to the right inner wall of the peeling bin 401 through a bearing, is restricted to linear movement only. An L-shaped plate 405 is threadedly connected to the outer side of the threaded rod 404. A plurality of spring telescopic rods 406 distributed in a ring are fixed to the right side of the L-shaped plate 405. The other sides of the plurality of spring telescopic rods 406 are commonly fixed to a connecting ring 407. An active ring 408 is fixed to the inner side of the connecting ring 407. A rotating ring 409 is rotatably connected to the inner peripheral wall of the active ring 408 through a bearing. An annular blade 410 is installed on the inner peripheral wall of the rotating ring 409. An abutting ring 411 is fixed to the outer periphery of the rotating ring 409. A retaining ring 412 is fixed to the outer periphery of the threaded rod 404. The outer peripheries of the retaining ring 412 and the abutting ring 411 are relatively inclined. A limiting ring 413 located outside the peeling module 402 is fixed to the right inner wall of the peeling bin 401. An annular groove 414 is formed in the limiting ring 413.
[0033] A plurality of rectangular through grooves are formed in the outer periphery of the rotating ring 409, and bolts corresponding to the rectangular through grooves are fixed to the outer periphery of the annular blade 410. The bolts are slid into the rectangular through grooves until they abut against the inner walls thereof, and then nuts are screwed onto the outer ends of the bolts to abut against the outer periphery of the rotating ring 409, thereby fastening the annular blade 410 in the rotating ring 409. Avoidance grooves for the bolts to slide into the rectangular through grooves are also formed in the inner wall of the abutting ring 411, facilitating the installation of the annular blade 410.
[0034] Among them, the spring telescopic rod 406 is composed of a telescopic rod and a spring sleeved on the outer periphery of the telescopic rod. The two ends of the telescopic rod are respectively fixed to the L-shaped plate 405 and the connecting ring 407, and the distance between the connecting ring 407 and the L-shaped plate 405 can be changed. When the abutting ring 411 is in close fit with the retaining ring 412 and the annular blade 410 cannot move further to the right, the L-shaped plate 405 can still move further to the right, causing the spring telescopic rod 406 to be compressed. At this time, the threaded rod 404 drives the retaining ring 412 to rotate, and the retaining ring 412 can drive the abutting ring 411 to rotate together, thereby causing the annular blade 410 to rotate.
[0035] As for how the threaded rod 404 is restricted to linear motion only, in this embodiment, a limiting sliding groove 415 is formed on the inner top wall of the peeling bin 401, and a limiting sliding block 416 slidably connected to the limiting sliding groove 415 is fixed on the L-shaped plate 405. When the threaded rod 404 rotates, under the guiding action of the limiting sliding block 416 and the limiting sliding groove 415, the L-shaped plate 405 can perform left-right linear motion on the outer periphery of the threaded rod 404.
[0036] During use, the driving motor 403 can be started, the output shaft of the driving motor 403 rotates, and under the guiding action of the limiting sliding block 416 and the limiting sliding groove 415, the L-shaped plate 405 drives the movable ring 408 to move rightward through the spring telescopic rod 406 until the abutting ring 411 is in close fit with the retaining ring 412. At this time, the end of the annular blade 410 moves into the annular groove 414 of the limiting ring 413 and cannot continue to move to the right, while the threaded rod 404 can still rotate, the L-shaped plate 405 moves rightward, and the spring telescopic rod 406 is compressed. During this process, the threaded rod 404 drives the retaining ring 412 to rotate, and since the outer peripheries of the abutting ring 411 and the retaining ring 412 are relatively inclined, after the inclined surfaces of the two come into contact, due to the action of friction, the retaining ring 412 can drive the abutting ring 411 to rotate together, so that the annular blade 410 rotates to cut the strip-shaped chips on the outer periphery of the aluminum rod. The process of the spring telescopic rod 406 being compressed to the limit is a cutting stroke. When the spring telescopic rod 406 is compressed to the limit, the L-shaped plate 405 will retract to its original position, and the above operation is repeated to complete multiple cuts, which can effectively prevent the strip-shaped chips from accumulating on the outer periphery of the aluminum rod and interfering with the peeling process of the aluminum rod.
[0037] To enhance the collection effect of the debris, an installation ring 417 is fixed inside the L-shaped plate 405. A fixing ring 418 is fixed on the inner wall of the installation ring 417. A positioning ring 419 is fixed on the fixing ring 418 by bolts. On the other side of the positioning ring 419, an annular air chamber 420 is fixed by bolts. A plurality of air pipes 421 are fixed on one side inner wall of the annular air chamber 420 and are annularly distributed, and one end of each air pipe 421 penetrates through the positioning ring 419 and extends into the installation ring 417. The air outlet ends of the plurality of air pipes 421 are inclined towards the central axis of the installation ring 417. A ventilation hose 422 with one end penetrating through and extending outside the peeling bin 401 is fixed on the other side inner wall of the annular air chamber 420.
[0038] The ventilation hose 422 is externally connected to a high-pressure air pump, and high-pressure air can be introduced into the annular air chamber 420 and blown towards the aluminum rod by the air pipes 421, which is convenient for blowing away the debris on the outer periphery of the aluminum rod, so that the debris is more likely to fall into the debris collection box 2, further improving the collection effect of the debris.
[0039] In addition, a rubber ring is also fixed on the side surface of the positioning ring 419 by glue. The aluminum rod passes through the rubber ring and is in close fit with the inner wall of the rubber ring, which can prevent the debris from leaking out from the positioning ring 419.
[0040] In order to further improve the collection effect of debris, as a preferred embodiment, a pair of rotating motors 423 are fixed on the peeling bin 401. A rotating shaft 424 is fixed to the output shaft of the rotating motor 423, and one end of the rotating shaft 424 penetrates and extends into the peeling bin 401. The pair of rotating shafts 424 are symmetrically arranged below both sides of the aluminum rod. A roller 425 is fixed to the outer side of the rotating shaft 424, and a plurality of swing bars 426 are annularly distributed on the outer circumference of the roller 425.
[0041] In the initial state, the swing bars 426 are in a natural drooping state. When the rotating motors 423 are started, the output shafts of the pair of rotating motors 423 respectively drive the pair of rollers 425 to rotate relatively, and the swing bars 426 on the outer circumferences of the pair of rollers 425 swing inwards, so as to scrape off the debris on the outer circumference of the aluminum rod and fall into the debris collection box 2, further improving the collection effect of the debris.
[0042] In summary of the above embodiments, when the present invention is in use, first, the aluminum rod guiding mechanism 3 centers and feeds the aluminum rod into the peeling bin 401 of the aluminum rod peeling mechanism 4 for peeling operation. During peeling, the driving motor 403 can be started, and the output shaft of the driving motor 403 rotates. Under the guiding action of the limit slider 416 and the limit chute 415, the L-shaped plate 405 drives the movable ring 408 to move rightwards through the spring telescopic rod 406 until the abutting ring 411 is in close fit with the retaining ring 412. At this time, the end of the annular blade 410 moves into the annular groove 414 of the limit ring 413 and cannot continue to move to the right, while the threaded rod 404 can still rotate, the L-shaped plate 405 moves rightwards, and the spring telescopic rod 406 is compressed. During this process, the threaded rod 404 can continuously drive the retaining ring 412 to rotate, and since the outer circumferences of the abutting ring 411 and the retaining ring 412 are relatively inclined, after the inclined surfaces of the two abut, due to the action of friction, the retaining ring 412 can drive the abutting ring 411 to rotate together, thereby causing the annular blade 410 to rotate and cutting the strip-shaped debris on the outer circumference of the aluminum rod. The process of the spring telescopic rod 406 being compressed to the limit is a cutting stroke. When the spring telescopic rod 406 is compressed to the limit, the L-shaped plate 405 will retreat to its original position, and the above operation is repeated to complete multiple cuts, which can effectively prevent the strip-shaped debris from accumulating on the outer circumference of the aluminum rod and interfering with the peeling process of the aluminum rod.
[0043] Meanwhile, the ventilation hose 422 can introduce the air source into the annular air chamber 420 and blow it towards the center of the aluminum rod through the air duct 421, which can facilitate blowing off the debris on the outer circumference of the aluminum rod.
[0044] The rotating motors 423 can also be started to drive the pair of rollers 425 to rotate relatively, and the swing bars 426 on the outer circumferences of the pair of rollers 425 swing inwards, so as to scrape off the debris on the outer circumference of the aluminum rod and fall into the debris collection box 2, further improving the collection effect of the debris.
[0045] It should be noted that, in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.
[0046] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An aluminum rod peeling machine convenient for collecting waste materials, characterized in that, include: A support frame (1), wherein a debris collection box (2) is provided in the support frame (1), and an aluminum rod introduction mechanism (3), an aluminum rod peeling mechanism (4), and an aluminum rod outlet mechanism (5) are sequentially provided on the support frame (1); An aluminum rod peeling mechanism (4) comprises a peeling bin (401) with an open bottom, and a peeling module (402) for peeling the surface of the aluminum rod is installed on the right inner wall of the peeling bin (401); The invention also includes a threaded rod (404) arranged in the peeling bin (401) and rotatably connected to the right inner wall of the peeling bin (401), the outer peripheral thread of the threaded rod (404) is threadedly sleeved with an L-shaped plate (405) that is restricted to only linear movement, the L-shaped plate (405) is connected to a connecting ring (407) via a plurality of spring telescopic rods (406), a rotating ring (409) is rotatably arranged in the connecting ring (407), and the rotating ring An annular blade (410) is installed on the inner peripheral wall of (409), an abutment ring (411) is fixed on the outer periphery of the rotating ring (409), a retaining ring (412) is fixed on the outer periphery of the threaded rod (404), and the outer peripheries of the retaining ring (412) and the abutment ring (411) are relatively inclined. A limiting ring (413) located on the outer periphery of the peeling module (402) and corresponding to the annular blade (410) is fixed on the right inner wall of the peeling bin (401).
2. The aluminum rod peeling machine for conveniently collecting waste materials according to claim 1, wherein: A driving motor (403) is fixed to the inner top wall of the peeling bin (401), and an output shaft of the driving motor (403) is fixed to the end of the threaded rod (404).
3. The aluminum rod peeling machine for conveniently collecting waste materials according to claim 1, wherein: The limiting ring (413) is provided with a circle of annular grooves (414) corresponding to the annular blades (410).
4. The aluminum rod peeling machine for convenient waste collection according to claim 1, characterized in that: A limiting sliding groove (415) is provided on the inner top wall of the peeling bin (401), and a limiting sliding block (416) slidably connected to the limiting sliding groove (415) is fixed on the L-shaped plate (405).
5. The aluminum rod peeling machine for convenient waste collection according to claim 1, characterized in that: A plurality of spring telescopic rods (406) are fixed to the right side of the L-shaped plate (405) and are distributed in a ring shape. The other side of the spring telescopic rods (406) is fixed to a connecting ring (407). A movable ring (408) is fixed to the inner side of the connecting ring (407). The rotating ring (409) is rotatably connected to the inner peripheral wall of the movable ring (408) through a bearing.
6. The aluminum rod peeling machine for conveniently collecting waste materials according to claim 5, characterized in that: A mounting ring (417) is fixed inside the L-shaped plate (405), and an annular air bin (420) is provided inside the mounting ring (417). A plurality of air ducts (421) are fixed on the inner wall of one side of the annular air bin (420), one end of which passes through and extends to the inside of the mounting ring (417). A ventilation hose (422) is fixed on the inner wall of the other side of the annular air bin (420), one end of which passes through and extends to the outside of the peeling bin (401).
7. The aluminum rod peeling machine for convenient waste collection according to claim 6, characterized in that: A fixing ring (418) is fixed to the inner wall of the mounting ring (417), a positioning ring (419) is fixed on the fixing ring (418), and the annular air bin (420) is fixed on the positioning ring (419).
8. A convenient waste collecting aluminum rod peeling machine according to claim 6, characterized in that: A plurality of air ducts (421) are annularly distributed inside the installation ring (417), and the air outlet heads of the plurality of air ducts (421) are all inclined towards the central axis of the installation ring (417).
9. The aluminum rod peeling machine for convenient waste collection according to claim 1, characterized in that: A pair of rotating shafts (424) are rotatably arranged below both sides of the aluminum rod in the peeling bin (401). A roller (425) is fixed to the outer side of the rotating shaft (424), and a plurality of swing bars (426) are annularly distributed on the outer circumference of the roller (425).
10. The aluminum rod peeling machine for convenient waste collection according to claim 9, characterized in that: A pair of rotating motors (423) are fixed to the peeling bin (401), and the output shafts of the rotating motors (423) are fixed to the ends of the corresponding rotating shafts (424).
Citation Information
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