Heat conduction aluminum sheet machining system

By designing a thermal aluminum sheet processing system including a mounting frame, a guide sleeve, a guide plate, a clamping part, a sliding part and a cutting part, the problem that the existing system cannot achieve synchronous and equal-length cutting and automatic collection of multiple sets of aluminum strips is solved, and efficient aluminum sheet processing and automated collection are achieved.

CN119952160AInactive Publication Date: 2025-05-09FOSHAN JINZHIYUAN INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202510334804.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing thermal conductivity aluminum sheet processing system cannot achieve synchronous equal-length cutting of multiple sets of aluminum strips, and the cut aluminum sheet needs to be manually trimmed, which reduces processing efficiency and working efficiency.

Method used

By designing a thermal aluminum sheet processing system including a mounting frame, a guide sleeve, a guide plate, a clamping part, a sliding part and a cutting part, synchronous equal-length cutting of multiple groups of aluminum strips is realized, and the cut aluminum sheet is automatically stacked through the collection part.

Benefits of technology

The processing efficiency of thermally conductive aluminum sheets is improved, and the automatic stacking and collection of multiple groups of aluminum sheets is realized, which reduces the steps of manual finishing, optimizes the process and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention is suitable for the technical field of metal cutting, and provides a heat conduction aluminum sheet machining system which comprises a mounting frame. The mounting frame comprises a first step-shaped plate and a second step-shaped plate which are arranged in parallel; a plurality of guide sleeves and guide plates are respectively fixed on the first stepped plate and the second stepped plate; supporting parts are slidably arranged on the side faces of the guide plates. An aluminum strip is arranged between the guide sleeve and the opposite guide plate in a sliding manner; a sliding part is arranged between the two sliding rods in a sliding manner; the sliding part comprises a third step-shaped plate of which the interior is hollow; a plurality of clamping parts are fixed on the surface of the third stepped plate; lug rods are symmetrically fixed on the bottom surface of the sliding plate; bulbs are fixed at the bottoms of the lug rods; a cut-off part matched with the ball head is arranged on the side surface of the second stepped plate in a sliding manner; according to the device, through linkage cooperation of all the parts, synchronous equal-length cutting and stacking collection of multiple sets of aluminum strips are achieved, and the machining efficiency of heat conduction aluminum sheets is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of metal cutting, and more particularly to a heat-conducting aluminum sheet processing system. Background Art

[0002] Thermally conductive aluminum sheets, also known as heat dissipation aluminum sheets, are used to dissipate heat from electronic components. During the production process, thermally conductive aluminum strips need to be cut and manufactured one by one.

[0003] However, most of the existing devices do not have the function of synchronously cutting multiple groups of aluminum strips of equal length, which reduces the processing efficiency of the thermally conductive aluminum sheets. At the same time, the existing cutting devices cannot automatically stack and collect the cut thermally conductive aluminum sheets. The cut aluminum sheets directly fall into the collection frame, and the messy thermally conductive aluminum sheets need to be manually sorted out, which reduces work efficiency. Summary of the invention

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a thermally conductive aluminum sheet processing system, which can realize synchronous and equal-length cutting of multiple groups of aluminum bars through the linkage cooperation between various components, thereby improving the processing efficiency of the thermally conductive aluminum sheets; the aluminum sheets after cutting are placed on the corresponding supporting platforms, and the collecting part is controlled to slide in the direction of the extension plate. From top to bottom, the aluminum sheets on each group of support platforms are pushed into the U-shaped box by adjacent baffles in turn and fall into the collection box, thereby completing the stacking and collection of multiple groups of aluminum sheets without the need for subsequent manual sorting, thereby optimizing the process and improving work efficiency.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A heat-conducting aluminum sheet processing system comprises a mounting frame; the mounting frame comprises a first stepped plate and a second stepped plate arranged parallel to each other; a plurality of guide sleeves and guide plates are fixed on the first stepped plate and the second stepped plate respectively; a support portion is slidably arranged on the side of the guide plate; an aluminum strip is slidably arranged between the guide sleeve and the relative guide plate; sliding rods are symmetrically fixed between the first stepped plate and the second stepped plate; a sliding portion is slidably arranged between the two sliding rods; the sliding portion comprises a third stepped plate with a hollow interior; a plurality of clamping portions are fixed on the surface of the third stepped plate; a slide plate is fixed to the bottom of the third stepped plate; ear rods are symmetrically fixed to the bottom surface of the slide plate; a ball head is fixed to the bottom of the ear rod; a cutting portion adapted to the ball head is slidably arranged on the side of the second stepped plate; a collecting portion is fixed to the side of the clamping portion at the bottom.

[0007] The present invention is further configured as follows: an L-shaped connecting plate is fixedly connected between the first stepped plate and the second stepped plate; a mounting leg is fixed to the side of the L-shaped connecting plate; a fixing seat is symmetrically fixed to the bottom surface of the guide sleeve; the first stepped plate is inserted between the two fixing seats; the two fixing seats are fixedly mounted on the first stepped plate by fastening bolts; a mounting seat is fixed to the side of the guide plate; and the mounting seat is fixed to the second stepped plate by fastening bolts.

[0008] The present invention is further configured as follows: a guide groove for slidingly cooperating with the aluminum bar is opened on the side of the guide plate; the clamping part includes a U-shaped plate with a hollow interior; a connecting seat is symmetrically fixed to the bottom surface of the U-shaped plate; the third stepped plate is inserted between the two connecting seats; the two connecting seats are fixed to the third stepped plate by fastening bolts.

[0009] The present invention is further configured as follows: the inner top surface and the inner bottom surface of the U-shaped plate are both provided with installation openings; the installation openings are both provided with elastic diaphragms; a connecting pipe is provided on the side of the U-shaped plate; a hose is evenly connected to the bottom surface of the third stepped plate; a joint threadedly connected to the connecting pipe is provided at the end of the hose; an intake pipe and an exhaust pipe are respectively connected at both ends of the third stepped plate; and solenoid valves are provided on the intake pipe and the exhaust pipe.

[0010] The present invention is further configured as follows: a controller is fixedly installed on the surface of the skateboard; a screw hole is opened on the side of the skateboard, and guide holes slidably matched with the sliding rod are symmetrically opened on its side located on both sides of the screw hole; a servo motor is fixedly installed on the side of the first step-shaped plate; a screw rod is fixed on the output end of the servo motor and is rotatably matched with the side of the second step-shaped plate; the screw rod is rotatably matched with the screw hole thread; the output end of the controller is electrically connected to the solenoid valve and the servo motor respectively.

[0011] The present invention is further configured as follows: a guide groove is provided on the side of the guide plate; a plurality of extension grooves connected to the corresponding guide grooves are evenly provided on the side of the second stepped plate; slide rails are fixed to the extension groove and the top and bottom of the guide groove; the support portion includes a bearing platform; a connecting spring is fixed between the side of the bearing platform and the inner wall of the extension groove; a limit rail that slides with the corresponding guide groove and the extension groove is fixed to the side of the bearing platform; slide grooves that slide with the corresponding slide rails are provided on the top and bottom of the limit rail; a baffle is fixed to the side of the bearing platform; a baffle bar is fixed to the other adjacent side of the bearing platform.

[0012] The present invention is further configured as follows: a support plate is fixed to the side of the second stepped plate; sleeves are fixed to both ends of the support plate; the cutting portion includes a horizontal plate; lifting plates that slide and cooperate with the corresponding sleeves are fixed to both ends of the horizontal plate; an inclined guide plate that matches the ball head is fixed to the bottom of the lifting plate; a number of vertical rods are evenly fixed to the bottom surface of the horizontal plate; a cutting knife is fixed to the bottom of the vertical rod; a lifting hole is opened on the surface of the horizontal plate; a support rod that slides and cooperates with the lifting hole is fixed to the surface of the support plate; a support spring mounted on the support rod is fixed between the support plate and the horizontal plate.

[0013] The present invention is further configured as follows: the collecting part includes a U-shaped box; a mounting plate is fixed to the side of the U-shaped box; the mounting plate is fixed to the bottom surface of the lowest supporting platform by fastening bolts; an extension plate is fixed to the side of the second stepped plate; an electric push rod electrically connected to the output end of the controller is fixedly installed on the side of the second stepped plate; a positioning plate is fixed to the side of the U-shaped box; the telescopic end of the electric push rod is fixed to the side of the positioning plate; a collecting box is slidably arranged at the bottom of the U-shaped box; square rods are fixed to both opposite sides of the U-shaped box; an L-shaped plug plate is slidably arranged on the square rod; a tension spring mounted on the square rod is fixedly connected between the L-shaped plug plate and the U-shaped box; plug-in frames that are plug-in-matched with the L-shaped plug plate are symmetrically fixed to both opposite sides of the collection box.

[0014] The advantages of the present invention are:

[0015] 1. The present invention allows each group of aluminum bars to pass through the corresponding guide sleeve and guide plate, controls the clamping part to clamp and fix the aluminum bars, and controls the sliding part to move toward the direction close to the second stepped plate, thereby driving each group of clamping parts to drive the corresponding aluminum bars to move synchronously until the aluminum bars abut against the side of the baffle plate, and controls the cutting part to descend to synchronously cut multiple groups of aluminum bars to the same length, thereby improving the processing efficiency of the thermal conductive aluminum sheet.

[0016] 2. The present invention places the cut aluminum sheets on the corresponding supporting platform, controls the collecting part to slide in the direction of the extension plate, and pushes the aluminum sheets on each group of supporting platforms from top to bottom into the U-shaped box by adjacent baffle bars in turn and falls into the collecting box, thereby completing the stacking and collection of multiple groups of aluminum sheets without the need for subsequent manual sorting, thereby optimizing the process and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a structural schematic diagram of a heat-conducting aluminum sheet processing system of the present invention in a loading state.

[0018] Figure 2 It is a structural schematic diagram of a heat-conducting aluminum sheet processing system of the present invention in a cutting state.

[0019] Figure 3 It is a schematic structural diagram of a heat-conducting aluminum sheet processing system of the present invention in a storage state.

[0020] Figure 4 It is a structural schematic diagram of the mounting frame, guide sleeve and guide plate assembly of the present invention.

[0021] Figure 5 It is a structural schematic diagram of the mounting frame of the present invention.

[0022] Figure 6 It is a schematic structural diagram of the mounting frame of the present invention from another angle.

[0023] Figure 7 For the present invention Figure 6 A magnified image of area A.

[0024] Figure 8 It is a structural schematic diagram of the guide sleeve of the present invention.

[0025] Fig. 9 It is a structural schematic diagram of the guide plate of the present invention.

[0026] Fig.10 It is a schematic structural diagram of the clamping portion of the present invention.

[0027] Fig.11 It is a structural schematic diagram of the clamping part of the present invention from a front view perspective.

[0028] Fig.12 It is a schematic structural diagram of the support portion of the present invention.

[0029] Fig.13 It is a schematic structural diagram of the sliding part of the present invention.

[0030] Fig.14 It is a schematic structural diagram of the cutting portion of the present invention.

[0031] Fig.15 It is a schematic structural diagram of the collecting part of the present invention.

[0032] In the figure: 1, mounting frame; 2, first step-shaped plate; 3, second step-shaped plate; 4, guide sleeve; 5, guide plate; 6, support part; 7, aluminum strip; 8, slide bar; 9, sliding part; 10, third step-shaped plate; 11, clamping part; 12, slide plate; 13, ball head; 14, cutting part; 15, collecting part; 16, L-shaped connecting plate; 17, mounting leg; 18, fixing seat; 19, mounting seat; 20, guide groove; 21, U-shaped plate; 22, connecting seat; 23, elastic diaphragm; 24, connecting pipe; 25, hose; 26, joint; 27, intake pipe; 28, exhaust pipe; 29, controller; 30, screw hole; 31, guide hole; 32, servo motor; 33, screw rod; 34, guide groove; 35, extension groove; 36, slide rail; 37, bearing platform; 38, limit rail; 39, baffle; 40, baffle bar; 41, support plate; 42, sleeve; 43, horizontal plate; 44, lifting plate; 45, inclined guide plate; 46, vertical rod; 47, cutting knife; 48, lifting hole; 49, support rod; 50, support spring; 51, U-shaped box; 52, mounting plate; 53, extension plate; 54, electric push rod; 55, positioning plate; 56, collection box; 57, square rod; 58, L-shaped plug plate; 59, tension spring; 60, plug-in frame; 61, slide groove; 62, connecting spring. DETAILED DESCRIPTION

[0033] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application may be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0034] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meanings as commonly understood by ordinary technicians in the technical field to which this application belongs.

[0035] In the present invention, unless otherwise specified, the directions used, such as "up" and "down", usually refer to the directions shown in the drawings, or to the vertical, perpendicular or gravity directions; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the drawings; "inside" and "outside" refer to the inside and outside relative to the outline of each component itself, but the above-mentioned directions are not used to limit the present invention.

[0036] For example, see Figure 1-15 , the present invention provides the following technical solutions:

[0037] A heat-conducting aluminum sheet processing system, specifically, includes a mounting frame 1; the mounting frame 1 includes a first stepped plate 2 and a second stepped plate 3 arranged parallel to each other; a plurality of guide sleeves 4 and guide plates 5 are fixed on the first stepped plate 2 and the second stepped plate 3 respectively; a support portion 6 is slidably arranged on the side of the guide plate 5; an aluminum strip 7 is slidably arranged between the guide sleeve 4 and the relative guide plate 5.

[0038] Slide rods 8 are symmetrically fixed between the first stepped plate 2 and the second stepped plate 3 ; a sliding portion 9 is slidably arranged between the two slide rods 8 ; the sliding portion 9 includes a third stepped plate 10 which is hollow inside; and a plurality of clamping portions 11 are fixed on the surface of the third stepped plate 10 .

[0039] A slide plate 12 is fixed at the bottom of the third stepped plate 10; an ear rod is symmetrically fixed to the bottom of the slide plate 12; a ball head 13 is fixed to the bottom of the ear rod; a cutting portion 14 adapted to the ball head 13 is slidably provided on the side of the second stepped plate 3; a collecting portion 15 is fixed to the side of the lowest clamping portion 11.

[0040] Working principle of the first embodiment:

[0041] By passing each group of aluminum bars through the corresponding guide sleeve 4 and guide plate 5, controlling the clamping part 11 to clamp and fix the aluminum bars, and controlling the sliding part 9 to move toward the direction close to the second stepped plate 2, each group of clamping parts 11 drives the corresponding aluminum bars to move synchronously until the aluminum bars abut against the side of the support part 6, and controlling the cutting part 14 to descend to synchronously cut multiple groups of aluminum bars to equal lengths, thereby improving the processing efficiency of the thermal conductive aluminum sheet; the aluminum sheets after cutting are placed on the corresponding support part 6, and the collecting part is controlled to slide in the direction of the extension plate, and the aluminum sheets on each group of support parts 6 from top to bottom are pushed to the collecting part 15 for collection by adjacent baffle bars 40 in turn, completing the stacking and collection of multiple groups of aluminum sheets without the need for subsequent manual sorting, thereby optimizing the process and improving work efficiency.

[0042] For example 2, please refer to Figure 1-15 The second embodiment makes the following improvements on the basis of the first embodiment. Specifically, an L-shaped connecting plate 16 is fixedly connected between the first stepped plate 2 and the second stepped plate 3; a mounting leg 17 is fixed to the side of the L-shaped connecting plate 16; a fixing seat 18 is symmetrically fixed to the bottom surface of the guide sleeve 4; the first stepped plate 2 is inserted between the two fixing seats 18; the two fixing seats 18 are fixedly installed on the first stepped plate 2 by fastening bolts; a mounting seat 19 is fixed to the side of the guide plate 5; the mounting seat 19 is fixed to the second stepped plate 3 by fastening bolts.

[0043] A guide groove 20 is provided on the side of the guide plate 5 for sliding cooperation with the aluminum strip 7; the clamping portion 11 includes a U-shaped plate 21 with a hollow interior; a connecting seat 22 is symmetrically fixed to the bottom surface of the U-shaped plate 21; the third stepped plate 10 is inserted between the two connecting seats 22; the two connecting seats 22 are fixed to the third stepped plate 10 by fastening bolts.

[0044] The top surface and the bottom surface of the U-shaped plate 21 are both provided with installation openings; elastic diaphragms 23 are provided on the installation openings; a connecting pipe 24 is provided on the side of the U-shaped plate 21; a hose 25 is evenly provided on the bottom surface of the third stepped plate 10; a joint 26 threadedly connected to the connecting pipe 24 is provided at the end of the hose 25; an intake pipe 27 and an exhaust pipe 28 are respectively provided at both ends of the third stepped plate 10; and solenoid valves are provided on the intake pipe 27 and the exhaust pipe 28.

[0045] Working principle of the second embodiment:

[0046] The two fixing seats 18 are fixedly mounted on the first stepped plate 2 by fastening bolts, the mounting seat 19 is fixed on the second stepped plate 3 by fastening bolts, and the two connecting seats 22 are fixed on the third stepped plate 10 by fastening bolts, so as to realize the installation of the guide sleeve 4 and the first stepped plate 2, the installation of the guide plate 5 and the second stepped plate 3, and the installation of the clamping part 11 and the third stepped plate 10; the third stepped plate 10 and each group U are realized by screwing the joint 26 into the corresponding connecting pipe 24. The inside of the U-shaped plate 21 is connected, and the air inlet pipe 27 is connected to the external air pump, which controls the external air pump to inflate the inside of the third step-shaped plate 10, and inflate the inside of the U-shaped plate 21 corresponding to each group of hoses 25. The elastic diaphragm 23 is inflated and expanded to clamp the corresponding aluminum strip 7. When it is necessary to release the clamping of the aluminum strip 7, the solenoid valve on the exhaust pipe 28 is controlled to open, so that the third step-shaped plate 10 and the U-shaped plate 21 are connected to the external environment, and the elastic diaphragm 23 contracts and resets, releasing the clamping of the aluminum strip 7.

[0047] For example 3, please refer to Figure 1-15 , this third embodiment makes the following improvements on the basis of the second embodiment. Specifically, a controller 29 is fixedly installed on the surface of the skateboard 12; a screw hole 30 is opened on the side of the skateboard 12, and guide holes 31 slidingly matched with the slide bar 8 are symmetrically opened on its side located on both sides of the screw hole 30; a servo motor 32 is fixedly installed on the side of the first step-shaped plate 2; a screw rod 33 rotatingly matched with the side of the second step-shaped plate 3 is fixed at the output end of the servo motor 32; the screw rod 33 is rotationally matched with the screw hole 30 thread; the output end of the controller 29 is electrically connected to the solenoid valve and the servo motor 32 respectively.

[0048] A guide groove 34 is provided on the side of the guide plate 5; a plurality of extension grooves 35 connected with the corresponding guide grooves 34 are evenly provided on the side of the second stepped plate 3; a slide rail 36 is fixed to the extension groove 35 and the top and bottom of the guide groove 34; the support portion 6 includes a bearing platform 37; a connecting spring 62 is fixed between the side of the bearing platform 37 and the inner wall of the extension groove 35; a limit rail 38 slidingly matched with the corresponding guide groove 34 and the extension groove 35 is fixed to the side of the bearing platform 37; a slide groove 61 slidingly matched with the corresponding slide rail 36 is provided on the top and bottom of the limit rail 38; a baffle 39 is fixed to the side of the bearing platform 37; a baffle bar 40 is fixed to the other adjacent side of the bearing platform 37.

[0049] A support plate 41 is fixed to the side of the second stepped plate 3; sleeves 42 are fixed to both ends of the support plate 41; the cutting part 14 includes a horizontal plate 43; lifting plates 44 that slide with the corresponding sleeves 42 are fixed to both ends of the horizontal plate 43; an inclined guide plate 45 that matches the ball head 13 is fixed to the bottom of the lifting plate 44; a number of vertical rods 46 are evenly fixed to the bottom surface of the horizontal plate 43; a cutting knife 47 is fixed to the bottom of the vertical rod 46; a lifting hole 48 is opened on the surface of the horizontal plate 43; a support rod 49 that slides with the lifting hole 48 is fixed to the surface of the support plate 41; a support spring 50 mounted on the support rod 49 is fixed between the support plate 41 and the horizontal plate 43.

[0050] The collecting part 15 includes a U-shaped box 51; a mounting plate 52 is fixed to the side of the U-shaped box 51; the mounting plate 52 is fixed to the bottom surface of the lowest supporting platform 37 by fastening bolts; an extension plate 53 is fixed to the side of the second step-shaped plate 3; an electric push rod 54 electrically connected to the output end of the controller 29 is fixed to the side of the second step-shaped plate 3; a positioning plate 55 is fixed to the side of the U-shaped box 51; the telescopic end of the electric push rod 54 is fixed to the side of the positioning plate 55.

[0051] A collection box 56 is slidably arranged at the bottom of the U-shaped box 51; square rods 57 are fixed to two opposite sides of the U-shaped box 51; an L-shaped plug plate 58 is slidably arranged on the square rod 57; a tension spring 59 sleeved on the square rod 57 is fixedly connected between the L-shaped plug plate 58 and the U-shaped box 51; plug-in frames 60 that are plugged into and matched with the L-shaped plug plate 58 are symmetrically fixed to two opposite sides of the collection box 56.

[0052] Working principle of the third embodiment:

[0053] Each group of aluminum strips 7 is passed through the corresponding guide sleeve 4 and guide plate 5 in sequence until one end of the aluminum strip 7 is flush with the outer side surface of the corresponding guide plate 5, and the external air pump is controlled to inflate the inside of the third step-shaped plate 10 through the air inlet pipe 27, and the corresponding U-shaped plate 21 is inflated through each hose 25. The elastic diaphragm 23 is inflated and expanded to clamp the corresponding aluminum strip 7; the servo motor 32 is controlled to start and drive the screw rod 33 to rotate, thereby driving the slide plate 12 to slide in the direction close to the second step-shaped plate 3, and then through each group of clamping parts 11 with The corresponding aluminum strips 7 are moved to slide until one end of each group of aluminum strips 7 is pressed against the corresponding side of the baffle 39. At this time, the solenoid valve on the exhaust pipe 28 is controlled to open to release the clamping and fixation of the aluminum strips 7. During this process, the ball head 13 slides along the surface of the inclined guide plate 45, and the inclined guide plate 45 is squeezed to drive the lifting plate 44 to slide downward inside the sleeve 42. The corresponding supporting spring 50 is compressed, and each group of cutting knives 47 slides downward. When one end of each group of aluminum strips 7 is pressed against the corresponding side of the baffle 39, each group of cutting knives 47 fits the corresponding aluminum strip 7.

[0054] After releasing the clamping of the aluminum strip 7, the sliding part 9 is controlled to continue sliding in the direction close to the second stepped plate 3, and the ball head 13 continues to squeeze the lifting plate 44, driving each group of cutting knives 47 to cut the corresponding aluminum strip 7. After completing the synchronous cutting of multiple groups of aluminum strips 7, the servo motor 32 is controlled to start to drive the screw rod 33 to rotate in the opposite direction, thereby driving the sliding part 9 to slide and reset in the direction away from the second stepped plate 3. Under the elastic reset force of the support spring 50, the cutting part 14 rises and resets. At this time, the cut aluminum sheet is placed on the corresponding supporting platform 37.

[0055] The electric push rod 54 is controlled to start and retract, and the positioning plate 55 is driven to pull the collecting part 15 and the lowermost support part 6 to slide synchronously in the direction close to the electric push rod 54. When the lowermost support part 6 moves to just below the adjacent support part 6, the upper and lower surfaces of the two support parts 6 fit together, and the collecting part 15 continues to move. The aluminum sheets on the surface of the lowermost support part 6 are blocked by the baffle 40 on the side of the support part 6 above it. During the movement of the lowermost support part 6, the aluminum sheets on its surface are blocked and forced to slide into the U-shaped box 51, and then fall into the collecting box 56 to be collected. By analogy, the aluminum sheets on the surface of each group of support parts 6 from bottom to top fall into the collecting box 56 to be collected in turn, completing the stacking and collection of multiple groups of aluminum sheets, preventing subsequent manual sorting of messy aluminum sheets, optimizing the process, and improving work efficiency. During this process, the corresponding connecting springs 62 are compressed in turn.

[0056] After completing the stacking and collection of each group of aluminum sheets, the electric push rod 54 is controlled to extend, driving the collecting part 15 to slide and reset. During this process, under the elastic reset force of the corresponding connecting spring 62, the corresponding supporting part 6 is driven to slide and reset to the matching position aligned with the corresponding guide groove 20. The above operation is repeated to complete the synchronous fixed-length cutting of multiple groups of aluminum strips 7 and the stacking and collection of the cut aluminum sheets.

[0057] When the aluminum sheets in the collection box 56 are fully collected, the two L-shaped plug plates 58 are pulled outward to remove them from the corresponding plug-in frames 60, thereby releasing the fixed limit of the collection box 56. The operation is simple and convenient for quick installation and removal of the collection box 56 and the U-shaped box 51, thereby improving the practicality of the device.

[0058] Obviously, the above-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 ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.

[0059] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.

[0060] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein.

[0061] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

[0062] The above is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions under the concept of the present invention belong to the protection scope of the present invention. It should be pointed out that for ordinary technicians in this technical field, some improvements and modifications without departing from the principle of the present invention should also be regarded as the protection scope of the present invention.

Claims

1. A heat-conducting aluminum sheet processing system, comprising a mounting frame; characterized in that: The mounting frame comprises a first stepped plate and a second stepped plate arranged in parallel with each other; a plurality of guide sleeves and guide plates are fixed on the first stepped plate and the second stepped plate respectively; a support portion is slidably arranged on the side of the guide plate; an aluminum strip is slidably arranged between the guide sleeve and the relative guide plate; Slide rods are symmetrically fixed between the first stepped plate and the second stepped plate; a sliding part is slidably arranged between the two slide rods; the sliding part includes a third stepped plate with a hollow interior; a plurality of clamping parts are fixed on the surface of the third stepped plate; A slide plate is fixed at the bottom of the third stepped plate; ear rods are symmetrically fixed to the bottom of the slide plate; a ball head is fixed to the bottom of the ear rod; a cutting portion adapted to the ball head is slidably provided on the side of the second stepped plate; and a collecting portion is fixed to the side of the clamping portion at the bottom.

2. A thermally conductive aluminum sheet processing system according to claim 1, characterized in that: An L-shaped connecting plate is fixedly connected between the first stepped plate and the second stepped plate; a mounting leg is fixed to the side of the L-shaped connecting plate; a fixing seat is symmetrically fixed to the bottom surface of the guide sleeve; the first stepped plate is inserted between the two fixing seats; the two fixing seats are fixedly mounted on the first stepped plate by fastening bolts; a mounting seat is fixed to the side of the guide plate; the mounting seat is fixed to the second stepped plate by fastening bolts.

3. A thermally conductive aluminum sheet processing system according to claim 2, characterized in that: The guide plate has a side surface with a guide groove for slidingly cooperating with the aluminum bar; the clamping part includes a U-shaped plate with a hollow interior; a connecting seat is symmetrically fixed to the bottom surface of the U-shaped plate; the third stepped plate is inserted between the two connecting seats; the two connecting seats are fixed to the third stepped plate by fastening bolts.

4. A thermally conductive aluminum sheet processing system according to claim 3, characterized in that: The inner top surface and the inner bottom surface of the U-shaped plate are both provided with installation openings; the installation openings are provided with elastic diaphragms; a connecting pipe is provided on the side of the U-shaped plate; a hose is evenly connected to the bottom surface of the third stepped plate; a joint threadedly connected to the connecting pipe is provided at the end of the hose; an intake pipe and an exhaust pipe are respectively connected at both ends of the third stepped plate; and solenoid valves are provided on the intake pipe and the exhaust pipe.

5. A thermally conductive aluminum sheet processing system according to claim 4, characterized in that: A controller is fixedly installed on the surface of the skateboard; a screw hole is opened on the side of the skateboard, and guide holes slidably matched with the sliding rod are symmetrically opened on its side on both sides of the screw hole; a servo motor is fixedly installed on the side of the first step-shaped plate; a screw rod is fixed on the output end of the servo motor to rotate with the side of the second step-shaped plate; the screw rod is rotationally matched with the screw hole thread; the output end of the controller is electrically connected to the solenoid valve and the servo motor respectively.

6. A thermally conductive aluminum sheet processing system according to claim 5, characterized in that: A guide groove is provided on the side of the guide plate; a number of extension grooves connected with the corresponding guide grooves are evenly provided on the side of the second stepped plate; slide rails are fixed to the extension groove and the top and bottom of the guide groove; the support part includes a bearing platform; a connecting spring is fixed between the side of the bearing platform and the inner wall of the extension groove; a limit rail that slides with the corresponding guide groove and extension groove is fixed to the side of the bearing platform; slide grooves that slide with the corresponding slide rails are provided on the top and bottom of the limit rail; a baffle is fixed to the side of the bearing platform; a baffle bar is fixed to the other adjacent side of the bearing platform.

7. A thermally conductive aluminum sheet processing system according to claim 6, characterized in that: A support plate is fixed to the side of the second stepped plate; sleeves are fixed to both ends of the support plate; the cutting part includes a horizontal plate; lifting plates that slide with the corresponding sleeves are fixed to both ends of the horizontal plate; an inclined guide plate that matches the ball head is fixed to the bottom of the lifting plate; a plurality of vertical rods are evenly fixed to the bottom of the horizontal plate; a cutting knife is fixed to the bottom of the vertical rods; A lifting hole is provided on the surface of the horizontal plate; a support rod slidingly matched with the lifting hole is fixed on the surface of the support plate; a support spring sleeved on the support rod is fixed between the support plate and the horizontal plate.

8. A thermally conductive aluminum sheet processing system according to claim 7, characterized in that: The collecting part comprises a U-shaped box; a mounting plate is fixed to the side of the U-shaped box; the mounting plate is fixed to the bottom surface of the lowest bearing platform by fastening bolts; an extension plate is fixed to the side of the second stepped plate; an electric push rod electrically connected to the output end of the controller is fixed to the side of the second stepped plate; a positioning plate is fixed to the side of the U-shaped box; the telescopic end of the electric push rod is fixed to the side of the positioning plate; A collection box is slidably arranged at the bottom of the U-shaped box; square rods are fixed to two opposite sides of the U-shaped box; an L-shaped plug plate is slidably arranged on the square rod; a tension spring sleeved on the square rod is fixedly connected between the L-shaped plug plate and the U-shaped box; plug frames that are plugged and matched with the L-shaped plug plate are symmetrically fixed to two opposite sides of the collection box.