Aluminum profile extrusion processing equipment

By designing the pressing limit and drive parts of the first guide frame and the second guide frame in the aluminum profile extrusion processing equipment, the problem of the residual profile on the extrusion head is solved, and the complete cleaning of the profile and the efficient operation of the equipment are achieved.

CN119588775BActive Publication Date: 2025-05-13HENGQIANG ALUMINUM CO LTD
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Patent Information

Application Number
CN202411889171.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-05-13
Estimated Expiration
2044-12-20

AI Technical Summary

Technical Problem

After the existing aluminum profile extruder is cut, the profile will remain inside the extruder head, making it cumbersome and difficult to completely clean, affecting the next operation.

Method used

An aluminum profile extrusion processing equipment is designed, including an extruder body, an extruder head, a first guide frame and a second guide frame, and the profile is clamped with the pressing limit part in the first guide frame and the second guide frame, and the movement thereof is controlled by the drive member to bring out the residual profile in the extruder head.

Benefits of technology

The complete extraction and cleaning of profiles is achieved, blockage and cleaning difficulties caused by profile residues are avoided, and the operation efficiency of equipment and the cutting effect of profiles is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses aluminum profile extrusion processing equipment, which relates to the technical field of aluminum profile processing equipment, and comprises an extruder body, an extrusion head, a first guide frame and a second guide frame, wherein one side of the extruder body is provided with an extrusion head, and one side of the extrusion head is provided with a first guide frame and a second guide frame, wherein the first guide frame and the second guide frame are arranged in parallel at the same height, and the internal cavity cross-sectional area of ​​the first guide frame and the second guide frame is larger than the cross-sectional area of ​​the profile; the advantages are: on the one hand, in the process of cutting the profile, the first guide frame and the second guide frame can be used to assist in limiting the positions on both sides of the cutting part, so that the cutting effect is better; on the other hand, the pressing limit pieces in the first guide frame and the second guide frame can be used to mechanically clamp the aluminum profile at the end, so as to completely pull out the profile in the extrusion head, and the process does not need to be stopped, and does not affect the next profile extrusion operation of the extruder.
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Description

Technical Field

[0001] The invention relates to the technical field of aluminum profile processing equipment, in particular to aluminum profile extrusion processing equipment. Background Art

[0002] Aluminum profile extruder is a device used to heat aluminum alloy or aluminum to a certain temperature and then extrude it through a specific die. It is widely used in the production of aluminum profiles, such as doors and windows, curtain walls, construction, transportation, electronics and other industries. The extruder heats the aluminum ingot to an appropriate plastic state and uses high pressure to push the aluminum liquid or semi-liquid through the die to form aluminum profiles of various cross-sections and specifications.

[0003] In the existing aluminum profile extruder, during the aluminum profile processing process, the cutting part is close to the extrusion head, and after the profile at the final end is cut, some profiles will remain inside the extrusion head. At present, the profiles remaining inside the extrusion head will be cleaned after the whole machine stops running. On the one hand, the operation is cumbersome and affects the operation of the extruder next time. On the other hand, due to the natural cooling of the profile, some profiles will remain in the extrusion head, which is difficult to clean and has a poor actual application effect. Summary of the invention

[0004] In view of the deficiencies in the prior art, the present invention provides aluminum profile extrusion processing equipment.

[0005] In order to achieve the above object, the technical solution of the present invention is as follows:

[0006] Aluminum profile extrusion processing equipment, comprising an extruder body, an extrusion head, a first guide frame and a second guide frame, wherein the extruder body is provided with an extrusion head on one side, and the first guide frame and the second guide frame are provided on one side of the extrusion head, the first guide frame and the second guide frame are arranged in parallel at the same height, the internal cavity cross-sectional area of ​​the first guide frame and the second guide frame is larger than the cross-sectional area of ​​the profile, and a cutting tool is placed in the space between the first guide frame and the second guide frame;

[0007] The first guide frame and the second guide frame are connected to a driving member in a transmission manner, and the driving member controls the first guide frame and the second guide frame to move along the axial direction of the extruder head;

[0008] The tops of the first guide frame and the second guide frame are slidably connected to the guide column through a sliding seat, the guide column is arranged parallel to the axial direction of the extruder head, and the first guide frame and the second guide frame are provided with a pressing limiter;

[0009] The pressing limiter comprises a hydraulic telescopic rod and an arc-shaped pressing block, wherein the hydraulic telescopic rod is located in a sliding seat, and the hydraulic telescopic rod is transmission-connected with an arc-shaped pressing block;

[0010] During the process of conveying the extruded profile by the extrusion head, the arc-shaped pressing block is separated from the profile;

[0011] When the extruder extrudes the profile and cuts it, the first guide frame and the second guide frame provide bottom support for the profile, and the profile is cut at a position between the first guide frame and the second guide frame;

[0012] When the extrusion head is not extruding, the arc-shaped pressing block presses the profile, and the driving member controls the first guide frame and the second guide frame to move in a direction away from the extrusion head to bring out the profile remaining in the extrusion head.

[0013] Preferably, the first guide frame and the second guide frame are both configured as annular structures, first support blocks are fixed to the inner bottoms of the first guide frame and the second guide frame, and the top of the first support block is configured as a planar structure.

[0014] Preferably, the first guide frame and the second guide frame are both configured as square frame structures, second support blocks are slidably disposed inside the first guide frame and the second guide frame, and the top of the second support block is configured as a plane structure;

[0015] The height of the second support block provided on the first guide frame is adjustable, a vertical slot is provided on the side wall of the first guide frame, and an adjusting bolt is provided on the first guide frame at the position of the vertical slot;

[0016] Support springs are evenly arranged between the second guide frame and the second support block.

[0017] Preferably, a limit adjustment member is provided between the first guide frame and the sliding seat, and between the second guide frame and the sliding seat, the limit adjustment member includes a connecting sleeve, a first limit nut and a second limit nut, a cavity for accommodating the hydraulic telescopic rod is opened inside the sliding seat, the connecting sleeve passes through the sliding seat and is located at the downward part of the cavity, and the first limit nut and the second limit nut are threadedly connected to the connecting sleeve at positions inside the cavity and outside the sliding seat, respectively.

[0018] Preferably, the driving member is arranged on the slide rail, and the driving member includes a screw rod, a slider, a double-headed threaded rod and a motor. The screw rod is rotatably arranged inside the slide rail, and a motor for driving the screw rod to rotate is fixed at one end of the slide rail. The screw rod is threadedly connected with a slider inside the slide rail, and the top of the slider is respectively connected to the first guide frame and the second guide frame through a double-headed threaded rod, and passes through the first guide frame and the second guide frame.

[0019] Preferably, a sliding sleeve is provided on the slide rail at a position intermediate between the first guide frame and the second guide frame, a T-shaped sliding groove is provided on the top of the sliding sleeve, and a limiting sliding rod connecting the first guide frame and the second guide frame is slidably connected in the T-shaped sliding groove.

[0020] Preferably, a rotating mechanism is provided on the extruder body at one side of the extruder head, and the rotating mechanism includes a driving motor, a gear plate, a gear ring and a bearing. The gear ring is arranged on the extruder body through a bearing, and a driving motor is fixed on one side of the extruder body. The driving motor is transmission-connected with a gear plate, and the gear plate and the gear ring are meshingly connected with each other, and a guide column and a slide rail are fixed on the gear ring.

[0021] Preferably, a cutting device is provided on the sliding seat, and a tool of the cutting device is located in the space between the first guide frame and the second guide frame, and the cutting device drives the tool to move to cut the profile.

[0022] Preferably, heat dissipation pipes are symmetrically arranged on the side walls of the first guide frame and the second guide frame, and the heat dissipation pipes are arranged as a continuous U-shaped structure. The first guide frame and the second guide frame are both made of metal alloy material.

[0023] Preferably, the U-shaped pipe portion of the heat dissipation pipe is fixed to the first guide frame and the second guide frame respectively through U-shaped fixing clips, and the U-shaped groove of the U-shaped fixing clip is larger than the diameter of the heat dissipation pipe.

[0024] Compared with the prior art, the present invention has the following beneficial effects:

[0025] 1. A first guide frame and a second guide frame are provided on one side of the extruder head for clamping and conveying the profile. A pressing limiter for limiting the pressing of the profile is provided in the first guide frame and the second guide frame, and a cutting device is provided at the gap between the first guide frame and the second guide frame. On the one hand, in the process of cutting the profile, the first guide frame and the second guide frame can be used to assist in limiting the positions on both sides of the cutting part, so that the cutting effect is better. On the other hand, the pressing limiters in the first guide frame and the second guide frame can be used to mechanically clamp the aluminum profile at the end, so as to completely pull out the profile in the extruder head. This process does not require shutdown and does not affect the next profile extrusion operation of the extruder. In addition, the aluminum profile is cleaned in the process of being heated, which can completely avoid the aluminum profile remaining in the extruder head due to temperature changes, and the actual application effect is better.

[0026] 2. A cutting device is arranged at the gap between the first guide frame and the second guide frame, so that there is enough space for the cutting device to be arranged. At the same time, the first guide frame and the second guide frame can also guide the moving aluminum profile, so that the overall conveying process of the extruded aluminum profile is more stable;

[0027] 3. A heat dissipation pipe is also provided on the outside of the first guide frame and the second guide frame, and coolant or hot water can be passed into the heat dissipation pipe. When the pressing limiter has problems as a whole and cannot be used, the heat dissipation of the heat dissipation pipe can affect the volume of the profile, so that the volume of the profile changes and can contact the pressing limiter. In this way, the first guide frame and the second guide frame can still pull out the profile remaining in the extruder head during the overall movement, and the actual application effect is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] The disclosure of the present invention is described with reference to the accompanying drawings. It should be understood that the drawings are only for illustrative purposes and are not intended to limit the scope of protection of the present invention. In the drawings, the same reference numerals are used to refer to the same components. Among them:

[0029] Figure 1 It is a structural schematic diagram of the aluminum profile extrusion processing equipment of the present invention;

[0030] Figure 2 It is a structural schematic diagram of the present invention when the sliding seat and the guide column are connected;

[0031] Figure 3 This is a schematic structural diagram of a first guide frame and a second guide frame according to Embodiment 1 of the present invention;

[0032] Figure 4 This is a schematic structural diagram of a first guide frame and a second guide frame according to Embodiment 2 of the present invention;

[0033] Figure 5 It is a structural schematic diagram of the driving member of the present invention;

[0034] Figure 6 It is a structural schematic diagram of the sliding sleeve of the present invention;

[0035] Figure 7 It is a structural schematic diagram of the heat dissipation pipe of the present invention when it is connected to the first guide frame and the second guide frame;

[0036] Figure 8 It is a side view of the rotating mechanism of the present invention.

[0037] Explanations in the figure: 10, extruder body; 20, extruder head; 30, first guide frame; 31, first support block; 301, second support block; 40, second guide frame; 401, support spring; 50, pressing limiter; 51, hydraulic telescopic rod; 52, arc pressing block; 53, limit adjustment member; 531, connecting sleeve; 532, first limit nut; 533, second limit nut; 60, sliding seat; 61, cavity; 70, slide rail; 71, sliding sleeve; 711, T-shaped slide groove; 712, limit slide rod; 80, guide column; 90, driving member; 91, screw rod; 92, slider; 93, double-headed threaded rod; 911, motor; 100, rotating mechanism; 101, driving motor; 102, gear plate; 103, gear ring; 104, bearing; 110, heat pipe; 120, U-shaped fixing card. DETAILED DESCRIPTION

[0038] It is easy to understand that according to the technical solution of the present invention, without changing the essential spirit of the present invention, a person skilled in the art can propose a variety of interchangeable structural modes and implementation modes. Therefore, the following specific implementation modes and drawings are only exemplary descriptions of the technical solution of the present invention, and should not be regarded as the whole of the present invention or as a limitation or restriction to the technical solution of the present invention.

[0039] like Figure 1-2 As shown, the aluminum profile extrusion processing equipment includes an extruder body 10, an extrusion head 20, a first guide frame 30 and a second guide frame 40. The extrusion head 20 is provided on one side of the extruder body 10, and the first guide frame 30 and the second guide frame 40 are provided on one side of the extrusion head 20. The first guide frame 30 and the second guide frame 40 are arranged in parallel at the same height. The internal cavity cross-sectional area of ​​the first guide frame 30 and the second guide frame 40 is larger than the cross-sectional area of ​​the profile, so that the profile can smoothly pass through the first guide frame 30 and the second guide frame 40, and a cutting tool is placed in the space between the first guide frame 30 and the second guide frame 40;

[0040] The first guide frame 30 and the second guide frame 40 are transmission-connected to the driving member 90, and the driving member 90 controls the first guide frame 30 and the second guide frame 40 to move along the axial direction of the extrusion head 20;

[0041] The top of the first guide frame 30 and the second guide frame 40 are slidably connected to the guide column 80 through the sliding seat 60. The guide column 80 is arranged parallel to the axial direction of the extruder head 20. The first guide frame 30 and the second guide frame 40 are provided with a pressing stopper 50.

[0042] The pressing limiter 50 includes a hydraulic telescopic rod 51 and an arc-shaped pressing block 52. The hydraulic telescopic rod 51 is located in the sliding seat 60. The hydraulic telescopic rod 51 is transmission-connected with the arc-shaped pressing block 52.

[0043] During the extrusion of the profile by the extruder head 20, the arc-shaped pressing block 52 is separated from the profile to maintain the smooth movement of the profile and prevent the arc-shaped pressing block 52 from affecting the movement of the profile.

[0044] When the extruder 20 extrude the profile for cutting, the first guide frame 30 and the second guide frame 40 provide bottom support for the profile, and the profile is cut at the middle position between the first guide frame 30 and the second guide frame 40. The first guide frame 30 and the second guide frame 40 support the profile, and the cutter provides downward pressure on the profile during the cutting process of the profile. At this time, the first guide frame 30 and the second guide frame 40 provide directional support for the profile, so that the cutting process of the profile is more stable, the cutting surface of the profile is more neat, and the later use of the profile is convenient;

[0045] When the extrusion head 20 is not extruding, the arc-shaped pressing block 52 presses the profile, and the driving member 90 controls the first guide frame 30 and the second guide frame 40 to move away from the extrusion head 20 to bring out the profile remaining in the extrusion head 20. Through this structural setting, it is possible to completely avoid the profile remaining in the extrusion head 20 and causing the extrusion head 20 to be blocked, and there is no need to clean the extrusion head 20 later.

[0046] By means of the first guide frame 30 and the second guide frame 40 arranged in this structure, on the one hand, the cutting point of the profile is kept away from the position of the extruder head 20, so that there is enough space for the arrangement of the cutting equipment, thereby reducing the overall manufacturing difficulty of the extruder equipment. On the other hand, the first guide frame 30 and the second guide frame 40 can also support the transported profile to maintain the stability of the profile after it is discharged from the extruder head 20. At the same time, in the process of cutting the profile, there is a supporting force at the bottom when the profile is cut, thereby achieving a better cutting effect of the profile. In addition, the first guide frame 30 and the second guide frame 40 can slide and be used in conjunction with the pressing limiter 50 provided in the first guide frame 30 and the second guide frame 40. The pressing limiter 50 presses and limits the position of the profile. By moving the first guide frame 30 and the second guide frame 40, the profile in the extruder head 20 can be taken out, thereby avoiding residual profile inside the extruder head 20.

[0047] Example 1

[0048] like Figure 3 As shown, the first guide frame 30 and the second guide frame 40 are both configured as annular structures, the first support block 31 is fixed to the inner bottom of the first guide frame 30 and the second guide frame 40, and the top of the first support block 31 is configured as a planar structure.

[0049] By setting the first guide frame 30 and the second guide frame 40 in a circular shape, it can be suitable for extrusion into an arc or circular shape, which can save space. At the same time, the side edges of the first guide frame 30 and the second guide frame 40 can be used to limit the side of the formation, further improving the stability of the profile during transportation.

[0050] Example 2

[0051] like Figure 4 As shown, the first guide frame 30 and the second guide frame 40 are both configured as a square frame structure, and a second support block 301 is slidably disposed inside the first guide frame 30 and the second guide frame 40, and the top of the second support block 301 is configured as a flat structure;

[0052] The height of the second support block 301 provided on the first guide frame 30 is adjustable, a vertical slot is provided on the side wall of the first guide frame 30, and an adjusting bolt is provided on the first guide frame 30 at the position of the vertical slot;

[0053] Support springs 401 are evenly disposed between the second guide frame 40 and the second support block 301 .

[0054] Specifically, the first guide frame 30 and the second guide frame 40 provided with the square frame structure can be used to extrude a square profile. In addition, during the normal conveying process of the profile, the profile will be supported and limited by the second support block 301 on the first guide frame 30 and the second guide frame 40 to maintain the stability of the conveying process;

[0055] During the process of cutting the profile, the second support block 301 in the first guide frame 30 and the second guide frame 40 will support the bottom of the profile, so that the cutting process is stable. After the profile is cut, the profile needs to be moved out of the second guide frame 40. If the second support block 301 in the second guide frame 40 is fixed in position, the second support block 301 in the second guide frame 40 will be worn and cracked at the edge during long-term use, thereby affecting the use of the second support block 301 in the second guide frame 40. A support spring 401 is provided at the bottom of the second support block 301 in the second guide frame 40, so that the second support block 301 can move downward in position when the profile is separated from the second guide frame 40, so that the wear and tear on the second support block 301 is minimized, thereby extending its service life.

[0056] Example 3

[0057] On the basis of Example 1 or Example 2, Figure 5As shown, a limit adjustment member 53 is provided between the first guide frame 30 and the sliding seat 60 and between the second guide frame 40 and the sliding seat 60. The limit adjustment member 53 includes a connecting sleeve 531, a first limit nut 532 and a second limit nut 533. A cavity 61 for accommodating the hydraulic telescopic rod 51 is opened inside the sliding seat 60. The connecting sleeve 531 passes through the sliding seat 60 and is located at the downward part of the cavity 61. The first limit nut 532 and the second limit nut 533 are threadedly connected to the connecting sleeve 531 at positions inside the cavity 61 and outside the sliding seat 60, respectively.

[0058] The driving member 90 is arranged on the slide rail 70, and the driving member 90 includes a screw rod 91, a slider 92, a double-headed threaded rod 93 and a motor 911. The screw rod 91 is rotatably arranged inside the slide rail 70, and a motor 911 for driving the screw rod 91 to rotate is fixed at one end of the slide rail 70. The slider 92 is screwed and connected to the screw rod 91 through a thread inside the slide rail 70. The top of the slider 92 is respectively connected to the first guide frame 30 and the second guide frame 40 through the double-headed threaded rod 93, and penetrates the first guide frame 30 and the second guide frame 40.

[0059] Specifically, when the first guide frame 30 and the second guide frame 40 are installed in position, the top position thereof can be locked at a suitable position on the connecting sleeve 531 by the first limiting nut 532 and the second limiting nut 533, and the distance between the first guide frame 30 and the second guide frame 40 and the sliding seat 60 can be determined, so that the first guide frame 30 and the second guide frame 40 can be synchronously adjusted to different heights, so that the first guide frame 30 and the second guide frame 40 are suitable for more profiles of different sizes, further improving their scope of application;

[0060] The double-headed threaded rod 93 passes through the first guide frame 30 and is connected to the second support block 301 in the first guide frame 30. The height of the second support block 301 can be adjusted. When the position of the second support block 301 is fine-tuned, the second support block 301 can be applied to profiles of more different sizes.

[0061] When the residual aluminum profile inside the extrusion head 20 is clamped and conveyed, the arc pressing block 52 is controlled to move downward by the hydraulic telescopic rod 51, and the aluminum profile is pressed and limited by the arc pressing block 52. When the position of the aluminum profile is limited, the motor 911 works to drive the screw rod 91 to rotate, thereby driving the first guide frame 30 and the second guide frame 40 to move away from the extrusion head 20. The sliding seat 60 connected to the top of the first guide frame 30 and the second guide frame 40 will move in the guide column, so as to bring out the aluminum profile remaining in the extrusion head 20. In this way, the residual aluminum profile in the extrusion head 20 can be cleaned.

[0062] like Figure 6As shown, a sliding sleeve 71 is provided on the slide rail 70 at a middle position between the first guide frame 30 and the second guide frame 40, a T-shaped slide groove 711 is provided on the top of the sliding sleeve 71, and a limiting slide rod 712 connecting the first guide frame 30 and the second guide frame 40 is slidably connected in the T-shaped slide groove 711. The sliding sleeve 71 cooperates with the slider 92 in the slide rail 70 to ensure that the first guide frame 30 and the second guide frame 40 will not generate vertical fluctuations during the lateral movement, and the overall smoothness and stability during the movement are further improved.

[0063] By connecting the limiting slide rod 712 with the T-shaped slide groove 711 on the sliding sleeve 71, the distance between the first guide frame 30 and the second guide frame 40 can be adjusted according to the size of the cutter during the assembly process, and the T-shaped slide groove 711 on the sliding sleeve 71 can keep the first guide frame 30 and the second guide frame 40 at the same height.

[0064] like Figure 1 and Figure 8 As shown, a rotating mechanism 100 is provided on the extruder body 10 at one side of the extruder head 20, and the rotating mechanism 100 includes a driving motor 101, a gear plate 102, a gear ring 103 and a bearing 104. The gear ring 103 is arranged on the extruder body 10 through the bearing 104. A driving motor 101 is fixed on one side of the extruder body 10, and the driving motor 101 is transmission-connected with the gear plate 102. The gear plate 102 and the gear ring 103 are meshed with gears, and the guide column 80 and the slide rail 70 are fixed on the gear ring 103.

[0065] Specifically, the driving motor 101 works to drive the gear plate 102 to rotate, thereby driving the gear ring 103 to rotate accordingly, so that the guide column 80 and the slide rail 70 on the gear ring 103 can be adjusted to different angles, so that the first guide frame 30 and the second guide frame 40 are suitable for discharging profiles of more different shapes and structures, which can further improve their scope of application.

[0066] A cutting device is provided on the sliding seat 60, and the tool of the cutting device is located in the space between the first guide frame 30 and the second guide frame 40. The cutting device drives the tool to move to cut the profile. Through this structural setting, the profile can be made more stable as a whole during the cutting process, and the actual application effect is better.

[0067] like Figure 7 As shown, heat dissipation pipes 110 are symmetrically arranged on the side walls of the first guide frame 30 and the second guide frame 40. The heat dissipation pipes 110 are arranged as a continuous U-shaped structure. The first guide frame 30 and the second guide frame 40 are both made of metal alloy materials, so that when the heat dissipation pipes 110 dissipate temperature, the first guide frame 30 and the second guide frame 40 have a better temperature transmission effect.

[0068] like Figure 7 As shown, the U-shaped pipe portion of the heat dissipation pipe 110 is respectively fixed to the first guide frame 30 and the second guide frame 40 through a U-shaped fixing card 120 , and the U-shaped groove of the U-shaped fixing card 120 is larger than the diameter of the heat dissipation pipe 110 .

[0069] When the pressing limiter 50 is not used to press the profile, the distance between the profile and the pressing limiter is 1-2mm. Through the setting of the heat pipe 110, coolant or hot water can be introduced into the heat pipe 110. When the pressing limiter 50 as a whole has problems and cannot be used, the heat dissipation of the heat pipe 110 can affect the volume of the profile, so that the volume of the profile changes and can contact the pressing limiter 50, so that the first guide frame 30 and the second guide frame 40 can still pull out the profile remaining in the extrusion head 20 during the overall movement, and the actual application effect is better.

[0070] The technical scope of the present invention is not limited to the contents in the above description. Those skilled in the art can make various deformations and modifications to the above embodiments without departing from the technical idea of ​​the present invention, and these deformations and modifications should all fall within the protection scope of the present invention.

Claims

1. Aluminum profile extrusion processing equipment, characterized by: The invention comprises an extruder body (10), an extrusion head (20), a first guide frame (30) and a second guide frame (40), wherein the extruder body (10) is provided with an extrusion head (20) on one side, and the first guide frame (30) and the second guide frame (40) are provided with one side of the extrusion head (20), the first guide frame (30) and the second guide frame (40) are arranged in parallel at the same height, the internal cavity cross-sectional area of ​​the first guide frame (30) and the second guide frame (40) is larger than the cross-sectional area of ​​the profile, and a cutting tool is placed in the space between the first guide frame (30) and the second guide frame (40); The first guide frame (30) and the second guide frame (40) are transmission-connected to a driving member (90), and the driving member (90) controls the first guide frame (30) and the second guide frame (40) to move along the axial direction of the extrusion head (20); The tops of the first guide frame (30) and the second guide frame (40) are slidably connected to the guide column (80) via a sliding seat (60); the guide column (80) is arranged parallel to the axial direction of the extruder head (20); and the first guide frame (30) and the second guide frame (40) are provided with a pressing stopper (50); The pressing limiter (50) comprises a hydraulic telescopic rod (51) and an arc-shaped pressing block (52); the hydraulic telescopic rod (51) is located in a sliding seat (60); and the hydraulic telescopic rod (51) is drivingly connected to the arc-shaped pressing block (52); During the process of conveying the extruded profile by the extrusion head (20), the arc-shaped pressing block (52) is separated from the profile; When the extrusion head (20) extrudes a profile and cuts it, the first guide frame (30) and the second guide frame (40) provide bottom support for the profile, and the profile is cut at a position between the first guide frame (30) and the second guide frame (40); When the extrusion head (20) is not extruding, the arc-shaped pressing block (52) presses the profile, and the driving member (90) controls the first guide frame (30) and the second guide frame (40) to move in a direction away from the extrusion head (20), thereby taking out the profile remaining in the extrusion head (20).

2. The aluminum profile extrusion processing equipment according to claim 1, characterized in that: The first guide frame (30) and the second guide frame (40) are both arranged as annular structures, a first support block (31) is fixed to the inner bottom of the first guide frame (30) and the second guide frame (40), and the top of the first support block (31) is arranged as a plane structure.

3. The aluminum profile extrusion processing equipment according to claim 1, characterized in that: The first guide frame (30) and the second guide frame (40) are both configured as square frame structures, a second support block (301) is slidably arranged inside the first guide frame (30) and the second guide frame (40), and the top of the second support block (301) is configured as a plane structure; The height of the second support block (301) provided on the first guide frame (30) is adjustable, a vertical slot is provided on the side wall of the first guide frame (30), and an adjustment bolt is provided on the first guide frame (30) at the position of the vertical slot; Support springs (401) are evenly arranged between the second guide frame (40) and the second support block (301).

4. The aluminum profile extrusion processing equipment according to claim 2 or 3, characterized in that: A limit adjustment member (53) is provided between the first guide frame (30) and the sliding seat (60) and between the second guide frame (40) and the sliding seat (60). The limit adjustment member (53) comprises a connecting sleeve (531), a first limit nut (532) and a second limit nut (533). A cavity (61) for accommodating the hydraulic telescopic rod (51) is provided inside the sliding seat (60). The connecting sleeve (531) passes through the sliding seat (60) and is located at a downward position of the cavity (61). The first limit nut (532) and the second limit nut (533) are respectively threadedly connected to the connecting sleeve (531) at positions inside the cavity (61) and outside the sliding seat (60).

5. The aluminum profile extrusion processing equipment according to claim 4, characterized in that: The driving member (90) is arranged on the slide rail (70), and the driving member (90) comprises a screw rod (91), a slider (92), a double-headed threaded rod (93) and a motor (911). The screw rod (91) is rotatably arranged inside the slide rail (70), and a motor (911) for driving the screw rod (91) to rotate is fixed at one end of the slide rail (70). The screw rod (91) is threadedly connected to the slider (92) inside the slide rail (70), and the top of the slider (92) is respectively connected to the first guide frame (30) and the second guide frame (40) through the double-headed threaded rod (93), and penetrates the first guide frame (30) and the second guide frame (40).

6. The aluminum profile extrusion processing equipment according to claim 5, characterized in that: A sliding sleeve (71) is provided on the slide rail (70) at a position between the first guide frame (30) and the second guide frame (40), a T-shaped sliding groove (711) is provided on the top of the sliding sleeve (71), and a limiting sliding rod (712) connecting the first guide frame (30) and the second guide frame (40) is slidably connected in the T-shaped sliding groove (711).

7. The aluminum profile extrusion processing equipment according to claim 6, characterized in that: A rotating mechanism (100) is provided on the extruder body (10) at one side of the extruder head (20), the rotating mechanism (100) comprising a driving motor (101), a gear plate (102), a gear ring (103) and a bearing (104), the gear ring (103) being arranged on the extruder body (10) via the bearing (104), the driving motor (101) being fixed on one side of the extruder body (10), the driving motor (101) being transmission-connected with the gear plate (102), the gear plate (102) and the gear ring (103) being meshedly connected, and the guide column (80) and the slide rail (70) being fixed on the gear ring (103).

8. The aluminum profile extrusion processing equipment according to claim 7, characterized in that: A cutting device is provided on the sliding seat (60), a tool of the cutting device is located in the space between the first guide frame (30) and the second guide frame (40), and the cutting device drives the tool to move to cut the profile.

9. The aluminum profile extrusion processing equipment according to claim 2 or 3, characterized in that: Heat dissipation pipes (110) are symmetrically arranged on the side walls of the first guide frame (30) and the second guide frame (40); the heat dissipation pipes (110) are arranged as a continuous U-shaped structure; and the first guide frame (30) and the second guide frame (40) are both made of metal alloy material.

10. The aluminum profile extrusion processing equipment according to claim 9, characterized in that: The U-shaped pipe portion of the heat dissipation pipe (110) is respectively fixed to the first guide frame (30) and the second guide frame (40) via a U-shaped fixing card (120), and the U-shaped groove of the U-shaped fixing card (120) is larger than the diameter of the heat dissipation pipe (110).

Citation Information

Patent Citations

  • Aluminum profile extrusion equipment

    CN117483467A

  • Extruding machine for aluminum profile production

    CN213162494U