Aluminum rod conveying equipment used for aluminum product processing

By designing an aluminum rod conveying equipment that integrates transverse movement, transfer, insulation, anti-static deformation and anti-collision deformation mechanisms, the defects caused by temperature loss, deformation and equipment collision of hollow aluminum rods during processing are solved, and the stability of molding quality is improved.

CN119734994BActive Publication Date: 2025-05-13FOSHAN HONGLUE ALUMINUM CO LTD +2
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Patent Information

Application Number
CN202510257585.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-05-13
Estimated Expiration
2045-03-05

AI Technical Summary

Technical Problem

During the processing of aluminum products, hollow aluminum rods are prone to defects caused by temperature loss, deformation and equipment collision during the transportation process, affecting the molding quality.

Method used

An aluminum rod conveying equipment is designed, including a transverse mechanism, a transfer mechanism, a thermal insulation mechanism, an anti-static deformation mechanism and an anti-impact deformation mechanism. Through the coordinated work of these mechanisms, stable transportation and protection of hollow aluminum rods are achieved.

Benefits of technology

It effectively reduces the temperature loss of hollow aluminum rods, prevents defects caused by deformation and equipment collision, and improves the stability of molding quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an aluminum rod conveying device used for aluminum product processing, relates to the technical field of aluminum product processing, comprises a workbench, and also comprises: a transverse movement mechanism, which is installed on the top of the workbench; a transfer mechanism, which is installed on the transverse movement mechanism; and a heat preservation mechanism, which is connected to the transfer mechanism. The invention installs an anti-static deformation mechanism to ensure the shape of the hollow aluminum rod during transportation, avoids the deformation of the overheated hollow aluminum rod, and improves the forming quality of the workpiece. The transverse movement mechanism, the transfer mechanism and the anti-collision deformation mechanism are installed to convey and transfer the hollow aluminum rod, and the sliding of the hollow aluminum rod is controlled during the transfer process to avoid the collision of the hollow aluminum rod with the equipment, and the hollow aluminum rod is protected from defects that affect the forming quality. The heat preservation mechanism is installed to reduce the temperature influence of the outside world on the hollow aluminum rod, so that the hollow aluminum rod is kept within a temperature range suitable for processing, and the stability of the quality of the aluminum profile is guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of aluminum product processing, and in particular to aluminum rod conveying equipment used in aluminum product processing. Background Art

[0002] Hollow aluminum rods are hollow tubular materials made of aluminum alloy and are used for the processing of aluminum products. When processing aluminum products, they pass through two stations, one of which is a heating station and the other is an extrusion station. In order to achieve the purpose of automation, a conveying device will be set between the two stations to convey the heated hollow aluminum rods to the forming station for forming. However, the following problems may occur during the conveying process: 1. Temperature loss: Due to seasonal issues, the temperature loss of hollow aluminum rods is different, so the quality of the aluminum rods arriving at the forming station will fluctuate; 2. Deformation of hollow aluminum rods: Because the hollowness in the middle of the hollow aluminum rod and the certain flexibility of the aluminum material after heating will cause slight deformation of the hollow aluminum rod, affecting the processing of the forming station; 3. Defects caused by violent unloading: When the existing conveying equipment is transported, the hollow aluminum rod will collide with the equipment due to unloading, which is easy to cause defects and deformation; the above problems will cause problems in the forming of the workpiece and affect the forming quality of the workpiece. Summary of the invention

[0003] The present invention provides an aluminum rod conveying device used for aluminum product processing to solve the above-mentioned deficiencies in the prior art.

[0004] In order to achieve the above object, the present invention adopts the following technical solutions:

[0005] An aluminum rod conveying device used for aluminum product processing comprises a workbench and also comprises:

[0006] A traverse mechanism, which is mounted on the top of the workbench;

[0007] A transfer mechanism, which is mounted on the transverse movement mechanism;

[0008] A heat preservation mechanism connected to the transfer mechanism, the heat preservation mechanism comprising a docking heat preservation cylinder;

[0009] The anti-static deformation mechanism is installed on the heat preservation mechanism, and the anti-static deformation mechanism includes a rotating structure and an inner wall support shaft, a pull plate is fixed to one end of the inner wall support shaft, one side of the pull plate is rotatably connected to a connecting plate, and one side of the connecting plate is rotatably connected to a push rod motor;

[0010] The anti-collision deformation mechanism is installed on the anti-static deformation mechanism. The anti-collision deformation mechanism comprises a pressing plate, and arc-shaped pressing plates are fixed on both sides of the pressing plate.

[0011] Furthermore, the transverse movement mechanism includes two support plates fixed on the top of the workbench, the two support plates are internally rotatably connected with screws, a motor 1 is fixed to one side of one of the support plates, one end of the output shaft of the motor 1 is fixedly connected to the screw, a guide rod is fixed between the two support plates, the external thread sleeve of the screw is provided with a movable plate, and the movable plate is sleeved on the outside of the guide rod.

[0012] Further, the transfer mechanism includes a rotating shaft 1 rotatably connected to the top of the moving plate, the rotating shaft 1 is penetrated by a through hole, a limiting plate 1 is sleeved inside the through hole, one side of the limiting plate 1 is fixedly connected to a support plate away from the motor 1, and a gear 1 is fixed to the outside of the rotating shaft 1;

[0013] A horizontal plate is fixed to the top of the rotating shaft 1, a U-shaped plate 1 is fixed to the top of the horizontal plate, a U-shaped plate 2 is rotatably connected to the inner wall of the U-shaped plate 1, a limiting plate 2 is sleeved inside the U-shaped plate 2, the limiting plate 2 is fixed to the top of the limiting plate 1, and a mounting seat is fixed to the top of the U-shaped plate 2;

[0014] Two groups of springs are fixed on the top of the transverse plate. The two groups of springs are respectively located on both sides of the U-shaped plate 1, and the top ends of the springs are fixedly connected to the mounting seat.

[0015] Furthermore, the transfer mechanism also includes a U-shaped plate 3 fixed to the bottom edge of the mounting seat, the bottom of the U-shaped plate 3 is rotatably connected with a ball, and the second limit plate is set inside the U-shaped plate 3;

[0016] A track plate is fixed on the top of the support plate on which the motor 1 is installed, the wider side of the track plate is higher than the narrower side, and the inner wall of the track plate is provided with a rounded corner, and the ball contacts the rounded corner during movement and moves to the top of the track plate;

[0017] A rack 1 is fixed to one side of the support plate on which the track plate is installed, and the gear 1 meshes with the rack 1 during the movement.

[0018] Furthermore, the insulation mechanism also includes a plurality of mounting rings fixed on the top of the mounting seat, the insulation tube is rotatably connected inside the plurality of mounting rings, the top of one end of the insulation tube away from the track plate is rotatably connected with a cover plate, the top of the insulation tube is fixed with a second motor, and the output shaft of the second motor is connected to the rotation connection point of the insulation tube and the cover plate.

[0019] Further, the rotating structure includes a bevel gear 1 fixed to the outer wall of the heat preservation cylinder, one side of the bevel gear 1 is meshed with a bevel gear 2, the inner wall of the bevel gear 2 is fixed with a rotating shaft 2, the other end of the rotating shaft 2 is fixed with a gear 2, the bottom of the gear 2 is meshed with a rack 2, and the rack 2 is fixed to the top of the workbench;

[0020] The outside of the second rotating shaft is rotatably connected with a mounting frame, and the mounting frame is fixedly connected to the mounting seat.

[0021] Furthermore, the anti-static deformation mechanism also includes a sealing plate rotatably connected to the side of the heat preservation cylinder close to the track plate, and a support frame is fixed to the side of the sealing plate close to the track plate, and the support frame is fixedly connected to the mounting seat;

[0022] The push rod motor is rotatably connected to the sealing plate;

[0023] The sealing plate is provided with two mounting openings, and the pull plate is rotatably connected inside the mounting openings located below.

[0024] Furthermore, the anti-collision deformation mechanism also includes an anti-slip plate fixed to the bottom of the two arc-shaped pressing plates, the pressing plate is rotatably connected to the inside of the upper mounting opening, and one end of the pressing plate is rotatably connected to the connecting plate.

[0025] Furthermore, a controller is fixed on one side of the workbench, and the controller is electrically connected to the motor 1, the motor 2 and the push rod motor.

[0026] Compared with the prior art, the present invention has the following beneficial effects:

[0027] 1. The present invention transports and transfers the hollow aluminum rod by installing a transverse movement mechanism, a transfer mechanism and an anti-collision deformation mechanism, and controls the sliding of the hollow aluminum rod during the transfer process to avoid collision between the hollow aluminum rod and the equipment, and protects the hollow aluminum rod from defects that affect the molding quality;

[0028] 2. The present invention reduces the temperature influence of the outside world on the hollow aluminum rod by installing a heat preservation mechanism, so that the hollow aluminum rod is kept within a temperature range suitable for processing, thereby ensuring the stability of the quality of the aluminum profile;

[0029] 3. The present invention ensures the shape of the hollow aluminum rod during transportation by installing an anti-static deformation mechanism, avoids deformation of the overheated hollow aluminum rod, and improves the molding quality of the workpiece. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 This is a first-perspective structural schematic diagram of an aluminum rod conveying device used for aluminum product processing proposed by the present invention.

[0031] Figure 2 This is a second perspective structural schematic diagram of an aluminum rod conveying device used for aluminum product processing proposed by the present invention.

[0032] Figure 3 This is a third-view structural schematic diagram of an aluminum rod conveying device used for aluminum product processing proposed by the present invention.

[0033] Figure 4 The present invention is a schematic diagram of the cross-sectional structure of an aluminum rod conveying device used for aluminum product processing.

[0034] Figure 5 A schematic diagram of the internal structure of a heat preservation cylinder of an aluminum rod conveying device used for aluminum product processing proposed by the present invention.

[0035] Figure 6 for Figure 2 Enlarged structural diagram at point A.

[0036] Figure 7 for Figure 4 Enlarged structural diagram at point B.

[0037] Figure 8 for Figure 3 Enlarged structural diagram at point C.

[0038] In the figure:

[0039] 1. Workbench;

[0040] 2. Transverse movement mechanism; 21. Support plate; 22. Motor 1; 23. Screw rod; 24. Moving plate; 25. Guide rod;

[0041] 3. Transfer mechanism; 31. Rotating shaft 1; 32. Through hole; 33. Gear 1; 34. Horizontal plate; 35. Spring; 36. U-shaped plate 1; 37. Rack 1; 38. Track plate; 39. Fillet; 310. Limiting plate 1; 311. Limiting plate 2; 312. U-shaped plate 2; 313. U-shaped plate 3; 314. Ball bearing; 315. Mounting seat;

[0042] 4. Insulation mechanism; 41. Motor 2; 42. Mounting ring; 43. Cover plate; 44. Insulation cylinder;

[0043] 5. Anti-static deformation mechanism; 51. Mounting frame; 52. Rotating shaft 2; 53. Gear 2; 54. Bevel gear 1; 55. Support frame; 56. Sealing plate; 57. Push rod motor; 58. Connecting plate; 59. Pull plate; 510. Support shaft; 511. Rack 2; 512. Bevel gear 2;

[0044] 6. Anti-collision deformation mechanism; 61. Pressing plate; 62. Arc-shaped pressing plate; 63. Anti-slip plate. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0046] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0047] In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, the meaning of "multiple" is two or more, unless otherwise clearly and specifically defined. In addition, the terms "installed", "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be a connection between the two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.

[0048] Example: Refer to Figure 1-Figure 8 : An aluminum rod conveying device used for aluminum product processing, comprising a workbench 1, and also comprising:

[0049] A traverse mechanism 2, which is installed on the top of the workbench 1;

[0050] A transfer mechanism 3, which is mounted on the transverse movement mechanism 2;

[0051] A heat preservation mechanism 4 connected to the transfer mechanism 3, the heat preservation mechanism 4 includes a docking heat preservation cylinder 44;

[0052] The anti-static deformation mechanism 5 is installed on the heat preservation mechanism 4. The anti-static deformation mechanism 5 includes a rotating structure and an inner wall support shaft 510. A pull plate 59 is fixed to one end of the inner wall support shaft 510. One side of the pull plate 59 is rotatably connected to a connecting plate 58. One side of the connecting plate 58 is rotatably connected to a push rod motor 57.

[0053] The anti-collision deformation mechanism 6 is installed on the anti-static deformation mechanism 5 . The anti-collision deformation mechanism 6 includes a pressing plate 61 , and arc-shaped pressing plates 62 are fixed on both sides of the pressing plate 61 .

[0054] The transverse movement mechanism 2 includes two support plates 21 fixed on the top of the workbench 1, and the two support plates 21 are internally rotatably connected with screws 23. A motor 22 is fixed to one side of one of the support plates 21, and one end of the output shaft of the motor 22 is fixedly connected to the screw 23. A guide rod 25 is fixed between the two support plates 21, and the external thread sleeve of the screw 23 is provided with a movable plate 24, and the movable plate 24 is sleeved on the outside of the guide rod 25.

[0055] The transfer mechanism 3 includes a rotating shaft 31 rotatably connected to the top of the moving plate 24, a through hole 32 is passed through the rotating shaft 31, a limiting plate 310 is sleeved inside the through hole 32, one side of the limiting plate 310 is fixedly connected to the support plate 21 away from the motor 22, and a gear 33 is fixed to the outside of the rotating shaft 31;

[0056] A horizontal plate 34 is fixed to the top of the rotating shaft 1 31, a U-shaped plate 1 36 is fixed to the top of the horizontal plate 34, a U-shaped plate 2 312 is rotatably connected to the inner wall of the U-shaped plate 1 36, a limiting plate 2 311 is sleeved inside the U-shaped plate 2 312, the limiting plate 2 311 is fixed to the top of the limiting plate 1 310, and a mounting seat 315 is fixed to the top of the U-shaped plate 2 312;

[0057] Two groups of springs 35 are fixed on the top of the transverse plate 34 . The two groups of springs 35 are respectively located on both sides of the U-shaped plate 1 36 . The top ends of the springs 35 are fixedly connected to the mounting seat 315 .

[0058] The transfer mechanism 3 also includes a U-shaped plate 313 fixed to the bottom edge of the mounting seat 315, a ball 314 is rotatably connected to the bottom of the U-shaped plate 313, and a limit plate 2 311 is sleeved inside the U-shaped plate 313;

[0059] A track plate 38 is fixed on the top of the support plate 21 on which the motor 22 is installed. The wider side of the track plate 38 is higher than the narrower side. The inner wall of the track plate 38 is provided with a rounded corner 39. The ball 314 contacts the rounded corner 39 during the movement and moves to the top of the track plate 38.

[0060] A rack 37 is fixed to one side of the support plate 21 on which the track plate 38 is installed, and the gear 33 meshes with the rack 37 during the movement.

[0061] The insulation mechanism 4 also includes a plurality of mounting rings 42 fixed on the top of the mounting seat 315, an insulation tube 44 is rotatably connected inside the plurality of mounting rings 42, a cover plate 43 is rotatably connected to the top of one end of the insulation tube 44 away from the track plate 38, a motor 2 41 is fixed on the top of the insulation tube 44, and an output shaft of the motor 2 41 is connected to a rotation connection point between the insulation tube 44 and the cover plate 43.

[0062] The rotating structure includes a bevel gear 1 54 fixed to the outer wall of the heat preservation tube 44, one side of the bevel gear 1 54 is meshed with a bevel gear 2 512, the inner wall of the bevel gear 2 512 is fixed with a rotating shaft 2 52, the other end of the rotating shaft 2 52 is fixed with a gear 2 53, the bottom of the gear 2 53 is meshed with a rack 2 511, and the rack 2 511 is fixed to the top of the workbench 1;

[0063] The outer portion of the second rotating shaft 52 is rotatably connected to a mounting bracket 51 , and the mounting bracket 51 is fixedly connected to the mounting seat 315 .

[0064] The anti-static deformation mechanism 5 also includes a sealing plate 56 rotatably connected to the side of the heat preservation tube 44 close to the track plate 38, and a support frame 55 is fixed to the side of the sealing plate 56 close to the track plate 38, and the support frame 55 is fixedly connected to the mounting seat 315;

[0065] The push rod motor 57 is rotatably connected to the sealing plate 56;

[0066] The sealing plate 56 has two installation openings formed therethrough, and the pull plate 59 is rotatably connected to the installation openings at the bottom.

[0067] The anti-collision deformation mechanism 6 also includes an anti-slip plate 63 fixed to the bottom of the two arc-shaped pressing plates 62 . The pressing plate 61 is rotatably connected to the inside of the upper mounting opening. One end of the pressing plate 61 is rotatably connected to the connecting plate 58 .

[0068] A controller is fixed on one side of the workbench 1 , and the controller is electrically connected to the motor 1 22 , the motor 2 41 and the push rod motor 57 .

[0069] Working principle:

[0070] The conveying equipment is installed between the aluminum rod heating equipment and the extrusion forming equipment;

[0071] When the aluminum rod heating device heats the aluminum rod, the material port of the heat preservation tube 44 is opposite to the material outlet of the aluminum rod heating device, and the controller starts the push rod motor 57 to push the connecting plate 58 upward, so that one end of the pull plate 59 is tilted upward, one end of the support shaft 510 is pressed downward, one end of the pressing plate 61 is tilted upward, and one end of the arc-shaped pressing plate 62 is pressed downward, and then the push rod motor 57 is turned off, and the aluminum rod heating device pushes the hollow aluminum rod from the material outlet into the interior of the heat preservation tube 44. When pushing in, the support shaft 510 is pressed downward for easier Insert the hollow aluminum rod into the inner diameter of the hollow aluminum rod to prevent the hollow aluminum rod from being slightly deformed due to storage and heating, so that the support shaft 510 is pressed against the hollow aluminum rod, making it difficult to insert into the interior of the heat preservation tube 44. Because the push rod motor 57 pushes up a short distance, the arc-shaped pressing plate 62 presses down a short distance, so when the hollow aluminum rod is pushed in, the top outer wall will not contact the arc-shaped pressing plate 62. After it is fully pushed in, start the motor 2 41 to rotate the cover plate 43 to close one end of the heat preservation tube 44 to keep the heated hollow aluminum rod warm.

[0072] The push rod motor 57 is started to move the support shaft 510 and the arc-shaped pressure plate 62 upward and reset. After the support shaft 510 is reset, it contacts the top inner wall of the hollow aluminum rod. The support shaft 510 supports the top inner wall of the hollow aluminum rod to prevent the hollow aluminum rod from sagging and deforming after heating. The motor 1 22 is started to drive the screw 23 to rotate forward, so that the moving plate 24 drives the insulation cylinder 44 and the hollow aluminum rod inside to move horizontally for transportation. During the transportation process, the gear 2 53 moves and rotates on the rack 2 511, and then drives the rotating shaft 2 52 and the second bevel gear 512 rotate, and the rotation of the second bevel gear 512 drives the second bevel gear 512 and the heat preservation tube 44 to rotate. The inner wall of the heat preservation tube 44 has a certain friction force, so when rolling, it will drive the hollow aluminum rod to roll inside the heat preservation tube 44. The rolling hollow aluminum rod can avoid the situation that the hollow aluminum rod is always in a static state after heating, which causes slight deformation of the hollow aluminum rod. When rolling, the support shaft 510 supports the inner wall of the hollow aluminum rod to avoid deformation of the hollow aluminum rod affecting the quality of the later extrusion molding.

[0073] After moving to a certain distance, gear 2 53 is disengaged from rack 2 511, and limit plate 2 311 draws out U-shaped plate 313 and U-shaped plate 2 312 to release the limit on U-shaped plate 2 312, restoring the rotation relationship between U-shaped plate 2 312 and U-shaped plate 1 36, and limit plate 1 310 draws out through hole 32 to restore the rotation relationship of shaft 1 31, and then gear 1 33 is engaged with rack 1 37, so that gear 1 33 drives shaft 1 31 to rotate, and shaft 1 31 drives the upper structure to rotate, so that the insulation cylinder 44 rotates ninety degrees toward the other side to dock with the silo of the extrusion molding equipment. During the rotation process, ball 314 moves to the top of track plate 38 and moves on track plate 38. Because one side of track plate 38 is low and the other side is high, it will push ball 314 to move up during rotation, so ball 314 The U-shaped plate 313 will be pushed upward, so that one side of the mounting seat 315 is tilted upward, and the mounting seat 315 drives the U-shaped plate 2 312 to rotate, pressing down the spring 35 on one side of the U-shaped plate 2 312, pulling the spring 35 on the other side of the U-shaped plate 2 312, so that the material opening of the insulation cylinder 44 is tilted downward, and then the push rod motor 57 is controlled to press the arc pressure plate 62 down a certain distance, which is higher than the downward pressing distance during feeding, so that the anti-slide plate 63 contacts with the top of the hollow aluminum rod to generate friction. At this time, the hollow aluminum rod has been cooled to a specified temperature range in the insulation cylinder 44, and the contact between the anti-slide plate 63 and the hollow aluminum rod will not affect the hollow aluminum rod. The cover plate 43 is opened, and the hollow aluminum rod inside slides out of the material opening. When sliding, the anti-slide plate 63 controls the sliding speed of the hollow aluminum rod, reduces the impact force, and avoids defects at one end of the hollow aluminum rod.

[0074] After the material is moved out, start the motor 22 to reverse the screw 23, so that the movable plate 24 drives the upper structure to reset. When resetting, the insulation cylinder 44 rotates and resets, the limit plate 1 310 is inserted into the inside of the through hole 32, and the limit plate 2 311 is inserted into the inside of the U-shaped plate 2 312 and the U-shaped plate 3 313, and then the next hollow aluminum rod is transported.

[0075] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An aluminum rod conveying device used for aluminum product processing, comprising a workbench (1), characterized in that: Also includes: A traverse mechanism (2) mounted on the top of the workbench (1); A transfer mechanism (3) mounted on the transverse movement mechanism (2); A heat preservation mechanism (4) connected to the transfer mechanism (3), the heat preservation mechanism (4) comprising a docking heat preservation cylinder (44); An anti-static deformation mechanism (5) is mounted on the heat preservation mechanism (4), the anti-static deformation mechanism (5) comprising a rotating structure and an inner wall support shaft (510), a pull plate (59) being fixed to one end of the inner wall support shaft (510), one side of the pull plate (59) being rotatably connected to a connecting plate (58), and one side of the connecting plate (58) being rotatably connected to a push rod motor (57); An anti-collision deformation mechanism (6) is mounted on the anti-static deformation mechanism (5), the anti-collision deformation mechanism (6) comprising a pressing plate (61), arc-shaped pressing plates (62) being fixed on both sides of the pressing plate (61); The rotating structure comprises a bevel gear 1 (54) fixed to the outer wall of the heat-insulating cylinder (44), a bevel gear 2 (512) meshing on one side of the bevel gear 1 (54), a rotating shaft 2 (52) fixed on the inner wall of the bevel gear 2 (512), a gear 2 (53) fixed on the other end of the rotating shaft 2 (52), a rack 2 (511) meshing on the bottom of the gear 2 (53), and the rack 2 (511) fixed on the top of the workbench (1); The outside of the second rotating shaft (52) is rotatably connected to a mounting frame (51), and the mounting frame (51) is fixedly connected to the mounting seat (315).

2. The aluminum rod conveying equipment used for aluminum product processing according to claim 1 is characterized in that: The transverse movement mechanism (2) comprises two support plates (21) fixed on the top of the workbench (1), the two support plates (21) are internally rotatably connected with screw rods (23), a motor 1 (22) is fixed on one side of one of the support plates (21), one end of the output shaft of the motor 1 (22) is fixedly connected to the screw rod (23), a guide rod (25) is fixed between the two support plates (21), the external thread sleeve of the screw rod (23) is provided with a moving plate (24), and the moving plate (24) is sleeved on the outside of the guide rod (25).

3. The aluminum rod conveying equipment used for aluminum product processing according to claim 2 is characterized in that: The transfer mechanism (3) comprises a rotating shaft (31) rotatably connected to the top of the moving plate (24), the rotating shaft (31) having a through hole (32) extending therethrough, a limiting plate (310) being sleeved inside the through hole (32), one side of the limiting plate (310) being fixedly connected to a support plate (21) away from the motor (22), and a gear (33) being fixedly disposed outside the rotating shaft (31); A transverse plate (34) is fixed to the top of the rotating shaft (31), a U-shaped plate (36) is fixed to the top of the transverse plate (34), a U-shaped plate (312) is rotatably connected to the inner wall of the U-shaped plate (36), a limiting plate (311) is sleeved inside the U-shaped plate (312), the limiting plate (311) is fixed to the top of the limiting plate (310), and a mounting seat (315) is fixed to the top of the U-shaped plate (312); Two groups of springs (35) are fixed on the top of the transverse plate (34), and the two groups of springs (35) are respectively located on both sides of the U-shaped plate 1 (36), and the top ends of the springs (35) are fixedly connected to the mounting seat (315).

4. The aluminum rod conveying equipment used for aluminum product processing according to claim 3 is characterized in that: The transfer mechanism (3) further comprises a U-shaped plate three (313) fixed to the bottom edge of the mounting seat (315), a ball bearing (314) being rotatably connected to the bottom of the U-shaped plate three (313), and the limit plate two (311) being sleeved inside the U-shaped plate three (313); A track plate (38) is fixed on the top of the support plate (21) on which the motor 1 (22) is mounted, the wider side of the track plate (38) being higher than the narrower side, the inner wall of the track plate (38) being provided with a rounded corner (39), and the ball bearing (314) contacts the rounded corner (39) during movement and moves to the top of the track plate (38); A rack gear 1 (37) is fixed to one side of the support plate (21) on which the track plate (38) is mounted, and the gear gear 1 (33) meshes with the rack gear 1 (37) during movement.

5. The aluminum rod conveying equipment used for aluminum product processing according to claim 4 is characterized in that: The heat-insulating mechanism (4) further comprises a plurality of mounting rings (42) fixed on the top of the mounting seat (315); the heat-insulating tube (44) is rotatably connected inside the plurality of mounting rings (42); the top of one end of the heat-insulating tube (44) away from the track plate (38) is rotatably connected to a cover plate (43); a second motor (41) is fixed on the top of the heat-insulating tube (44); and an output shaft of the second motor (41) is connected to a rotational connection point between the heat-insulating tube (44) and the cover plate (43).

6. The aluminum rod conveying equipment used for aluminum product processing according to claim 5 is characterized in that: The anti-static deformation mechanism (5) further comprises a sealing plate (56) rotatably connected to a side of the heat-insulating cylinder (44) close to the track plate (38); a support frame (55) is fixed to a side of the sealing plate (56) close to the track plate (38); and the support frame (55) is fixedly connected to the mounting seat (315); The push rod motor (57) is rotatably connected to the sealing plate (56); The sealing plate (56) is provided with two mounting openings extending therethrough, and the pull plate (59) is rotatably connected to the interior of the mounting openings located below.

7. The aluminum rod conveying equipment used for aluminum product processing according to claim 6 is characterized in that: The anti-collision deformation mechanism (6) further comprises an anti-slip plate (63) fixed to the bottom of the two arc-shaped pressing plates (62); the pressing plate (61) is rotatably connected to the interior of the upper mounting opening; one end of the pressing plate (61) is rotatably connected to the connecting plate (58).

8. The aluminum rod conveying equipment used for aluminum product processing according to claim 7 is characterized in that: A controller is fixed on one side of the workbench (1), and the controller is electrically connected to motor 1 (22), motor 2 (41) and the push rod motor (57).

Citation Information

Patent Citations

  • Anti-deformation aluminum profile conveying device

    CN111717611A