Aluminum profile machining waste chip treatment device

By introducing positioning components and a pushing mechanism into the aluminum profile processing waste chip treatment device, the problem of waste chip displacement during the pressing process was solved, achieving stable pressing and efficient recycling.

CN223603977UActive Publication Date: 2025-11-28HUBEI XINGFU ALUMINUM
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Patent Information

Application Number
CN202423221772.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-28
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing aluminum profile processing waste disposal devices cannot effectively limit the conveyed aluminum profile processing waste during use, resulting in deviation during pressing.

Method used

A device comprising a body, a conveyor belt, a material carrying frame, a pressing bracket, a pressing cylinder, a pressing block, and a positioning component is designed. By cooperating with the pushing mechanism and the positioning component, the material carrying frame is limited, ensuring that it remains stationary during the pressing process.

Benefits of technology

This effectively prevents aluminum profile waste from shifting during the pressing process, improves processing efficiency and equipment stability, reduces manual operation, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum profile machining, and discloses an aluminum profile machining waste chip treatment device which comprises a machine body, a conveying belt arranged on the machine body and a material carrying frame movably arranged on the conveying belt. A pressing block is arranged at the output end of the pressing air cylinder, a positioning piece is movably arranged on the pressing support in the vertical direction, and a pushing mechanism used for pushing the positioning piece to move in the vertical direction is arranged at the top of the pressing block. The aluminum profile pressing device has the effect of preventing the aluminum profile scraps from deviating in the pressing process.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aluminium alloy processing technical field especially relates to a kind of aluminium alloy processing waste chip processing device. BACKGROUND

[0002] In recent years, aluminum profile is widely applied due to its small density, light weight, strong corrosion resistance, good processing performance, good radiation resistance, small elastic coefficient, no spark when impacting, good heat conduction and electrical conductivity, and smooth surface, which does not affect desiccant. Aluminum profile is increasingly applied to life. Aluminum profile needs to be cut and polished during processing. Cutting and polishing will generate debris. To save materials, aluminum profile processing waste can be recycled.

[0003] However, the existing aluminum profile processing waste treatment device cannot limit the aluminum profile processing waste during conveying, which causes deviation during compaction. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a kind of aluminium alloy processing waste chip processing device, with the effect of avoiding the deviation of aluminium alloy waste chip during compaction.

[0005] The above technical purpose of the utility model is realized by the following technical scheme: a machine body, a conveyor belt arranged on the machine body, and a load frame movably arranged on the conveyor belt are included. A pressing support is arranged on the machine body. A pressing cylinder is vertically arranged on the pressing support. A pressing block is arranged at the output end of the pressing cylinder. A positioning member is movably arranged on the pressing support in the vertical direction. When the load frame abuts against the positioning member, the pressing block is located directly above the load frame. A pushing mechanism is arranged on the top of the pressing block to push the positioning member to move in the vertical direction. When the top end of the pressing block abuts against the pressing support, the distance between the bottom end of the positioning member and the conveyor belt is less than the height of the load frame.

[0006] The utility model is further provided as follows: the positioning member includes a first positioning block, a second positioning block arranged at the bottom end of the first positioning block, and a third positioning block arranged at the top end of the first positioning block. The first positioning block movably passes through the pressing support in the vertical direction. The load frame can abut against one side of the second positioning block. The bottom of the third positioning block can abut against the pressing support.

[0007] A further feature of this invention is that the pushing mechanism includes a pushing groove opened horizontally on the top of the pressure block and a pushing spring arranged horizontally in the pushing groove. A first pushing block is arranged horizontally at one end of the pushing spring near the first positioning block. A first inclined surface is arranged obliquely downward at the top of the second positioning block. A positioning groove is opened on one side of the second positioning block near the pressure block. When the bottom end of the pressure block abuts against the bottom end of the material frame, the first pushing block abuts against the positioning groove.

[0008] A further feature of this invention is that the longitudinal section of the positioning groove is triangular, and the positioning groove includes a second inclined surface and a third inclined surface from top to bottom.

[0009] A further feature of this invention is that a hemispherical second pushing block is provided at one end of the first pushing block near the first positioning block.

[0010] A further feature of this invention is that an elastic wear-resistant layer is provided on the second inclined surface.

[0011] A further feature of this invention is that a limiting rod is horizontally provided at one end of the first pushing block near the pushing spring, the limiting rod movably passes through the pushing spring, and there is a set distance between the limiting rod and the inner wall of the pushing groove.

[0012] A further feature of this invention is that a sensor is provided at the bottom of the second positioning block.

[0013] A further feature of this invention is that a plurality of positioning rods are vertically arranged at the top of the pressing block, and the positioning rods move through the pressing bracket.

[0014] A further feature of this invention is that: blocks are provided on both sides of the conveyor belt, and the bottom of the material frame is movably attached to the blocks.

[0015] The beneficial effects of this utility model are:

[0016] 1. By setting the positioning member, push mechanism and so on, when the aluminum profile scrap needs to be handled, a certain amount of scrap is added into the loading frame, and is conveyed by the conveying belt, when the loading frame moves to abut against the positioning member along with the conveying belt, the loading frame stops moving, the pressing cylinder is opened, and the pressing block is driven to move downward to press the scrap in the loading frame, then the pressing cylinder drives the pressing block to rise, and the push mechanism on the top of the pressing block drives the positioning member to move upward, so that the positioning member is separated from the loading frame, and the loading frame continues to be conveyed under the action of the conveying belt, when the pressing block moves to abut against the pressing support, the positioning member is in a separated state from the push mechanism, and the positioning member falls under the action of gravity, so that the positioning member returns to the initial state, and the subsequent loading frame can be positioned; by setting the positioning member and the like, the positioning of the loading frame is realized, so that the loading frame is in a relatively static state during the pressing process of the pressing block, thereby avoiding the deviation of the aluminum profile scrap during the pressing process.

[0017] 2. By setting the push spring, the first push block and the positioning groove and the like, the first push block moves from abutting against the first positioning block to abutting against the second positioning block during the descending process of the pressing block, the first push block moves along the first inclined surface which is obliquely downward arranged first, and then abuts against the positioning groove; during the ascending process of the pressing block, the first push block ascends along the positioning groove, and the second positioning block is driven to ascend along with the oblique upward force applied to the positioning groove, so that the second positioning block is separated from the loading frame, and the loading frame continues to be conveyed forward, until the second positioning block ascends to abut against the pressing support, and the first push block continues to ascend, so that the first push block is separated from the positioning groove, and the second positioning block falls to abut against the pressing support under the action of gravity (it needs to be noted that the loading frame is separated from the second positioning block under the conveying of the conveying belt), thereby realizing the separation of the second positioning block from the loading frame and the resetting of the second positioning block, and the whole process is performed along with the movement of the pressing block, which is simple and practical. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0019] Figure 1 is a structural schematic view of one embodiment of the aluminum profile machining scrap processing device of the present application;

[0020] Figure 2 is a partial sectional structural schematic view of one embodiment of the aluminum profile machining scrap processing device of the present application;

[0021] Figure 3 is Figure 2 an enlarged schematic view of A in

[0022] In the figure, 1, the body; 2, conveying belt; 3, load frame; 4, pressing support; 5, pressing cylinder; 6, pressing block; 7, positioning member; 7a, first positioning block; 7b, second positioning block; 7c, third positioning block; 8, pushing mechanism; 8a, pushing groove; 8b, pushing spring; 9, first pushing block; 10, first inclined surface; 11, positioning groove; 11a, second inclined surface; 11b, third inclined surface; 12, second pushing block; 13, elastic wear-resistant layer; 14, limiting rod; 15, inductor; 16, positioning rod; 17, stop block. DETAILED DESCRIPTION

[0023] The technical solutions of the present application will be clearly and completely described below in conjunction with specific embodiments. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0024] The present application provides a kind of aluminum profile processing waste chip processing device, as Figures 1 to 3 As shown, including body 1, setting on the conveying belt 2 of the body 1 and the load frame 3 of the movable setting on the conveying belt 2, the body 1 is provided with pressing support 4, the pressing support 4 is vertically provided with pressing cylinder 5, the output end of the pressing cylinder 5 is provided with pressing block 6, the pressing support 4 is vertically movably provided with positioning member 7, when the load frame 3 is in contact with the positioning member 7, the pressing block 6 is located in the upper of the load frame 3, the top of the pressing block 6 is provided with pushing mechanism 8 for pushing the positioning member 7 vertically moves, when the top end of the pressing block 6 is in contact with the pressing support 4, the distance between the bottom end of the positioning member 7 and the conveying belt 2 is less than the height of the load frame 3.

[0025] Further, the positioning member 7 includes first positioning block 7a, second positioning block 7b provided at the bottom end of the first positioning block 7a and third positioning block 7c provided at the top end of the first positioning block 7a, the first positioning block 7a passes through the pressing support 4 vertically, the load frame 3 can be in contact with one side of the second positioning block 7b, and the bottom of the third positioning block 7c can be in contact with the pressing support 4.

[0026] Further, the pushing mechanism 8 comprises a pushing groove 8a horizontally formed on the top of the pressing block 6 and a pushing spring 8b horizontally arranged in the pushing groove 8a, one end of the pushing spring 8b is horizontally arranged with a first pushing block 9 close to the first positioning block 7a, the top end of the second positioning block 7b is arranged with a first inclined surface 10 downwardly, one side of the second positioning block 7b close to the pressing block 6 is formed with a positioning groove 11, when the bottom end of the pressing block 6 abuts against the bottom end of the material loading frame 3, the first pushing block 9 abuts against the positioning groove 11.

[0027] Further, the longitudinal section of the positioning groove 11 is triangular, the positioning groove 11 comprises a second inclined surface 11a and a third inclined surface 11b from top to bottom.

[0028] Further, one end of the first pushing block 9 close to the first positioning block 7a is arranged with a hemispherical second pushing block 12.

[0029] Further, the second inclined surface 11a is arranged with an elastic wear-resistant layer 13.

[0030] Further, one end of the first pushing block 9 close to the pushing spring 8b is horizontally arranged with a limiting rod 14, the limiting rod 14 movably passes through the pushing spring 8b, the limiting rod 14 and the inner wall of the pushing groove 8a have a set distance.

[0031] Further, the bottom of the second positioning block 7b is arranged with an inductor 15.

[0032] Further, the top of the pressing block 6 is vertically arranged with a plurality of positioning rods 16, the positioning rods 16 movably pass through the pressing support 4.

[0033] Further, both sides of the conveying belt 2 are arranged with a stop block 17, the bottom of the material loading frame 3 movably abuts against the stop block 17.

[0034] When the aluminum scrap needs to be processed, a certain amount of scrap is added to the carrier frame 3, which is conveyed by the conveying belt 2. When the carrier frame 3 moves to the second positioning block 7b with the conveying belt 2, the sensor 15 receives a signal, the conveying belt 2 stops conveying, the carrier frame 3 stops moving, the pressing cylinder 5 is opened, the pressing block 6 is driven to move downward to press the scrap in the carrier frame 3. During the upward movement of the pressing cylinder 5, the second pushing block 12 is lifted along the second inclined surface 11a by applying an upward inclined force to the second inclined surface 11a, which drives the second positioning block 7b to rise, so that the second positioning block 7b is separated from the carrier frame 3, and the carrier frame 3 continues to convey forward until the second positioning block 7b rises to abut against the pressing support 4, and the second pushing block 12 continues to rise, so that the second pushing block 12 is separated from the positioning groove 11, and the second positioning block 7b descends to the third positioning block 7c abutting against the pressing support 4 under the action of gravity (it should be noted that the carrier frame 3 has been separated from the second positioning block 7b under the conveying of the conveying belt 2), so that the positioning member 7 is separated from the carrier frame 3, and the carrier frame 3 continues to convey under the action of the conveying belt 2. Therefore, when the pressing block 6 moves to abut against the pressing support 4, the second positioning block 7b is in a separated state from the second pushing block 12, and the second positioning block 7b descends to the initial height under the action of gravity, so that it can continue to limit the subsequent carrier frame 3. By arranging the first positioning block 7a, the second positioning block 7b and the like, the carrier frame 3 is limited, so that the carrier frame 3 is in a relatively static state during the pressing process of the pressing block 6, thereby avoiding the displacement of the aluminum scrap during the pressing process.

[0035] By arranging the pushing spring 8b, the first pushing block 9 and the positioning groove 11, the first pushing block 9 moves from abutting against the first positioning block 7a to abutting against the second positioning block 7b during the downward movement of the pressing block 6. During the downward movement of the first pushing block 9 along the second positioning block 7b, the first pushing block 9 moves along the first inclined surface 10 arranged in an inclined downward manner first, and then abuts against the positioning groove 11. During the upward movement of the first pushing block 9 along the positioning groove 11, the second positioning block 7b is driven to rise by applying an upward inclined force to the positioning groove 11, so that the second positioning block 7b is separated from the carrier frame 3, and the carrier frame 3 continues to convey forward until the second positioning block 7b rises to abut against the pressing support 4, and the first pushing block 9 continues to rise, so that the first pushing block 9 is separated from the positioning groove 11, and the second positioning block 7b descends to the third positioning block 7c abutting against the pressing support 4 under the action of gravity, thereby achieving the separation of the second positioning block 7b from the carrier frame 3 and the resetting of the second positioning block 7b. The whole process is performed with the movement of the pressing block 6, which is simple and practical.

[0036] By setting the first inclined surface 10 and the second inclined surface 11a, the first pushing block 9 is facilitated to separate from the positioning groove 11 while ensuring the first pushing block 9 pushes the second positioning block 7b to rise, so that the first pushing block 9 can be separated from the positioning groove 11, the abrasion of the first pushing block 9 is reduced, and the service life of the device is prolonged.

[0037] By setting the second pushing block 12 in a semispherical shape, the relative friction between the second pushing block 12 and the first positioning block 7a and the second positioning block 7b is reduced, and the service life of the second pushing block 12 is prolonged.

[0038] By setting the elastic wear-resistant layer 13, the friction between the second pushing block 12 and the second inclined surface 11a is increased, and the second pushing block 12 can drive the second positioning block 7b to rise.

[0039] By setting the inductor 15 to control the material pressing cylinder 5, when the inductor 15 senses that the material loading frame 3 abuts against the second positioning block 7b, the material pressing cylinder 5 is driven to press the material, so that the manual operation is reduced, and the operation convenience is improved.

[0040] By setting the positioning rod 16 to limit the pressing block 6, the stability of the pressing block 6 during the lifting process is increased.

[0041] By setting the stop block 17, the two sides of the conveying belt 2 are limited, the limiting of the material loading frame 3 is improved, and the material loading frame 3 is ensured to be conveyed forward along the conveying belt 2.

[0042] It should be noted that each embodiment in the specification is described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts of each embodiment can be referred to each other.

[0043] The above description is only a description of the preferred embodiment of the present application, and does not limit the scope of the present application. Any modification or modification of the above disclosure by a person skilled in the art is within the protection scope of the claims.

Claims

1. A waste chip treatment device for aluminum profile processing, characterized in that: The utility model provides a kind of material pressing device, including body (1), the conveyor belt (2) being arranged on the body (1) and the load frame (3) being movably arranged on the conveyor belt (2), the body (1) is provided with material pressing support (4), the material pressing support (4) is vertically provided with material pressing cylinder (5), the output end of the material pressing cylinder (5) is provided with material pressing block (6), the material pressing support (4) is movably provided with positioning piece (7) along vertical direction, when the load frame (3) is in contact with the positioning piece (7), the material pressing block (6) is located above the load frame (3), the top of the material pressing block (6) is provided with pushing mechanism (8) for pushing the positioning piece (7) and moving along vertical direction, when the top end of the material pressing block (6) is in contact with the material pressing support (4), the distance between the bottom end of the positioning piece (7) and the conveyor belt (2) is less than the height of the load frame (3).

2. The aluminum profile processing waste treatment device according to claim 1, characterized in that: The positioning piece (7) includes first positioning block (7a), second positioning block (7b) arranged at the bottom end of the first positioning block (7a) and third positioning block (7c) arranged at the top end of the first positioning block (7a), the first positioning block (7a) is movably arranged through the material pressing support (4) along the vertical direction, the load frame (3) can be in contact with one side of the second positioning block (7b), and the bottom of the third positioning block (7c) can be in contact with the material pressing support (4).

3. The aluminum profile processing waste treatment device according to claim 2, characterized in that: The pushing mechanism (8) includes pushing groove (8a) opened in the top of the material pressing block (6) along the horizontal direction and pushing spring (8b) arranged in the pushing groove (8a) along the horizontal direction, one end of the pushing spring (8b) close to the first positioning block (7a) is provided with first pushing block (9) along the horizontal direction, the top end of the second positioning block (7b) is provided with first inclined surface (10) obliquely downward, one side of the second positioning block (7b) close to the material pressing block (6) is provided with positioning groove (11), when the bottom end of the material pressing block (6) is in contact with the bottom end of the load frame (3), the first pushing block (9) is in contact with the positioning groove (11).

4. The aluminum profile processing waste treatment device according to claim 3, characterized in that: The longitudinal section of the positioning groove (11) is triangular, and the positioning groove (11) sequentially includes second inclined surface (11a) and third inclined surface (11b) from top to bottom.

5. The apparatus according to claim 4, wherein: One end of the first pushing block (9) close to the first positioning block (7a) is provided with semispherical second pushing block (12).

6. The aluminum profile processing waste treatment device according to claim 4, characterized in that: The second inclined surface (11a) is provided with an elastic wear-resistant layer (13).

7. The aluminum profile processing waste treatment device according to claim 3, characterized in that: One end of the first pushing block (9) close to the pushing spring (8b) is horizontally provided with limiting rod (14), the limiting rod (14) movably passes through the pushing spring (8b), and the limiting rod (14) and the inner wall of the pushing groove (8a) have a set distance.

8. The aluminum profile processing waste treatment device according to claim 2, characterized by: The bottom of the second positioning block (7b) is provided with an inductor (15).

9. The aluminum profile processing waste treatment device according to claim 1, characterized in that: The top end of the material pressing block (6) is vertically provided with a plurality of positioning rods (16), and the positioning rods (16) movably pass through the material pressing support (4).

10. The aluminum profile processing waste treatment device according to claim 1, characterized in that: The conveying belt (2) is provided with a stop block (17) on both sides, and the bottom of the material carrying frame (3) is movably attached to the stop block (17).