Aluminum alloy sliding groove for production line

By using aluminum alloy materials and an integral extrusion process to manufacture chutes for production lines, the existing steel chutes have complex processes, high cost and easy rust, and aluminium alloy chutes with lightweight, easy installation and long service life are achieved.

CN222925297UActive Publication Date: 2025-05-30ANHUI SHENGXIN ALUMINIUM CO LTD
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Patent Information

Application Number
CN202421841111.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-27
Publication Date
2025-05-30
Estimated Expiration
2034-07-27

AI Technical Summary

Technical Problem

The existing chutes for production lines are mainly made of steel, with complex processes, many consumables, high costs, and prone to rust and causing pollution to the environment.

Method used

The chute is made by an aluminum alloy material through an integral extrusion process, designed as a structure that combines the upper part and the lower part, with a quadrilateral shape and a component containing a variety of geometric shapes.

Benefits of technology

It realizes aluminium alloy slide chute with good craftsmanship, which is light in weight, easy to transport and install, is not easy to rust and has a long service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

An aluminum alloy sliding groove for a production line comprises an upper portion (1) and a lower portion (2), an upper right arc (103) and an upper left arc (104) are arranged on the upper right portion of the upper portion (1), a U-shaped groove (105) is located on the left side of the upper left arc (104), a sliding groove (107) is formed in the lower portion of the middle of an upper horizontal line (106), and a connecting groove (110) is formed in the lower portion of the left end of a lower left horizontal line (109) and the upper portion of the right end of an oblique line (111) respectively. The left side of the right vertical plate (201) and the right side of the left vertical plate (203) are respectively provided with two triangular protrusions (202), the lower portion of the upper portion (1) is inserted into the horizontal plate (204) of the lower portion (2), and the left side and the right side of the upper portion (1) are matched with the left side and the right side of the lower portion (2) through the triangular protrusions (202). The utility model has the advantages of good manufacturability, light weight and convenience in transportation and installation; and the paint is not easy to rust and does not pollute the environment.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum alloy profiles, and particularly relates to an aluminum alloy chute for a production line. Background Art

[0002] The existing chutes for production lines are made of section steel through cutting, welding and assembly. The process is complex, consumes a lot of materials, has a high cost, is inconvenient for transportation and installation, and is prone to rusting, causing pollution to the environment. Summary of the Invention

[0003] In view of the deficiencies that the existing chutes for production lines are made of section steel through cutting, welding and assembly, with complex process, high material consumption, high cost, inconvenient transportation and installation, and being prone to rusting and causing environmental pollution, the utility model provides an aluminum alloy chute for a production line.

[0004] An aluminum alloy chute for a production line includes an upper part and a lower part.

[0005] The upper part is quadrilateral and includes a right side plate, a horizontal protrusion, an upper right arc, an upper left arc, a U-shaped groove, an upper horizontal line, a chute, a left side plate, a lower left horizontal line, a connecting groove, an inclined line and a lower right horizontal line.

[0006] The lower part is quadrilateral with an open upper side and includes a right vertical plate, a triangular protrusion, a left vertical plate and a horizontal plate.

[0007] The right side plate is located on the right side of the upper part and is vertically arranged. There is a horizontal protrusion to the left at the lower part of the right side plate.

[0008] The upper right arc is located at the upper left of the right side plate, with the left end higher, the right end lower, and concave in the middle. The lower end of the upper right arc is connected to the top end of the right side plate.

[0009] The upper left arc is located at the upper left of the upper right arc, with the left end higher, the right end lower, and concave in the middle. The lower end of the upper left arc is connected to the upper end of the upper right arc.

[0010] The U-shaped groove is located on the left side of the upper left arc, with the opening upward. The left side of the U-shaped groove is lower and the right side is higher. The right end of the U-shaped groove is connected to the upper part below the upper left arc.

[0011] The upper horizontal line is located on the left side of the U-shaped groove, with the right end connected to the left end of the U-shaped groove and the left end connected to the top end of the left side plate. There is a chute below the middle of the upper horizontal line. The chute is rectangular with an open top.

[0012] The left side plate is located on the left side of the upper part and is vertically arranged. The upper end is connected to the left end of the upper horizontal line and the lower end is connected to the left end of the lower left horizontal line.

[0013] The lower left horizontal line is located on the left side below the upper part. Its left end is connected to the lower end of the left side plate 108, and its right end is connected to the left end of the diagonal line. There is a connection groove below the left end of the lower left horizontal line, and the connection groove is open at the bottom.

[0014] The diagonal line is located in the middle below the upper part. The left end of the diagonal line is high and the right end is low. There is a connection groove above the right end of the diagonal line, and the connection groove is open at the bottom. The left end of the diagonal line is connected to the right end of the lower left horizontal line, and the right end of the diagonal line is connected to the left end of the lower right horizontal line.

[0015] The lower right horizontal line is located on the right side below the upper part. Its left end is connected to the right end of the diagonal line, and its right end is connected to the lower end of the right side plate.

[0016] The right vertical plate is located on the right side of the lower part, the left vertical plate is located on the left side of the lower part, and the horizontal plate is located below the lower part. There are two triangular protrusions protruding to the left on the left side of the right vertical plate, and two triangular protrusions protruding to the right on the right side of the left vertical plate.

[0017] The lower part of the upper part is inserted on the horizontal plate of the lower part. The right side of the right side plate of the upper part cooperates with the triangular protrusion on the left side of the right vertical plate of the lower part, and the left side of the left side plate of the upper part cooperates with the triangular protrusion on the right side of the left vertical plate of the lower part.

[0018] Advantages of the present utility model:

[0019] 1. This sliding groove is integrally extruded from aluminum alloy, with good processability, light weight, and convenient transportation and installation;

[0020] 2. It is not easy to rust and has a long service life. Description of the drawings

[0021] Figure 1 : It is an end view of the present utility model.

[0022] In the figure: 1. Upper part; 2. Lower part; 101. Right side plate; 102. Horizontal protrusion; 103. Upper right arc; 104. Upper left arc; 105. U-shaped groove; 106. Upper horizontal line; 107. Sliding groove; 108. Left side plate; 109. Lower left horizontal line; 110. Connection groove; 11. Diagonal line; 112. Lower right horizontal line; 201. Right vertical plate; 202. Triangular protrusion; 203. Left vertical plate; 204. Horizontal plate. Specific implementation manners

[0023] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.

[0024] An aluminum alloy sliding groove for a production line includes: an upper part 1 and a lower part 2.

[0025] The upper part 1 is quadrilateral, including the right side plate 101, the horizontal protrusion 102, the upper right arc 103, the upper left arc 104, the U-shaped groove 105, the upper horizontal line 106, the sliding groove 107, the left side plate 108, the lower left horizontal line 109, the connecting groove 110, the diagonal line 111 and the lower right horizontal line 112.

[0026] The lower part 2 is quadrilateral with an open upper side, including the right vertical plate 201, the triangular protrusion 202, the left vertical plate 203 and the horizontal plate 204.

[0027] The right side plate 101 is located on the right side of the upper part 1 and is vertically arranged. There is a horizontal protrusion 102 pointing left at the lower part of the right side plate 101.

[0028] The upper right arc 103 is located at the upper left of the right side plate 101, with the left end higher and the right end lower, concave in the middle. The lower end of the upper right arc 103 is connected to the top end of the right side plate 101.

[0029] The upper left arc 104 is located at the upper left of the upper right arc 103, with the left end higher and the right end lower, concave in the middle. The lower end of the upper left arc 104 is connected to the upper end of the upper right arc 103.

[0030] The U-shaped groove 105 is located on the left side of the upper left arc 104, with the opening upward. The left side of the U-shaped groove 105 is lower and the right side is higher. The right end of the U-shaped groove 105 is connected to the upper part below the upper left arc 104.

[0031] The upper horizontal line 106 is located on the left side of the U-shaped groove 105. The right end is connected to the left end of the U-shaped groove 105, and the left end is connected to the top end of the left side plate 108. There is a sliding groove 107 below the middle of the upper horizontal line 106. The sliding groove 107 is rectangular with an opening upward.

[0032] The left side plate 108 is located on the left side of the upper part 1 and is vertically arranged. The upper end is connected to the left end of the upper horizontal line 106, and the lower end is connected to the left end of the lower left horizontal line 109.

[0033] The lower left horizontal line 109 is located on the left side at the lower part of the upper part 1. The left end is connected to the lower end of the left side plate (108), and the right end is connected to the left end of the diagonal line 111. There is a connecting groove 110 below the left end of the lower left horizontal line 109, and the connecting groove 110 has an opening downward.

[0034] The diagonal line 111 is located in the middle at the lower part of the upper part 1. The left end of the diagonal line 111 is higher and the right end is lower. There is a connecting groove 110 above the right end of the diagonal line 111, and the connecting groove 110 has an opening downward. The left end of the diagonal line 111 is connected to the right end of the lower left horizontal line 109, and the right end of the diagonal line 111 is connected to the left end of the lower right horizontal line 112.

[0035] The lower right horizontal line 112 is located on the right side below the upper part 1, with its left end connected to the right end of the inclined line 111 and its right end connected to the lower end of the right side plate 101.

[0036] The right vertical plate 201 is located on the right side of the lower part 2, the left vertical plate 203 is located on the left side of the lower part 2, the horizontal plate 204 is located below the lower part 2, and there are two leftward protruding triangular protrusions 202 on the left side of the right vertical plate 201, and two rightward protruding triangular protrusions 202 on the right side of the left vertical plate 203.

[0037] The lower part of the upper part 1 is inserted on the horizontal plate 204 of the lower part 2. The right side of the right side plate 101 of the upper part 1 cooperates with the triangular protrusion 202 on the left side of the right vertical plate 201 of the lower part 2, and the left side of the left side plate 108 of the upper part 1 cooperates with the triangular protrusion 202 on the right side of the left vertical plate 203 of the lower part 2.

Claims

1. An aluminum alloy slideway for a production line, comprising: The upper part (1) and the lower part (2), the upper part (1) is a quadrilateral, including a right side plate (101), a horizontal protrusion (102), an upper right arc (103), an upper left arc (104), a U-shaped groove (105), an upper horizontal line (106), a slide groove (107), a left side plate (108), a lower left horizontal line (109), a connecting groove (110), an oblique line (111) and a lower right horizontal line (112), and the lower part (2) is a quadrilateral, The upper side is open, and comprises a right vertical plate (201), a triangular protrusion (202), a left vertical plate (203) and a horizontal plate (204), and is characterized in that: the upper right arc (103) is located at the upper left of the right plate (101), with the left end being higher, the right end being lower, and the middle being concave; the upper left arc (104) is located at the upper left of the upper right arc (103), with the left end being higher, the right end being lower, and the middle being concave; the U-shaped groove (105) is located at the left of the upper left arc (104), and the opening is upward; There is a slide groove (107) below the middle of the upper horizontal line (106), the slide groove (107) is rectangular and open on the top, there is a connecting groove (110) below the left end of the lower left horizontal line (109), the bottom of the connecting groove (110) is open, there is a connecting groove (110) above the right end of the oblique line (111), the bottom of the connecting groove (110) is open, there are two triangular protrusions (202) protruding to the left on the left side of the right vertical plate (201), and there are two triangular protrusions (202) protruding to the left on the left vertical plate (201). The lower part of the upper part (1) is inserted into the horizontal plate (204) of the lower part (2), the right side of the right plate (101) of the upper part (1) cooperates with the triangular protrusion (202) on the left side of the right vertical plate (201) of the lower part (2), and the left side of the left plate (108) of the upper part (1) cooperates with the triangular protrusion (202) on the right side of the left vertical plate (203) of the lower part (2).

2. The aluminum alloy chute for a production line according to claim 1, characterized in that: The right side plate (101) is located on the right side of the upper part (1) and is arranged vertically. The lower part of the right side plate (101) has a horizontal protrusion (102) pointing to the left.

3. The aluminum alloy chute for a production line according to claim 1, characterized in that: The lower end of the upper right circular arc (103) is connected to the top end of the right side plate (101).

4. The aluminum alloy chute for a production line according to claim 1, characterized in that: The lower end of the upper left circular arc (104) is connected to the upper end of the upper right circular arc (103).

5. The aluminum alloy chute for a production line as claimed in claim 1, characterized in that: The left side of the U-shaped groove (105) is low and the right side is high, and the right end of the U-shaped groove (105) is connected to the upper part below the upper left arc (104).

6. The aluminum alloy chute for a production line according to claim 1, characterized in that: The upper horizontal line (106) is located on the left side of the U-shaped groove (105), with the right end connected to the left end of the U-shaped groove (105) and the left end connected to the top end of the left plate (108).

7. The aluminum alloy chute for a production line according to claim 1, characterized in that: The left side panel (108) is located on the left side of the upper part (1), arranged vertically, with the upper end connected to the left end of the upper horizontal line (106), and the lower end connected to the left end of the lower left horizontal line (109).

8. The aluminum alloy chute for a production line as claimed in claim 1, characterized in that: The lower left horizontal line (109) is located on the left side of the lower side of the upper part (1), with the left end connected to the lower end of the left plate (108) and the right end connected to the left end of the oblique line (111).

9. The aluminum alloy chute for a production line according to claim 1, characterized in that: The oblique line (111) is located in the middle of the lower side of the upper part (1), the left end of the oblique line (111) is high and the right end is low, the left end of the oblique line (111) is connected to the right end of the lower left horizontal line (109), and the right end of the oblique line (111) is connected to the left end of the lower right horizontal line (112).

10. The aluminum alloy chute for a production line according to claim 1, characterized in that: The lower right horizontal line (112) is located on the right side of the lower side of the upper part (1), with its left end connected to the right end of the oblique line (111), and its right end connected to the lower end of the right plate (101).

11. The aluminum alloy chute for a production line according to claim 1, characterized in that: The right vertical plate (201) is located on the right side of the lower part (2), the left vertical plate (203) is located on the left side of the lower part (2), and the horizontal plate (204) is located at the bottom of the lower part (2).