Aluminum profile section for multi-penetrating system workbin elevator stand column

The column assembly, designed with aluminum profile cross-section, solves the precision and cost issues caused by welded structures, enabling high-precision, low-cost manufacturing and convenient installation of the column for the multi-through system hopper elevator, thereby improving system efficiency and reliability.

CN223779231UActive Publication Date: 2026-01-09FORBES (TAICANG) INTERNET OF THINGS TECH CO LTD
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Patent Information

Application Number
CN202520372298.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-01-09
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

The existing multi-penetration system material box elevator columns mostly adopt a welded structure, which makes it difficult to guarantee accuracy, complex process and high cost, especially increasing project investment during large-scale production and installation.

Method used

The design adopts an aluminum profile cross-section, including the first and second hoist column assemblies. By setting various slots and reinforcing ribs on the column body, it achieves lightweight and high-precision manufacturing, supports cutting and splicing, and can adapt to warehouse needs of different heights.

Benefits of technology

This technology enables high-precision, low-cost manufacturing of the columns, improves installation convenience and system efficiency, reduces project costs, and enhances the stability and reliability of the columns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of elevator stand columns, in particular to an aluminum profile section for a multi-penetrating system workbin elevator stand column, which comprises a first elevator stand column assembly, the rear end of the first elevator stand column assembly is fixedly connected with the front end of a second elevator stand column assembly, and the first elevator stand column assembly comprises a first stand column body. The first elevator stand column assembly comprises a first stand column body, a stand column convex groove is formed in the position, close to the front end, of the first stand column body, a stand column inner side groove is formed in the inner side of the first stand column body, and a stand column cylindrical through hole and a stand column rear connecting groove are formed in the position, close to the rear end, of the first stand column body. According to the utility model, the device is made of an aluminum alloy material and is optimally designed, so that the high precision, light weight and low cost of the stand column are realized, the convenience of installation and transportation is improved, the project cost is reduced, and the system reliability is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of hoist stand, concretely is a kind of aluminium profile section for the hoist stand of multiple wearing system material box. BACKGROUND

[0002] Multiple wearing system is a kind of efficient, intelligent logistics solution, and efficient movement and storage of goods in warehouse are realized by multiple wearing car, and multiple wearing system is usually composed of multiple wearing car, material box hoist, layer-changing hoist, goods shelf etc., and material box hoist is responsible for vertical direction goods conveying in multiple wearing system, and efficiently and accurately transmits goods between different levels.

[0003] In existing multiple wearing system, the stand of material box hoist mostly adopts welding structure, and this structure has many problems: firstly, stand deformation is caused in welding process, so that overall precision is difficult to guarantee;Secondly, welding process is complex, and cost is higher, especially when large-scale production and installation are needed, this high-cost structure can significantly increase the overall investment of project, therefore, aiming at the above problems, a kind of aluminium profile section for the hoist stand of multiple wearing system material box is provided. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of aluminium profile section for the hoist stand of multiple wearing system material box to solve the problem that the stand of material box hoist mostly adopts welding structure, welding process is complex, and cost is higher, especially when large-scale production and installation are needed, this high-cost structure can significantly increase the overall investment of project.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of aluminium profile section for the hoist stand of multiple wearing system material box, including first hoist stand component, the rear end of the first hoist stand component is fixedly connected with the front end of second hoist stand component, the first hoist stand component includes first stand main body, the position of first stand main body close to front end is equipped with stand protruding slot, the inner side of first stand main body is equipped with stand inner recess, the position of first stand main body close to rear end is equipped with stand cylindrical through-hole and stand rear connecting slot, the second hoist stand component includes second stand main body, the outer side of second stand main body is equipped with reinforcing column protruding slot, the inner side of second stand main body close to rear end is fixedly connected with reinforcing rib, the inner side of reinforcing rib is equipped with weight-reducing column slot, the inner side of second stand main body close to reinforcing rib is equipped with first through slot, the inner side of second stand main body close to middle end is equipped with separation slot, the inner side of second stand main body close to front end is equipped with second through slot, the rear end of first stand main body is fixedly connected with the front end of second stand main body.

[0007] As the further optimization of the utility model, wherein: the opening shape of the column convex groove is composed of two rectangular bodies with different sizes, the rear end of the column convex groove is provided with a chamfer, the number of the column convex groove is multiple, the column convex groove penetrates the front end of the first column main body, the rear end size of the column convex groove is 1.3 times of the front end size.

[0008] As the further optimization of the utility model, wherein: the column cylindrical through hole and the column rear connecting groove are spaced apart, the column cylindrical through hole and the column rear connecting groove both penetrate the rear end of the first column main body, the opening shape of the column cylindrical through hole is a cylindrical body.

[0009] As the further optimization of the utility model, wherein: the column inner side groove penetrates the inner side of the first column main body up and down, the column inner side groove is distributed at the positions close to the two ends of the first column main body, and the number of the column inner side groove is multiple.

[0010] As the further optimization of the utility model, wherein: the shape of the reinforcing rib is a hollow cylindrical body, the reinforcing rib is symmetrically fixed at the left and right two ends of the second column main body, and the opening shape of the weight reduction column groove is a cylindrical body.

[0011] As the further optimization of the utility model, wherein: the first through groove and the separation groove both penetrate the inner side of the second column main body up and down, the reinforcing rib partially protrudes in the inner side of the first through groove, the opening shape of the separation groove is a rhombic body, and the separation groove penetrates the inner side of the second column main body up and down.

[0012] As the further optimization of the utility model, wherein: the separation groove partially extends to the rear end of the first column main body, the column rear connecting groove is communicated with the second through groove, the column cylindrical through hole partially extends to the front end of the second column main body, and the second through groove is adjacent to the column cylindrical through hole left and right.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] In the utility model, the first elevator column assembly and the second elevator column assembly are arranged, so that the high-precision, lightweight and low-cost manufacturing of the column is realized, meanwhile, the cutting and splicing characteristics of the column assembly can adapt to the warehouse requirements of different heights, the convenience of installation and transportation is greatly improved, the project cost is reduced, and the efficiency and reliability of the overall system are improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a whole structure schematic view of the utility model;

[0016] Figure 2 It is the utility model Figure 1Structure schematic view of A at the first lifting machine stand column assembly;

[0017] Figure 3 Structure schematic view of the first lifting machine stand column assembly;

[0018] Figure 4 Structure schematic view of the second lifting machine stand column assembly.

[0019] In the figure: 1, the first lifting machine stand column assembly; 11, the first stand column main body; 12, the stand column inner side groove; 13, the stand column convex slot; 14, the stand column cylindrical through hole; 15, the stand column rear connecting groove;

[0020] 2, the second lifting machine stand column assembly; 21, the second stand column main body; 22, the reinforcing column convex slot; 23, the reinforcing rib; 24, the weight-reducing column groove; 25, the first through groove; 26, the separation groove; 27, the second through groove. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0022] It should be noted that the terms used herein are only intended to describe specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form unless the context clearly indicates otherwise, and furthermore, it should be understood that when the terms "comprise" and / or "include" are used in the specification, there is a feature, step, operation, device, component and / or combination thereof.

[0023] Please refer to Figures 1-4 The present application provides a technical solution:

[0024] An aluminum profile section for a multi-wearing system magazine hoist column, comprising a first hoist column assembly 1, the rear end of the first hoist column assembly 1 is fixedly connected with the front end of a second hoist column assembly 2, the first hoist column assembly 1 comprises a first column body 11, a column protruding groove 13 is formed at a position close to the front end of the first column body 11, a column inner side groove 12 is formed on the inner side of the first column body 11, a column cylindrical through hole 14 and a column rear connecting groove 15 are formed at a position close to the rear end of the first column body 11, the second hoist column assembly 2 comprises a second column body 21, a reinforcing column protruding groove 22 is formed on the outer side of the second column body 21, a reinforcing rib 23 is fixedly connected to the inner side of the second column body 21 close to the rear end, a weight-reducing column groove 24 is formed on the inner side of the reinforcing rib 23, a first through groove 25 is formed on the inner side of the second column body 21 close to the reinforcing rib 23, a separation groove 26 is formed on the inner side of the second column body 21 close to the middle end, a second through groove 27 is formed on the inner side of the second column body 21 close to the front end, and the rear end of the first column body 11 is fixedly connected with the front end of the second column body 21.

[0025] As a further embodiment of the present scheme, the column protruding groove 13 is formed in the shape of two rectangular bodies of different sizes, a chamfer is arranged at the rear end of the column protruding groove 13, the number of column protruding grooves 13 is multiple, the column protruding groove 13 penetrates the front end of the first column body 11, and the rear end size of the column protruding groove 13 is 1.3 times the front end size. This design makes the column protruding groove 13 better cooperate with the external connecting piece, the chamfer facilitates the installation and positioning of the external connecting piece, and the different size rectangular body structure and the increase of the rear end size improve the connection strength and stability of the column, effectively prevent the connecting piece from loosening or falling off during use, thereby prolonging the service life of the column assembly;

[0026] As a further embodiment of the present scheme, the column cylindrical through hole 14 and the column rear connecting groove 15 are spaced apart, the column cylindrical through hole 14 and the column rear connecting groove 15 both penetrate the rear end of the first column body 11, and the column cylindrical through hole 14 is formed in the shape of a cylinder. This structure design makes the column cylindrical through hole 14 and the column rear connecting groove 15 can be used for different connection requirements respectively, and do not interfere with each other, improving the versatility and applicability of the column, the column cylindrical through hole 14 in the shape of a cylinder facilitates the cooperation with the circular connecting piece, can realize fast and accurate connection, further improves the installation efficiency and reliability of the column;

[0027] As a further implementation of the present scheme, the column inner side groove 12 penetrates the inner side of the first column body 11 up and down, the column inner side groove 12 is distributed near the two ends of the first column body 11, the number of column inner side grooves 12 is multiple, the setting of multiple column inner side grooves 12 provides more connection and fixing points for the column, so that the column can be stably connected with various components, and the overall structural strength and stability of the column are enhanced, and meanwhile, the column inner side groove 12 is distributed near the two ends, so that stress can be better dispersed, and local stress is prevented from being too large to cause deformation or damage of the column, thereby prolonging the service life and reliability of the column;

[0028] As a further implementation of the present scheme, the reinforcing rib 23 is in the shape of a hollow cylinder, the reinforcing rib 23 is symmetrically fixed at the left and right ends of the second column body 21, and the weight-reducing column groove 24 is in the shape of a cylinder. The hollow cylindrical reinforcing rib 23 effectively reduces the weight of the column while ensuring the structural strength, reduces the material cost and transportation cost, and the reinforcing rib 23 symmetrically fixed at the left and right ends of the second column body 21 can uniformly disperse stress, enhance the bending resistance and torsional resistance of the column, and improve the stability and reliability of the column. The cylindrical weight-reducing column groove 24 further optimizes the weight distribution of the column, reduces the weight of the column, and also helps to improve the heat dissipation performance of the column to prevent deformation or damage of the column in a high-temperature environment;

[0029] As a further implementation of the present scheme, the first through groove 25 and the partition groove 26 both penetrate the inner side of the second column body 21 up and down, the reinforcing rib 23 partially protrudes in the first through groove 25, and the partition groove 26 is in the shape of a rhombic body and penetrates the inner side of the second column body 21 up and down. The first through groove 25 and the partition groove 26 make the structure inside the second column body 21 more reasonable, can better connect and cooperate with other components, the reinforcing rib 23 partially protrudes in the first through groove 25, further enhances the structural strength and stability of the column, the partition groove 26 in the shape of a rhombic body has good mechanical properties, can reduce the weight of the column while ensuring the strength of the column, and also helps to improve the heat dissipation performance of the column to prevent deformation or damage of the column in a high-temperature environment;

[0030] As a further implementation of the present scheme, the partition groove 26 partially extends to the rear end of the first column body 11, the column rear connecting groove 15 is in communication with the second through groove 27, the column cylindrical through hole 14 partially extends to the front end of the second column body 21, and the second through groove 27 is adjacent to the column cylindrical through hole 14 on both sides. This structure design enables the first column body 11 and the second column body 21 to be quickly and accurately connected and assembled, improving the assembly efficiency and reliability of the column assembly. The partition groove 26 partially extending to the rear end of the first column body 11 can better disperse the stress and enhance the overall structural strength of the column assembly. The communication between the column rear connecting groove 15 and the second through groove 27, as well as the adjacent arrangement of the column cylindrical through hole 14 and the second through groove 27, provide more connection and fixing methods for the column assembly, making it better adapt to different installation requirements and use environments, and further improving the versatility and applicability of the column assembly.

[0031] Workflow: In the process of manufacturing and assembling the column assembly of the elevator, first, select appropriate aluminum alloy materials to ensure that they meet the strength and lightweight requirements. Then, through extrusion molding or other manufacturing processes, the first column body 11 and the second column body 21 are respectively manufactured, and the column convex groove 13, the column inner side recess 12, the column cylindrical through hole 14, and the column rear connecting groove 15 are opened on the first column body 11. The reinforcing column convex groove 22, the fixed connection reinforcing rib 23, the weight-reducing column groove 24, the first through groove 25, the partition groove 26, and the second through groove 27 are opened on the second column body 21. After manufacturing, check the size and shape of each part to ensure that it meets the design requirements. The size and position of all the opened grooves and holes meet the precision standards. Then, the rear end of the first column body 11 is fixedly connected with the front end of the second column body 21 to ensure that the size, shape, and positional relationship of the grooves, holes, and ribs meet the design requirements. After assembly, perform final inspection and function test to ensure that the column assembly is firmly connected and meets the operation requirements of the elevator. Finally, package the qualified column assembly to prevent damage during transportation and transport it to the designated installation site. According to the design drawings and installation guidelines, perform on-site installation and debugging to ensure the normal operation of the elevator. In summary, the device ensures the quality and performance of the column assembly of the elevator. By using aluminum alloy materials and optimizing the structure design, high-precision, lightweight, and low-cost manufacturing of the column are achieved. At the same time, the cuttable and splicable characteristics of the column assembly enable it to adapt to different warehouse heights, greatly improving the convenience of installation and transportation, reducing project costs, and enhancing the overall system efficiency and reliability.

[0032] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An aluminium profile section for a multiwear system magazine hoist column, comprising a first hoist column assembly (1), characterised in that: The rear end of the first elevator column assembly (1) is fixedly connected with the front end of the second elevator column assembly (2), the first elevator column assembly (1) comprises a first column body (11), a column protruding groove (13) is formed at the position close to the front end of the first column body (11), a column inner side groove (12) is formed in the inner side of the first column body (11), a column cylindrical through hole (14) and a column rear connecting groove (15) are formed at the position close to the rear end of the first column body (11), the second elevator column assembly (2) comprises a second column body (21), a reinforcing column protruding groove (22) is formed in the outer side of the second column body (21), a reinforcing rib (23) is fixedly connected with the inner side of the second column body (21) close to the rear end, a weight-reducing column groove (24) is formed in the inner side of the reinforcing rib (23), a first through groove (25) is formed in the inner side of the second column body (21) close to the reinforcing rib (23), a separation groove (26) is formed in the inner side of the second column body (21) close to the middle end, a second through groove (27) is formed in the inner side of the second column body (21) close to the front end, and the rear end of the first column body (11) is fixedly connected with the front end of the second column body (21).

2. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The column protruding groove (13) is formed in the shape of two rectangular bodies with different sizes, a chamfer is arranged at the rear end of the column protruding groove (13), the number of the column protruding grooves (13) is multiple, the column protruding grooves (13) penetrate through the front end of the first column body (11), and the rear end size of the column protruding groove (13) is 1.3 times of the front end size.

3. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The column cylindrical through hole (14) and the column rear connecting groove (15) are spaced apart, the column cylindrical through hole (14) and the column rear connecting groove (15) both penetrate through the rear end of the first column body (11), and the column cylindrical through hole (14) is formed in the shape of a cylinder.

4. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The column inner side groove (12) penetrates through the inner side of the first column body (11) upward and downward, the column inner side grooves (12) are distributed at the positions close to the two ends of the first column body (11), and the number of the column inner side grooves (12) is multiple.

5. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The reinforcing rib (23) is in the shape of a hollow cylinder, the reinforcing ribs (23) are symmetrically fixed at the left and right two ends of the second column body (21), and the weight-reducing column groove (24) is formed in the shape of a cylinder.

6. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The first through groove (25) and the separation groove (26) both penetrate through the inner side of the second column body (21) upward and downward, the reinforcing rib (23) partially protrudes in the inner side of the first through groove (25), the separation groove (26) is formed in the shape of a rhombic body, and the separation groove (26) penetrates through the inner side of the second column body (21) upward and downward.

7. An aluminium profile section for a multiwear system magazine lifter column according to claim 1, characterized in that: The separation groove (26) partially extends to the rear end of the first column body (11), the column rear connecting groove (15) is in communication with the second through groove (27), the column cylindrical through hole (14) partially extends to the front end of the second column body (21), and the second through groove (27) is adjacent to the column cylindrical through hole (14) left and right.