Silicon steel sheet arranging frame

By designing a silicon steel sheet sorting rack with adjustable height and draw rod length, the problem of insufficient flexibility and applicability of traditional silicon steel sheet sorting racks is solved, and flexibility and practicality are improved.

CN223385000UActive Publication Date: 2025-09-26CHONGQING WANGBIAN ELECTRIC GRP CORP
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Patent Information

Application Number
CN202422939106.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-09-26
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Traditional silicon steel sheet sorting racks are simple in design and difficult to adjust and expand according to actual needs, and lack flexibility and applicability.

Method used

A silicon steel sheet sorting rack is designed, which includes a bottom rectangular tube, a middle rectangular tube, a latch, a vertical beam, a beam support tube and a drawer rod. The height adjustment is achieved through socketing and fixing. The drawer rod can be adjusted in length to meet the storage needs of silicon steel sheets of different sizes.

Benefits of technology

The flexibility and applicability of the material sorting rack are improved, which can adapt to the storage needs of silicon steel sheets of different sizes and enhance the practicality and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of power transformer production, in particular to a silicon steel sheet arranging frame. Comprising a bottom rectangular pipe, a middle rectangular pipe, a bolt, a vertical cross beam, a cross beam support pipe and a drawing rod, the bottom rectangular pipe and the middle rectangular pipe are connected in a sleeved mode, through holes are formed in the same side of the bottom rectangular pipe and the middle rectangular pipe, and the bottom rectangular pipe and the middle rectangular pipe can slide relatively and are fixed through the fact that the plug pins are matched with the through holes; the vertical cross beam is used for placing articles, the cross beam support pipe is arranged below the vertical cross beam, and the cross beam support pipe is connected with the middle rectangular pipe in a sleeved mode; the drawing rods are connected to the two ends of the vertical beam in a sleeved mode. According to the technical scheme, the flexibility and applicability of the material arranging frame can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of power transformer production, in particular to a silicon steel sheet sorting rack. Background Art

[0002] During the processing and storage of silicon steel sheets, material handling racks play a vital role as an important auxiliary tool. Traditional silicon steel sheet handling racks are relatively simple in design and often adopt a fixed structure, which is difficult to adjust and expand according to actual needs. Therefore, they lack flexibility and applicability. Utility Model Content

[0003] The purpose of the utility model is to provide a silicon steel sheet sorting rack, and the technical solution can improve the flexibility and applicability of the sorting rack.

[0004] To achieve the above-mentioned purpose, the embodiment of the present disclosure provides a silicon steel sheet sorting rack, including: a bottom rectangular tube, a middle rectangular tube, a latch, a vertical beam, a beam support tube, and a pull-out rod; the bottom rectangular tube is sleeved with the middle rectangular tube, and a through hole is provided on the same side of the bottom rectangular tube and the middle rectangular tube, and the bottom rectangular tube and the middle rectangular tube can slide relative to each other and are fixed by the latch and the through hole; the vertical beam is used to place items, the beam support tube is arranged below the vertical beam, and the beam support tube is sleeved with the middle rectangular tube; the pull-out rod is sleeved at both ends of the vertical beam.

[0005] The basic solution offers beneficial effects: Through the socketed design of the bottom and middle rectangular tubes, coupled with through-hole and latch fixing, the height of the entire rack can be adjusted according to actual needs. This not only improves the rack's flexibility but also adapts to silicon steel sheets of varying sizes or storage requirements, as well as to the handling of silicon steel sheets at varying heights, enhancing its practicality. The drawer rods, which socket at both ends of the vertical beam, can be pulled to varying lengths to position the silicon steel sheets according to the size of the stored items, facilitating adjustments based on the size of the objects being stored and increasing the device's flexibility.

[0006] As an implementable preferred solution, it also includes a steel plate bottom plate, which is fixedly connected below the bottom rectangular tube, and the steel plate bottom plate is semicircular.

[0007] As an implementable preferred solution, it further includes triangular plate legs, which are fixedly connected to the side surfaces of the bottom rectangular tube.

[0008] As an implementable preferred solution, it also includes a work storage bucket for storing tools or items; the work storage bucket is fixedly connected to the side of the bottom rectangular tube with an inclination angle of 45°.

[0009] As an implementable preferred solution, the edge of the top of the middle rectangular tube is provided with a rectangular tube weld to increase the contact surface of the crossbeam and strengthen the load-bearing capacity. The rectangular tube weld is provided on the top of the middle rectangular tube for fixed connection.

[0010] As an implementable preferred solution, it also includes a reinforcing support square tube, which is symmetrically arranged on both sides of the top of the bottom rectangular tube, and the reinforcing support square tube is fixedly connected to the bottom rectangular tube.

[0011] As an implementable preferred solution, the cross-section of the bottom rectangular tube is 60 mm long and 40 mm wide; the cross-section of the middle rectangular tube is 50 mm long and 30 mm wide.

[0012] As an implementable preferred solution, the cross-section of the beam support tube is 40 mm long and 20 mm wide.

[0013] As an implementable preferred solution, the cross-section of the upright crossbeam is 80 mm long and 40 mm wide.

[0014] As an implementable preferred solution, the drawer rod includes an upper drawer rod and a lower drawer rod. The upper drawer rod is used to limit the placed items, and the lower drawer rod is used to insert the crossbeam to place items. The crossbeam is lengthened and the length can be adjusted through the U-shaped groove; the cross-section of the upper drawer rod is 40 mm long and 20 mm wide; the cross-section of the lower drawer rod is 50 mm long and 30 mm wide. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The figure is a structural diagram of a silicon steel sheet sorting rack. DETAILED DESCRIPTION

[0016] In order to make the technical solution and advantages of the present application clearer, the technical solution of the present invention will be further described in detail below with reference to the accompanying drawings. It will be understood that the specific embodiments described herein are only partial embodiments of the present invention, which are only used to explain the present application, rather than to limit the present application. It should be noted that the technical features or combinations of technical features described in the following embodiments should not be considered to be isolated, and they can be combined with each other to achieve better technical effects. The same reference numerals appearing in the drawings of the following embodiments represent the same features or components, which can be applied to different embodiments.

[0017] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "disposed" and "connected" should be understood broadly. For example, they can refer to fixed, removable, or integrated connections; they can be mechanical (including various mechanical connection forms, such as couplings or gear pairs) or electrical connections; they can be direct or indirect through an intermediary, and they can also refer to internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.

[0018] In addition, unless otherwise defined, the technical terms or scientific terms used in the description of the present invention should have the common meanings understood by those skilled in the art in the field to which the present invention belongs.

[0019] Figure numerals: steel plate chassis 1, bottom rectangular tube 2, triangular plate support leg 3, latch 4, work storage bucket 5, middle rectangular tube 6, rectangular tube welding 7, upright crossbeam 8, crossbeam support tube 9, upper pull-out rod 10, lower pull-out rod 11, reinforced support square tube 12.

[0020] The utility model is further described in detail below with reference to the accompanying drawings:

[0021] Reference Figure 1 A silicon steel sheet sorting rack includes a steel plate chassis 1, a bottom rectangular tube 2, a triangular plate support leg 3, a latch 4, a working storage bucket 5, a middle rectangular tube 6, a rectangular tube welding 7, a vertical beam 8, a beam support tube 9, an upper pull-out rod 10, a lower pull-out rod 11, and a reinforced support square tube 12.

[0022] The steel plate chassis 1, which is semicircular in this embodiment, is used to support the entire material handling rack. In this embodiment, the steel plate chassis 1 is made of semicircular steel plates with a thickness of 10 mm, which ensures the stability of the material handling rack and can withstand a large weight. The semicircular design facilitates the placement of material loading trays in the space between the two steel plate chassis 1, saving production space. At the same time, it also reduces weight compared to a circular design, making it easier to move the device.

[0023] The bottom rectangular tube 2 is located above the steel plate chassis 1 and is fixedly connected to the steel plate chassis 1. In this embodiment, the bottom rectangular tube 2 is made of a rectangular tube with a cross-section length of 60 mm, a width of 40 mm, and a thickness of 4 mm, which enhances the bottom support capacity of the material handling rack.

[0024] The triangular plate legs 3 are located on the sides of the bottom rectangular tube 2 and are fixedly connected to the sides of the bottom rectangular tube 2. In this embodiment, the triangular plate legs 3 are made of 5mm thick steel plate and are respectively arranged on the three sides of the bottom rectangular tube 2 within the confines of the semicircular steel plate base. The design of the triangular plate legs 3 further increases the stability of the material handling rack, preventing it from tipping over or shaking during use.

[0025] A work storage bucket 5 is fixedly attached to the side of the bottom rectangular tube 2 and is used to store materials handling tools or other items. In this embodiment, the work storage bucket 5 has a diameter of 60mm, a thickness of 3mm, and a length of 208mm. The work storage bucket 5 is placed at a 45° angle to facilitate user access to items.

[0026] A middle rectangular tube 6 is provided above the bottom rectangular tube 2. The bottom rectangular tube 2 and the middle rectangular tube 6 are connected by a sleeve. The inner diameter of the middle rectangular tube 6 is slightly smaller than that of the bottom rectangular tube 2. In this embodiment, the cross-sectional length of the middle rectangular tube 6 is 50 mm, the width is 30 mm, and the thickness is 4 mm. The middle rectangular tube 6 can slide up and down in the bottom rectangular tube 2 to adjust the height of the material handling table. A plurality of through holes are provided on the same side of the middle rectangular tube 6 and the bottom rectangular tube 2. After the middle rectangular tube 6 is adjusted to the appropriate position, it can be fixed by a latch 4 to ensure the firmness of the connection. In this embodiment, the latch 4 is made of round steel with a diameter of 14 mm and a length of 100 mm.

[0027] The edge of the top of the middle rectangular tube 6 is provided with a rectangular tube weld 7, which is convenient for welding with the upright crossbeam 8 or sleeve connection with the crossbeam support tube 9, and is used to increase the contact surface of the crossbeam, strengthen the load-bearing capacity and increase stability.

[0028] The upright crossbeam 8 is used to place items. In this embodiment, the upright crossbeam 8 is made of a rectangular tube with a cross-section length of 80 mm, a width of 40 mm, and a thickness of 4 mm. The overall length is 1100 mm, so that the material sorting rack can still maintain structural stability when bearing a large weight.

[0029] The crossbeam support tube 9 is fixedly attached to the bottom of the cubic crossbeam, with one at each end. In this embodiment, the crossbeam support tube 9 has a cross-sectional length of 40 mm, a width of 20 mm, a thickness of 3 mm, and an overall length of 50 mm. During assembly, the crossbeam support tube 9 is nested with the central rectangular tube 6, ensuring the stability of the upright crossbeam 8. When welding is required, the crossbeam support tube 9 is fully welded to the central rectangular tube 6, enhancing the stability of the structure and ensuring welding quality.

[0030] Both ends of the vertical beam 8 are provided with drawer rods, which are sleeved with the cubic beam. The drawer rods can be adjusted in distance according to actual needs to accommodate items of different sizes.

[0031] The drawer rod consists of an upper drawer rod 10 and a lower drawer rod 11. The lower drawer rod 11 is inserted into the crossbeam to accommodate items, extending the crossbeam and adjusting its length via a U-shaped groove. The upper drawer rod 10 is used to limit the position of the items placed on it. The upper drawer rod 10 is made of a rectangular tube with a cross-section length of 40mm, a width of 20mm, and a thickness of 3mm. The rectangular tube is 120mm long. The lower drawer rod 11 is made of a rectangular tube with a cross-section length of 50mm, a width of 30mm, and a thickness of 4mm. The rectangular tube is 350mm long. The upper and lower drawer rods 10 and 11 are fixedly connected.

[0032] Reinforced support square tubes 12 are symmetrically positioned on either side of the top of the bottom rectangular tube 2 and are fixedly connected to the bottom rectangular tube 2. These reinforced support square tubes 12 are used to enhance the overall structural strength of the material handling rack. Made from rectangular tubes with a cross-section length of 60 mm, a width of 40 mm, and a thickness of 4 mm, the overall length is 50 mm. These reinforced support square tubes 12 ensure the rack remains structurally stable even when bearing significant weight.

[0033] The above content is only an embodiment of the present utility model. Common knowledge such as the known specific structures and characteristics in the scheme is not described in detail here. Ordinary technicians in the relevant field are aware of all common technical knowledge in the technical field of the utility model before the application date or priority date, can obtain all existing technologies in the field, and have the ability to apply conventional experimental means before that date. Ordinary technicians in the relevant field can improve and implement this scheme in combination with their own abilities under the inspiration given by this application. Some typical known structures or known methods should not become obstacles for ordinary technicians in the relevant field to implement this application. It should be pointed out that for those skilled in the art, several deformations and improvements can be made without departing from the structure of the utility model. These should also be regarded as the scope of protection of the utility model. These will not affect the effect of the implementation of the utility model and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the specification can be used to interpret the content of the claims.

Claims

1. A silicon steel sheet sorting rack, characterized by: include: A bottom rectangular tube, a middle rectangular tube, a latch, a standing crossbeam, a crossbeam support tube, and a pull-out rod; the bottom rectangular tube is sleeved with the middle rectangular tube, and a through hole is provided on the same side of the bottom rectangular tube and the middle rectangular tube, the bottom rectangular tube and the middle rectangular tube can slide relative to each other and are fixed by the latch in conjunction with the through hole; the standing crossbeam is used to place items, the crossbeam support tube is arranged below the standing crossbeam, and the crossbeam support tube is sleeved with the middle rectangular tube; the pull-out rod is sleeved at both ends of the standing crossbeam.

2. The silicon steel sheet sorting rack according to claim 1, characterized in that: It also includes a steel plate bottom plate, which is fixedly connected below the bottom rectangular tube, and the steel plate bottom plate is semicircular.

3. The silicon steel sheet sorting rack according to claim 2, characterized in that: It also includes triangular plate legs, which are fixedly connected to the side surfaces of the bottom rectangular tube.

4. The silicon steel sheet sorting rack according to claim 1, characterized in that: It also includes a work storage bucket for storing tools or items; the work storage bucket is fixedly connected to the side of the bottom rectangular tube with an inclination angle of 45°.

5. The silicon steel sheet sorting rack according to claim 4, characterized in that: The edge of the top of the middle rectangular tube is provided with a rectangular tube weld for increasing the contact surface of the beam and strengthening the load-bearing capacity; the rectangular tube weld is provided on the top of the middle rectangular tube for fixed connection.

6. The silicon steel sheet sorting rack according to claim 4, characterized in that: It also includes a reinforcing support square tube, which is symmetrically arranged on both sides of the top of the bottom rectangular tube, and the reinforcing support square tube is fixedly connected to the bottom rectangular tube.

7. The silicon steel sheet sorting rack according to claim 1, characterized in that: The cross-section of the bottom rectangular tube is 60 mm long and 40 mm wide; the cross-section of the middle rectangular tube is 50 mm long and 30 mm wide.

8. A silicon steel sheet sorting rack according to claim 1 or 7, characterized in that: The cross-section of the beam support tube is 40 mm long and 20 mm wide.

9. The silicon steel sheet sorting rack according to claim 1, characterized in that: The cross section of the upright beam is 80 mm long and 40 mm wide.

10. The silicon steel sheet sorting rack according to claim 9, characterized in that: The drawer rod includes an upper drawer rod and a lower drawer rod. The upper drawer rod is used to limit the placed items, and the lower drawer rod is used to insert the crossbeam to place items. The crossbeam is lengthened and the length can be adjusted through the U-shaped groove; the cross-section of the upper drawer rod is 40mm long and 20mm wide; the cross-section of the lower drawer rod is 50mm long and 30mm wide.