Wall hanging plate for three-phase energy storage equipment

By cutting and bending the mounting panel of the wall-mounted panel, combined with reinforcing ribs and through-hole design, the problems of excessive materials and heavy weight of existing wall-mounted panels are solved, achieving a lightweight, compact and easy-to-install effect.

CN223626092UActive Publication Date: 2025-12-02HANGZHOU BEILI ELECTROMECHANICAL EQUIP MFG CO LTD
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Patent Information

Application Number
CN202422811758.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-12-02
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing wall-mounting materials used for three-phase energy storage equipment are often heavy, bulky, and inconvenient to install.

Method used

The mounting panel is designed with cutting and bending to form the hanging sleeve, combined with reinforcing ribs and through-hole structure, which reduces material usage and increases load-bearing capacity, making installation easier.

Benefits of technology

It achieves a lightweight and compact structural design, while improving load-bearing capacity and ease of installation, and reducing production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wall-mounted plate for three-phase energy storage equipment, which is less in used material, light in weight, compact in structure, high in bearing capacity and convenient to mount with a wall body, two hanging sleeves are arranged on the front surface of a mounting panel, a plurality of mounting through holes are arranged on the front surface of the mounting panel, and the mounting panel is provided with a plurality of mounting holes. The two hanging sleeves are formed by cutting and bending part of a plate body in the mounting panel, the inner end faces of outer side wall plates in the hanging sleeves are welded and fixed to the front face of the mounting panel, a square through hole is formed in the mounting panel, the two sides of the mounting panel are each provided with a reinforcing rib, and the reinforcing ribs are located on the front face of the mounting panel. The reinforcing rib is formed by bending the side edge of the mounting panel, a first reinforcing rib is arranged at the lower end of the mounting panel, and the first reinforcing rib is formed by bending the bottom edge of the mounting panel. The wall-mounted plate has the advantages that firstly, the wall-mounted plate is less in used material, relatively light in weight and more compact in structure; the wall hanging plate is high in bearing capacity and can be conveniently installed on a wall body.
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Description

Technical Field

[0001] This utility model belongs to the field of wall-mounted panel manufacturing, specifically relating to a wall-mounted panel for three-phase energy storage equipment. Background Technology

[0002] Our company currently manufactures a type of wall-mounted panel for three-phase energy storage devices (such as photovoltaic inverters), such as... Figure 4 As shown, the wall-mounted panel includes a mounting plate 1' and two square mounting sleeves 2'. Two square mounting sleeves 2' are welded to the front of the mounting plate 1'. The front of the mounting plate 1' has multiple mounting holes 3' that extend through both sides of the mounting plate 1'. In use, the wall-mounted panel is installed on a wall panel or wall using multiple cement nails or screws, with the back of the mounting plate 1' in full contact with the front of the wall panel or wall. Then, the photovoltaic inverter in the three-phase energy storage device is installed on the wall-mounted panel by inserting two plug-in arms on the back of the photovoltaic inverter housing into the corresponding plug-in holes of the square mounting sleeves 2'. However, an existing wall-mounted panel for three-phase energy storage devices not only uses more materials but is also heavier and larger (the square mounting sleeve 2' consists of two side panels, a back panel, and a front panel). Utility Model Content

[0003] Design objective: To avoid the shortcomings of the prior art, a wall-mounted panel for three-phase energy storage equipment is designed that not only uses less material and is significantly lighter, but also has a more compact structure, strong load-bearing capacity, and is easy to install on the wall.

[0004] Design scheme: To achieve the above design objectives.

[0005] 1. Both hanging sleeves are formed by cutting and bending a portion of the plate in the mounting panel, and the inner end face of the outer wall panel of the hanging sleeve is welded and fixed to the front face of the mounting panel. The mounting panel has a square through hole that penetrates both sides of the mounting panel. The square through hole is located between the two hanging sleeves. A reinforcing rib is provided on each side of the mounting panel and is located on the front face of the mounting panel. The reinforcing rib is formed by bending the side of the mounting panel. A first reinforcing rib is provided at the lower end of the mounting panel and is located on the front face of the mounting panel. The design of the first reinforcing rib being formed by bending the bottom edge of the mounting panel is one of the technical features of this utility model. The purpose of this design is as follows: both hanging sleeves are formed by cutting and bending a portion of the panel in the mounting panel, and the inner end face of the outer wall panel of the hanging sleeve is welded and fixed to the front face of the mounting panel. The mounting panel has a square through hole that runs through both sides of the mounting panel. The square through hole is located between the two hanging sleeves. Each side of the mounting panel has a reinforcing rib, which is located on the front face of the mounting panel and is formed by bending the side edge of the mounting panel. The lower end of the mounting panel has a first reinforcing rib, which is located on the front face of the mounting panel and is formed by bending the bottom edge of the mounting panel. Firstly, since the hanging sleeves are formed by cutting and bending a portion of the panel in the mounting panel, this not only reduces the amount of wall-mounting material used but also reduces the overall weight of the wall-mounting panel, while also making it relatively smaller in size (without the back panel in the square hanging sleeve 2'), i.e., the structure is more compact. Secondly, the square through hole further reduces the weight of the wall-mounting panel, thereby reducing the production cost of the wall-mounting panel. Thirdly, the reinforcing rib and the first reinforcing rib improve the load-bearing capacity of the wall-mounting panel.

[0006] 2. A second reinforcing rib is provided at the upper end of the square through hole and is located on the front of the mounting panel. The second reinforcing rib is formed by bending the panel body located at the upper end of the square through hole. A third reinforcing rib is provided on each side of the square through hole and is located on the front of the mounting panel. The third reinforcing rib is formed by bending the panel body located on both sides of the square through hole. This design is the second technical feature of this utility model. The purpose of this design is that the second reinforcing rib at the upper end of the square through hole and located on the front of the mounting panel, formed by bending the panel body located at the upper end of the square through hole, and the third reinforcing rib on each side of the square through hole and located on the front of the mounting panel, formed by bending the panel body located on both sides of the square through hole, can further improve the load-bearing capacity of the wall-mounted panel.

[0007] 3. The design that one end of each of the two third reinforcing ribs is integrally formed with the corresponding hanging sleeve is the third technical feature of this utility model. The purpose of this design is that the integral structure of one end of each of the two third reinforcing ribs with the corresponding hanging sleeve can improve the bonding strength between the hanging sleeve and the mounting panel.

[0008] 4. The design of the mounting through hole as a strip-shaped through hole is the fourth technical feature of this utility model. The purpose of this design is that the mounting through hole is a strip-shaped through hole, which facilitates the installation of a wall-mounted plate for a three-phase energy storage device onto the wall.

[0009] 5. The fifth technical feature of this utility model is that the front of the mounting panel has an installation guidance mark that extends through both sides of the mounting panel. The purpose of this design is to facilitate the correct installation of a wall-mounted panel for three-phase energy storage equipment.

[0010] 6. The design of having a reinforcing plate on the upper surface of the hanging sleeve, formed by bending the upper part of the front panel of the hanging sleeve, is the sixth technical feature of this utility model. The purpose of this design is that the reinforcing plate on the upper surface of the hanging sleeve, formed by bending the upper part of the front panel of the hanging sleeve, can improve the overall strength of the hanging sleeve.

[0011] Technical Solution: A wall-mounted panel for a three-phase energy storage device includes a mounting panel. The front of the mounting panel has two mounting sleeves and multiple through holes that penetrate both sides of the panel. Each mounting sleeve is formed by cutting and bending a portion of the panel, with the inner end of the outer wall panel of the sleeve welded to the front of the panel. The mounting panel has a square through hole that penetrates both sides and is located between the two mounting sleeves. A reinforcing rib is provided on each side of the panel, located on the front of the panel, and is formed by bending the side of the panel. A first reinforcing rib is provided at the bottom of the panel, located on the front of the panel, and is formed by bending the bottom edge of the panel.

[0012] Compared with the prior art, this utility model has two advantages: first, the wall-mounted plate for three-phase energy storage equipment uses less material and is significantly lighter, while also having a more compact structure; second, the wall-mounted plate for three-phase energy storage equipment not only has strong load-bearing capacity but is also easy to install on the wall. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of a wall-mounted panel used in a three-phase energy storage device, viewed from the front.

[0014] Figure 2 This is a three-dimensional structural diagram of a wall-mounted panel for a three-phase energy storage device, viewed from the rear.

[0015] Figure 3 This is a 3D model of a wall-mounted panel used in three-phase energy storage equipment.

[0016] Figure 4 This is a schematic diagram of the structure of a wall-mounted panel used in existing three-phase energy storage devices. Detailed Implementation

[0017] Example 1: Refer to Appendix Figures 1-3 A wall-mounted panel for a three-phase energy storage device includes a mounting panel 1. The front of the mounting panel 1 has two mounting sleeves 2. The front of the mounting panel 1 also has multiple mounting through holes 3 that penetrate both sides of the mounting panel 1. Each mounting sleeve 2 is formed by cutting and bending a portion of the mounting panel 1, and the inner end face of the outer wall panel 21 of the mounting sleeve 2 is welded to the front of the mounting panel 1. The mounting panel 1 has a square through hole 4 that penetrates both sides of the mounting panel 1 and is located between the two mounting sleeves 2. Each side of the mounting panel 1 has a reinforcing rib 5 located on the front of the mounting panel 1. The reinforcing rib 5 is formed by bending the side edge of the mounting panel 1. The lower end of the mounting panel 1 has a first reinforcing rib 6 located on the front of the mounting panel 1. The first reinforcing rib 6 is formed by bending the bottom edge of the mounting panel 1. The thickness of the bent reinforcing rib 5 is 4.5 mm, and the thickness of the bent first reinforcing rib 6 is 4.5 mm. The square through hole 4 has a length of 313.0 mm and a width of 70.0 mm. The mounting panel 1 has a length of 443.0 mm and a width of 131.5 mm. The hanging sleeve 2 is rectangular and has a length of 43.0 mm, a width of 22.0 mm, and a height of 46.5 mm.

[0018] A second reinforcing rib 7 is provided at the upper end of the square through hole 4 and is located on the front of the mounting panel 1. The second reinforcing rib 7 is formed by bending the plate body of the mounting panel 1 located at the upper end of the square through hole 4. A third reinforcing rib 8 is provided on each side of the square through hole 4 and is located on the front of the mounting panel 1. The third reinforcing rib 8 is formed by bending the plate body of the mounting panel 1 located on both sides of the square through hole 4. The thickness of the second reinforcing rib 7 after bending is 4.5 mm, and the thickness of the third reinforcing rib 8 after bending is 4.5 mm.

[0019] One end of each of the two third reinforcing ribs 8 is integrally formed with the corresponding hanging sleeve 2. The mounting through hole 3 is a strip-shaped through hole, which is arranged horizontally and its length is greater than its width. The width of the strip-shaped through hole matches the diameter of the shank of the cement nail or screw, and the diameter of the head of the cement nail or screw is greater than the width of the strip-shaped through hole. The mounting panel 1 is made of 1.5mm thick 304 stainless steel. The front of the mounting panel 1 is provided with an installation guidance mark 9, which runs through both the front and back of the mounting panel 1. The upper end of the hanging sleeve 2 is provided with a reinforcing plate 10, which is formed by bending the upper part of the front panel in the hanging sleeve 2.

[0020] It should be understood that although the above embodiments provide a relatively detailed textual description of the design concept of this utility model, these textual descriptions are merely simple textual descriptions of the design concept of this utility model, and not limitations on the design concept of this utility model. Any combination, addition, or modification that does not exceed the design concept of this utility model shall fall within the protection scope of this utility model.

Claims

1. A wall-mounted panel for a three-phase energy storage device, comprising a mounting panel (1), wherein the front side of the mounting panel (1) is provided with two mounting sleeves (2), and the front side of the mounting panel (1) is provided with a plurality of mounting through holes (3) and the mounting through holes (3) penetrate both sides of the mounting panel (1), characterized in that: Both hanging sleeves (2) are formed by cutting and bending a portion of the plate in the mounting panel (1), and the inner end face of the outer wall plate (21) in the hanging sleeve (2) is welded and fixed to the front of the mounting panel (1). The mounting panel (1) is provided with a square through hole (4) that penetrates both the front and back sides of the mounting panel (1). The square through hole (4) is located between the two hanging sleeves (2). A reinforcing rib (5) is provided on each side of the mounting panel (1), and the reinforcing rib (5) is located on the front of the mounting panel (1). The reinforcing rib (5) is formed by bending the side of the mounting panel (1). A first reinforcing rib (6) is provided at the lower end of the mounting panel (1), and the first reinforcing rib (6) is located on the front of the mounting panel (1). The first reinforcing rib (6) is formed by bending the bottom edge of the mounting panel (1).

2. A wall-mounted panel for a three-phase energy storage device according to claim 1, characterized in that: The upper end of the square through hole (4) is provided with a second reinforcing rib (7) and the second reinforcing rib (7) is located on the front of the mounting panel (1). The second reinforcing rib (7) is formed by bending the plate body of the mounting panel (1) located at the upper end of the square through hole (4). The two sides of the square through hole (4) are respectively provided with a third reinforcing rib (8) and the third reinforcing rib (8) is located on the front of the mounting panel (1). The third reinforcing rib (8) is formed by bending the plate body of the mounting panel (1) located on both sides of the square through hole (4).

3. A wall-mounted panel for a three-phase energy storage device according to claim 2, characterized in that: One end of each of the two third reinforcing ribs (8) is integral with the corresponding sleeve (2).

4. A wall-mounted panel for a three-phase energy storage device according to claim 1, characterized in that: The mounting through hole (3) is a strip-shaped through hole.

5. A wall-mounted panel for a three-phase energy storage device according to claim 1, characterized in that: The mounting panel (1) is made of 1.5mm thick 304 stainless steel.

6. A wall-mounted panel for a three-phase energy storage device according to claim 1, characterized in that: The front of the mounting panel (1) is provided with an installation prompt sign (9), and the installation prompt sign (9) runs through both the front and back of the mounting panel (1).

7. A wall-mounted panel for a three-phase energy storage device according to claim 1, characterized in that: The upper end face of the hanging sleeve (2) is provided with a reinforcing plate (10), and the reinforcing plate (10) is formed by bending the upper part of the front panel in the hanging sleeve (2).