A stand-alone bearing bracket for a vertical DC panel rectifier module

CN224746763UActive Publication Date: 2026-09-11XINXIANG TAIHANG JINRI ELECTRIC POWER EQUIP CO LTD
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Patent Information

Application Number
CN202522216707.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2026-09-11
Estimated Expiration
2035-10-21

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种立式直流屏整流模块的独立式承载托架,通过设置整流模块主体、安装板、上限位板和支撑组件,解决了直流屏整流模块的独立式承载托架安装整流模块需要操作人员细致地对准,安装不够方便,且拆卸操作需要工作人员拆卸多个安装结构,影响拆卸便捷度的问题

Benefits of technology

本实用新型通过设置整流模块主体、安装板、上限位板和支撑组件,解决了直流屏整流模块的独立式承载托架安装整流模块需要操作人员细致地对准,安装不够方便的问题,将整流模块主体顶部的滑动槽对准上限位板底部的滑动板一,整流模块主体底部的滑动槽对准支撑组件,滑动整流模块主体到支撑在支撑组件上后,继续滑动整流模块主体,使得整流模块主体设置在夹持限位板之间,使得直流屏整流模块的独立式承载托架安装整流模块安装对准更加方便。

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Abstract

The utility model discloses a vertical DC screen rectification module's independent type bearing bracket relates to DC screen rectification module related technical field, the utility model discloses a rectification module main part, mounting panel, upper limit pad and support component, the top and the bottom of rectification module main part one long edge all is provided with the sliding slot, the rear side of rectification module main part is provided with mounting panel, the top of rectification module main part is provided with upper limit pad, and the plug -in block is inserted into the vertical through in upper limit pad, and the plug -in block and rectification module main part's front side upper portion are mutually contacted, and the bottom swing joint of rectification module main part has support component. The utility model discloses a rectification module main part, mounting panel, upper limit pad and support component are set up, solved the rectification module of DC screen rectification module's independent type bearing bracket installation rectification module and need the careful alignment of operator, and the installation is not enough convenient, and the dismounting operation needs the staff to dismount multiple mounting structures, and the problem of influence dismounting convenience degree.
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Description

Technical Field

[0001] This utility model belongs to the technical field of DC power supply rectifier modules, and in particular relates to an independent support bracket for a vertical DC power supply rectifier module. Background Technology

[0002] The independent support bracket for vertical DC power supply rectifier modules is a key mechanical component in power distribution systems. It is a metal support independently installed within the DC power supply cabinet. Its core function is to safely and stably support and securely fix the vertically mounted rectifier modules. This bracket not only bears the physical weight of the modules but also, through its precise design, ensures that the modules can be easily pushed in and pulled out, greatly facilitating installation and maintenance. It also ensures accurate and reliable electrical connections. Furthermore, the bracket's structure typically considers heat dissipation and ventilation requirements, and its standardized design supports modular expansion of the system. However, the independent support bracket for vertical DC power supply rectifier modules still has the following drawbacks in practical use: The independent support bracket for the DC power supply rectifier module is directly supported in the DC power supply during operation. It is installed using a mounting bracket. During installation, the operator needs to align the rectifier module carefully, which is not convenient. Secondly, the independent support bracket of the DC power supply rectifier module requires pulling the bracket during operation. The bracket is directly supported by the bracket during operation, which makes it more troublesome to remove the DC power supply rectifier module. The disassembly operation requires the staff to disassemble multiple installation structures, which affects the ease of disassembly. Utility Model Content

[0003] The purpose of this utility model is to provide an independent support bracket for a vertical DC power supply rectifier module. By setting up the rectifier module body, mounting plate, upper limit plate and support components, it solves the problems that the independent support bracket for DC power supply rectifier modules requires operators to align the rectifier module carefully, which is not convenient for installation. Furthermore, the disassembly operation requires workers to disassemble multiple mounting structures, which affects the ease of disassembly.

[0004] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model relates to an independent support bracket for a vertical DC power supply rectifier module, comprising a rectifier module body, a mounting plate, an upper limit plate, and a support assembly. The rectifier module body has sliding grooves on one long side of its top and bottom. The mounting plate is located on the rear side of the rectifier module body, and the upper limit plate is located on the top of the rectifier module body. A plug is vertically inserted into the upper limit plate, and the plug contacts the upper front side of the rectifier module body. The support assembly is movably connected to the bottom of the rectifier module body. The rectifier module body is slidably connected to the upper limit plate and the support assembly via the sliding grooves on the top and bottom. The mounting plate is used to fix the rectifier module body inside the DC power supply. The upper limit plate locks the front side of the rectifier module body with the plug to prevent it from moving forward. The support assembly supports the module from the bottom, together achieving stable installation of the module.

[0005] Furthermore, a handle is fixed to the lower front side of the rectifier module body, and the sliding grooves are all provided through the rear side of the rectifier module body. The handle on the front side of the rectifier module body facilitates pull-out operation, and the sliding grooves through the rear side allow the module to be directly installed or pulled out from the front of the mounting plate, facilitating disassembly and assembly.

[0006] Furthermore, clamping and limiting plates are fixed to the front sides of the mounting plates on both sides of the rectifier module body. Mounting holes are opened through the four corners of the mounting plate. The clamping and limiting plates on both sides of the front side of the mounting plate limit the two sides of the rectifier module body to prevent left and right movement. The mounting holes are used to fix the mounting plate to the bracket inside the DC screen.

[0007] Furthermore, a sliding plate is fixed to the bottom of the upper limit plate. The sliding plate is movably connected to the sliding groove at the top of the rectifier module body. The rear ends of both the upper limit plate and the sliding plate are fixed to the front side of the mounting plate. The sliding plate at the bottom of the upper limit plate is inserted into the sliding groove at the top of the rectifier module body to limit the vertical position of the module and fix it to the mounting plate, forming a top guide and limit.

[0008] Furthermore, a fixing plate is fixed to the top of the plug block, and the bottom of the fixing plate is set on the top of the upper limit plate. The fixing plate at the top of the plug block is supported on the upper limit plate. When it is inserted downward, it can press against the front side of the rectifier module body to achieve locking. Pulling it upward can release the limit and facilitate disassembly.

[0009] Furthermore, the support assembly includes a second sliding plate, a fixed back plate, and an inclined plate. The second sliding plate is movably connected in a sliding groove at the bottom of the rectifier module body. The rear end of the second sliding plate is fixed to the front side of the mounting plate. A fixed back plate is fixed to the bottom of the second sliding plate near the edge of the mounting plate. An inclined plate is fixed to the lower front side of the fixed back plate. The front end of the inclined plate is fixed to the bottom of the second sliding plate near the front short side. The second sliding plate of the support assembly is inserted into the sliding groove at the bottom of the rectifier module, serving as a support and guide. The fixed back plate and the inclined plate enhance the stability of the support structure and prevent the module from swaying back and forth on the mounting plate.

[0010] This utility model has the following beneficial effects: This invention solves the problem of inconvenient installation of DC power supply rectifier modules using independent support brackets, which requires meticulous alignment by operators. By aligning the sliding groove at the top of the rectifier module body with the sliding plate at the bottom of the upper limit plate, and the sliding groove at the bottom of the rectifier module body with the support component, the rectifier module body is slid until it is supported on the support component. Continue sliding the rectifier module body until it is positioned between the clamping and limiting plates, making the alignment of the rectifier module during independent support bracket installation much easier.

[0011] This invention solves the problem that disassembling the independent support bracket of a DC power supply rectifier module requires workers to disassemble multiple mounting structures, affecting the ease of disassembly, by setting up a rectifier module body, an upper limit plate, and a support assembly. When it is necessary to disassemble the rectifier module body from the front of the mounting plate, the fixing plate is pushed upwards, causing the insert block to be pulled out from the upper limit plate. The rectifier module body is then released from its limit position, and the handle on the front of the rectifier module body is pulled out from between the two clamping limit plates on the front of the mounting plate, between the upper limit plate and the support assembly, thus completing the disassembly of the rectifier module body. This eliminates the need for workers to disassemble multiple mounting structures when disassembling the independent support bracket of the DC power supply rectifier module, ensuring ease of disassembly. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0013] Figure 1 A perspective view of the independent support bracket assembly structure of a vertical DC power supply rectifier module; Figure 2 This is a three-dimensional structural view of the main body of the rectifier module; Figure 3 This is a three-dimensional structural view of the mounting plate; Figure 4 Here is a three-dimensional structural diagram of the upper limit plate; Figure 5 A three-dimensional structural diagram of the supporting components.

[0014] Figure label: 1. Rectifier module body; 101. Sliding groove; 102. Handle; 2. Mounting plate; 201. Mounting hole; 202. Clamping limit plate; 3. Upper limit plate; 301. Sliding plate one; 302. Insert block; 303. Fixing plate; 4. Support assembly; 401. Sliding plate two; 402. Fixing back plate; 403. Inclined plate. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model. Specific Implementation Example 1

[0016] Please see Figure 1-4 This utility model relates to an independent support bracket for a vertical DC power supply rectifier module, comprising a rectifier module body 1, a mounting plate 2, an upper limit plate 3, and a support assembly 4. Sliding grooves 101 are provided on one long side of the top and bottom of the rectifier module body 1. The rectifier module body 1 performs overall rectification. The sliding grooves 101 are used for the installation of the upper limit plate 3 and the support assembly 4 structure connecting the rectifier module body 1 to the mounting plate 2. The mounting plate 2 is located on the rear side of the rectifier module body 1 and is installed together with the installation equipment inside the DC power supply. The top of the main body 1 is provided with an upper limit plate 3, which restricts the top position of the rectifier module main body 1 and extends out of the front side of the rectifier module main body 1. A plug 302 is vertically inserted into the upper limit plate 3. The plug 302 is in contact with the upper front side of the rectifier module main body 1. The plug 302 in the upper limit plate 3 is in contact with the front side of the rectifier module main body 1 to lock the rectifier module main body 1 in front of the mounting plate 2. The bottom of the rectifier module main body 1 is movably connected with a support component 4, which provides support for the rectifier module main body 1 on the mounting plate 2.

[0017] Specifically, a handle 102 is fixed to the lower front side of the rectifier module body 1, and the sliding groove 101 is set through the rear side of the rectifier module body 1. After holding the handle 102 on the front side of the rectifier module body 1, the rectifier module body 1 can be pulled out from the front of the mounting plate 2 after releasing the limit on the front side of the rectifier module body 1.

[0018] Furthermore, clamping and limiting plates 202 are fixed on the front sides of the mounting plates 2 on both sides of the rectifier module body 1. Mounting holes 201 are opened through the four corners of the mounting plates 2. After the rectifier module body 1 is installed on the front side of the mounting plates 2, the clamping and limiting plates 202 are placed on both sides of the rectifier module body 1 to provide lateral support and limitation for the rectifier module body 1.

[0019] Furthermore, a sliding plate 301 is fixed to the bottom of the upper limit plate 3. The sliding plate 301 is movably connected to the sliding groove 101 at the top of the rectifier module body 1. The rear ends of both the upper limit plate 3 and the sliding plate 301 are fixed to the front side of the mounting plate 2. When the rectifier module body 1 is installed, the sliding plate 301 slides into the sliding groove 101 at the top of the rectifier module body 1, restricting the position of the front side of the rectifier module body 1.

[0020] Furthermore, a fixing plate 303 is fixed to the top of the insert block 302, and the bottom of the fixing plate 303 is set on the top of the upper limit plate 3. The fixing plate 303 on the top of the insert block 302 is supported on the upper limit plate 3. When it is necessary to loosen the rectifier module body 1 in front of the mounting plate 2, the fixing plate 303 is pushed upward, so that after the insert block 302 is pulled out from the upper limit plate 3, the rectifier module body 1 is released from the limit.

[0021] The operation process of this embodiment is as follows: When the overall installation is required, first align the mounting plate 2 with the mounting hole 201 on the mounting bracket inside the DC screen, then insert the mounting bolts into the mounting hole 201 on the mounting plate 2 and screw them into the mounting bracket inside the DC screen. Then, hold the rectifier module body 1 and align the sliding groove 101 on the top of the rectifier module body 1 with the sliding plate 301 at the bottom of the upper limit plate 3. Align the sliding groove 101 at the bottom of the rectifier module body 1 with the support component 4. Slide the rectifier module body 1 until it is supported on the support component 4, and continue to slide the rectifier module body 1 so that the rectifier module body 1 is positioned between the clamping and limiting plates 202 until the rear side of the rectifier module body 1 is attached to the mounting plate 2. Then, insert the insert block 302 at the bottom of the fixing plate 303 into the front part of the upper limit plate 3, and limit the fixing plate 303 with the front part of the rectifier module body 1. Specific Implementation Example 2

[0022] Please see Figure 1-5Based on the first specific embodiment, the support component 4 includes a second sliding plate 401, a fixed back plate 402, and an inclined plate 403. The second sliding plate 401 is movably connected in the sliding groove 101 at the bottom of the rectifier module body 1. The rear end of the second sliding plate 401 is fixed to the front side of the mounting plate 2. The fixed back plate 402 is fixed at the bottom of the second sliding plate 401 near the edge of the mounting plate 2. The inclined plate 403 is fixed at the lower front side of the fixed back plate 402. The front end of the inclined plate 403 is fixed at the bottom of the second sliding plate 401 near the front short side. The support component 4 is movably connected in the sliding groove 101 through the second sliding plate 401 to support the rectifier module body 1. The stability of the rectifier module body 1 supported on the mounting plate 2 is increased by the cooperation of the fixed back plate 402 and the inclined plate 403.

[0023] The operation process of this embodiment is as follows: During operation, when it is necessary to disassemble the rectifier module body 1 on the front side of the mounting plate 2, push the fixing plate 303 upward so that the insert block 302 is pulled out from the upper limit plate 3. After that, the rectifier module body 1 is released from the limit. Then, by pulling the handle 102 on the front side of the rectifier module body 1, the rectifier module body 1 is pulled out from between the two clamping limit plates 202 on the front side of the mounting plate 2, between the upper limit plate 3 and the support component 4, thus completing the disassembly of the rectifier module body 1.

[0024] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0025] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A stand-alone bearing bracket of a vertical DC panel rectifier module, comprising a rectifier module main body (1), a mounting plate (2), an upper limiting plate (3) and a supporting assembly (4), characterized in that: The rectifier module body (1) has a sliding groove (101) on one long side of the top and bottom. The rectifier module body (1) has a mounting plate (2) on the rear side. The rectifier module body (1) has an upper limit plate (3) on the top. A plug (302) is vertically inserted into the upper limit plate (3). The plug (302) is in contact with the upper front side of the rectifier module body (1). The rectifier module body (1) has a support component (4) movably connected to the bottom.

2. The self-contained, load-bearing cradle for a vertical DC panel rectifier module of claim 1, wherein: A handle (102) is fixed to the lower front side of the rectifier module body (1), and the sliding grooves (101) are all arranged through the rear side of the rectifier module body (1).

3. The self-contained support bracket for a vertical DC panel rectifier module of claim 1, wherein: The front sides of the mounting plates (2) on both sides of the main body (1) of the rectifier module are fixed with clamping and limiting plates (202), and the four corners of the mounting plate (2) are all provided with mounting holes (201).

4. The self-contained support bracket for a vertical DC panel rectifier module of claim 1, wherein: The bottom of the upper limit plate (3) is fixed with a sliding plate (301), which is movably connected in the sliding groove (101) at the top of the rectifier module body (1). The rear ends of the upper limit plate (3) and the sliding plate (301) are both fixed to the front side of the mounting plate (2).

5. The self-contained support bracket for a vertical DC panel rectifier module of claim 1, wherein: The top of the insert (302) is fixed with a fixing plate (303), and the bottom of the fixing plate (303) is set on the top of the upper limit plate (3).

6. The self-contained support bracket for a vertical DC panel rectifier module of claim 1, wherein: The support assembly (4) includes a sliding plate (401), a fixed back plate (402), and an inclined plate (403). The sliding plate (401) is movably connected in the sliding groove (101) at the bottom of the rectifier module body (1). The rear end of the sliding plate (401) is fixed to the front side of the mounting plate (2). The fixed back plate (402) is fixed at the bottom of the sliding plate (401) near the edge of the mounting plate (2). An inclined plate (403) is fixed at the lower front side of the fixed back plate (402). The front end of the inclined plate (403) is fixed at the bottom of the sliding plate (401) near the front short side.