Assembly type prefabricated cabin power distribution room model for display

By designing an assembled prefabricated distribution room model, which is divided into multiple parts and adopts a reserved socket structure, the equipment can be easily assembled, solving the problems of long construction period, uncontrollable quality and high cost in the existing distribution room projects, and achieving efficient, green and environmentally friendly construction results.

CN223320952UActive Publication Date: 2025-09-09SHENZHEN XINNENG ELECTRIC POWER DEV DESIGN INST CO LTD
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Patent Information

Application Number
CN202422401275.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-09-09
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

In the construction of existing distribution room projects, there are problems such as long construction period, many process obstacles, uncontrollable quality, and high cost. The limitations of traditional distribution rooms and box transformer solutions affect project approval and implementation, and restrict the agile construction and high-quality development of distribution network infrastructure.

Method used

A prefabricated assembled power distribution room model for display is designed, which is divided into an assembled power room bottom plate body, a front body, a side body and a top cover body. A reserved socket structure is adopted to facilitate assembly equipment. The display model is formed by proportional reduction to achieve convenient assembly and fastening connection.

Benefits of technology

The construction process is simplified, construction efficiency is improved, costs are reduced, green and environmentally friendly assembly operations are achieved, and the practicality and convenience of the device are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of prefabricated cabin power distribution room models, in particular to an assembly type prefabricated cabin power distribution room model for display, which comprises an assembly type power room bottom plate main body, an assembly type power room front main body, an assembly type power room side main body and an assembly type power room top cover main body, the assembly type electricity room is characterized in that the upper end of the assembly type electricity room bottom plate main body is provided with the assembly type electricity room front face main bodies, the upper end of the assembly type electricity room bottom plate main body is provided with the assembly type electricity room side face main bodies, and the assembly type electricity room front face main bodies and the assembly type electricity room side face main bodies are both arranged; and the upper ends of the assembly type electricity room front main body and the assembly type electricity room side main body are provided with an assembly type electricity room top cover main body. According to the assembly type prefabricated cabin power distribution room model used for displaying, a prefabricated production power distribution room is adopted, so that the model is simpler to use, more convenient to assemble and operate and firm in connection, the model has the characteristics of being green and environment-friendly, and the practicability and the convenience of the model are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of prefabricated cabin power distribution room models, in particular to an assembled prefabricated cabin power distribution room model for display. Background Art

[0002] During the process of power generation, transmission and distribution, power distribution provides end customers with a safe, reliable and stable power consumption environment. The development of the power grid must accelerate the green transformation of development methods, promote the efficient and intensive use of various resources, accelerate the construction of a waste recycling system, develop green and low-carbon industries, advocate green consumption, and promote the formation of green and low-carbon production and lifestyles. Existing distribution rooms, as a carrier for providing high-quality output conditions, are particularly important in the entire chain.

[0003] In the construction of existing distribution room projects, traditional design and construction methods have problems such as long construction period, many process obstacles, uncontrollable quality, and high cost. The limitations of traditional distribution rooms and box-type transformer solutions are becoming increasingly greater, affecting project approval and implementation, and restricting the agile construction and high-quality development of distribution network infrastructure. Therefore, it is urgent to design an assembled prefabricated distribution room model for display to solve the above problems. Utility Model Content

[0004] The purpose of this utility model is to provide an assembled prefabricated distribution room model for display, so as to solve the problems raised in the above background technology in the construction of existing distribution room projects, such as long construction period, many process obstacles, uncontrollable quality, high cost, etc. The limitations of traditional distribution rooms and box transformer solutions are becoming increasingly greater, affecting project approval and implementation, and restricting the agile construction and high-quality development of distribution network infrastructure.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an assembled prefabricated power distribution room model for display, comprising: an assembled power room floor main body, an assembled power room front main body, an assembled power room side main body and an assembled power room roof main body, the upper end of the assembled power room floor main body is equipped with an assembled power room front main body, the upper end of the assembled power room floor main body is equipped with an assembled power room side main body, the assembled power room front main body and the assembled power room side main body are each provided with two groups, the upper ends of the assembled power room front main body and the assembled power room side main body are equipped with an assembled power room roof main body, a reserved socket is provided on the assembled power room floor main body, and a reserved socket is provided at the bottom end of the assembled power room roof main body.

[0006] Preferably, the main body of the assembled power room floor is provided with a low-voltage distribution cabinet installation body, a high-voltage complete cabinet installation body and a distribution transformer installation body, and the main body of the assembled power room floor is provided with reserved openings for the installation of low-voltage distribution cabinet installation body, high-voltage complete cabinet installation body and distribution transformer installation body.

[0007] Preferably, the assembled power room floor main body is provided with side panel mounting sockets, and four groups of the side panel mounting sockets are provided, and the side panel mounting sockets are symmetrically arranged along the central axis of the assembled power room floor main body.

[0008] Preferably, the main body of the assembled power room floor is provided with square-corner jacks on the front panel, and four groups of square-corner jacks on the front panel are provided, and the square-corner jacks on the front panel are respectively opened at the four corners of the main body of the assembled power room floor.

[0009] Preferably, the bottom end of the front body of the assembled power room is fixedly connected to the lower socket strip of the front panel, and the lower socket strip of the front panel can be inserted into the square corner socket of the front panel opened on the bottom plate body of the assembled power room. The side wall of the front body of the assembled power room is fixedly connected to the left and right socket strips of the front panel, and the left and right socket strips of the front panel can be inserted into the side body of the assembled power room. The bottom end of the side body of the assembled power room is fixedly connected to the lower socket strip of the side panel, and the side wall of the side body of the assembled power room is fixedly connected to the left and right interface holes of the side panel.

[0010] Preferably, the bottom end of the assembled power room roof body is fixedly connected to the socket strips of the top cover panel and the side panel, and four groups of the socket strips of the top cover panel and the side panel are provided, and the socket strips of the top cover panel and the side panel are symmetrically arranged along the central axis of the assembled power room roof body.

[0011] Preferably, the bottom end of the assembled power room roof body is fixedly connected with a socket strip of the top cover panel and the front panel, and four groups of socket strips of the top cover panel and the front panel are provided, and the socket strips of the top cover panel and the front panel are respectively opened at the four corners on the bottom end of the assembled power room roof body.

[0012] Preferably, a front panel interface hole is opened inside the upper end of the front main body of the prefabricated power room, and a side panel interface hole is opened inside the upper end. The front panel interface hole and the side panel interface hole are respectively arranged to correspond to the socket strips between the top cover panel and the front panel and the socket strips between the top cover panel and the side panel set at the bottom end of the roof main body of the prefabricated power room.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] The assembled prefabricated cabin power distribution room model for display is provided with an assembly mechanism. When the assembled prefabricated cabin power distribution room model for display is used, the power distribution room is divided into four parts, namely, an assembled power distribution room bottom plate body, an assembled power distribution room front body, an assembled power distribution room side body and an assembled power distribution room roof body, with a total of six surfaces. According to the size of the designed power distribution room and the size, specifications and power consumption of the indoor electrical equipment, the six surfaces are reduced in the same proportion and enclosed into one body to form an assembled prefabricated cabin power distribution room model that can be used for display. Holes for equipment insertion are reserved, so that the low-voltage distribution cabinet installation body, high-voltage complete cabinet installation body and distribution transformer installation body of the equipment to be assembled on the assembled power distribution room bottom plate body can be conveniently assembled, and the six surfaces of the power distribution room can be assembled one by one. The assembled prefabricated cabin power distribution room model for display adopts prefabricated production to make it easier to use, more convenient to assemble and connect, and has the characteristics of green environmental protection, thereby improving the practicality and convenience of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a three-dimensional display diagram of the utility model;

[0016] Figure 2 This is a schematic diagram showing the installation of the base plate of the utility model;

[0017] Figure 3 This is a schematic diagram showing the front view of the installation of the utility model;

[0018] Figure 4 This is a side view of the installation of the utility model;

[0019] Figure 5 This is a schematic diagram showing the installation of the top cover of the utility model.

[0020] In the figure: 1. The main body of the bottom plate of the assembled power room; 2. The main body of the front of the assembled power room; 3. The main body of the side of the assembled power room; 4. The main body of the roof of the assembled power room; 101. The main body of the low-voltage distribution cabinet installation; 102. The main body of the high-voltage complete cabinet installation; 103. The main body of the distribution transformer installation; 104. The side panel installation socket; 105. The square corner socket of the front panel; 201. The lower socket strip of the front panel; 202. The interface hole of the front panel; 203. The left and right socket strips of the front panel; 301. The lower socket strip of the side panel; 302. The interface hole of the side panel; 303. The left and right interface holes of the side panel; 401. The socket strip between the top cover panel and the side panel; 402. The socket strip between the top cover panel and the front panel. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-5 , an embodiment provided by the utility model:

[0023] The present application embodiment discloses a prefabricated modular power distribution room model for display. Figure 1 and 2 , a prefabricated assembly type distribution room model for display, comprising: an assembled power room bottom plate body 1, an assembled power room front body 2, an assembled power room side body 3 and an assembled power room roof body 4, the assembled power room bottom plate body 1 is equipped with an assembled power room front body 2 on the upper end, the assembled power room bottom plate body 1 is equipped with an assembled power room side body 3 on the upper end, the assembled power room front body 2 and the assembled power room side body 3 are each provided with two groups, the assembled power room front body 2 and the assembled power room side body 3 are equipped with an assembled power room roof body 4 on the upper ends, a reserved socket is provided on the assembled power room bottom plate body 1, a reserved socket is provided on the bottom end of the assembled power room roof body 4, a low-voltage distribution cabinet installation body 101, a high-voltage complete cabinet installation body 102 and a distribution transformer installation body 103 are provided on the assembled power room bottom plate body 1, The distribution room bottom plate body 1 is provided with reserved openings for the installation of low-voltage distribution cabinet installation body 101, high-voltage complete cabinet installation body 102 and distribution transformer installation body 103. After completing the design of the prefabricated distribution room, the distribution room is divided into four parts: the prefabricated distribution room bottom plate body 1, the prefabricated distribution room front body 2, the prefabricated distribution room side body 3 and the prefabricated distribution room roof body 4, with a total of six surfaces. According to the size of the designed distribution room and the size, specifications and electrical equipment of the indoor electrical equipment, the six surfaces are reduced in the same proportion and combined into one to form a prefabricated distribution room model that can be used for display. The reserved openings for equipment insertion can conveniently assemble the low-voltage distribution cabinet installation body 101, high-voltage complete cabinet installation body 102 and distribution transformer installation body 103 that need to be assembled on the prefabricated distribution room bottom plate body 1.

[0024] The assembled power room bottom plate body 1 is provided with a side panel mounting socket 104, which is provided with four groups. The side panel mounting sockets 104 are symmetrically arranged along the central axis of the assembled power room bottom plate body 1. The assembled power room bottom plate body 1 is provided with a front panel square corner socket 105, which is provided with four groups. The front panel square corner socket 105 is respectively provided at the four corners of the assembled power room bottom plate body 1. The bottom end of the main body 2 is fixedly connected to the front panel lower socket strip 201, and the front panel lower socket strip 201 can be inserted into the front panel square corner socket 105 opened on the main body 1 of the assembled power room bottom plate. The side wall of the front main body 2 of the assembled power room is fixedly connected to the left and right socket strips 203 of the front panel, and the left and right socket strips 203 of the front panel can be inserted into the side main body 3 of the assembled power room. The bottom end of the side main body 3 of the assembled power room is fixedly connected to the side panel lower socket strip 301, and the side wall of the side main body 3 of the assembled power room is fixedly connected to the side panel lower socket strip 301. The left and right interface holes 303 of the side panel are fixedly connected. In the middle of the four sides and four sides of the assembled power room bottom plate body 1, the installation holes of the assembled power room front body 2 and the assembled power room side body 3 are reserved. The bottom of the assembled power room front body 2 has a front panel lower socket strip 201 that connects with the front panel square corner socket 105 reserved on the assembled power room bottom plate body 1. The assembled power room front body 2 has left and right front panel socket strips 203 on the left and right sides that are reserved for the assembled power room side body 3. The interface holes correspond to each other, and the side body 3 of the assembled power room has a socket strip that connects with the reserved holes of the bottom plate body 1 of the assembled power room. The side body 3 of the assembled power room has left and right side panel interface holes 303 on the left and right sides that correspond to the socket strips reserved on the front body 2 of the assembled power room, so that the front body 2 of the assembled power room and the side body 3 of the assembled power room and the bottom plate body 1 of the assembled power room, as well as the front body 2 of the assembled power room and the side body 3 of the assembled power room can be conveniently assembled and fastened.

[0025] Reference Figure 3 and 5As another preferred embodiment of the present invention, the difference from Example 1 is that: the bottom end of the assembled power room roof body 4 is fixedly connected with the socket strip 401 of the top cover panel and the side panel, and the socket strips 401 of the top cover panel and the side panel are provided in four groups, and the socket strips 401 of the top cover panel and the side panel are symmetrically arranged along the central axis of the assembled power room roof body 4, and the bottom end of the assembled power room roof body 4 is fixedly connected with the socket strip 402 of the top cover panel and the front panel, and the socket strips 402 of the top cover panel and the front panel are provided in four groups, and the socket strips 402 of the top cover panel and the front panel are respectively opened at the four corners on the bottom end of the assembled power room roof body 4, and the front panel interface hole 202 is opened inside the upper end of the front body 2 of the assembled power room, and the side panel interface hole 302 is opened inside the upper end, and the front panel interface hole 202 and the side panel interface hole 302 are respectively connected to The top cover panel and the front panel socket strip 402 and the top cover panel and the side panel socket strip 401 provided at the bottom end of the assembled power room roof cover body 4 are provided in correspondence, and the front panel interface hole 202 is provided inside the upper end of the assembled power room front body 2, and the side panel interface hole 302 is provided inside the upper end of the assembled power room side body 3. The front panel interface hole 202 and the side panel interface hole 302 are respectively provided in correspondence with the top cover panel and the front panel socket strip 402 and the top cover panel and the side panel socket strip 401 provided at the bottom end of the assembled power room roof cover body 4. The assembled power room front body 2 and the assembled power room side body 3 can be conveniently assembled and connected with the assembled power room roof cover body 4, and the assembled power room roof cover body 4 is used to limit the upper ends of the assembled power room front body 2 and the assembled power room side body 3, so that the overall distribution room model is fixed.

[0026] Working principle:

[0027] When using the assembled prefabricated cabin distribution room model for display, after completing the design of the assembled prefabricated cabin distribution room, the distribution room is divided into four parts: the assembled power room bottom plate body 1, the assembled power room front body 2, the assembled power room side body 3 and the assembled power room roof body 4, with a total of six faces. According to the size of the designed distribution room and the size, specifications and power equipment of the indoor electrical equipment, the six faces are reduced in the same proportion and combined into one to form an assembled prefabricated cabin distribution room model that can be used for display. Holes for equipment installation are reserved, and the low-voltage distribution cabinet installation body 101, high-voltage complete cabinet installation body 102 and distribution transformer installation body 103 that need to be assembled on the assembled power room bottom plate body 1 can be conveniently assembled. The operation is now completed.

[0028] The above are only preferred embodiments of the present invention and do not constitute any form of limitation to the present invention. Any ordinary technician in this industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with this profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of protection of the technical solution of the present invention.

Claims

1. A prefabricated modular power distribution room model for display, comprising: An assembled power room floor main body (1), an assembled power room front main body (2), an assembled power room side main body (3) and an assembled power room roof main body (4) are characterized in that: the upper end of the assembled power room floor main body (1) is equipped with an assembled power room front main body (2), the upper end of the assembled power room floor main body (1) is equipped with an assembled power room side main body (3), the assembled power room front main body (2) and the assembled power room side main body (3) are each provided with two groups, the upper ends of the assembled power room front main body (2) and the assembled power room side main body (3) are equipped with an assembled power room roof main body (4), a reserved socket is provided on the assembled power room floor main body (1), and a reserved socket is provided at the bottom end of the assembled power room roof main body (4).

2. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The assembled power room floor main body (1) is provided with a low-voltage distribution cabinet installation main body (101), a high-voltage complete cabinet installation main body (102) and a distribution transformer installation main body (103); and the assembled power room floor main body (1) is provided with openings for inserting equipment of the low-voltage distribution cabinet installation main body (101), the high-voltage complete cabinet installation main body (102) and the distribution transformer installation main body (103).

3. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The assembled power room floor main body (1) is provided with side panel mounting sockets (104), and four groups of the side panel mounting sockets (104) are provided. The side panel mounting sockets (104) are symmetrically arranged along the central axis of the assembled power room floor main body (1).

4. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The assembled power room base plate body (1) is provided with front panel square corner sockets (105), and the front panel square corner sockets (105) are provided in four groups. The front panel square corner sockets (105) are respectively provided at four corners of the assembled power room base plate body (1).

5. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The bottom end of the front body (2) of the assembled power room is fixedly connected to a front panel lower socket strip (201), and the front panel lower socket strip (201) can be inserted into the front panel square corner socket (105) opened on the bottom plate body (1) of the assembled power room. The side walls of the front body (2) of the assembled power room are fixedly connected to left and right front panel socket strips (203), and the left and right front panel socket strips (203) can be inserted into the side body (3) of the assembled power room. The bottom end of the side body (3) of the assembled power room is fixedly connected to a side panel lower socket strip (301), and the side walls of the side body (3) of the assembled power room are fixedly connected to left and right side panel interface holes (303).

6. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The bottom end of the assembled power room roof body (4) is fixedly connected to the top cover panel and the side panel socket strips (401), and the top cover panel and the side panel socket strips (401) are provided in four groups, and the top cover panel and the side panel socket strips (401) are symmetrically arranged along the central axis of the assembled power room roof body (4).

7. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: The bottom end of the assembled power room roof body (4) is fixedly connected with a socket strip (402) for the top cover panel and the front panel, and four groups of the socket strips (402) for the top cover panel and the front panel are provided. The socket strips (402) for the top cover panel and the front panel are respectively opened at four corners on the bottom end of the assembled power room roof body (4).

8. The prefabricated modular power distribution room model for display according to claim 1, characterized in that: A front panel interface hole (202) is provided inside the upper end of the front body (2) of the assembled power room, and a side panel interface hole (302) is provided inside the upper end of the 3. The front panel interface hole (202) and the side panel interface hole (302) are respectively provided corresponding to the socket strips (402) between the top cover panel and the front panel and the socket strips (401) between the top cover panel and the side panel provided at the bottom end of the assembled power room roof body (4).