Simulation wall for testing socket

By designing the support cylinder and support rod on the simulated wall of the test socket to form a stable triangular structure, the problem of instability of the existing simulated wall structure is solved and the safety and applicability of the test environment is improved.

CN222965278UActive Publication Date: 2025-06-10DONGGUAN BEITEST TESTING TECH SERVICE CO LTD
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Patent Information

Application Number
CN202421826185.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-10
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The simulated wall structure of the existing test sockets is relatively simple and lacks a support structure, which leads to the instability of the test environment.

Method used

A simulated wall for testing sockets is designed, including the base plate, the simulated wall body, the support cylinder and the junction box. The simulated wall body is supported obliquely by the support rods in the support cylinder to form a stable triangular structure to enhance the stability and load-bearing capacity of the structure.

Benefits of technology

By enhancing the stability and load-bearing capacity of the structure, a safer testing environment is provided, and the applicability and adjustability of the simulated wall body is improved.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222965278U_ABST
    Figure CN222965278U_ABST
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Abstract

The utility model discloses a simulation wall for testing a socket, which comprises a bottom plate, a simulation wall main body, a support cylinder and a junction box, the simulation wall main body is arranged at the central position of the top of the bottom plate, side plates are fixed on two sides of the simulation wall main body, a groove is arranged on one side in the simulation wall main body, the junction box is arranged in the groove, and the support cylinder is fixed on the bottom plate. A wire penetrates into the junction box, top plates are arranged on the two sides of the top of the bottom plate, supporting cylinders are arranged on the two sides of the top of each top plate through rotating seats, supporting rods are arranged in the supporting cylinders, and the tops of the supporting rods are connected with the side plates through connecting pieces. By installing the simulation wall main body, the groove, the junction box, the wire, the plug, the bottom plate, the top plate, the side plate, the supporting cylinder, the supporting rod and the rotating shaft, the bearing capacity of the simulation wall main body is improved, meanwhile, part of load is supported, and a safer working environment is provided for testers and equipment.
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Description

Technical Field

[0001] The utility model relates to the technical field of testing, in particular to a simulated wall for testing sockets. Background Art

[0002] The simulated wall for testing sockets is mainly used to simulate the actual wall environment, so as to test the heat generation and heat resistance performance, safety and installation effect of the socket. Such simulated walls are applied in many fields, such as electrical product testing, fire safety training, building simulation, etc.

[0003] In order to more accurately simulate the actual use environment, the simulated wall is generally made by splicing wooden boards, and a junction box is installed on the simulated wall according to the actual installation requirements to ensure that the installation position, direction, etc. of the junction box are consistent with the actual use. Then, after connecting to the power supply, a temperature measuring device is used to monitor the temperature of the key parts in the junction box after a period of time. Since the common simulated wall structure is relatively simple and lacks corresponding support structures, it is easy to cause the test environment to be unstable. Summary of the Invention

[0004] The purpose of the utility model is to provide a simulated wall for testing sockets, so as to solve the problems put forward in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: A simulated wall for testing sockets, including a bottom plate, a simulated wall main body, support cylinders and a junction box. A simulated wall main body is arranged at the central position of the top of the bottom plate, and side plates are fixed on both sides of the simulated wall main body. A groove is opened on one side inside the simulated wall main body, and a junction box is arranged inside the groove. A wire penetrates into the junction box, and the end of the wire far away from the groove penetrates out of the outside of the simulated wall main body. A plug is arranged on the wire outside the simulated wall main body. Top plates are arranged on both sides of the top of the bottom plate, and support cylinders are arranged on both sides of the top of each top plate through rotating seats. Support rods are arranged inside each support cylinder, and the tops of the support rods are connected to the side plates through connecting pieces.

[0006] Preferably, angle steels are evenly arranged at the bottom between the top plates and the side plates, and the angle steels are respectively connected to the side plates, the simulated wall main body, the top plates and the bottom plate through second bolts evenly.

[0007] Preferably, the top of both sides of the side plates is fixedly connected to the simulated wall main body through first bolts, and one ends of the first bolts and the second bolts are locked and fixed through lock nuts.

[0008] Preferably, screw holes are evenly opened on the support rods, and the support cylinders are connected to the screw holes through fasteners.

[0009] Preferably, the junction box is embedded in the groove, and both ends of the junction box are connected to the side plate and the simulated wall main body through mounting ears.

[0010] Preferably, buffer pads are arranged at both ends of the lock nut close to the angle steel and the side plate, and bulges are arranged at the ends of the buffer pads close to the lock nut, and elastic elements are arranged between the bulges and the lock nut.

[0011] Preferably, the elastic elements are all made of rubber strips with an arched structure, and both ends of the elastic elements abut against the bulges.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The simulated wall for testing sockets is provided with a simulated wall main body, a groove, a junction box, wires, plugs, a bottom plate, a top plate, side plates, support cylinders, support rods and a rotating shaft. The junction box is installed in the groove, and after the power is turned on, relevant tests are carried out. The support rods in the support cylinders obliquely support both sides of the simulated wall main body, forming a stable triangular structure with the simulated wall main body, thereby enhancing the structural stability, improving the load-bearing capacity of the simulated wall main body, and at the same time supporting part of the load, providing a safer working environment for testers and equipment. The support rods are evenly provided with screw holes, and the support cylinders are all connected to the screw holes at different positions through fasteners, so that the support position of the support rods can be adjusted, and corresponding adjustments can be made according to the specifications of the simulated wall main body, improving the applicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present utility model, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0014] Figure 1 It is a schematic side view structure of the present utility model;

[0015] Figure 2 It is a schematic front view structure of the present utility model;

[0016] Figure 3 For the present utility model Figure 1 The enlarged structure schematic diagram at A;

[0017] Figure 4 For the present utility model Figure 3 The enlarged structure schematic diagram at B.

[0018] In the figure: 1, bottom plate; 2, top plate; 3, side plate; 4, groove; 5, simulated wall main body; 6, support rod; 7, electric wire; 8, support cylinder; 9, plug; 10, first bolt; 11, mounting ear; 12, angle steel; 13, junction box; 14, screw hole; 15, second bolt; 16, lock nut; 17, elastic element; 18, buffer cushion plate; 19, bulge; 20, rotating seat; 21, fastener. Specific implementation mode

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1-4 , an embodiment provided by the present invention: A simulated wall for testing sockets, including a bottom plate 1, a simulated wall main body 5, a support cylinder 8 and a junction box 13. A simulated wall main body 5 is provided at the central position of the top of the bottom plate 1, and side plates 3 are fixed on both sides of the simulated wall main body 5. The tops of both sides of the side plates 3 are fixedly connected to the simulated wall main body 5 through first bolts 10 to increase the side structure strength of the simulated wall main body 5;

[0021] A groove 4 is opened on one side inside the simulated wall main body 5, and a junction box 13 is arranged inside the groove 4. The junction box 13 is embedded in the groove 4, and both ends of the junction box 13 are connected to the side plates 3 and the simulated wall main body 5 through mounting ears 11;

[0022] Both ends of the junction box 13 are fixed to the simulated wall main body 5 through the mounting ears 11 to ensure that its installation position, direction, etc. are consistent with actual use;

[0023] An electric wire 7 passes through the inside of the junction box 13, and one end of the electric wire 7 away from the groove 4 passes out of the outside of the simulated wall main body 5. A plug 9 is arranged on the electric wire 7 outside the simulated wall main body 5;

[0024] After the plug 9 is connected to the power supply for a period of time, a temperature measuring device is used to monitor the temperature of key parts inside the junction box 13;

[0025] Both sides of the top of the bottom plate 1 are provided with top plates 2, and support cylinders 8 are arranged on both sides of the top of the top plates 2 through rotating seats 20. Support rods 6 are arranged inside the support cylinders 8, and the tops of the support rods 6 are connected to the side plates 3 through connecting pieces;

[0026] The two sides of the simulated wall main body 5 are obliquely supported by the support rods 6 inside the support cylinder 8, so as to form a stable triangular structure with the simulated wall main body 5, thereby enhancing the structural stability, improving the load-bearing capacity of the simulated wall main body 5, and supporting part of the load at the same time, providing a safer working environment for the testers and equipment;

[0027] The support rods 6 are evenly provided with screw holes 14, and the support cylinders 8 are all connected to the screw holes 14 through fasteners 21;

[0028] The support cylinders 8 are all connected to the screw holes 14 at different positions through fasteners 21, the support position of the support rods 6 can be adjusted, and corresponding adjustments can be made according to the specifications of the simulated wall main body 5, improving the applicability;

[0029] Angle steels 12 are evenly arranged at the bottom between the top plate 2 and the side plate 3 to further enhance the overall stability and safety of the simulated wall main body 5, and the angle steels 12 are evenly connected to the side plate 3, the simulated wall main body 5, the top plate 2 and the bottom plate 1 respectively through the second bolts 15;

[0030] One ends of the first bolts 10 and the second bolts 15 are all locked and fixed through lock nuts 16. Buffer pads 18 are arranged at one ends of the lock nuts 16 close to the angle steels 12 and the side plates 3, and bulges 19 are arranged at one ends of the buffer pads 18 close to the lock nuts 16. Elastic elements 17 are arranged between the bulges 19 and the lock nuts 16;

[0031] The elastic elements 17 are all made of rubber strips with an arched structure, and both ends of the elastic elements 17 are abutted against the bulges 19;

[0032] After the lock nuts 16 are fixed, when subjected to external forces, the external forces can be dispersed and buffered through the deformation and recovery performance of the elastic elements 17 themselves, thereby improving the firmness of the connection between the first bolts 10 and the second bolts 15.

[0033] Working principle: When the embodiment of the present application is in use, the junction box 13 is embedded into the groove 4, and both ends of the junction box 13 are fixed to the simulated wall main body 5 through the mounting ears 11 to ensure that its installation position, direction, etc. are consistent with the actual use. After that, the plug 9 is connected to the power supply for a period of time, and then a temperature measuring device is used to monitor the temperature of the key parts in the junction box 13. Side plates 3 are arranged on both sides of the simulated wall main body 5 to increase the side structural strength of the simulated wall main body 5. At the same time, the support rods 6 in the support cylinders 8 obliquely support both sides of the simulated wall main body 5, so as to form a stable triangular structure with the simulated wall main body 5, thereby enhancing the structural stability, improving the load-bearing capacity of the simulated wall main body 5, and at the same time supporting part of the load, providing a safer working environment for the testers and equipment. The support rods 6 are evenly provided with screw holes 14, and the support cylinders 8 are all connected to the screw holes 14 at different positions through fasteners 21, so that the support position of the support rods 6 can be adjusted, and corresponding adjustment can be made according to the specifications of the simulated wall main body 5 to improve the applicability. The bottom between the top plate 2 and the side plate 3 is evenly fixedly connected through angle steels 12 to further enhance the overall stability and safety of the simulated wall main body 5. The angle steels 12 are evenly provided with second bolts 15, and the side plates 3 and the simulated wall main body 5 are evenly fixedly connected through first bolts 10. One ends of the first bolts 10 and the second bolts 15 are both provided with locking nuts 16. After the locking nuts 16 are fixed, when subjected to external forces, the external forces can be dispersed and buffered through the deformation and recovery performance of the elastic elements 17 themselves, thereby improving the firmness of the connection between the first bolts 10 and the second bolts 15.

[0034] Obviously, the above-described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

Claims

1. A simulated wall for testing sockets, characterized in that, The invention comprises a bottom plate (1), a simulated wall body (5), a support tube (8) and a junction box (13); the simulated wall body (5) is arranged at the central position of the top of the bottom plate (1), and side plates (3) are fixed to both sides of the simulated wall body (5); a groove (4) is provided on one side of the inside of the simulated wall body (5), and a junction box (13) is arranged inside the groove (4); an electric wire (7) is inserted into the inside of the junction box (13), and one end of the electric wire (7) away from the groove (4) passes out of the outside of the simulated wall body (5); a plug (9) is arranged on the electric wire (7) outside the simulated wall body (5); top plates (2) are arranged on both sides of the top of the bottom plate (1), and support tubes (8) are arranged on both sides of the top of the top plate (2) via rotating seats (20); support rods (6) are arranged inside the support tubes (8), and the tops of the support rods (6) are connected to the side plates (3) via connecting pieces.

2. The simulated wall for testing sockets according to claim 1, characterized in that: Angle steels (12) are evenly arranged at the bottom between the top plate (2) and the side plates (3), and the angle steels (12) are evenly connected to the side plates (3), the simulated wall body (5), the top plate (2) and the bottom plate (1) respectively through second bolts (15).

3. The simulated wall for testing sockets according to claim 2, characterized in that: The tops of both sides of the side panels (3) are fixedly connected to the simulated wall body (5) via first bolts (10), and one end of the first bolt (10) and the second bolt (15) are locked and fixed via locking nuts (16).

4. The simulated wall for testing sockets according to claim 1, characterized in that: The support rod (6) is evenly provided with screw holes (14), and the support tube (8) is connected to the screw holes (14) via fasteners (21).

5. The simulated wall for testing sockets according to claim 1, characterized in that: The junction box (13) is embedded in the groove (4), and both ends of the junction box (13) are connected to the side plate (3) and the simulated wall body (5) through mounting ears (11).

6. The simulated wall for testing sockets according to claim 3, characterized in that: A buffer plate (18) is provided at one end of the locking nut (16) close to the angle steel (12) and the side plate (3), and a bulge (19) is provided at one end of the buffer plate (18) close to the locking nut (16), and an elastic element (17) is provided between the bulge (19) and the locking nut (16).

7. The simulated wall for testing sockets according to claim 6, characterized in that: The elastic elements (17) are made of rubber strips with an arched structure, and both ends of the elastic elements (17) are against the bulge (19).