Compression resistance detection device for electrical equipment
By setting up a combination of dual-controlled electrically controlled guide rails and eccentric pressure rollers to simulate human stepping action, the problem of inaccurate pressure resistance detection of cable connectors in the existing technology is solved, and accurate detection of non-vertical linear pressure is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 赵 博
- Filing Date
- 2025-04-30
- Publication Date
- 2026-04-10
AI Technical Summary
Existing technologies cannot effectively simulate the non-vertical linear pressure of human footsteps, resulting in inaccurate pressure resistance testing of cable connectors.
The fixed spacing of the cable connector is adjusted by using a dual-control electrically controlled guide rail, a transmission end connecting seat, and a cylindrical limit clamp. The eccentric pressure roller simulates human stepping action, and the eccentric pressure roller is driven by a rotating motor to achieve non-vertical linear pressure detection.
It enables accurate pressure resistance testing of cable connectors, simulating the pressure distribution under human foot pressure, thus improving the accuracy and versatility of the testing.
Smart Images

Figure CN224109219U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of compression resistance detection, and particularly relates to an electrical equipment compression resistance detection device. BACKGROUND
[0002] In order to ensure that the compression resistance of the cable connector can meet the application requirements, when the compression resistance of the cable connector is detected in the prior art, the cable connector is usually fixed, and then a pushing mechanism is used to simulate pressure applied to the surface of the cable connector to realize compression resistance performance detection. For example, a mechanical and electrical equipment compression resistance detection device (publication number CN219870771U) is disclosed in a Chinese patent, which clamps and limits the equipment by driving the rotation of the bidirectional screw rod to drive two clamping plates, and uses a pressure block to press the surface of the equipment to perform compression resistance detection. However, this compression resistance simulation method has the following problems, that is, the behavior of generating pressure on the cable connector in actual application is usually generated by human traffic, and the pressure surface generated by human trampling pressure is usually uneven, and the resulting force is not vertical and linear. The conventional detection mechanism cannot simulate the force of compression resistance detection, and cannot simulate the pressure generating surface and the landing point. UTILITY MODEL CONTENT
[0003] The utility model provides an electrical equipment compression resistance detection device to solve the problems in the background art.
[0004] The utility model provides the following technical scheme: an electrical equipment compression resistance detection device, including detection support and detection surface rotation component, detection support with detection surface rotation component rotation connection, detection surface rotation component top installation has two sets of compression resistance detection surface distance adjusting assembly, two sets of compression resistance detection surface distance adjusting assembly symmetry distribution, detection support top erects with rotation motor and pressure application point debugging frame, rotation motor with pressure application point debugging frame between setting up has debugging transmission component, rotation motor passes through debugging transmission component with pressure application point debugging frame sliding connection, rotation motor's output fixed connection has eccentric pressure roller.
[0005] Among them, the compression resistance detection surface distance adjusting assembly includes double control electric control guide rail, transmission end connecting seat and cylindrical limiting chuck, the double control electric control guide rail is fixedly connected with the detection surface rotation component, the transmission end connecting seat is slidably connected with the double control electric control guide rail, and the cylindrical limiting chuck is fixedly connected with the transmission end connecting seat.
[0006] The debugging transmission assembly comprises a connecting support, a sliding block and a locking nut, the connecting support is fixedly connected with the outer shell of the rotating motor, one end of the sliding block is fixedly connected with the connecting support, the other end of the sliding block penetrates through the pressure application point debugging frame and is in sliding connection with the pressure application point debugging frame, and the locking nut is in threaded connection with the sliding block.
[0007] The pressure application point debugging frame is provided with a guide sliding groove, and the eccentric pressure roller is rotationally connected to the inner side of the guide sliding groove.
[0008] The pressure application point debugging frame is provided with a limiting sliding channel, and the sliding block is in sliding connection with the inner side of the limiting sliding channel.
[0009] The detection surface rotating assembly is provided with a driving motor at the bottom, and the output end of the driving motor is fixedly connected with the detection surface rotating assembly.
[0010] The beneficial effects of the utility model are as follows: the double-control electric control guide rail, the transmission end connecting seat and the cylindrical limiting chuck are arranged to adjust and fix the interval according to the size of the cable connector, the cable connector is supported by the two cylindrical limiting chucks, then the position of the sliding block along the pressure application point debugging frame is adjusted according to the initial pressure application position, the rotating motor moves synchronously with the displacement of the sliding block, the initial point position of the cable connector between the eccentric pressure roller and the cylindrical limiting chuck is changed, then the eccentric pressure roller is driven by the rotating motor to move eccentrically and press the cable connector, the pressure applied by the artificial treading action is simulated, and the detection purpose of the required non-vertical linear pressure is achieved.
[0011] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a perspective view of the utility model Figure One ;
[0013] Figure 2 It is a perspective view of the utility model Figure Two ;
[0014] Figure 3 It is a top view of the utility model;
[0015] Figure 4 It is a bottom view of the utility model.
[0016] In the figure: 1, detection support; 2, detection surface rotating assembly; 21, drive motor; 3, compression detection surface distance adjusting assembly; 31, double-control electric guide rail; 32, transmission end connecting seat; 33, cylindrical limiting chuck; 4, rotating motor; 41, eccentric pressure roller; 5, pressure application point debugging frame; 51, guide sliding groove; 52, limiting slide; 6, debugging transmission assembly; 61, connecting support; 62, sliding block; 63, locking nut. DETAILED DESCRIPTION
[0017] Please refer to Figures 1-4 The utility model provides the following technical scheme: an electrical equipment compression detection device, comprising detection support 1 and detection surface rotating assembly 2, detection support 1 is rotationally connected with detection surface rotating assembly 2, two groups of compression detection surface distance adjusting assemblies 3 are installed on the top of detection surface rotating assembly 2, the two groups of compression detection surface distance adjusting assemblies 3 are symmetrically distributed, rotating motor 4 and pressure application point debugging frame 5 are erected on the top of detection support 1, debugging transmission assembly 6 is arranged between rotating motor 4 and pressure application point debugging frame 5, rotating motor 4 is slidably connected with pressure application point debugging frame 5 through debugging transmission assembly 6, and the output end of rotating motor 4 is fixedly connected with eccentric pressure roller 41.
[0018] In the embodiment, the double-control electric guide rail 31, the transmission end connecting seat 32 and the cylindrical limiting chuck 33 are arranged to adjust the fixed distance according to the size of the cable connector, and the two cylindrical limiting chucks 33 support the cable connector.
[0019] The double-control electric guide rail 31 is a bidirectional sliding control electric guide rail, the transmission end connecting seat 32 is arranged on the transmission end of the double-control electric guide rail 31, and the sliding propulsion of the cylindrical limiting chuck 33 is realized, so that the two cylindrical limiting chucks 33 can be adjusted according to the length of the cable connector.
[0020] The compression detection surface distance adjusting assembly 3 comprises the double-control electric guide rail 31, the transmission end connecting seat 32 and the cylindrical limiting chuck 33, the double-control electric guide rail 31 is fixedly connected with the detection surface rotating assembly 2, the transmission end connecting seat 32 is slidably connected with the double-control electric guide rail 31, and the cylindrical limiting chuck 33 is fixedly connected with the transmission end connecting seat 32.
[0021] The debugging transmission assembly 6 comprises the connecting support 61, the sliding block 62 and the locking nut 63, the connecting support 61 is fixedly connected with the outer shell of the rotating motor 4, one end of the sliding block 62 is fixedly connected with the connecting support 61, the other end of the sliding block 62 penetrates through the pressure application point debugging frame 5 and is slidably connected with the pressure application point debugging frame 5, and the locking nut 63 is threadedly connected with the sliding block 62.
[0022] In the embodiment, the position of the sliding block 62 on the pressure application point adjustment frame 5 can be adjusted according to the initial pressure application position, the initial point position of the pressure application of the cable connector between the eccentric pressure roller 41 and the cylindrical limiting chuck 33 is changed after the synchronous movement of the rotating motor 4 with the displacement of the sliding block 62, and the position of the eccentric pressure roller 41 is adjusted after the sliding of the sliding block 62 and the connecting bracket 61, the sliding block 62 is clamped and the stability of the position of the eccentric pressure roller 41 is maintained after the clamping of the sliding block 62 by the threaded rotation of the locking nut 63 to the outer wall of the pressure application point adjustment frame 5.
[0023] The pressure application point adjustment frame 5 is provided with a guide sliding groove 51, and the eccentric pressure roller 41 is rotationally connected to the inner side of the guide sliding groove 51.
[0024] Then the eccentric pressure roller 41 is driven by the rotating motor 4 to eccentrically move and extrude the cable connector, simulating the pressure applied by the artificial treading action, and then achieving the detection purpose of the required non-vertical linear pressure, wherein the arrangement of the guide sliding groove 51 does not block the rotation of the eccentric pressure roller 41.
[0025] The pressure application point adjustment frame 5 is provided with a limiting sliding way 52, and the sliding block 62 is slidingly connected to the inner side of the limiting sliding way 52; wherein the limiting sliding way 52 serves as a sliding limiting function of the sliding block 62, so that the sliding block 62 only uses the distribution surface of the limiting sliding way 52 as a sliding path when sliding, ensuring that the eccentric pressure roller 41 maintains parallel sliding, and making the selected contact surface of the eccentric pressure roller 41 more stable when simulating pressure.
[0026] The bottom of the detection surface rotating assembly 2 is provided with a driving motor 21, and the output end of the driving motor 21 is fixedly connected with the detection surface rotating assembly 2. The outer shell part of the driving motor 21 is fixed with the workbench surface by bolts; the detection surface rotating assembly 2 is driven to rotate along the inner side of the detection support 1 by the driving motor 21, and then the placement angle of the cable connector supported by the inner side of the cylindrical limiting chuck 33 is adjusted, the contact surface of the eccentric pressure roller 41 when being pressed down is diversified, and the cable connector is conveniently tested for pressure resistance at any angle.
[0027] The utility model discloses a working principle and use flow: through setting double -control electric control guide rail 31, transmission end connecting seat 32 and cylindrical limit chuck 33 are according to cable connector size debugging fixed interval, and are supported to cable connector by two cylindrical limit chuck 33, and then can be according to pressure initial point of adding position along pressure adding point debugging frame 5 slide slide block 62's position that is, make rotary motor 4 synchronous motion with the displacement of slide block 62 later, change eccentric pressure roller 41 and the initial point position of pressure adding between cylindrical limit chuck 33 to cable connector, and then through rotary motor 4 drive eccentric pressure roller 41 eccentric movement extrude cable connector, simulate the pressure of human tread action, and then reach the detection purpose of required non - perpendicular linear pressure.
Claims
1. An electrical equipment anti-press detection device, comprising a detection support (1) and a detection surface rotating assembly (2), the detection support (1) is rotationally connected with the detection surface rotating assembly (2), characterized in that: The detection surface rotating assembly (2) is provided with two groups of compression-resistant detection surface pitch adjusting assemblies (3) on the top, the two groups of compression-resistant detection surface pitch adjusting assemblies (3) are symmetrically distributed, a rotating motor (4) and a pressure application point debugging frame (5) are arranged on the top of the detection support (1), a debugging transmission assembly (6) is arranged between the rotating motor (4) and the pressure application point debugging frame (5), the rotating motor (4) is slidably connected with the pressure application point debugging frame (5) through the debugging transmission assembly (6), and an eccentric pressure roller (41) is fixedly connected to the output end of the rotating motor (4).
2. The electrical equipment compression detection device of claim 1, wherein: The compression-resistant detection surface pitch adjusting assembly (3) comprises a double-control electric control guide rail (31), a transmission end connecting seat (32) and a cylindrical limiting chuck (33), the double-control electric control guide rail (31) is fixedly connected with the detection surface rotating assembly (2), the transmission end connecting seat (32) is slidably connected with the double-control electric control guide rail (31), and the cylindrical limiting chuck (33) is fixedly connected with the transmission end connecting seat (32).
3. The electrical equipment compression detection device of claim 1, wherein: The debugging transmission assembly (6) comprises a connecting support (61), a sliding block (62) and a locking nut (63), the connecting support (61) is fixedly connected with the shell of the rotating motor (4), one end of the sliding block (62) is fixedly connected with the connecting support (61), the other end of the sliding block (62) penetrates through the pressure application point debugging frame (5) and is slidably connected with the pressure application point debugging frame (5), and the locking nut (63) is threadedly connected with the sliding block (62).
4. The electrical equipment compression detection device of claim 3, wherein: The pressure application point debugging frame (5) is provided with a guide sliding groove (51), and the eccentric pressure roller (41) is rotatably connected to the inner side of the guide sliding groove (51).
5. The electrical equipment compression detection device of claim 4, wherein: The pressure application point debugging frame (5) is provided with a limiting sliding channel (52), and the sliding block (62) is slidably connected to the inner side of the limiting sliding channel (52).
6. The electrical equipment compression detection device of claim 1, wherein: The detection surface rotating assembly (2) is provided with a driving motor (21) at the bottom, and the output end of the driving motor (21) is fixedly connected with the detection surface rotating assembly (2).
Citation Information
Patent Citations
Compression resistance detection device for mechanical and electrical equipment
CN219870771U