Multifunctional electrical equipment detection device

Through the design of the rotation and tilt adjustment mechanism and the clamping assembly, multi-angle detection of electrical equipment is achieved, which solves the problem of frequent replacement of the clamping position of the existing device and improves the detection efficiency and accuracy.

CN120779136APending Publication Date: 2025-10-14HEILONGJIANG ELECTRIC POWER SCIENCE RESEARCH INSTITUTE +1
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Patent Information

Application Number
CN202510923914.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2025-10-14

AI Technical Summary

Technical Problem

Existing electrical equipment testing devices require changing the clamping position after testing the top of the equipment to test the side, resulting in low testing efficiency and complicated operation.

Method used

A multifunctional electrical equipment detection device was designed, which includes a rotation adjustment mechanism and a tilt adjustment mechanism. Multi-angle detection can be achieved by rotating and tilting the placement frame. It is also equipped with a clamping component to flexibly adjust the distance of the clamping parts to ensure stable clamping of the equipment at different angles and positions.

Benefits of technology

It improves the efficiency and accuracy of electrical equipment testing, reduces operational complexity, and ensures the stability and comprehensiveness of the equipment during the testing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multifunctional electrical equipment detection device, and relates to an electrical detection device. The invention aims to solve the problem of low detection efficiency caused by the fact that the clamping position of the equipment needs to be replaced when the side surface is detected after the top of the equipment is detected by the existing electrical equipment detection device. The rotation adjusting mechanism is arranged at the bottom of the placing frame so as to drive the placing frame to rotate; the inclination adjusting mechanism is placed at the bottom of the rotation adjusting mechanism to adjust the inclination of the placing frame; the detector is suspended above the placement rack, and the detector is used for detecting the electrical equipment to be detected; the clamping assembly is arranged on the placing rack, and the clamping assembly is used for clamping to-be-detected electrical equipment. The beneficial effects are that multi-angle rotation of the placing rack is realized, and it is ensured that the detector can carry out comprehensive detection on each part and angle of the electrical equipment; and the detection efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to an electrical detection device. BACKGROUND

[0002] Electrical equipment refers to technical devices used for power generation, power transformation, power transmission, power distribution or utilization of electric energy in a power system, or devices that use mechanical or mechanical components for electrical connection, including generators, transformers, motors and the like. When detecting electrical equipment, a multifunctional electrical equipment detection device is needed.

[0003] In the prior art, a Chinese patent with patent number CN217931855U discloses an electrical equipment detection device, which includes a base, a detection frame fixed on the base, a detection assembly provided at the top of the inner cavity of the detection frame, an installation groove provided on the base, a first motor fixed on the end face of the bottom of the installation groove, a workbench fixed on the output shaft end of the first motor, a clamping assembly provided on the workbench, the clamping assembly includes two side fixed grooves, an opening communicated between the two side fixed grooves, a penetrating rod inserted in the opening, compression springs sleeved on the outer wall of the penetrating rod, sliding blocks slidingly connected on the two sides of the penetrating rod, and clamping blocks fixed on the sliding blocks. This invention relates to the technical field of electrical equipment detection. This detection device for electrical equipment first moves the clamping blocks to the left side, the clamping blocks drive the sliding blocks to slide on the penetrating rod, the compression springs are deformed, then the detected object is placed on the end face of the workbench and the right clamping block is pushed, then the clamping blocks are loosened, and the clamping blocks are driven by the compression springs to fix the detected object. However, it still has the following defects:

[0004] Although the device can detect electrical equipment, it can only detect the top of the equipment comprehensively. If the side is to be detected, the position of the equipment clamping needs to be changed, and the equipment clamping state needs to be adjusted again. Frequent replacement of the clamping position will greatly increase the detection time, reduce the detection efficiency, and increase the difficulty and complexity of operation. SUMMARY

[0005] The purpose of the present application is to solve the problem of low detection efficiency caused by the need to change the position of the equipment clamping when detecting the side after detecting the top of the existing electrical equipment detection device. A multifunctional electrical equipment detection device is proposed.

[0006] The multifunctional electrical equipment detection device includes a detection mechanism and a clamping assembly.

[0007] The detection mechanism includes a placement rack, a rotation adjusting mechanism, an inclination adjusting mechanism and a detector.

[0008] The rotation adjusting mechanism is arranged at the bottom of the placement rack to drive the rotation of the placement rack.

[0009] The inclination adjusting mechanism is arranged at the bottom of the rotation adjusting mechanism to adjust the inclination of the placing rack.

[0010] The detector is arranged above the placing rack, and the detector is used to detect the electrical equipment to be detected.

[0011] The clamping assembly is arranged on the placing rack, and the clamping assembly is used to clamp the electrical equipment to be detected.

[0012] Further, the bottom plate and the frame are further included.

[0013] The frame is arranged on the bottom plate, and the detection mechanism is arranged in the frame; wherein the rotation adjusting mechanism and the inclination adjusting mechanism are fixed on the bottom plate; and the detector is suspended on the inner wall of the top of the frame.

[0014] Further, the rotation adjusting mechanism includes a rectangular plate, a first motor, a first bevel gear, a second bevel gear, a rotating shaft, a square plate and a rotating piece.

[0015] The rectangular plate and the square plate are fixed on the bottom plate in an opposite manner.

[0016] The first motor is fixed on the bottom plate outside the rectangular plate.

[0017] The first bevel gear is arranged between the rectangular plate and the square plate, and the output shaft of the first motor is rigidly connected with the first bevel gear in a coaxial manner through the rectangular plate.

[0018] The rotating piece is in a U-shaped structure, one end of the rotating piece is connected to the outside of the rectangular plate through a shaft, and the other end of the rotating piece is connected to the outside of the square plate through a rotating shaft.

[0019] The rotating shaft is arranged at the central axis of the rotating piece in a shaft connection manner, and the top end of the rotating shaft is fixed at the center of the bottom of the placing rack.

[0020] The second bevel gear is rigidly connected with the rotating shaft in a coaxial manner at the bottom end of the rotating shaft; and the second bevel gear is engaged with the first bevel gear.

[0021] Further, the inclination adjusting mechanism includes a second motor.

[0022] The second motor is fixed on the bottom plate outside the square plate; and the output shaft of the second motor is rigidly connected with the rotating shaft of the rotating piece in a coaxial manner.

[0023] Further, the detection mechanism further includes a moving assembly.

[0024] The moving assembly includes a multi-stage air cylinder, a sliding rod, a sliding block and an electric push rod.

[0025] The two ends of the slide rod are fixed to the inner sides of two opposite side walls of the frame; the multi-stage cylinder is arranged on the outer side wall of the frame; the slide block is arranged in a sliding connection mode on the slide rod, and the output end of the multi-stage cylinder is fixedly connected to the side wall of the slide block; the shell of the electric push rod is fixed to the bottom end of the slide block; and the detector is fixed to the bottom of the output end of the electric push rod.

[0026] Further, the clamping assembly comprises a third motor, a bidirectional screw rod, two moving blocks and two clamping pieces.

[0027] The two ends of the bidirectional screw rod are respectively connected by shafts between two oppositely arranged side walls of the placing rack.

[0028] The third motor is fixed to the outer side wall of the placing rack, and the output shaft of the third motor is rigidly connected in a coaxial mode to one end of the bidirectional screw rod.

[0029] The two moving blocks are arranged in a threaded connection mode at the two ends of the bidirectional screw rod.

[0030] The two clamping pieces are arranged in a sliding connection mode between the two side walls of the placing rack, and the side walls of the two clamping pieces are fixedly connected to the side walls of the two moving blocks.

[0031] Further, two protrusions and a limiting strip are further included.

[0032] The two protrusions are respectively fixed to the side walls of the two clamping pieces away from the moving blocks.

[0033] The limiting strip is arranged on one side of the placing rack away from the bidirectional screw rod, and when the limiting strip is close to the two protrusions, the two protrusions can only move in a single direction of moving close to each other.

[0034] Further, the side walls of the two clamping pieces are fixedly connected with elastic washers, and the side walls of the elastic washers are provided with anti-skid protrusions.

[0035] Further, a storage battery is further included.

[0036] The storage battery is fixed to the rear side wall of the bottom plate, and the storage battery is electrically connected with the first motor, the second motor, the third motor, the multi-stage cylinder and the electric push rod respectively.

[0037] Further, one side of the top of the bottom plate is fixedly connected with a handrail, an outer wall of the handrail is provided with an anti-skid sleeve, and the bottom of the bottom plate is provided with four self-locking universal wheels.

[0038] Compared with the prior art, the present application has the following beneficial effects:

[0039] The electrical equipment to be detected is placed on the placing rack through the detection mechanism, the height of the detector is accurately adjusted by the electric push rod, after being adjusted to the specified position, the multi-stage cylinder is started, the slider moves along the slide rod in a linear reciprocating motion, thereby moving the electric push rod and the detector in the horizontal direction, when detecting different angles of the electrical equipment, the first motor drives the first bevel gear to rotate, the second bevel gear is rotated through meshing, thereby the rotating shaft drives the placing rack to rotate, then the second motor is started, the second motor drives the rotating part to rotate, thereby driving the placing rack to tilt, realizing multi-angle rotation of the placing rack, ensuring that the detector can comprehensively detect each part and angle of the electrical equipment; the detection efficiency is improved.

[0040] Meanwhile, when the bidirectional screw rod rotates, the two moving blocks move in a synchronous and opposite linear motion along the axis of the bidirectional screw rod, driving the clamping pieces to move, the two clamping pieces move close to each other, thereby clamping the electrical equipment placed on the placing rack, the distance between the clamping pieces can be flexibly adjusted according to the size of the electrical equipment, so that the clamping pieces accurately clamp the equipment, ensuring that the electrical equipment does not displace during the detection process. BRIEF DESCRIPTION OF DRAWINGS

[0041] Figure 1 A three-dimensional structural schematic view of a multifunctional electrical equipment detection device according to the first embodiment;

[0042] Figure 2 A three-dimensional structural schematic view of a rotating adjusting mechanism according to the third embodiment;

[0043] Figure 3 A three-dimensional structural schematic view of a moving assembly according to the fifth embodiment;

[0044] Figure 4 A three-dimensional structural schematic view of a clamping assembly according to the sixth embodiment;

[0045] Figure 5 A horizontal sectional view of the position relationship between the protruding block and the limiting strip according to the seventh embodiment;

[0046] Figure 6 A three-dimensional schematic view of the fixed position of the storage battery according to the ninth embodiment.

[0047] In the figure: 1 is the bottom plate; 2 is the detection mechanism; 3 is the clamping assembly; 4 is the protruding block; 5 is the limiting strip; 6 is the elastic gasket; 7 is the anti-skid protrusion; 8 is the storage battery; 9 is the handrail; 10 is the anti-skid sleeve; 11 is the self-locking universal wheel; 201 is the rectangular plate; 202 is the first motor; 203 is the first bevel gear; 204 is the second bevel gear; 205 is the rotating shaft; 206 is the placing rack; 207 is the square plate; 208 is the second motor; 209 is the rotating piece; 210 is the detector; 211 is the moving assembly; 2111 is the frame; 2112 is the multi-stage cylinder; 2113 is the sliding rod; 2114 is the sliding block; 2115 is the electric push rod; 301 is the third motor; 302 is the bidirectional screw rod; 303 is the moving block; 304 is the clamping piece. DETAILED DESCRIPTION

[0048] DETAILED DESCRIPTION Figure 1 In this embodiment, a multifunctional electrical equipment detection device is described, which comprises a detection mechanism 2 and a clamping assembly 3.

[0049] The detection mechanism 2 comprises a placing rack 206, a rotation adjusting mechanism, an inclination adjusting mechanism, and a detector 210.

[0050] The rotation adjusting mechanism is arranged at the bottom of the placing rack 206 to drive the rotation of the placing rack 206.

[0051] The inclination adjusting mechanism is arranged at the bottom of the rotation adjusting mechanism to adjust the inclination of the placing rack 206.

[0052] The detector 210 is arranged above the placing rack 206, and the detector 210 is used to detect the electrical equipment to be detected.

[0053] The clamping assembly 3 is arranged on the placing rack 206, and the clamping assembly 3 is used to clamp the electrical equipment to be detected.

[0054] In this embodiment, the rotation adjusting mechanism drives the rotation of the placing rack 206, and the inclination adjusting mechanism adjusts the inclination of the placing rack 206, so as to realize the multi-angle rotation of the placing rack 206 and ensure that the detector can comprehensively detect each part and angle of the electrical equipment.

[0055] DETAILED DESCRIPTION

[0056] The frame 2111 is arranged on the bottom plate 1, and the detection mechanism 2 is arranged in the frame 2111; wherein the rotation adjusting mechanism and the inclination adjusting mechanism are fixed on the bottom plate 1; and the detector 210 is suspended on the top inner wall of the frame 2111.

[0057] In the embodiment, the bottom plate 1 is the basic structure of the entire detection device, used for supporting and carrying the detection mechanism, the clamping assembly 3 and other related components; the bottom plate 1 provides a stable platform for the device, ensuring that each component can operate normally; the frame 2111 plays the role of support, guide, fixation and connection, and the horizontal movement of the detector 210 is realized through the frame 2111, improving the accuracy and flexibility of detection.

[0058] Specific implementation three, combined Figure 2 In the embodiment, the rotating adjusting mechanism includes a rectangular plate 201, a first motor 202, a first bevel gear 203, a second bevel gear 204, a rotating shaft 205, a square plate 207 and a rotating piece 209.

[0059] The rectangular plate 201 and the square plate 207 are fixed on the bottom plate 1 in an opposite manner;

[0060] The first motor 202 is fixed on the bottom plate 1 outside the rectangular plate 201;

[0061] The first bevel gear 203 is arranged between the rectangular plate 201 and the square plate 207, and the output shaft of the first motor 202 is rigidly connected to the first bevel gear 203 in a coaxial manner through the rectangular plate 201;

[0062] The rotating piece 209 is in a U-shaped structure, one end of the rotating piece 209 is connected to the outside of the rectangular plate 201 in an axial manner, and the other end of the rotating piece 209 is connected to the outside of the square plate 207 through a rotating shaft;

[0063] The rotating shaft 205 is arranged at the central axis of the rotating piece 209 in an axial manner, and the top end of the rotating shaft 205 is fixed at the center of the bottom of the placing rack 206;

[0064] The second bevel gear 204 is rigidly connected to the bottom end of the rotating shaft 205 in a coaxial manner; and the second bevel gear 204 is engaged with the first bevel gear 203.

[0065] In the embodiment, the rotating piece 209 is a support structure of the rotating shaft 205, and the rotating piece 209 is in contact with the bottom of the placing rack 206 in a rotating connection manner; after the electrical equipment to be detected is placed on the placing rack 206, the detector 210 can detect various performance indicators of the electrical equipment; when in use, the first motor 202 is started, the first motor 202 drives the first bevel gear 203 to rotate, and since the first bevel gear 203 is engaged with the second bevel gear 204, the second bevel gear 204 rotates, thereby driving the placing rack 206 to rotate.

[0066] Specific implementation four, this embodiment is further limited to the multifunctional electrical equipment detection device described in specific implementation one, in this embodiment, the tilt adjusting mechanism comprises a second motor 208;

[0067] The second motor 208 is fixed on the bottom plate 1 outside the square plate 207; and the output shaft of the second motor 208 and the rotating shaft of the rotating part 209 are rigidly connected in a coaxial manner.

[0068] In this embodiment, the rotating part 209 is driven to rotate by the second motor 208, the rotating part 209 rotates to drive the rotating shaft 205 to tilt, thereby realizing the tilt control of the placing rack 206 and realizing the multi-angle rotation of the placing rack 206, improving the versatility and practicability of the device and improving the detection efficiency.

[0069] Specific implementation five, in combination Figure 3 This embodiment is described, this embodiment is further limited to the multifunctional electrical equipment detection device described in specific implementation one, in this embodiment, the detection mechanism 2 further comprises a moving assembly 211;

[0070] The moving assembly 211 comprises a multi-stage cylinder 2112, a sliding rod 2113, a sliding block 2114 and an electric push rod 2115;

[0071] Among them, the two ends of the sliding rod 2113 are fixed in the inner side of the two opposite side walls of the frame 2111; the multi-stage cylinder 2112 is arranged on the outer side wall of the frame 2111; the sliding block 2114 is arranged on the sliding rod 2113 in a sliding connection manner, and the output end of the multi-stage cylinder 2112 is fixedly connected with the side wall of the sliding block 2114; the shell of the electric push rod 2115 is fixed on the bottom end of the sliding block 2114; the detector 210 is fixed on the bottom of the output end of the electric push rod 2115.

[0072] In the embodiment, the multi-stage cylinder 2112 has a large stroke and adjustable output force, and drives the pulling slider 2114 to make linear reciprocating motion along the slide rod 2113. The bottom of the slider 2114 is provided with an electric push rod 2115, and the output end of the electric push rod 2115 is fixedly connected with the top of the detector 210. The electric push rod 2115 provides power for the movement of the detector 210 in the vertical direction, and accurately adjusts the height of the detector 210. In use, after the multi-stage cylinder 2112 is started, the output end performs telescopic motion, drives the slider 2114 to make linear reciprocating motion along the slide rod 2113, thereby drives the electric push rod 2115 and the detector 210 to move in the horizontal direction, so that the detector 210 can reach different horizontal positions of the electrical equipment for detection. The electric push rod 2115 realizes the movement in the vertical direction by controlling the telescopic length. In this way, the height of the detector 210 can be accurately adjusted according to the height of the electrical equipment, so that the detector 210 can keep a specified distance from the detected part, and can adapt to the detection requirements of electrical equipment of different shapes, sizes and layouts. This can accurately adjust the distance between the detector 210 and the detected part, avoid detection errors caused by improper distance, and ensure the comprehensiveness and accuracy of detection.

[0073] Specific implementation method six, combination Figure 4 The embodiment is a further limitation of the multifunctional electrical equipment detection device described in specific implementation method one. In the embodiment, the clamping assembly 3 includes a third motor 301, a bidirectional screw rod 302, two moving blocks 303, and two clamping pieces 304.

[0074] The two ends of the bidirectional screw rod 302 are respectively connected between the two opposite side walls of the placing rack 206.

[0075] The third motor 301 is fixed on the outer side wall of the placing rack 206, and the output shaft of the third motor 301 is rigidly connected with one end of the bidirectional screw rod 302 in a coaxial manner.

[0076] The two moving blocks 303 are respectively arranged at the two ends of the bidirectional screw rod 302 in a threaded connection manner.

[0077] The two clamping pieces 304 are arranged in a sliding connection manner between the two side walls of the placing rack 206, and the side walls of the two clamping pieces 304 are fixedly connected with the side walls of the two moving blocks 303.

[0078] In the embodiment, the clamping assembly 3 comprises a third motor 301 bolted on the side wall of the placing rack 206, the output shaft of the third motor 301 is fixedly connected with a bidirectional screw rod 302, the third motor 301 drives the bidirectional screw rod 302 to rotate when started, the side wall of the bidirectional screw rod 302 is threadedly connected with two moving blocks 303, the moving blocks 303 move horizontally along the threads of the screw rod when the bidirectional screw rod 302 rotates, the side walls of the two moving blocks 303 are fixedly connected with clamping pieces 304, the clamping pieces 304 directly contact the electrical equipment to be detected, and are used for clamping and fixing the electrical equipment. When it is required to clamp and fix the electrical equipment, the third motor 301 is started, the output shaft of the third motor 301 starts to rotate, drives the bidirectional screw rod 302 to rotate, when the bidirectional screw rod 302 rotates, the two moving blocks 303 move synchronously and reversely along the axis of the bidirectional screw rod 302, drive the clamping pieces 304 to move, the two clamping pieces 304 move close to each other, so that the electrical equipment placed on the placing rack 206 is clamped, and the distance between the clamping pieces 304 can be flexibly adjusted according to the size of the electrical equipment, so that the clamping pieces 304 accurately clamp the equipment, and displacement of the electrical equipment in the detection process is prevented.

[0079] DETAILED DESCRIPTION Figure 5 In the embodiment, the clamping assembly 3 comprises a third motor 301 bolted on the side wall of the placing rack 206, the output shaft of the third motor 301 is fixedly connected with a bidirectional screw rod 302, the third motor 301 drives the bidirectional screw rod 302 to rotate when started, the side wall of the bidirectional screw rod 302 is threadedly connected with two moving blocks 303, the moving blocks 303 move horizontally along the threads of the screw rod when the bidirectional screw rod 302 rotates, the side walls of the two moving blocks 303 are fixedly connected with clamping pieces 304, the clamping pieces 304 directly contact the electrical equipment to be detected, and are used for clamping and fixing the electrical equipment. When it is required to clamp and fix the electrical equipment, the third motor 301 is started, the output shaft of the third motor 301 starts to rotate, drives the bidirectional screw rod 302 to rotate, when the bidirectional screw rod 302 rotates, the two moving blocks 303 move synchronously and reversely along the axis of the bidirectional screw rod 302, drive the clamping pieces 304 to move, the two clamping pieces 304 move close to each other, so that the electrical equipment placed on the placing rack 206 is clamped, and the distance between the clamping pieces 304 can be flexibly adjusted according to the size of the electrical equipment, so that the clamping pieces 304 accurately clamp the equipment, and displacement of the electrical equipment in the detection process is prevented.

[0080] The two protrusions 4 are fixed on the side walls of the two clamping pieces 304 away from the moving blocks 303.

[0081] The limiting strip 5 is arranged on one side of the placing rack 206 away from the bidirectional screw rod 302, and when the limiting strip 5 is close to the two protrusions 4, the two protrusions 4 can only move in a single direction of moving close to each other.

[0082] In the embodiment, the limiting strip 5 is fixed in the sliding groove of the two side walls of the placing rack 206 by nuts, and the protruding block 4 is attached to the limiting strip 5 in the initial state; when the clamping piece 304 clamps the electrical equipment to be detected, the protruding block 4 moves with the movement of the clamping piece 304; the side wall of the limiting strip 5 is provided with a track groove, and a guide inclined surface tooth is arranged in the track groove; so that the protruding block 4 is embedded in the limiting strip 5, limiting the movement of the clamping piece 304 in the horizontal direction; through the above limiting effect, the lateral shaking of the electrical equipment to be detected during the detection process is effectively prevented, and it is ensured that the electrical equipment is always stably fixed on the placing rack 206; when the clamping piece 304 needs to release the clamping state of the electrical equipment to be detected, the nuts at both ends of the limiting strip 5 can be loosened, and the limiting strip 5 is pulled outward, so that the limiting strip 5 moves away from the protruding block 4 along the sliding groove, and the limiting effect of the limiting strip 5 on the protruding block 4 is released. The protruding block 4 is part of the clamping piece 304 and plays a connecting and embedding role; the limiting strip 5 is part of the placing rack 206 and plays a limiting and guiding role.

[0083] Specific embodiment eight, this embodiment is a further limitation of the multifunctional electrical equipment detection device described in specific embodiment one, in this embodiment, the opposite side walls of the two clamping pieces 304 are fixedly connected with elastic pads 6, and the side walls of the elastic pads 6 are provided with anti-skid protrusions 7.

[0084] In the embodiment, the elastic pad 6 has good flexibility and elasticity, can play a buffering role in the clamping process, avoid direct hard contact of the clamping piece 304 with the electrical equipment to be detected, thereby reducing the scratching of the surface of the electrical equipment to be detected, and the anti-skid protrusions 7 increase the friction between the elastic pad 6 and the surface of the electrical equipment to be detected, preventing the electrical equipment to be detected from slipping or rotating between the clamping pieces 304 during clamping.

[0085] Specific embodiment nine, in combination Figure 6 This embodiment is a further limitation of the multifunctional electrical equipment detection device described in specific embodiment one, in this embodiment, it further includes a storage battery 8;

[0086] The storage battery 8 is fixed on the rear side wall of the bottom plate 1, and the storage battery 8 is electrically connected with the first motor 202, the second motor 208, the third motor 301, the multi-stage cylinder 2112 and the electric push rod 2115 respectively.

[0087] In the embodiment, the storage battery 8 provides independent power supply, which can conveniently move the multifunctional electrical equipment detection device to different detection sites without worrying about the limitation of power lines, providing convenience for detection and meeting the detection needs.

[0088] Specific implementation ten, this embodiment is further limited to the multifunctional electrical equipment detection device described in specific implementation one, in this embodiment, one side of the top of the bottom plate 1 is fixedly connected with a handrail 9, an anti-skid sleeve 10 is arranged on the outer wall of the handrail 9, and four self-locking universal wheels 11 are arranged at the bottom of the bottom plate 1.

[0089] In this embodiment, the operator can hold the handrail 9 and apply a pushing force to push the multifunctional electrical equipment detection device, so that the multifunctional electrical equipment detection device can be easily transferred between different working areas. When the operator holds the handrail 9, the anti-skid sleeve 10 can increase the friction between the hand and the handrail 9, so as to prevent the hand from slipping off due to sweating or improper force during pushing. When the multifunctional electrical equipment detection device reaches the detection position, the self-locking function of the self-locking universal wheel 11 can fix the wheel, so as to prevent the multifunctional electrical equipment detection device from moving during detection.

[0090] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A multifunctional electrical equipment detection device, characterized in that: It includes a detection mechanism (2) and a clamping assembly (3); The detection mechanism (2) includes a placement rack (206), a rotation adjustment mechanism, a tilt adjustment mechanism, and a detector (210); The rotation adjustment mechanism is arranged at the bottom of the placement rack (206) to drive the placement rack (206) to rotate; The tilt adjustment mechanism is placed at the bottom of the rotation adjustment mechanism to adjust the tilt of the placement rack (206); The detector (210) is arranged above the placement rack (206), and the detector (210) is used to detect the electrical equipment to be detected; The clamping assembly (3) is arranged on the placement rack (206), and the clamping assembly (3) is used to clamp the electrical equipment to be tested.

2. A multifunctional electrical equipment detection device according to claim 1, characterized in that: Also includes a base plate (1) and a frame (2111); The frame (2111) is arranged on the base plate (1), and the detection mechanism (2) is arranged in the frame (2111); wherein the rotation adjustment mechanism and the tilt adjustment mechanism are fixed on the base plate (1); and the detector (210) is suspended on the top inner wall of the frame (2111).

3. A multifunctional electrical equipment detection device according to claim 2, characterized in that: The rotation adjustment mechanism comprises a rectangular plate (201), a first motor (202), a first bevel gear (203), a second bevel gear (204), a rotating shaft (205), a square plate (207), and a rotating member (209); The rectangular plate (201) and the square plate (207) are fixed on the bottom plate (1) in a relative manner; The first motor (202) is fixed on the bottom plate (1) outside the rectangular plate (201); The first bevel gear (203) is arranged between the rectangular plate (201) and the square plate (207), and the output shaft of the first motor (202) passes through the rectangular plate (201) and is rigidly connected to the first bevel gear (203) in a coaxial manner; The rotating member (209) is a U-shaped structure, and one end of the rotating member (209) is connected to the outside of the rectangular plate (201) through a shaft, and the other end of the rotating member (209) is connected to the outside of the square plate (207) through a rotating shaft; The rotating shaft (205) is arranged at the central axis of the rotating member (209) in a shaft-connected manner, and the top end of the rotating shaft (205) is fixed at the bottom center of the placement frame (206); The second bevel gear (204) is rigidly connected to the bottom end of the rotating shaft (205) in a coaxial manner with the rotating shaft (205); and the second bevel gear (204) is meshed with the first bevel gear (203).

4. A multifunctional electrical equipment detection device according to claim 3, characterized in that: The tilt adjustment mechanism includes a second motor (208); The second motor (208) is fixed on the bottom plate (1) outside the square plate (207); and the output shaft of the second motor (208) and the rotating shaft of the rotating member (209) are rigidly connected together in a coaxial manner.

5. A multifunctional electrical equipment detection device according to claim 4, characterized in that: The detection mechanism (2) further includes a moving component (211); The moving assembly (211) includes a multi-stage cylinder (2112), a sliding rod (2113), a slider (2114), and an electric push rod (2115); The two ends of the slide rod (2113) are fixed on the inner sides of two opposite side walls of the frame (2111); the multi-stage cylinder (2112) is arranged on the outer side wall of the frame (2111); the slider (2114) is arranged on the slide rod (2113) in a sliding connection manner, and the output end of the multi-stage cylinder (2112) is fixedly connected to the side wall of the slider (2114); the housing of the electric push rod (2115) is fixed on the bottom end of the slider (2114); and the detector (210) is fixed on the bottom of the output end of the electric push rod (2115).

6. A multifunctional electrical equipment detection device according to claim 5, characterized in that: The clamping assembly (3) comprises a third motor (301), a bidirectional screw rod (302), two moving blocks (303) and two clamping members (304); The two ends of the bidirectional screw rod (302) are respectively axially connected between two oppositely arranged side walls of the placement frame (206); The third motor (301) is fixed on the outer side wall of the placement rack (206); and the output shaft of the third motor (301) is rigidly connected to one end of the bidirectional screw rod (302) in a coaxial manner; The two moving blocks (303) are respectively arranged at both ends of the bidirectional screw rod (302) in a threaded connection manner; The two clamping members (304) are relatively arranged between the two side walls of the placement rack (206) in a sliding connection manner, and the side walls of the two clamping members (304) are correspondingly fixed to the side walls of the two moving blocks (303).

7. A multifunctional electrical equipment detection device according to claim 6, characterized in that: It also includes two protrusions (4) and a limiting strip (5); The two protrusions (4) are respectively fixed on the side walls of the two clamping members (304) away from the moving block (303); The limiting strip (5) is arranged on a side of the placement rack (206) away from the bidirectional screw rod (302); and when the limiting strip (5) is close to the two protrusions (4), the two protrusions (4) can only move in a single direction toward each other.

8. A multifunctional electrical equipment detection device according to claim 7, characterized in that: Elastic gaskets (6) are fixedly connected to the opposite side walls of the two clamping members (304), and anti-slip protrusions (7) are provided on the side walls of the elastic gaskets (6).

9. A multifunctional electrical equipment detection device according to claim 8, characterized in that: Also includes a battery (8); The battery (8) is fixed on the rear side wall of the base plate (1), and the battery (8) is electrically connected to the first motor (202), the second motor (208), the third motor (301), the multi-stage cylinder (2112), and the electric push rod (2115).

10. The multifunctional electrical equipment detection device according to claim 2, characterized in that: A handrail (9) is fixedly connected to one side of the top of the base plate (1), an anti-slip sleeve (10) is provided on the outer wall of the handrail (9), and four self-locking universal wheels (11) are provided at the bottom of the base plate (1).

Citation Information

Patent Citations

  • Electrical equipment detection device

    CN217931855U