Insulation safety tool test rack

By designing an insulated safety tool test rack including a mounting frame, a telescopic test rod, a rotary member and an automatic loading assembly, the problem of inefficiency of the test rack in the prior art is solved, automated tests are realized, and testing efficiency and safety are improved.

CN119986058APending Publication Date: 2025-05-13SHANDONG ELECTRIC POWER TRANSMISSION & SUBSTATION ENG CO
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Patent Information

Application Number
CN202510080313.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing test rack can only test a small number of safety tools at a time, and the staff need to disconnect wires multiple times, which is inefficient and inconvenient for disassembly and assembly.

Method used

An insulated safety tool test rack including a mounting frame, a retractable test pressure rod, a rotary member and an automatic loading assembly is designed. The mounting frame consists of a top plate, a bottom plate and a vertical rod. The top plate is equipped with a retractable test pressure rod, and a driving unit is fixed on the bottom plate. The rotating member drives the product to rotate between the discharge grooves, and the automatic loading assembly realizes automatic loading and unloading of the product.

Benefits of technology

Through the design of this test stand, the product to be tested can be automatically moved under the test pressure rod, which significantly improves the test efficiency, reduces manual wiring and wire removal operations, and reduces labor intensity and safety risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of test racks, and provides an insulation safety tool test rack, which comprises a mounting rack, the mounting rack comprises a top plate, a bottom plate and a plurality of vertical rods, the plurality of vertical rods are arranged between the top plate and the bottom plate, a mounting gap is formed between the top plate and the bottom plate, and a telescopic test pressure rod is arranged in the mounting gap on the top plate; a first driving unit is fixedly arranged on the bottom plate, an experiment plate is arranged on the first driving unit and located in the mounting gap, the rotating piece is arranged on the experiment plate and arranged at the driving end of the first driving unit, the rotating piece is provided with a plurality of discharging grooves, and the discharging grooves are circumferentially formed in the rotating piece at intervals; after the rotating piece rotates on the experiment plate, the test pressing rod is used for detecting a product located in the discharging groove. According to the technical scheme, the problems that in the prior art, a test rack can only test a small number of safety tools each time, workers conduct wire connection and wire removal for many times, and the working efficiency is low are solved.
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Description

Technical Field

[0001] The invention relates to the technical field of test stands, and in particular to an insulating safety tool test stand. Background Art

[0002] In the field of power safety, insulation safety tools such as electroscopes, insulating rods, and phase analyzers need to be regularly tested for insulation and withstand voltage to ensure their safety and reliability. However, existing test racks have some problems, such as only being able to test a small number of safety tools at a time, workers having to connect and disconnect wires multiple times, low work efficiency, and inconvenient assembly and disassembly. Summary of the invention

[0003] The present invention provides an insulating safety tool test stand, which solves the problem that the test stand in the prior art can only test a small number of safety tools at a time, and workers have to connect and disconnect wires many times, resulting in low work efficiency.

[0004] The technical solution of the present invention is as follows:

[0005] An insulating safety tool test stand, comprising a mounting stand for being arranged on a test table, the mounting stand comprising a top plate, a bottom plate and a plurality of vertical poles, the plurality of vertical poles are arranged between the top plate and the bottom plate, an installation gap is formed between the top plate and the bottom plate, and a retractable test pressure rod is arranged on the top plate in the installation gap;

[0006] A first driving unit is fixedly arranged on the bottom plate, a test plate is arranged on the first driving unit in the installation gap, and the first driving unit also includes a rotating member arranged on the test plate and on the driving end of the first driving unit, the rotating member has a plurality of discharge grooves, and the plurality of discharge grooves are arranged on the rotating member at circumferential intervals, after the rotating member rotates on the test plate, it is used to drive the product located in the discharge groove to rotate with the rotating member, and after the test pressure rod is extended and retracted, it is used to detect a product located in the discharge groove.

[0007] As a further technical solution, a through slot is provided on the test plate, and after the test plate is rotated, the tested product is discharged through the through slot.

[0008] As a further technical solution, an automatic loading component is also included, and the automatic loading component is used to load the product into the discharge trough.

[0009] As a further technical solution, the automatic loading assembly includes a material discharge piece arranged on the top plate in the installation gap, the material discharge piece has a material discharge cavity, and the side wall of the material discharge piece has a first arc-shaped groove, and the first arc-shaped groove is connected to the material discharge cavity;

[0010] The blanking piece is provided with a mounting plate, on which two pulleys and a winding belt wound around the two pulleys are provided, and two guide rails are provided on the mounting plate along the Z-axis direction, the winding belt forms a first end and a second end after being wound around the pulleys, a first abutment rod is provided on the first end, a second abutment rod is provided on the second end, and the first abutment rod and the second abutment rod are respectively slidably provided on the two guide rails, and after the winding belt moves around the pulleys, the first abutment rod and the second abutment rod move towards or away from each other;

[0011] The first abutment rod is located below the second abutment rod along the Z-axis direction, and further comprises a second driving unit for driving the pulley to rotate;

[0012] The automatic loading component has two states. When the second driving unit rotates forward, the first abutment rod passes through the first arc groove and is located in the discharge cavity, and the second abutment rod is retracted, and the first abutment rod supports the workpiece in the discharge cavity and above the first abutment rod. When the second driving unit rotates reversely, the first abutment rod is retracted, and the second abutment rod is extended to support the workpiece in the discharge cavity and above the second abutment rod.

[0013] As a further technical solution, the blanking piece has a second arc groove, and the second arc groove is located below the first arc groove. The automatic loading assembly also includes a first hinged rod hingedly arranged on the blanking piece, the first hinged rod forms an abutting end and a movable end, the movable end has a slide groove, and also includes a sliding plate with one end slidingly arranged in the second arc groove, the sliding plate is hingedly arranged in the slide groove on the side away from the second arc groove, after the first hinged rod swings along the hinge point, it is used to drive the sliding plate to slide in the second arc groove, and after the sliding plate slides in the second arc groove, it is used to support or not support the workpiece, and also includes an elastic member with one end arranged on the movable end and the other end arranged on the blanking piece, the elastic member is used to provide a force for the movable end to approach the first arc groove.

[0014] As a further technical solution, a plurality of abutment members are arranged on the circumference of the rotating member at intervals. After the abutment members rotate with the rotating member, they are used to abut and push the abutment end to move.

[0015] As a further technical solution, it also includes a discharging assembly arranged at the bottom of the experimental plate for pushing out the workpiece falling from the through slot.

[0016] As a further technical solution, the discharging assembly includes a first gear located at the bottom of the base plate and arranged on the driving shaft of the first driving unit and rotating synchronously with the first driving unit, and also includes a second gear rotatably arranged at the bottom of the base plate and meshing with the first gear, a second hinged rod is fixedly arranged on the second gear, a third hinged rod is hingedly arranged on the side of the second hinged rod away from the second gear, a push rod is hingedly arranged on the side of the third hinged rod away from the second hinged rod, a guide hole is provided on the base plate, and the push rod is slidably arranged in the guide hole, and after the second gear rotates with the first gear, it is used to drive the push rod to reciprocate along the X-axis direction.

[0017] As a further technical solution, the bottom plate is provided with a guiding inclined surface below the through slot.

[0018] The working principle and beneficial effects of the present invention are:

[0019] The insulating safety tool test frame in this embodiment includes a mounting frame, which is used to be set on the test table. The mounting frame is composed of a top plate, a bottom plate and a plurality of vertical rods, and the vertical rods are evenly distributed between the top plate and the bottom plate, and a mounting gap is formed between the top plate and the bottom plate. A retractable test pressure rod is arranged on the top plate in the mounting gap, which is used to perform insulation and withstand voltage tests on the product. A first drive unit is fixedly arranged on the bottom plate, and the first drive unit can be a motor or other drive device. An experimental board is arranged on the first drive unit in the mounting gap, and the experimental board is used to place the product to be tested. A rotating member is arranged on the experimental board, and the rotating member is installed on the driving end of the first drive unit. The rotating member has a plurality of discharge grooves, and these discharge grooves are arranged on the rotating member at intervals on the circumference. When the rotating member rotates on the experimental board, the product in the discharge groove can be driven to rotate with the rotating member. The test pressure rod is arranged on the top plate and is located in the mounting gap. The test pressure rod is retractable. When it is necessary to test the product in the discharge groove, the test pressure rod is retracted downward to contact the product to perform insulation and withstand voltage tests. After the test is completed, the test bar retracts upward, and the rotating part continues to rotate, moving the next product under the test bar for the next test. Through the continuous rotation of the rotating part, the product to be tested can be automatically moved under the test bar, without the need for frequent manual movement of the product, which significantly improves the test efficiency. It reduces the wiring and disconnection operations of the test personnel and reduces the labor intensity. It reduces the contact between the test personnel and the live equipment and reduces the safety risks. It has a simple structure, is easy to operate and maintain, and is suitable for use in various testing environments. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0021] Figure 1 This is a schematic diagram of the first viewing angle axial structure of the present invention;

[0022] Figure 2 for Figure 1 A local enlarged view of point A;

[0023] Figure 3 This is a schematic diagram of the axial structure of the present invention from a second viewing angle;

[0024] Figure 4 for Figure 3 A schematic diagram of the local enlarged structure at B;

[0025] Figure 5 for Figure 3 Schematic diagram of the local enlarged structure at C.

[0026] In the figure:

[0027] 100, mounting frame, 101, top plate, 102, bottom plate, 103, vertical pole, 104, mounting gap, 105, guide slope, 106, guide hole;

[0028] 200. Test pressure rod;

[0029] 301, first driving unit, 302, experimental board, 303, rotating member, 304, material discharge trough, 305, through slot, 306, abutting member;

[0030] 400, automatic feeding assembly, 401, unloading member, 402, discharging cavity, 403, first arc-shaped groove, 405, mounting plate, 406, pulley, 407, winding belt, 408, guide rail, 409, first end, 410, second end, 411, first abutting rod, 412, second abutting rod, 413, second driving unit, 414, second arc-shaped groove, 415, first hinged rod, 416, abutting end, 417, movable end, 418, slide groove, 419, sliding plate, 420, elastic member;

[0031] 500, discharging assembly, 501, first gear, 502, second gear, 503, second hinged rod, 504, third hinged rod, 505, pushing rod. DETAILED DESCRIPTION

[0032] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments 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 creative work are within the scope of protection of the present invention.

[0033] Example

[0034] like Figure 1 and Figure 2 As shown, an insulating safety tool test stand includes a mounting frame 100 for being arranged on a test table, the mounting frame 100 includes a top plate 101, a bottom plate 102 and a plurality of vertical poles 103, the plurality of vertical poles 103 are arranged between the top plate 101 and the bottom plate 102, an installation gap 104 is formed between the top plate 101 and the bottom plate 102, and a retractable test pressure rod 200 is arranged on the top plate 101 and located in the installation gap 104;

[0035] A first driving unit 301 is fixedly arranged on the bottom plate 102, and a test plate 302 is arranged on the first driving unit 301 in the installation gap 104, and also includes a rotating member 303 arranged on the test plate 302 and on the driving end of the first driving unit 301, the rotating member 303 has a plurality of discharge grooves 304, and the plurality of discharge grooves 304 are arranged on the rotating member 303 at circumferential intervals, after the rotating member 303 rotates on the test plate 302, it is used to drive the product located in the discharge groove 304 to rotate along with the rotating member 303, and after the test pressure rod 200 is extended and retracted, it is used to detect a product located in the discharge groove 304.

[0036] The insulating safety tool test stand in this embodiment includes a mounting frame 100, which is used to be set on the test table. The mounting frame 100 is composed of a top plate 101, a bottom plate 102 and a plurality of vertical rods 103, and the vertical rods 103 are evenly distributed between the top plate 101 and the bottom plate 102, and a mounting gap 104 is formed between the top plate 101 and the bottom plate 102. A retractable test pressure rod 200 is arranged in the mounting gap 104 on the top plate 101, which is used to perform insulation and withstand voltage tests on the product. A first drive unit 301 is fixedly arranged on the bottom plate 102, and the first drive unit 301 can be a motor or other drive device. An experimental board 302 is arranged on the first drive unit 301 in the mounting gap 104, and the experimental board 302 is used to place the product to be tested. A rotating member 303 is arranged on the experimental board 302, and the rotating member 303 is installed on the driving end of the first drive unit 301. The rotating member 303 has a plurality of discharge troughs 304, which are arranged on the rotating member 303 at intervals on the circumference. When the rotating member 303 rotates on the test board 302, the product in the discharge trough 304 can be driven to rotate with the rotating member 303. The test pressure rod 200 is arranged on the top plate 101 and is located in the installation gap 104. The test pressure rod 200 is retractable. When it is necessary to test the product in the discharge trough 304, the test pressure rod 200 is retracted downward to contact the product to perform insulation and withstand voltage tests. After the test is completed, the test pressure rod 200 retracts upward, and the rotating member 303 continues to rotate to move the next product under the test pressure rod 200 for the next test. Through the continuous rotation of the rotating member 303, the product to be tested can be automatically moved under the test pressure rod 200, without the need for frequent manual movement of the product, which significantly improves the test efficiency. The wiring and disconnection operations of the test personnel are reduced, and the labor intensity is reduced. The contact between the test personnel and the live equipment is reduced, and the safety risk is reduced. It has a simple structure, is easy to operate and maintain, and is suitable for use in various testing environments.

[0037] like Figure 3 As shown, as a further technical solution, a through slot 305 is provided on the test plate 302 , and after the test plate 302 rotates, the tested product is discharged through the through slot 305 .

[0038] In this embodiment, a through slot 305 is provided on the test plate 302, and when the rotating member 303 rotates, the tested product can be discharged through the through slot 305. Through the continuous rotation of the rotating member 303 and the automatic discharge design of the through slot 305, the product to be tested can be automatically moved to the bottom of the test pressure rod 200, without the need for manual frequent movement of the product, which significantly improves the test efficiency.

[0039] like Figure 1 and Figure 2As shown, as a further technical solution, it also includes an automatic loading component 400, which is used to load the product into the discharge trough 304.

[0040] This embodiment further includes an automatic loading component 400, which is used to automatically load the product into the discharge trough 304, further improving the automation level of the test stand.

[0041] like Figure 2 As shown, as a further technical solution, the automatic loading assembly 400 includes a material discharge piece arranged on the top plate 101 in the installation gap 104, the material discharge piece has a material discharge cavity 402, and the side wall of the material discharge piece has a first arc groove 403, and the first arc groove 403 is connected to the material discharge cavity 402;

[0042] The blanking piece is provided with a mounting plate 405, on which two pulleys 406 and a winding belt 407 wound around the two pulleys 406 are provided, and two guide rails 408 are provided on the mounting plate 405 along the Z-axis direction, and the winding belt 407 forms a first end 409 and a second end 410 after being wound around the pulleys 406, and a first abutment rod 411 is provided on the first end 409, and a second abutment rod 412 is provided on the second end 410, and the first abutment rod 411 and the second abutment rod 412 are respectively slidably provided on the two guide rails 408, and after the winding belt 407 moves around the pulleys 406, the first abutment rod 411 and the second abutment rod 412 move towards or away from each other;

[0043] The first abutment rod 411 is located below the second abutment rod 412 along the Z-axis direction, and further includes a second driving unit 413 for driving the pulley 406 to rotate;

[0044] The automatic loading component 400 has two states. When the second driving unit 413 rotates forward, the first abutment rod 411 passes through the first arc groove 403 and is located in the discharge cavity 402, and the second abutment rod 412 is retracted. The first abutment rod 411 supports the workpiece located above the first abutment rod 411 in the discharge cavity 402. When the second driving unit 413 rotates reversely, the first abutment rod 411 is retracted, and the second abutment rod 412 extends out and supports the workpiece located above the second abutment rod 412 in the discharge cavity 402.

[0045] The automatic loading assembly 400 of the insulating safety tool test stand in this embodiment includes a feeding piece arranged in the installation gap 104 of the top plate 101. The feeding piece has a discharge cavity 402 for storing the product to be tested. The discharge cavity 402 can be designed to conform to the insulating equipment to be tested, so as to ensure that the products to be tested can be neatly arranged in the discharge cavity 402. The side wall of the feeding piece has a first arc groove 403, which is connected to the discharge cavity 402 to ensure that the product can be smoothly moved from the discharge cavity 402 to the discharge trough 304. The feeding piece is provided with a mounting plate 405, and the mounting plate 405 is provided with two pulleys 406 and a winding belt 407 wound on the two pulleys 406. Two guide rails 408 are arranged on the mounting plate 405 along the Z-axis direction, and the winding belt 407 forms a first end 409 and a second end 410 after being wound on the pulley 406. A first abutment rod 411 is provided on the first end 409, a second abutment rod 412 is provided on the second end 410, and the first abutment rod 411 and the second abutment rod 412 are respectively slidably provided on two guide rails 408. When the winding belt 407 moves around the pulley 406, the first abutment rod 411 and the second abutment rod 412 can move toward each other or move away from each other. The first abutment rod 411 is located below the second abutment rod 412 along the Z-axis direction, and also includes a second driving unit 413 for driving the pulley 406 to rotate. The automatic feeding assembly 400 has two states: when the second driving unit 413 rotates forward, the first abutment rod 411 passes through the first arc groove 403 and is located in the discharge cavity 402, and the second abutment rod 412 is retracted. At this time, the first abutment rod 411 supports the product located above the first abutment rod 411 in the discharge cavity 402. When the second driving unit 413 rotates in the opposite direction, the first abutting rod 411 is retracted, and the second abutting rod 412 is extended to support the product located above the second abutting rod 412 in the discharge cavity 402, while the product located below the second abutting rod 412 and above the first abutting rod 411 will fall into the receiving trough. Through this design, the automatic loading assembly 400 can efficiently move the product from the discharge cavity 402 to the discharge trough 304, ensure the automated operation of the test stand, improve the test efficiency, reduce manual intervention, and reduce labor intensity and safety risks.

[0046] like Figure 3 and Figure 4As shown, as a further technical solution, the blanking piece has a second arc groove 414, and the second arc groove 414 is located below the first arc groove 403, and the automatic loading assembly 400 also includes a first hinge rod 415 hingedly arranged on the blanking piece, the first hinge rod 415 forms an abutting end 416 and a movable end 417, the movable end 417 has a slide groove 418, and also includes a sliding plate 419 with one end slidingly arranged in the second arc groove 414, the sliding plate 419 is away from the first arc groove 403. One side of the second arc groove 414 is hingedly arranged in the sliding groove 418. After the first hinge rod 415 swings along the hinge point, it is used to drive the sliding plate 419 to slide in the second arc groove 414. After the sliding plate 419 slides in the second arc groove 414, it is used to support or not support the workpiece. It also includes an elastic member 420 with one end arranged on the movable end 417 and the other end arranged on the blanking member. The elastic member 420 is used to provide a force for the movable end 417 to approach the first arc groove 403.

[0047] In this embodiment, the material discharge part has a discharge cavity 402 for storing the product to be tested. The side wall of the material discharge part has two arc grooves: a first arc groove 403 and a second arc groove 414. The first arc groove 403 is located at the top to avoid the movement of the first abutment rod 411; the second arc groove 414 is located below the first arc groove 403 to avoid the movement of the sliding plate 419. The automatic loading assembly 400 also includes a first hinge rod 415 hingedly arranged on the material discharge part. The first hinge rod 415 forms an abutment end 416 and a movable end 417, and the movable end 417 has a slide groove 418. It also includes a sliding plate 419 with one end slidingly arranged in the second arc groove 414, and the side of the sliding plate 419 away from the second arc groove 414 is hingedly arranged in the slide groove 418. When the first hinge rod 415 swings along the hinge point, it drives the sliding plate 419 to slide in the second arc groove 414. After the sliding plate 419 slides in the second arc groove 414, it can support or not support the workpiece, thereby controlling the movement of the workpiece. In addition, it also includes an elastic member 420, such as a spring, with one end arranged on the movable end 417 and the other end arranged on the unloading member. The elastic member 420 is used to provide a force for the movable end 417 to approach the first arc groove 403, ensuring that the first hinge rod 415 remains in the initial position when there is no external force, facilitating the smooth entry and exit of the workpiece. Through this design, the automatic loading assembly 400 can efficiently move the product from the discharge cavity 402 to the discharge trough 304, ensure the automated operation of the test frame, improve the test efficiency, reduce manual intervention, and reduce labor intensity and safety risks. During the specific operation, the swing of the first hinge rod 415 and the sliding of the sliding plate 419 work together to achieve accurate positioning and automatic loading of the workpiece, thereby improving the automation level and reliability of the entire test frame.

[0048] like Figure 1and Figure 3 As shown, as a further technical solution, a plurality of abutment members 306 are arranged on the circumference of the rotating member 303 at intervals. After the abutment members 306 rotate with the rotating member 303, they are used to abut and push the abutment end 416 to move.

[0049] In this embodiment, when the rotating member 303 rotates, the abutting member 306 sequentially abuts against the abutting end 416 of the first hinge rod 415. The abutting member 306 pushes the first hinge rod 415 to swing, thereby driving the sliding plate 419 to slide in the second arc groove 414. The sliding of the sliding plate 419 controls the movement of the workpiece, ensuring that the workpiece accurately enters the material discharge trough 304. This further improves the accuracy of the automatic feeding assembly 400 in placing the material into the material discharge trough 304, thereby improving work efficiency.

[0050] like Figure 3 and Figure 5 As shown, as a further technical solution, it also includes a discharge assembly 500 disposed at the bottom of the experimental plate 302 for pushing out the workpiece dropped from the through slot 305 .

[0051] In this embodiment, the insulating safety tool test stand in this embodiment further includes a discharge assembly 500 arranged at the bottom of the test board 302, which is used to push out the workpiece dropped from the through slot 305 to ensure that the tested product can be discharged smoothly.

[0052] like Figure 5 As shown, as a further technical solution, the discharging assembly 500 includes a first gear 501 located at the bottom of the base plate 102 and arranged on the driving axis of the first driving unit 301 and rotating synchronously with the first driving unit 301, and also includes a second gear 502 rotatably arranged at the bottom of the base plate 102 and meshing with the first gear 501, a second hinged rod 503 is fixedly arranged on the second gear 502, a third hinged rod 504 is hingedly arranged on the side of the second hinged rod 503 away from the second gear 502, a push rod 505 is hingedly arranged on the side of the third hinged rod 504 away from the second hinged rod 503, a guide hole 106 is provided on the base plate 102, and the push rod 505 is slidably arranged in the guide hole 106, and after the second gear 502 rotates with the first gear 501, it is used to drive the push rod 505 to reciprocate along the X-axis direction.

[0053] In this embodiment, the discharging assembly 500 includes a first gear 501 located at the bottom of the bottom plate 102, which is arranged on the driving shaft of the first driving unit 301 and rotates synchronously with the first driving unit 301. The second gear 502 cooperating therewith is rotatably arranged at the bottom of the bottom plate 102 and meshes with the first gear 501. A second hinge rod 503 is fixedly arranged on the second gear 502, and a third hinge rod 504 is hinged at the other end of the hinge rod. A push rod 505 is hinged at the other end of the third hinge rod 504, and the push rod 505 is slidably arranged in a guide hole 106 on the bottom plate 102. When the second gear 502 rotates with the first gear 501, the push rod 505 reciprocates along the X-axis direction through the linkage action of the second hinge rod 503 and the third hinge rod 504, thereby realizing the action of pushing the workpiece dropped from the through slot 305 along the X-axis direction. This design utilizes the principles of gear transmission and connecting rod mechanism to realize automatic discharging of workpieces, improve the automation level and work efficiency of the test stand, reduce manual intervention, and ensure the continuity and safety of the test process.

[0054] like Figure 1 As shown, as a further technical solution, the bottom plate 102 has a guiding inclined surface 105 below the through slot 305 .

[0055] The bottom plate 102 of the insulating safety tool test stand in this embodiment is designed to include a guiding slope 105 to further ensure that the tested products can be discharged smoothly.

[0056] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. An insulation safety tool test stand, characterized in that: The invention comprises a mounting frame (100) for being arranged on a testing table, the mounting frame (100) comprising a top plate (101), a bottom plate (102) and a plurality of vertical poles (103), the plurality of vertical poles (103) being arranged between the top plate (101) and the bottom plate (102), a mounting gap (104) being formed between the top plate (101) and the bottom plate (102), and a retractable test pressure rod (200) being arranged on the top plate (101) and located in the mounting gap (104); The base plate (102) is fixedly provided with a first driving unit (301), and a test board (302) is provided on the first driving unit (301) in the installation gap (104), and further comprises a rotating member (303) arranged on the test board (302) and arranged on the driving end of the first driving unit (301), the rotating member (303) having a plurality of discharge grooves (304), and the plurality of discharge grooves (304) are arranged on the rotating member (303) at circumferential intervals, and after the rotating member (303) rotates on the test board (302), it is used to drive the product located in the discharge groove (304) to rotate along with the rotating member (303), and after the test pressure rod (200) is extended and retracted, it is used to detect a product located in the discharge groove (304).

2. The insulating safety tool test stand according to claim 1 is characterized in that: The test plate (302) is provided with a through slot (305), and after the test plate (302) rotates, the tested product is discharged through the through slot (305).

3. The insulating safety tool test stand according to claim 1 is characterized in that: It also includes an automatic loading component (400), which is used to load the product into the discharge trough (304).

4. The insulating safety tool test stand according to claim 3 is characterized in that: The automatic loading component (400) comprises a material discharge piece (401) arranged on the top plate (101) in the installation gap (104), the material discharge piece (401) having a material discharge cavity (402), a side wall of the material discharge piece (401) having a first arc-shaped groove (403), and the first arc-shaped groove (403) is in communication with the material discharge cavity (402); The blanking piece (401) is provided with a mounting plate (405), and the mounting plate (405) is provided with two pulleys (406) and a winding belt (407) wound around the two pulleys (406), and the mounting plate (405) is provided with two guide rails (408) along the Z-axis direction, and the winding belt (407) forms a first end (409) and a second end (410) after being wound around the pulleys (406), and a first abutment rod (411) is provided on the first end (409), and a second abutment rod (412) is provided on the second end (410), and the first abutment rod (411) and the second abutment rod (412) are respectively slidably provided on the two guide rails (408), and after the winding belt (407) moves around the pulleys (406), the first abutment rod (411) and the second abutment rod (412) move towards each other or move away from each other; The first abutment rod (411) is located below the second abutment rod (412) along the Z-axis direction, and further comprises a second driving unit (413) for driving the pulley (406) to rotate; The automatic loading component (400) has two states. When the second driving unit (413) rotates forward, the first abutment rod (411) passes through the first arc groove (403) and is located in the discharge cavity (402). The second abutment rod (412) is retracted, and the first abutment rod (411) supports the workpiece located above the first abutment rod (411) in the discharge cavity (402). When the second driving unit (413) rotates reversely, the first abutment rod (411) is retracted, and the second abutment rod (412) is extended to support the workpiece located above the second abutment rod (412) in the discharge cavity (402).

5. The insulating safety tool test stand according to claim 4 is characterized in that: The material removal component (401) has a second arc-shaped groove (414), and the second arc-shaped groove (414) is located below the first arc-shaped groove (403). The automatic loading component (400) further includes a first hinge rod (415) hingedly arranged on the material removal component (401), the first hinge rod (415) forms an abutting end (416) and a movable end (417), the movable end (417) has a sliding groove (418), and also includes a sliding plate (419) with one end slidingly arranged in the second arc-shaped groove (414), and the sliding plate (419) is away from the second arc-shaped groove. One side of (414) is hingedly arranged in the slide groove (418), and after the first hinge rod (415) swings along the hinge point, it is used to drive the sliding plate (419) to slide in the second arc groove (414), and after the sliding plate (419) slides in the second arc groove (414), it is used to support or not support the workpiece, and also includes an elastic member (420) with one end arranged on the movable end (417) and the other end arranged on the blanking member (401), and the elastic member (420) is used to provide a force for the movable end (417) to approach the first arc groove (403).

6. The insulating safety tool test stand according to claim 5, characterized in that: A plurality of abutment members (306) are arranged on the circumference of the rotating member (303) at intervals. After the abutment members (306) rotate along with the rotating member (303), they are used to abut and push the abutment end (416) to move.

7. The insulating safety tool test stand according to claim 2 is characterized in that: It also includes a discharge assembly (500) disposed at the bottom of the experimental plate (302) for pushing out the workpiece that falls from the through slot (305).

8. The insulating safety tool test stand according to claim 7, characterized in that: The discharging assembly (500) includes a first gear (501) located at the bottom of the base plate (102) and arranged on the driving shaft of the first driving unit (301) and rotating synchronously with the first driving unit (301), and also includes a second gear (502) rotatably arranged at the bottom of the base plate (102) and meshing with the first gear (501), a second hinge rod (503) is fixedly arranged on the second gear (502), a third hinge rod (504) is hingedly arranged on the side of the second hinge rod (503) away from the second gear (502), a push rod (505) is hingedly arranged on the side of the third hinge rod (504) away from the second hinge rod (503), a guide hole (106) is provided on the base plate (102), and the push rod (505) is slidably arranged in the guide hole (106), and after the second gear (502) rotates with the first gear (501), it is used to drive the push rod (505) to reciprocate along the X-axis direction.

9. The insulating safety tool test stand according to claim 2, characterized in that: The bottom plate (102) is located below the through slot (305) and has a guiding inclined surface (105).