Current transformer testing device

By introducing the front sliding mechanism, the rear sliding mechanism and the longitudinal adjustment mechanism into the current transformer test device, combined with the wire harness positioning rolling mechanism, the problems of inconvenient conductor operation and low testing efficiency in the prior art are solved, flexible wire harness testing is realized, and the versatility and efficiency of the test are improved.

CN119986512AActive Publication Date: 2025-05-13WUHAN WUGAO GUODIAN ELECTROMECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202510165957.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-05-13
Estimated Expiration
2045-02-14

AI Technical Summary

Technical Problem

The existing current transformer test devices lack fast-connected components, which leads to the wires that need to penetrate through the jacks many times during the test process, which is inconvenient to operate, time-consuming and labor-intensive, and it is difficult to meet the requirements of different specifications and quantities of wire harness testing.

Method used

A current transformer testing device is designed, including a front sliding mechanism and a rear sliding mechanism, which can quickly install and disassemble through a longitudinal adjustment mechanism, and automatically locate the wire harness through a wire harness positioning rolling mechanism to realize the ring trajectory movement, adapting to the requirements of different specifications and numbers of wire harness testing.

Benefits of technology

It improves the versatility and efficiency of testing, realizes flexible testing support for current transformers, and has extremely high practical value and promotion prospects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of current transformer testing, and discloses a current transformer testing device which comprises a current transformer body, a threading groove is formed in the middle of the current transformer body and used for allowing one or more strands of wire harnesses to penetrate through for testing, and a testing display device is arranged at the right end of the current transformer body. The top of the current transformer body is provided with a first test power end, the top of the test display device is fixedly provided with a second test power end, a power supply line is connected between the first test power end and the second test power end, and a front sliding mechanism and a rear sliding mechanism are arranged near the left end of the front portion and the rear portion of the current transformer body respectively. The bottoms of the front sliding mechanism and the rear sliding mechanism are slidably connected with a longitudinal adjusting mechanism, and the upper portions of the front sliding mechanism and the rear sliding mechanism are slidably connected with a wiring harness positioning rolling mechanism. The wire harness testing device can meet the testing requirements of wire harnesses of different specifications and numbers, and the testing universality and efficiency are improved.
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Description

Technical Field

[0001] The invention relates to the technical field of current transformer testing, in particular to a current transformer testing device. Background Art

[0002] After the current transformer is produced, its performance must be tested to prevent unqualified products from entering the market. The current transformer test device is used to test the performance of the current transformer. The current transformer has a through hole for inserting the wire and two current output terminals. During the test, the wire is inserted through the through hole, the output terminal is connected to the measuring instrument, the rated current is passed through the wire, and the performance of the current transformer can be known by observing the instrument.

[0003] The test wire in the prior art does not have a quick connection component, and the wire needs to be inserted through the insertion hole many times during the test, which is inconvenient to operate, time-consuming and laborious. It is even more inconvenient if multiple wire harnesses need to be inserted, which affects the test efficiency of the current transformer and is difficult to meet the test requirements of wire harnesses of different specifications and quantities. Therefore, it is necessary to design a corresponding technical solution to solve this problem. Summary of the invention

[0004] 1. Technical issues to be resolved

[0005] In view of the deficiencies of the prior art, the present invention provides a current transformer testing device to solve the technical problems thereof.

[0006] (II) Technical solution

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a current transformer test device, comprising a current transformer body, a wire threading groove is provided in the middle of the current transformer body, the wire threading groove is used to pass one or more wire harnesses for testing, a test display device is provided at the right end of the current transformer body, a test power supply terminal 1 is installed and distributed on the top of the current transformer body, a test power supply terminal 2 is fixedly distributed on the top of the test display device, a power supply line is connected between the test power supply terminal 1 and the test power supply terminal 2, and a base is provided at the bottom of the current transformer body and the test display device;

[0008] A front sliding mechanism and a rear sliding mechanism are respectively provided near the left end of the front and rear parts of the current transformer body, and the front sliding mechanism and the rear sliding mechanism are used to limit the card connection to the left end of the wire threading groove. The bottom of the front sliding mechanism and the rear sliding mechanism are slidably connected with a longitudinal adjustment mechanism, and the longitudinal adjustment mechanism is fixedly arranged at the front and rear ends of the base. The top of the front sliding mechanism and the rear sliding mechanism is slidably connected with a harness positioning rolling mechanism.

[0009] Preferably, mounting gaskets are fixedly provided at the lower ends of the front and rear parts of the current transformer body, mounting bolts are penetrated and connected inside the mounting gaskets, and wiring harness clamps are provided at the front and rear ends of the current transformer body, and the wiring harness clamps are located above the wire threading groove; the mounting gaskets are used to quickly disassemble and assemble the current transformer body to the top of the base, the mounting bolts are used for manual operation, and the cost is low, the base is used for firm support, ensuring the stability of the structure, and the wiring harness clamps are used to effectively prevent the wiring harness from accidentally slipping during the test, thereby enhancing the safety of the test process.

[0010] Preferably, the front sliding mechanism and the rear sliding mechanism both include a half ring, a bracket one, a bottom block and a reinforcing plate, the half ring is a half-circular ring structure and has a slide groove one on the top, the bracket one is fixedly arranged at the middle of the bottom of the half ring, the bottom block is fixedly arranged at the bottom of the bracket one, and the reinforcing plate is fixedly arranged at both ends between the bracket one and the bottom block; the reinforcing plate is used to enhance the structural strength of the bottom block, and the bracket one is used to provide stable downward support, thereby improving the load-bearing capacity and stability of the entire device, and maintaining good performance even under long-term or high-load test conditions.

[0011] Preferably, grooves are provided at both ends of the semi-ring located at the front sliding mechanism, and protrusions are fixedly provided at both ends of the semi-ring located at the rear sliding mechanism, the grooves are semicircular groove structures, and the protrusions are semicircular protrusion structures; the cooperation between the grooves of the semicircular groove structure and the protrusions of the semicircular protrusion structure ensures that the semi-rings between the front sliding mechanism and the rear sliding mechanism are tightly connected, thereby enhancing the stability of the structure and avoiding shaking.

[0012] Preferably, the longitudinal adjustment mechanism comprises a longitudinal plate, a screw, a slide cylinder, a limit plate, a support, a fixing plate and a driving motor 2, a slide groove 3 is opened on the top of the longitudinal plate, the screw is connected to the inside of the slide groove 3 for longitudinal rotation, the driving motor 2 is fixedly arranged on the outer end of the longitudinal plate and the output end is connected to the screw, the slide cylinder is connected to the outside of the screw by a thread, the limit plate is fixedly arranged on the outer upper end of the slide cylinder and is slidably connected to the inside of the slide groove 3; the support is fixedly arranged on the bottom of the longitudinal plate, and a reinforcing plate 1 and a reinforcing plate 2 are respectively fixedly distributed between the front and rear ends of the support and the bottom of the longitudinal plate, the fixing plate is fixedly arranged on the bottom of the support and fixedly arranged on the outer end of the base; the fixing plate is used to fix the supporting support to the outer end of the base, the reinforcing plate 1 and the reinforcing plate 2 are used to fix the longitudinal plate with high strength, the driving motor 2 is used to drive and control the rotation of the screw, the screw is used to drive the slide cylinder to rotate through a thread, and the limit plate is used to assist the slide cylinder to be limited to the internal longitudinal sliding adjustment of the slide groove 3.

[0013] Preferably, the wire harness positioning rolling mechanism includes a top plate and a roller, the top plate is located above the semi-ring, the roller is slidably connected to a slide groove, the interior of the roller is penetrated by an axle cylinder, the interior of the axle cylinder is penetrated by an axle rod, the outer end of the axle rod is provided with a support plate, the support plate is fixedly arranged at the lower end of the top plate, the side end of the axle rod is penetrated by a drive motor, a support plate is fixedly arranged between the drive motor and the lower end of the top plate; the roller is used for limiting the support to move inside the slide groove, the axle cylinder is used for supporting the middle of the axle rod for stability, the support plate is used for supporting the axle rod to the bottom of the top plate, the drive motor is used for driving and controlling the rotation of the axle rod, and the support plate is used for fixing the drive motor to the lower end of the top plate.

[0014] Preferably, an extension plate 1 is fixedly provided at the middle of the inner end of the top plate, and extension plates 2 are fixedly provided on both sides of the outer end of the top plate, and extension shafts are fixedly provided at the bottoms of the extension plates 1 and 2, and limiting cylinders a and limiting cylinders b are fixedly provided at the bottoms of the extension shafts respectively, and the limiting cylinders a and limiting cylinders b are both slidably connected to the inner and outer ends of the semi-ring, and limiting disks are fixedly provided at the bottoms of the limiting cylinders a and limiting cylinders b, and the limiting disks are limited to the lower end surface of the semi-ring; the extension plates 1 and 2 are used to extend the fixed extension shaft toward the outer end of the top plate, and the extension shaft is used to rotate downward to support the limiting cylinder a and limiting cylinder b, and the limiting cylinder a and limiting cylinder b are used to limit the sliding to the inner and outer ends of the semi-ring, and the limiting disk further limits the wiring harness positioning rolling mechanism to the lower end surface of the semi-ring, which is safe and reliable and avoids getting off the track.

[0015] Preferably, a fixed clamp is fixedly provided near the inner end of the top of the top plate, and a movable clamp is slidably connected near the outer end of the top of the top plate, and the inner ends of the fixed clamp and the movable clamp are both provided with wiring harness grooves; a push rod is installed at the bottom of the outer end of the movable clamp, and the outer end of the push rod is connected to an electric push rod device, and a bracket 2 is fixedly provided near the inner end of the outside of the electric push rod device, and the bracket 2 is an L-shaped plate structure installed on the upper end surface of the top plate; the wiring harness groove is used for limiting the position of the wiring harness, so that the fixed clamp and the movable clamp clamp the wiring harness more stably, and the bracket 2 with the L-shaped plate structure is used for installing the electric push rod device to the upper end surface of the top plate, and the electric push rod device and the push rod are used for telescopically adjusting the movable clamp.

[0016] Preferably, a second slide groove is provided near the outer end of the top of the top plate, and a limiting groove is provided at the bottom of the second slide groove; a bottom column is fixedly provided at the bottom of the movable splint, and a slide plate is fixedly provided at the bottom of the bottom column, and the slide plate is slidably connected to the inside of the limiting groove; the double set of bottom columns are used to stably support the movable splint to the top of the slide plate, the second slide groove is used to limit the sliding bottom column, and the limiting groove is used to limit the sliding slide plate.

[0017] Preferably, support plates 2 are fixedly provided at both ends of the bottom of the movable splint, the inner end of the support plate 2 is rotatably connected to a positioning shaft, the inner end of the positioning shaft is rotatably connected to a ball, and the ball is a spherical structure; support plate 2 is used to stably support the rotation of the positioning shaft, the positioning shaft is used to fix the ball supporting the spherical structure, and the ball with the spherical structure is used to contact the upper end surface of the top plate to assist in supporting the movable splint.

[0018] (III) Beneficial effects

[0019] Compared with the prior art, the present invention has the following beneficial effects: through the longitudinal adjustment mechanism slidably connected at the bottom of the front sliding mechanism and the rear sliding mechanism, their relative movement and docking to form a ring can be automatically controlled, which is convenient for quick installation and disassembly; and through the wire harness positioning rolling mechanism slidably connected above the front sliding mechanism and the rear sliding mechanism, it is convenient to automatically position the wire harness to move in a circular trajectory, thereby realizing highly flexible adjustment of the test wire harness, being able to adapt to the testing requirements of wire harnesses of different specifications and quantities, improving the versatility and efficiency of the test, providing strong technical support for the testing work of current transformers, and having extremely high practical value and promotion prospects. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall front upper viewing angle structure of the present invention;

[0021] Figure 2 It is a schematic diagram of the top view structure of the present invention;

[0022] Figure 3 It is a schematic diagram of the overall rear lower viewing angle structure of the present invention;

[0023] Figure 4 It is a schematic diagram of the overall structure of the longitudinal adjustment mechanism and the rear sliding mechanism of the present invention;

[0024] Figure 5 It is a schematic diagram of the longitudinal adjustment mechanism of the present invention;

[0025] Figure 6 It is a schematic diagram of the overall structure of the rear sliding mechanism and the harness positioning rolling mechanism of the present invention from an upper perspective;

[0026] Figure 7 It is a schematic diagram of the overall structure of the rear sliding mechanism and the harness positioning rolling mechanism of the present invention from a bottom perspective;

[0027] Figure 8 It is a schematic diagram of the structure of the wire harness positioning rolling mechanism from the bottom perspective of the present invention;

[0028] Fig. 9 It is a schematic diagram of the wiring harness positioning structure of the present invention;

[0029] Fig.10It is a schematic diagram of the limiting structure of the sliding positioning plate of the present invention;

[0030] Fig.11 It is a schematic diagram of the outer structure of the wiring harness positioning structure of the present invention;

[0031] Fig.12 For the present invention Fig.11 Enlarged structural diagram at A in the middle.

[0032] In the figure, 1, current transformer body; 101, threading groove; 102, installation gasket; 1021, installation bolt; 103, test power supply terminal 1; 11, test display device; 111, test power supply terminal 2; 12, base; 13, power supply line; 14, harness block; 2, front sliding mechanism; 21, groove; 3, rear sliding mechanism; 31, convex block; 32, half ring; 321, slide groove 1; 33, bracket 1; 34, bottom block; 341, reinforcement plate; 4, harness positioning rolling mechanism; 41, top plate; 411, extension plate 1; 412, extension plate 2; 413, slide groove 2; 4131, limit groove; 42, roller; 421, shaft cylinder; 422, shaft Rod; 423, support plate one; 424, drive motor one; 425, support plate; 43, limit tube a; 431, limit tube b; 432, limit plate; 433, extension shaft; 45, fixed clamp; 451, harness groove; 46, movable clamp; 461, bottom column; 462, slide plate; 47, electric push rod device; 471, push rod; 472, bracket two; 48, ball bearing; 481, positioning shaft; 482, support plate two; 5, longitudinal adjustment mechanism; 51, longitudinal plate; 511, slide groove three; 512, lead screw; 513, slide tube; 514, limit plate; 52, pillar; 521, reinforcement plate one; 522, reinforcement plate two; 53, fixed plate; 54, drive motor two. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the 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.

[0034] See also Figure 1-Figure 12The embodiment of the present invention provides a technical solution: a current transformer test device, comprising a current transformer body 1, a wire threading groove 101 is opened in the middle of the current transformer body 1, the wire threading groove 101 is used to pass one or more wire harnesses for testing, a test display device 11 is provided at the right end of the current transformer body 1, a test power supply terminal 103 is installed and distributed on the top of the current transformer body 1, a test power supply terminal 2 111 is fixedly distributed on the top of the test display device 11, a power supply line 13 is connected between the test power supply terminal 103 and the test power supply terminal 2 111, and a base 12 is provided at the bottom of the current transformer body 1 and the test display device 11;

[0035] A front sliding mechanism 2 and a rear sliding mechanism 3 are respectively provided near the left end of the front and rear parts of the current transformer body 1. The front sliding mechanism 2 and the rear sliding mechanism 3 are used to limit the connection to the left end of the wire threading groove 101. The bottom of the front sliding mechanism 2 and the rear sliding mechanism 3 are slidably connected with a longitudinal adjustment mechanism 5. The longitudinal adjustment mechanism 5 is fixedly arranged at the front and rear ends of the base 12. The top of the front sliding mechanism 2 and the rear sliding mechanism 3 is slidably connected with a harness positioning rolling mechanism 4.

[0036] Further improved, the lower ends of the front and rear parts of the current transformer body 1 are fixed with mounting gaskets 102, the interior of the mounting gasket 102 is penetrated and connected with mounting bolts 1021, and the front and rear ends of the current transformer body 1 are provided with wiring harness blocks 14, and the wiring harness blocks 14 are located above the threading groove 101;

[0037] The mounting gasket 102 is used to quickly disassemble and assemble the current transformer body 1 onto the base 12. The mounting bolt 1021 is used for manual operation with low cost. The base 12 is used for stable support to ensure the stability of the structure. The wiring harness block 14 is used to effectively prevent the wiring harness from accidentally slipping during the test, thereby enhancing the safety of the test process.

[0038] Further improved, the front sliding mechanism 2 and the rear sliding mechanism 3 both include a half ring 32, a bracket 33, a bottom block 34 and a reinforcing plate 341, the half ring 32 is a half ring structure and has a slide groove 321 on the top, the bracket 33 is fixedly arranged at the middle of the bottom of the half ring 32, the bottom block 34 is fixedly arranged at the bottom of the bracket 33, and the reinforcing plate 341 is fixedly arranged at both ends between the bracket 33 and the bottom block 34;

[0039] The reinforcing plate 341 is used to enhance the structural strength of the bottom block 34, and the bracket 33 is used to provide downward stable support, thereby improving the bearing capacity and stability of the entire device, and maintaining good performance even under long-term or high-load test conditions.

[0040] As a further improvement, grooves 21 are provided at both ends of the semi-ring 32 of the front sliding mechanism 2, and protrusions 31 are fixedly provided at both ends of the semi-ring 32 of the rear sliding mechanism 3, the grooves 21 are semicircular groove structures, and the protrusions 31 are semicircular protrusion structures;

[0041] The cooperation between the groove 21 of the semicircular groove structure and the protrusion 31 of the semicircular protrusion structure ensures that the semi-ring 32 between the front sliding mechanism 2 and the rear sliding mechanism 3 is tightly connected, thereby enhancing the stability of the structure and avoiding shaking.

[0042] Further improved, the longitudinal adjustment mechanism 5 includes a longitudinal plate 51, a lead screw 512, a slide 513, a limit plate 514, a support 52, a fixed plate 53 and a second drive motor 54. A third slide groove 511 is provided on the top of the longitudinal plate 51. The lead screw 512 is connected to the inside of the third slide groove 511 in a longitudinally rotatable manner. The second drive motor 54 is fixedly arranged at the outer end of the longitudinal plate 51 and the output end is connected to the lead screw 512 through the thread. The slide 513 is connected to the outside of the lead screw 512 through a thread. The limit plate 514 is fixedly arranged at the outer upper end of the slide 513 and is slidably connected to the inside of the third slide groove 511.

[0043] The support column 52 is fixedly arranged at the bottom of the longitudinal plate 51, and a reinforcing plate 1 521 and a reinforcing plate 2 522 are fixedly arranged between the front and rear ends of the support column 52 and the bottom of the longitudinal plate 51, respectively. The fixing plate 53 is fixedly arranged at the bottom of the support column 52 and fixedly arranged at the outer end of the base 12;

[0044] The fixing plate 53 is used to fix the supporting pillar 52 to the outer end of the base 12, the reinforcing plate 1 521 and the reinforcing plate 2 522 are used to fix the longitudinal plate 51 with high strength, the driving motor 2 54 is used to drive and control the rotation of the lead screw 512, the lead screw 512 is used to drive the slide 513 to rotate through a thread, and the limit plate 514 is used to assist the slide 513 to limit the internal longitudinal sliding adjustment of the slide groove 3 511.

[0045] Further improved, the harness positioning rolling mechanism 4 includes a top plate 41 and a roller 42, the top plate 41 is located above the semi-ring 32, the roller 42 is slidably connected to the slide groove 321, the roller 42 is connected to the inside of the roller 42 through the shaft cylinder 421, the shaft cylinder 421 is connected to the inside of the shaft cylinder 422 through the shaft rod 422, the outer end of the shaft rod 422 is provided with a support plate 423, the support plate 423 is fixedly arranged at the lower end of the top plate 41, the side end of the shaft rod 422 is connected to the drive motor 424, and a support plate 425 is fixedly arranged between the drive motor 424 and the lower end of the top plate 41;

[0046] The roller 42 is used to limit the support to move inside the slide groove 321;

[0047] The shaft cylinder 421 is used to support the middle of the shaft rod 422 for stability, the support plate 423 is used to support the shaft rod 422 to the bottom of the top plate 41, the drive motor 424 is used to drive and control the shaft rod 422 to rotate, and the support plate 425 is used to fix the drive motor 424 to the lower end of the top plate 41.

[0048] Further improved, an extension plate 1 411 is fixedly provided at the middle of the inner end of the top plate 41, and extension plates 2 412 are fixedly provided on both sides of the outer end of the top plate 41, and extension shafts 433 are fixedly provided at the bottoms of the extension plates 1 411 and 2 412, and limiting cylinders a43 and limiting cylinders b431 are fixedly provided at the bottoms of the extension shafts 433, respectively, and the limiting cylinders a43 and limiting cylinders b431 are both slidably connected to the inner and outer ends of the semi-ring 32, and limiting disks 432 are fixedly provided at the bottoms of the limiting cylinders a43 and limiting cylinders b431, and the limiting disks 432 are limited to the lower end surface of the semi-ring 32;

[0049] Extension plate 1 411 and extension plate 2 412 are used to extend a fixed extension shaft 433 toward the outer end of the top plate 41. The extension shaft 433 is used to rotate downward to support the limit cylinder a43 and the limit cylinder b431. The limit cylinder a43 and the limit cylinder b431 are used to limit the sliding to the inner and outer ends of the semi-ring 32. The limit plate 432 further limits the wiring harness positioning rolling mechanism 4 to the lower end surface of the semi-ring 32, which is safe and reliable and avoids derailment.

[0050] As a further improvement, a fixed clamping plate 45 is fixedly provided near the inner end of the top of the top plate 41, and a movable clamping plate 46 is slidably connected near the outer end of the top of the top plate 41, and the inner ends of the fixed clamping plate 45 and the movable clamping plate 46 are both provided with a harness groove 451;

[0051] A push rod 471 is installed at the bottom of the outer end of the movable clamping plate 46, and the outer end of the push rod 471 is connected to an electric push rod device 47. A second bracket 472 is fixed near the inner end of the outer part of the electric push rod device 47. The second bracket 472 is an L-shaped plate structure installed on the upper end surface of the top plate 41;

[0052] The wiring harness groove 451 is used to limit and clamp the wiring harness, so that the fixed clamp 45 and the movable clamp 46 clamp the wiring harness more stably. The L-shaped plate structure bracket 472 is used to install the electric push rod device 47 to the upper end surface of the top plate 41. The electric push rod device 47 and the push rod 471 are used to telescopically adjust the movable clamp 46.

[0053] As a further improvement, a second slide groove 413 is provided near the outer end of the top of the top plate 41, and a limiting groove 4131 is provided at the bottom of the second slide groove 413;

[0054] A bottom column 461 is fixedly provided at the bottom of the movable clamping plate 46, a slide plate 462 is fixedly provided at the bottom of the bottom column 461, and the slide plate 462 is slidably connected to the inside of the limiting groove 4131;

[0055] The double-group bottom column 461 is used to stably support the movable clamping plate 46 to the top of the slide plate 462 , the second slide groove 413 is used to limit the sliding bottom column 461 , and the limiting groove 4131 is used to limit the sliding slide plate 462 .

[0056] Specifically, the two ends of the bottom of the movable clamping plate 46 are fixed with a second support plate 482, the inner end of the second support plate 482 is rotatably connected to a positioning shaft 481, and the inner end of the positioning shaft 481 is rotatably connected to a ball 48, and the ball 48 is a spherical structure;

[0057] The second support plate 482 is used to stably support the rotation of the positioning shaft 481 . The positioning shaft 481 is used to fix the ball bearing 48 of the spherical structure. The ball bearing 48 of the spherical structure is used to contact the upper end surface of the top plate 41 to assist in supporting the moving clamping plate 46 .

[0058] Working principle: First, place the current transformer body 1 on the base 12, use the mounting bolt 1021 to pass through the mounting gasket 102 to fasten and install, install the test power terminal 1 103 to the top of the current transformer body 1, and then install it to the upper end of the test display device 11 through the test power terminal 2 111, and supply power through the power supply line 13 for testing, and the results are displayed on the test display device 11;

[0059] Place the end of the test harness between the fixed clamping plate 45 and the movable clamping plate 46 of the harness positioning rolling mechanism 4, start the electric push rod device 47 to automatically control the push rod 471 to extend and retract, and stably clamp it through the harness groove 451;

[0060] Then, the second driving motor 54 is started to automatically control the screw 512 to rotate, and the slide cylinder 513 and the limit plate 514 are controlled to slide at the third slide groove 511 through the action of the thread, thereby driving the front sliding mechanism 2 and the rear sliding mechanism 3 to move relative to each other, and the groove 21 and the protrusion 31 are precisely connected, so that the semi-ring 32 is in a circular ring shape;

[0061] Then, the driving motor 1 424 is started to automatically control the shaft 422 to rotate, so that the roller 42 is limited to move at the slide groove 1 321, and at the same time, it passes through multiple groups of limiting cylinders a43 and limiting cylinders b431 to be limited to the inner and outer ends of the half rings 32 of the front sliding mechanism 2 and the rear sliding mechanism 3 to assist in sliding;

[0062] The automatically positioned wire harness passes through the wire threading groove 101 and moves in a circular track. Wire harnesses of different specifications and quantities are selected according to test requirements, thereby improving the versatility and efficiency of the test.

[0063] The current transformer body of the present invention includes: a wire threading groove 101, a mounting gasket 102, a mounting bolt 1021, a test power supply terminal 103, a test display device 11, a test power supply terminal 2 111, a base 12, a power supply line 13, a harness block 14, a front sliding mechanism 2, a groove 21, a rear sliding mechanism 3, a protrusion 31, a semi-ring 32, a slide groove 1 321, a bracket 1 33, a bottom block 34, a reinforcing plate 341, a harness positioning rolling mechanism 4, a top plate 41, an extension plate 1 411, an extension plate 2 412, a slide groove 2 413, a limit groove 4131, a roller 42, Axis cylinder 421, shaft 422, support plate 1 423, drive motor 1 424, support plate 425, limit cylinder a43, limit cylinder b431, limit plate 432, extension shaft 433, fixed clamping plate 45, harness groove 451, movable clamping plate 46, bottom column 461, slide plate 462, electric push rod device 47, push rod 471, bracket 2 472, ball 48, positioning shaft 481, support plate 2 482, longitudinal adjustment mechanism 5, longitudinal plate 51, slide groove 3 511, screw 512, slide cylinder 513, limit plate 514, pillar 52, reinforcement plate 1 521, reinforcement plate Two 522, fixed plate 53, drive motor two 54, components are universal standard parts or components known to technicians in this field, and their structures and principles can be known to technicians in this field through technical manuals or through conventional experimental methods. The problem solved by the present invention is that the test wire has no quick-connect components, and the wire needs to pass through the insertion hole many times during the test, which is inconvenient to operate, time-consuming and labor-intensive. If multiple wire harnesses need to be inserted, it is even more inconvenient, affecting the test efficiency of the current transformer, and it is difficult to meet the testing requirements of wire harnesses of different specifications and quantities. The present invention combines the above components with each other, and through the longitudinal adjustment mechanism 5 that is slidably connected at the bottom of the front sliding mechanism 2 and the rear sliding mechanism 3, it can automatically control their relative movement and docking to form a ring, which is convenient for rapid installation and disassembly, and through the wire harness positioning rolling mechanism 4 that is slidably connected above the front sliding mechanism 2 and the rear sliding mechanism 3, it is convenient to automatically position the wire harness to move in a circular trajectory, realize highly flexible adjustment of the test wire harness, can adapt to the testing requirements of wire harnesses of different specifications and quantities, improve the versatility and efficiency of the test, provide strong technical support for the testing work of the current transformer, and has extremely high practical value and promotion prospects.

[0064] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the attached claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention. Any figure mark in the claims should not be regarded as limiting the claims involved.

[0065] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A current transformer testing device, comprising a current transformer body (1), characterized in that: A wire threading groove (101) is provided in the middle of the current transformer body (1), a test display device (11) is provided at the right end of the current transformer body (1), a test power supply terminal 1 (103) is installed and distributed on the top of the current transformer body (1), a test power supply terminal 2 (111) is fixedly distributed on the top of the test display device (11), a power supply line (13) is connected between the test power supply terminal 1 (103) and the test power supply terminal 2 (111), and a base (12) is provided at the bottom of the current transformer body (1) and the test display device (11); A front sliding mechanism (2) and a rear sliding mechanism (3) are respectively provided near the left end of the front and rear parts of the current transformer body (1); the front sliding mechanism (2) and the rear sliding mechanism (3) are used to limit and snap-fit ​​to the left end of the wire threading groove (101); the bottoms of the front sliding mechanism (2) and the rear sliding mechanism (3) are slidably connected to a longitudinal adjustment mechanism (5); the longitudinal adjustment mechanism (5) is fixedly arranged at the front and rear ends of the base (12); and the tops of the front sliding mechanism (2) and the rear sliding mechanism (3) are slidably connected to a wire harness positioning rolling mechanism (4).

2. A current transformer testing device according to claim 1, characterized in that: The lower ends of the front and rear parts of the current transformer body (1) are both fixedly provided with mounting gaskets (102), the interior of the mounting gasket (102) is penetrated and connected with mounting bolts (1021), and the front and rear ends of the current transformer body (1) are both provided with wiring harness blocks (14), and the wiring harness blocks (14) are located above the wire threading groove (101).

3. A current transformer testing device according to claim 1, characterized in that: The front sliding mechanism (2) and the rear sliding mechanism (3) both comprise a half ring (32), a bracket (33), a bottom block (34) and a reinforcing plate (341); the half ring (32) is a half-circular ring structure and has a slide groove (321) on the top; the bracket (33) is fixedly arranged at the middle of the bottom of the half ring (32); the bottom block (34) is fixedly arranged at the bottom of the bracket (33); and the reinforcing plate (341) is fixedly arranged at both ends between the bracket (33) and the bottom block (34).

4. A current transformer testing device according to claim 3, characterized in that: Grooves (21) are provided at both ends of the semi-ring (32) of the front sliding mechanism (2), and protrusions (31) are fixedly provided at both ends of the semi-ring (32) of the rear sliding mechanism (3), wherein the grooves (21) are semicircular groove structures, and the protrusions (31) are semicircular protrusion structures.

5. A current transformer testing device according to claim 1, characterized in that: The longitudinal adjustment mechanism (5) comprises a longitudinal plate (51), a lead screw (512), a slide cylinder (513), a limit plate (514), a support column (52), a fixed plate (53) and a second drive motor (54); a third slide groove (511) is provided on the top of the longitudinal plate (51); the lead screw (512) is connected to the inside of the third slide groove (511) in a longitudinally rotatable manner; the second drive motor (54) is fixed to the outer end of the longitudinal plate (51) and the output end is connected to the lead screw (512); the slide cylinder (513) is connected to the outside of the lead screw (512) by a thread; the limit plate (514) is fixed to the outer upper end of the slide cylinder (513) and is slidably connected to the inside of the third slide groove (511); The support (52) is fixedly arranged at the bottom of the longitudinal plate (51), and a reinforcing plate 1 (521) and a reinforcing plate 2 (522) are respectively fixedly arranged between the front and rear ends of the support (52) and the bottom of the longitudinal plate (51), and the fixing plate (53) is fixedly arranged at the bottom of the support (52) and fixedly arranged at the outer end of the base (12).

6. A current transformer testing device according to claim 1, characterized in that: The wire harness positioning rolling mechanism (4) comprises a top plate (41) and a roller (42), wherein the top plate (41) is located above the semi-ring (32), the roller (42) is slidably connected to a slide groove (321), a shaft cylinder (421) is connected through the inside of the roller (42), a shaft rod (422) is connected through the inside of the shaft cylinder (421), a support plate (423) is provided at the outer end of the shaft rod (422), the support plate (423) is fixedly arranged at the lower end of the top plate (41), a drive motor (424) is connected through the side end of the shaft rod (422), and a support plate (425) is fixedly arranged between the drive motor (424) and the lower end of the top plate (41).

7. A current transformer testing device according to claim 6, characterized in that: An extension plate 1 (411) is fixedly provided at the middle of the inner end of the top plate (41), and extension plates 2 (412) are fixedly provided on both sides of the outer end of the top plate (41). An extension shaft (433) is fixedly provided at the bottom of the extension plate 1 (411) and the extension plate 2 (412), and a limiting cylinder a (43) and a limiting cylinder b (431) are fixedly provided at the bottom of the extension shaft (433), respectively. The limiting cylinder a (43) and the limiting cylinder b (431) are both slidably connected to the inner and outer ends of the semi-ring (32), and a limiting disk (432) is fixedly provided at the bottom of the limiting cylinder a (43) and the limiting cylinder b (431), and the limiting disk (432) is limited to the lower end surface of the semi-ring (32).

8. A current transformer testing device according to claim 7, characterized in that: A fixed clamping plate (45) is fixedly provided near the inner end of the top of the top plate (41), and a movable clamping plate (46) is slidably connected near the outer end of the top of the top plate (41), and the inner ends of the fixed clamping plate (45) and the movable clamping plate (46) are both provided with a harness groove (451); A push rod (471) is installed at the bottom of the outer end of the movable clamping plate (46), and the outer end of the push rod (471) is connected to an electric push rod device (47). A bracket 2 (472) is fixedly provided near the inner end of the outer part of the electric push rod device (47), and the bracket 2 (472) is an L-shaped plate structure installed on the upper end surface of the top plate (41).

9. A current transformer testing device according to claim 8, characterized in that: A second slide groove (413) is provided near the outer end of the top of the top plate (41), and a limiting groove (4131) is provided at the bottom of the second slide groove (413); A bottom column (461) is fixedly provided at the bottom of the movable clamping plate (46), a slide plate (462) is fixedly provided at the bottom of the bottom column (461), and the slide plate (462) is slidably connected to the inside of the limiting groove (4131).

10. A current transformer testing device according to claim 9, characterized in that: A second support plate (482) is fixedly provided at both ends of the bottom of the movable clamping plate (46); the inner end of the second support plate (482) is rotatably connected to a positioning shaft (481); the inner end of the positioning shaft (481) is rotatably connected to a ball (48); and the ball (48) is a spherical structure.

Citation Information

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