A hardware device field visualization self-checking system and method thereof

By using the fixed and auxiliary components in the self-test box and the motor and electromagnet system to stabilize the self-test equipment, the instability problem caused by collision during hardware self-test is solved, the accuracy of data collection and the integrity of self-test results are achieved, and the needs of staff of different heights are met. It also provides real-time visual self-test results and abnormal prompts.

CN119572880BActive Publication Date: 2025-10-24GOLDEN (ZHEJIANG) INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202411605272.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-10-24
Estimated Expiration
2044-11-12

AI Technical Summary

Technical Problem

When existing hardware equipment performs on-site visual self-inspection, the self-inspection equipment is easily affected by collisions with the workbench, causing shaking and instability, affecting the stability of sensor connections and the accuracy of data collection, resulting in damage to the integrity of the self-inspection results.

Method used

Using fixed components and auxiliary components in the self-inspection box, and using forward and reverse motors to drive the rotating shaft and gear system, the suction cup is driven to be fastened to the work surface, and negative pressure adsorption is released by electromagnets to ensure the stability and height adjustment of the self-inspection equipment. Combined with the data acquisition and processing module, the self-inspection results are displayed in real time.

Benefits of technology

It improves the stability of the self-inspection equipment during collisions, ensures the accuracy and completeness of data collection, adapts to the needs of workers of different heights, and provides visual self-inspection results and abnormal prompts.

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Abstract

The application discloses a kind of hardware equipment's field visualization self-checking system, it is related to hardware equipment self-checking technical field, including self-checking box, the inside of self-checking box is provided with self-checking component.The application uses, start positive and negative motor, drive right side's pivot, adjusting gear roller and driving gear anticlockwise rotation, drive driven gear, rotating lever and auxiliary gear anticlockwise rotation by chain, further drive left side's adjusting gear roller clockwise rotation, so that first tooth bar moves downward, through sliding block and limit slide rod drive suction disc to pass through movable hole and contact with workbench surface, while second tooth bar moves upward, self-checking component is lifted upward, then first tooth bar generates pressure on pressing block, so as to extrude suction disc, so that suction disc inside generates negative pressure, so that suction disc is tightly adsorbed on workbench surface, increase the firmness when self-checking box is placed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of hardware device self-checking, in particular to a hardware device on-site visual self-checking system and method thereof. BACKGROUND

[0002] Hardware device refers to the general term of various physical devices composed of electronic, mechanical and optoelectronic elements in computer system. In a broader sense, hardware device can also include various electronic devices, mechanical devices, electrical devices, etc. In order to ensure the normal operation of hardware device, self-checking of hardware device is needed, through which faults or potential problems existing in hardware device can be found in time, so as to ensure that the device can operate normally in use process and avoid serious consequences such as production stagnation and data loss caused by device failure. On-site visual self-checking can quickly locate the problem, so that maintenance personnel can more targetedly carry out maintenance and maintenance, improve maintenance efficiency and reduce maintenance cost.

[0003] In the prior art, when the on-site visual self-checking device of hardware device carries out self-checking on hardware device, the self-checking device needs to be placed on the table top, and then the corresponding sensor and the like are installed on the hardware device to facilitate subsequent data collection. When the workbench is accidentally collided, the self-checking device will shake unstably, which can easily cause unstable connection between the sensor and the self-checking device, thereby affecting the accuracy of data collection, and also easily cause interruption of data in transmission, thereby affecting the integrity of self-checking result.

[0004] Therefore, the present application provides an on-site visual self-checking system of hardware device to solve the problems in the background art. SUMMARY

[0005] The present application aims to provide an on-site visual self-checking system of hardware device to solve the problems in the background art that when the hardware device is self-checked, the self-checking device needs to be placed on the table top, and when the workbench is accidentally collided, the self-checking device will shake unstably, which can easily cause unstable connection between the sensor and the self-checking device, thereby affecting the accuracy of data collection, and also easily cause interruption of data in transmission, thereby affecting the integrity of self-checking result.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an on-site visual self-checking system of hardware device, comprising a self-checking box, a self-checking assembly is arranged in the self-checking box, a fixing assembly is arranged at the bottom of the self-checking assembly, and an auxiliary assembly is arranged in the self-checking box.

[0007] The self-checking assembly comprises a self-checking table, a power supply groove is formed in one side outer surface of the self-checking table, a power supply module is installed in the power supply groove through screws, an adjusting plate is arranged at the top of the self-checking table close to the other side, and a display is arranged in the adjusting plate.

[0008] The fixed assembly comprises two rotating shafts, the outer surfaces of the two rotating shafts are fixedly installed with adjusting gear rollers, the outer surfaces of the two adjusting gear rollers are meshingly connected with two first toothed rods, the interiors of the four first toothed rods are movably embedded with sliding blocks, the bottoms of the four sliding blocks are fixedly installed with limiting sliding rods, the bottom ends of the four limiting sliding rods are fixedly installed with suction cups, the outer surfaces of the four suction cups near the top are fixedly installed with pressing blocks, the outer surfaces of the four suction cups near the bottom are fixedly connected with push plates, the interiors of the four push plates are provided with magnets, and the bottom ends of the four first toothed rods are provided with limiting holes.

[0009] Preferably, a data acquisition module is arranged on the bottom of the self-checking table near the rear wall, a data processing module is arranged on the bottom of the self-checking table near the data acquisition module, a wireless module is arranged on the bottom of the self-checking table near the data processing module, and an alarm module is arranged on the bottom of the self-checking table near the front wall.

[0010] Preferably, a rotating block is fixedly installed on the front surface of the adjusting plate, a first connecting rod is movably embedded in the interior of the rotating block, first fixed blocks are fixedly installed at the two ends of the first connecting rod, the bottoms of the two first fixed blocks are fixedly installed on the top of the self-checking table near the front surface, and a plurality of top grooves are equidistantly formed in the bottom of the adjusting plate.

[0011] Preferably, two second fixed blocks are fixedly installed on the rear wall of the self-checking table, a second connecting rod is fixedly installed on the opposite side of the two second fixed blocks, a top plate is movably sleeved on the outer surface of the second connecting rod, a supporting table is arranged on the bottom of the top plate, and the bottom of the supporting table is fixedly installed on the bottom of the self-checking table.

[0012] Preferably, the outer surfaces of the four limiting sliding rods are movably embedded in the interiors of the four limiting holes, the bottom of the self-checking box is provided with four movable holes, the outer surface of one end of one of the rotating shafts is fixedly installed with a driving gear, the outer surface of the driving gear is meshingly connected with a chain, a forward and reverse motor is installed on the inner wall of the self-checking box through an auxiliary plate, and the output end of the forward and reverse motor is fixedly connected with one end of one of the rotating shafts.

[0013] Preferably, a driven gear is meshingly connected in the interior of the chain, a rotating rod is fixedly installed in the interior of the driven gear, an auxiliary gear is fixedly installed at one end of the rotating rod, the outer surface of the auxiliary gear is meshed with the outer surface of one of the adjusting gear rollers, the outer surface of the rotating rod is movably sleeved with a supporting seat, the bottom of the supporting seat is fixedly installed on the bottom of the interior of the self-checking box, the outer surface of the driven gear is movably embedded in the interior of the supporting seat, and one end of the other rotating shaft is movably embedded in the rear wall of the interior of the self-checking box.

[0014] Preferably, the outer surfaces of the two adjusting gear rollers are connected with two second tooth rods, the top ends of the four second tooth rods are fixedly installed on the bottom of the self-checking table, eight limiting rods are fixedly installed on the bottom of the self-checking box, every two limiting rods in the vertical direction form a group, the outer surfaces of the two groups of limiting rods are movably sleeved with first connecting plates, and the outer surfaces of the other two groups of limiting rods are movably sleeved with second connecting plates.

[0015] Preferably, the outer surfaces of the four first tooth rods are fixedly installed in the interiors of the two first connecting plates respectively, the outer surfaces of the four second tooth rods are fixedly installed in the interiors of the two second connecting plates respectively, the top ends of the four first tooth rods and the top ends of the eight limiting rods are in contact with the bottom of the self-checking table, the other ends of the two rotating shafts are movably embedded in the front wall of the self-checking box, and the top of the self-checking box is provided with a box cover through hand-tightening bolts.

[0016] Preferably, the auxiliary assembly comprises an electric push rod, the top end of the electric push rod is fixedly installed with a lifting plate, the bottom of the lifting plate is fixedly installed with four lifting rods, the bottoms of the four lifting rods are provided with electromagnets, the bottom of the self-checking box is fixedly installed with four fixed rods, the top ends of the four fixed rods are movably embedded in the top of the lifting plate, the top ends of the four fixed rods are fixedly installed with storage boxes, and the bottom end of the electric push rod is fixedly installed on the bottom of the self-checking box.

[0017] A use method of a hardware device on-site visual self-checking system, comprising the following steps:

[0018] S1, start the positive and negative motor to drive the right rotating shaft, the adjusting gear roller and the driving gear to rotate counterclockwise, drive the driven gear, the rotating rod and the auxiliary gear to rotate counterclockwise through the chain, and further drive the left adjusting gear roller to rotate clockwise, so that the first tooth rod moves downward, and the suction cup is driven by the sliding block and the limiting sliding rod to pass through the movable hole and contact the workbench surface;

[0019] S2, at the same time, the second tooth rod moves upward, the self-checking assembly is lifted upward, then the first tooth rod generates pressure on the pressing block, so as to extrude the suction cup, so that the suction cup generates negative pressure inside, and the suction cup is tightly adsorbed on the workbench surface;

[0020] S3, start the positive and negative motor again to drive the right rotating shaft to rotate clockwise, so that the left rotating shaft rotates counterclockwise, thereby driving the four second tooth rods to move downward, and then driving the self-checking assembly to move downward to reduce the height;

[0021] S4, rotate the angle of the adjusting plate, then lift the top plate to the corresponding position of the top groove, run the self-checking software, the data acquisition module is responsible for collecting and arranging various data collected by various sensors and transmitting them to the data processing module for analysis and processing, and the display shows the visual information of the self-checking result to the staff, when an abnormality is found, the alarm module will trigger the warning light to prompt;

[0022] S5, start the electric push rod, pull the lifting plate to move downward, so that the lifting rod moves through the movable hole to the above the dial piece, then start the four electromagnets, so that the magnet and the electromagnet are adsorbed together, then the electric push rod pushes the lifting plate to move upward, drives the dial piece to move upward, so that the connection between the suction cup and the dial piece is lifted, the external air enters the suction cup, and the negative pressure state is eliminated;

[0023] S6, then the electromagnet is powered off, the magnet and the electromagnet are separated, the electric push rod drives the lifting rod and the electromagnet to reset, and the forward and reverse motor is started again, and through the reverse rotation of the output end, the self-checking assembly and the suction cup are reset.

[0024] Compared with the prior art, the beneficial effects of the present application are:

[0025] 1、The present application is used, the forward and reverse motor is started, the right shaft, the adjusting gear roller and the driving gear are counterclockwise rotated, the driven gear, the rotating rod and the auxiliary gear are counterclockwise rotated through the chain, and the left adjusting gear roller is further counterclockwise rotated, so that the first toothed rod moves downward, the suction cup is driven to pass through the movable hole and contact the workbench through the sliding block and the limiting sliding rod, and the second toothed rod moves upward, the self-checking assembly is lifted upward, then the first toothed rod generates pressure on the pressing block, so that the suction cup is extruded, negative pressure is generated in the suction cup, the suction cup is tightly adsorbed on the workbench, the stability of the self-checking box is increased when the self-checking box is placed, and the stability is improved, so that the self-checking equipment can remain stable even if the workbench is collided, the connection stability is ensured, and the accuracy of data acquisition is ensured.

[0026] 2、The present application is used, the forward and reverse motor is started again, the right shaft is clockwise rotated, so that the left shaft is counterclockwise rotated, thereby driving the four second toothed rods to move downward, then driving the self-checking assembly to move downward, the height is reduced, under the action of the fixing assembly, not only the stability of the self-checking box can be increased, but also the height of the self-checking assembly can be adjusted, the needs of different height staffs can be met, and more flexibility is achieved.

[0027] 3、The present application is used, the staff according to demand, the angle of adjusting plate is rotated, then the top plate is lifted and is clamped into the top groove of corresponding position, the self-checking software is run, various sensor detection hardware equipment various information is detected, data acquisition module is responsible for the various data of various sensors collected are collected and are arranged, and are transmitted to data processing module and are analyzed and are handled, the state of hardware equipment is judged, the visual information of self-checking result is shown to the staff through display, including the real-time change and historical curve of temperature, voltage, current etc. Data, real-time state, historical trend and any exception can be intuitively presented, when finding exception, alarm module is triggered, and the prompt light is triggered to prompt.

[0028] 4、The present application is used, the electric push rod is started, the lifting plate is pulled and is moved downwards, so that the lifting rod moves to the above of the dial piece through the movable hole, then four electromagnets are started, so that the magnet and the electromagnet are adsorbed together, then the electric push rod pushes the lifting plate and moves upwards, drives the dial piece to move upwards, so that the connecting place of the suction cup and the dial piece is lifted, the external air enters the suction cup, eliminates the negative pressure state, then the electromagnet is powered off, the magnet and the electromagnet are separated, then the electric push rod restores work, drives the lifting rod and the electromagnet to reset, the forward and reverse motor is started again, through the reverse rotation of the output end, so that the self-checking assembly and the suction cup reset, avoid the suction cup always remaining in the bottom of the self-checking box, accidentally damaged, affect the firmness of subsequent adsorption. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a front view perspective view of the hardware equipment's on-site visual self-checking system of the application;

[0030] Figure 2 It is a structure section view development perspective view of the hardware equipment's on-site visual self-checking system of the application;

[0031] Figure 3 It is a structure section view development schematic view of the self-checking box in the hardware equipment's on-site visual self-checking system of the application;

[0032] Figure 4 It is a structure development schematic view of the self-checking assembly in the hardware equipment's on-site visual self-checking system of the application;

[0033] Figure 5 It is a structure development schematic view of the adjusting plate in the hardware equipment's on-site visual self-checking system of the application;

[0034] Figure 6 It is a structure development schematic view of the auxiliary assembly in the hardware equipment's on-site visual self-checking system of the application;

[0035] Figure 7It is a structure section view development schematic diagram of the first toothed rod in the on-site visual self-checking system of the hardware equipment;

[0036] Figure 8 It is a structure section view development schematic diagram of the fixed assembly in the on-site visual self-checking system of the hardware equipment;

[0037] Figure 9 It is a structure section view development schematic diagram of the chain in the on-site visual self-checking system of the hardware equipment;

[0038] Figure 10 It is a structure development schematic diagram of the driving gear in the on-site visual self-checking system of the hardware equipment;

[0039] Figure 11 It is a structure section view development schematic diagram of the support seat in the on-site visual self-checking system of the hardware equipment;

[0040] Figure 12 It is a structure development schematic diagram of the adjusting gear roller in the on-site visual self-checking system of the hardware equipment.

[0041] In the figure:

[0042] 1, self-checking box; 2, box cover; 3, self-checking assembly; 301, self-checking table; 302, power supply groove; 303, power supply module; 304, adjusting plate; 305, display; 306, rotating block; 307, first connecting rod; 308, first fixed block; 309, alarm module; 310, wireless module; 311, data acquisition module; 312, data processing module; 313, second fixed block; 314, second connecting rod; 315, top plate; 316, support table; 317, top groove; 4, fixed assembly; 401, rotating shaft; 402, adjusting gear roller; 403, second toothed rod; 404, first toothed rod; 405, limiting rod; 406, first connecting plate; 407, second connecting plate; 408, limiting hole; 409, sliding block; 410, limiting sliding rod; 411, suction cup; 412, pressing block; 413, push piece; 414, magnet; 415, reversible motor; 416, driving gear; 417, chain; 418, driven gear; 419, rotating rod; 420, auxiliary gear; 421, support seat; 5, auxiliary assembly; 501, electric push rod; 502, lifting plate; 503, lifting rod; 504, electromagnet; 6, movable hole; 7, fixed rod; 8, storage box. DETAILED DESCRIPTION

[0043] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative effort shall fall within the scope of the present application.

[0044] Embodiment one: please refer to Figures 1-12As shown, the present application provides a technical scheme: a kind of hardware equipment's field visualization self-checking system, including self-checking box 1, the inside of self-checking box 1 is provided with self-checking component 3, the bottom of self-checking component 3 is provided with fixed component 4, the inside of self-checking box 1 is provided with auxiliary component 5;Self-checking component 3 includes self-checking table 301, the outer surface of one side of self-checking table 301 is opened with power supply groove 302, power supply module 303 is installed in the inside of power supply groove 302 by screw, the top of self-checking table 301 is close to the place of another side and is provided with adjusting plate 304, the inside of adjusting plate 304 is provided with display 305;The fixed assembly 4 comprises two rotating shafts 401, the outer surfaces of the two rotating shafts 401 are fixedly installed with adjusting gear rollers 402, the outer surfaces of the two adjusting gear rollers 402 are meshedly connected with two first toothed rods 404, the interiors of the four first toothed rods 404 are movably embedded with sliding blocks 409, the bottoms of the four sliding blocks 409 are fixedly installed with limiting sliding rods 410, the bottom ends of the four limiting sliding rods 410 are fixedly installed with suction discs 411, the outer surfaces of the four suction discs 411 near the top portions are fixedly installed with pressing blocks 412, the outer surfaces of the four suction discs 411 near the bottom portions are fixedly connected with push plates 413, the interiors of the four push plates 413 are provided with magnets 414, the bottom ends of the four first toothed rods 404 are provided with limiting holes 408, the outer surfaces of the four limiting sliding rods 410 are movably embedded in the interiors of the four limiting holes 408, four movable holes 6 are formed in the bottom of the self-checking box 1, the outer surface of one end of one of the rotating shafts 401 is fixedly installed with a driving gear 416, the outer surface of the driving gear 416 is meshedly connected with a chain 417, a forward-reverse motor 415 is installed on the inner wall of the self-checking box 1 through an auxiliary plate, the output end of the forward-reverse motor 415 is fixedly connected with one end of one of the rotating shafts 401, the interior of the chain 417 is meshedly connected with a driven gear 418, the interior of the driven gear 418 is fixedly installed with a rotating rod 419, one end of the rotating rod 419 is fixedly installed with an auxiliary gear 420, the outer surface of the auxiliary gear 420 is meshed with the outer surface of one of the adjusting gear rollers 402, the outer surface of the rotating rod 419 movably sleeves a supporting seat 421, the bottom of the supporting seat 421 is fixedly installed on the bottom surface in the self-checking box 1, the outer surface of the driven gear 418 movably sleeves in the interior of the supporting seat 421, one end of the other rotating shaft 401 movably sleeves in the rear surface wall in the self-checking box 1, the outer surfaces of the two adjusting gear rollers 402 are meshedly connected with two second toothed rods 403, the top ends of the four second toothed rods 403 are fixedly installed on the bottom of the self-checking table 301, eight limiting rods 405 are fixedly installed on the bottom surface in the self-checking box 1, every two limiting rods 405 in the vertical direction form a group, the outer surfaces of the two groups of limiting rods 405 movably sleeve a first connecting plate 406, the outer surfaces of the other two groups of limiting rods 405 movably sleeve a second connecting plate 407, the outer surfaces of the four first toothed rods 404 are fixedly installed in the interiors of the two first connecting plates 406, the outer surfaces of the four second toothed rods 403 are fixedly installed in the interiors of the two second connecting plates 407, the top ends of the four first toothed rods 404 and the top ends of the eight limiting rods 405 are in contact with the bottom of the self-checking table 301, the other ends of the two rotating shafts 401 movably sleeve in the front surface wall in the self-checking box 1, the top of the self-checking box 1 is installed with a box cover 2 through hand screws.

[0045] In this embodiment, in use, the power supply module 303 is electrically connected between the positive and negative motor 415, and other devices are powered through the power supply module 303. Place the self-check box 1 on the workbench, tighten the four hand screws, remove the box cover 2, start the positive and negative motor 415, and drive the right shaft 401 to rotate counterclockwise through the output end of the positive and negative motor 415, and drive the right side adjustment gear roller 402 and the driving gear 416 to rotate counterclockwise, and drive the driven gear 418 to rotate counterclockwise through the counterclockwise rotating chain 417, and drive the auxiliary gear 420 to rotate counterclockwise through the rotating rod 419, and further drive the left side adjustment gear roller 402 to rotate clockwise, so that the four first tooth bars 404 on the left and right sides move downward together, and the four second tooth bars 403 move upward, and the self-check assembly 3 is lifted upward, facilitating subsequent taking of the sensors in the storage box 8. When the four first tooth bars 404 move downward, the four sliders 409 and the four limit sliding rods 410 move downward together, and the four suction cups 411 move downward through the corresponding movable holes 6 and contact the workbench surface, and the first tooth bars 404 continue to move downward on the outer surface of the limit sliding rod 410, then pass through the movable hole 6 and contact the pressing block 412, and generate pressure on the pressing block 412, thereby extruding the suction cup 411 and discharging the air between the suction cup 411 and the workbench surface, so that a negative pressure is generated inside the suction cup 411. When the positive and negative motor 415 is automatically turned off, the four suction cups 411 are tightly attached to the workbench surface, increasing the firmness of the self-check box 1 when placed, thereby improving its stability, so that even if the workbench is bumped, the self-check device can remain stable, ensuring stable connection and ensuring the accuracy of data collection. When the self-check device is placed on the workbench, it is not stable and is easily affected by the accuracy of data collection, and the data in transmission is also interrupted, thereby affecting the integrity of the self-check result. Different workers have different heights and use habits. When the self-check assembly 3 is completely raised, it does not meet the needs of the workers. When the workers need to lower the height of the self-check assembly 3, the positive and negative motor 415 is started again. At this time, the output end of the positive and negative motor 415 will rotate in the opposite direction, that is, the right shaft 401 will rotate clockwise, and the left shaft 401 will rotate counterclockwise, thereby driving the four second tooth bars 403 to move downward, then driving the self-check assembly 3 to move downward to reduce the height, while the four first tooth bars 404 move upward on the outer surface of the limit sliding rod 410 without affecting the suction of the suction cup 411. When the height of the self-check assembly 3 meets the requirements, the positive and negative motor 415 can be turned off. Under the action of the fixing assembly 4, not only can the stability of the self-check box 1 be increased, but also the height of the self-check assembly 3 can be adjusted to meet the needs of workers of different heights, and it is more flexible.

[0046] Embodiment two: Figures 2-5As shown, the self-checking assembly 3 comprises a self-checking table 301, one side of the self-checking table 301 is provided with a power supply groove 302, the inside of the power supply groove 302 is provided with a power supply module 303 through screws, the top of the self-checking table 301 is provided with an adjusting plate 304 near the other side, the inside of the adjusting plate 304 is provided with a display 305, the bottom of the inside of the self-checking table 301 is provided with a data acquisition module 311 near the back wall, the bottom of the inside of the self-checking table 301 is provided with a data processing module 312 near the data acquisition module 311, the bottom of the inside of the self-checking table 301 is provided with a wireless module 310 near the data processing module 312, the bottom of the inside of the self-checking table 301 is provided with an alarm module 309 near the front wall, the front surface of the adjusting plate 304 is fixedly provided with a rotating block 306, the inside of the rotating block 306 is movably provided with a first connecting rod 307, both ends of the first connecting rod 307 are fixedly provided with a first fixed block 308, the bottom of the two first fixed blocks 308 is fixedly provided on the top of the self-checking table 301 near the front surface, a plurality of top grooves 317 are equidistantly provided on the bottom of the adjusting plate 304, the back wall of the inside of the self-checking table 301 is fixedly provided with two second fixed blocks 313, the opposite side of the two second fixed blocks 313 is fixedly provided with a second connecting rod 314, the outer surface of the second connecting rod 314 is movably provided with a top plate 315, the bottom of the top plate 315 is provided with a supporting table 316, and the bottom of the supporting table 316 is fixedly provided on the bottom of the inside of the self-checking table 301.

[0047] In use, the display 305, the alarm module 309, the wireless module 310, the data acquisition module 311, the data processing module 312 and the power supply module 303 are electrically connected, wireless data transmission and remote access can be realized through the wireless module 310, and the top of the self-checking table 301 is further provided with control buttons and prompt lights. Figure 4As shown, the storage box 8 inside placed for hardware device detection of various sensors, such as temperature sensor, current sensor, voltage sensor, through the fixed assembly 4 makes the self-checking assembly 3 upward movement, while the suction cup 411 moves down and is adsorbed on the workbench, the self-checking box 1 is fixed, improves its firmness when placing, then take out the various sensors in the storage box 8, and install various sensors on the key parts of hardware equipment, ensure that the required parameters can be monitored, lift the adjusting plate 304, the staff according to the demand, rotate the angle of adjusting plate 304, then lift the top plate 315 and clamp into the corresponding position of the top groove 317, run the self-checking software, through various sensors to detect the information of hardware equipment, data acquisition module 311 is responsible for collecting and sorting the various data collected by various sensors, and transmits to data processing module 312, analyzes and processes the collected data, judges the state of hardware equipment, through the visual interface of the display 305 to show the visual information of the self-checking result to the staff, including temperature, voltage, current and other data real-time change and historical curve, real-time state, historical trend and any abnormal will be intuitively presented, when found abnormal, will trigger the alarm module 309, the alarm module 309 triggers the prompt light to prompt.

[0048] As shown in Figure 2 , Figure 6 and Figures 8-9 , the inside of the self-checking box 1 is provided with a self-checking assembly 3, the bottom of the self-checking assembly 3 is provided with a fixed assembly 4, the inside of the self-checking box 1 is provided with an auxiliary assembly 5, four movable holes 6 are formed in the bottom of the self-checking box 1, the auxiliary assembly 5 includes an electric push rod 501, the top end of the electric push rod 501 is fixedly installed with a lifting plate 502, the bottom of the lifting plate 502 is fixedly installed with four lifting rods 503, the bottom of each of the four lifting rods 503 is provided with an electromagnet 504, the bottom surface in the inside of the self-checking box 1 is fixedly installed with four fixed rods 7, the top end of each of the four fixed rods 7 movably penetrates to the top of the lifting plate 502, the top end of each of the four fixed rods 7 is fixedly installed with a storage box 8, the bottom end of the electric push rod 501 is fixedly installed on the bottom surface in the inside of the self-checking box 1.

[0049] In this embodiment, in use, the electrical connection between the electric push rod 501, electromagnet 504 and power supply module 303, when the hardware device completes the on-site visual self-check, start the electric push rod 501, pull the pull plate 502 to move down, so that the four pull rods 503 move through the movable hole 6 to above the paddle 413, then start the four electromagnets 504, the magnetism of the electromagnet 504 is opposite to that of the magnet 414, after the electromagnet 504 is powered on, it generates attractive magnetism, so that the magnet 414 and the electromagnet 504 are adsorbed together, then the output end of the electric push rod 501 moves up a distance, pushes the pull plate 502 to move up, drives the pull rod 503, electromagnet 504 and magnet 414 to move up together, further drives the paddle 413 to move up, so that the connection between the suction cup 411 and the paddle 413 is lifted, the external air enters the suction cup 411, eliminating the negative pressure state, so that the adsorption force between the suction cup 411 and the workbench disappears, then the electric push rod 501 automatically pauses for a while, and the electromagnet 504 is powered off, the magnet 414 and the electromagnet 504 are separated, the paddle 413 returns to the original position, then the electric push rod 501 resumes work, continues to push the pull plate 502 to move up, drives the pull rod 503 and the electromagnet 504 to reset, then start the reversible motor 415 again, through the reverse rotation of its output end, drives the first gear rod 404 to move up, the second gear rod 403 to move down, further drives the sliding block 409 and the limiting sliding rod 410 to move up, when the reversible motor 415 is automatically turned off, the self-checking assembly 3 is reset, the suction cup 411 moves to the inside of the self-checking box 1 to reset, avoids the suction cup 411 always staying at the bottom of the self-checking box 1, accidentally damaged, affects the firmness of subsequent adsorption.

[0050] The working principle and use method of the present application are as follows: the right rotating shaft 401 is driven to rotate counterclockwise by the output end of the reversible motor 415, and the right adjusting gear roller 402 and the driving gear 416 are driven to rotate counterclockwise, the driven gear 418 is driven to rotate counterclockwise by the counterclockwise rotating chain 417, the auxiliary gear 420 is driven to rotate counterclockwise by the rotating rod 419, and the left adjusting gear roller 402 is further driven to rotate clockwise, so that the four first toothed rods 404 on the left and right sides move downward together, and the four second toothed rods 403 move upward, the self-checking assembly 3 is lifted upward, the sensor in the storage box 8 is convenient to take, when the four first toothed rods 404 move downward, the four sliders 409 and the four limiting slide rods 410 move downward together, and the four suction cups 411 move downward and contact the workbench surface through the corresponding movable holes 6, and the first toothed rods 404 continue to move downward on the outer surface of the limiting slide rods 410, then contact the pressing block 412 through the movable hole 6, and generate pressure on the pressing block 412, so as to extrude the suction cup 411, discharge the air between the suction cup 411 and the workbench surface, generate negative pressure in the suction cup 411, when the reversible motor 415 is automatically turned off, the four suction cups 411 are tightly adsorbed on the workbench surface, the stability of the self-checking box 1 is increased when placed, so as to improve the stability, even if the workbench is collided, the self-checking device can remain stable, the connection is stable, and the accuracy of data acquisition is guaranteed, the reversible motor 415 is started again, the output end of the reversible motor 415 reversely rotates, that is, the right rotating shaft 401 rotates clockwise, and the left rotating shaft 401 rotates counterclockwise, so as to drive the four second toothed rods 403 to move downward, then drive the self-checking assembly 3 to move downward and reduce the height, and the four first toothed rods 404 move upward on the outer surface of the limiting slide rods 410 without affecting the adsorption of the suction cup 411, when the height of the self-checking assembly 3 meets the requirement, the reversible motor 415 is turned off, under the action of the fixing assembly 4, not only the stability of the self-checking box 1 can be increased, but also the height of the self-checking assembly 3 can be adjusted to adapt to the requirements of workers of different heights, the adjusting plate 304 is lifted, the worker rotates the angle of the adjusting plate 304 according to the requirement, then lifts the top plate 315 and clamps it into the corresponding top groove 317, runs the self-checking software, detects various information of the hardware device through various sensors, the data acquisition module 311 is responsible for collecting and arranging various data collected by each sensor and transmitting the data to the data processing module 312, analyzes and processes the collected data to judge the state of the hardware device, and displays the visual information of the self-checking result to the worker through the visual interface of the display 305, including the real-time change and historical curve of temperature, voltage, current and other data, real-time state, historical trend and any abnormality are intuitively presented, when an abnormality is found, the alarm module 309 is triggered to prompt the worker by lighting the prompt lamp, after the hardware device completes the on-site visual self-checking,The electric push rod 501 is started, the pull plate 502 is pulled to move downwards, so that the four pull rods 503 move through the movable holes 6 to above the paddle 413, then the four electromagnets 504 are started, so that the magnets 414 are adsorbed together with the electromagnets 504, then the output end of the electric push rod 501 moves upwards by a distance, pushes the pull plate 502 to move upwards, drives the pull rod 503, the electromagnet 504 and the magnet 414 to move upwards together, further drives the paddle 413 to move upwards, so that the connection between the suction cup 411 and the paddle 413 is lifted, the external air enters the suction cup 411, the negative pressure state is eliminated, the adsorption force between the suction cup 411 and the workbench surface disappears, then the electric push rod 501 is automatically paused for a while, and the electromagnet 504 is powered off, the magnet 414 is separated from the electromagnet 504, the paddle 413 returns to the original position, then the electric push rod 501 resumes work, continues to push the pull plate 502 to move upwards, drives the pull rod 503 and the electromagnet 504 to reset, then the forward-reverse motor 415 is started again, drives the first toothed rod 404 to move upwards through the reverse rotation of the output end, the second toothed rod 403 moves downwards, further drives the sliding block 409 and the limiting sliding rod 410 to move upwards, when the forward-reverse motor 415 is automatically turned off, the self-checking assembly 3 resets, the suction cup 411 moves to reset inside the self-checking box 1, avoids that the suction cup 411 is always left at the bottom of the self-checking box 1 and is accidentally damaged.

[0051] Among them, the power supply module 303, the display 305, the alarm module 309, the wireless module 310, the data acquisition module 311, the data processing module 312, the forward-reverse motor 415, the electric push rod 501 and the electromagnet 504 are all prior art, and their components and use principles are all disclosed technologies, which will not be explained too much here.

[0052] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A hardware equipment on-site visual self-check system, comprising a self-check box (1), the inside of the self-check box (1) is provided with a self-check assembly (3), characterized in that: The bottom of the self-checking assembly (3) is provided with a fixing assembly (4), and the inside of the self-checking box (1) is provided with an auxiliary assembly (5); The self-checking assembly (3) comprises a self-checking table (301), the outer surface of one side of the self-checking table (301) is provided with a power supply groove (302), the inside of the power supply groove (302) is provided with a power supply module (303) through screws, and the top of the self-checking table (301) is provided with an adjusting plate (304) close to the other side; and the inside of the adjusting plate (304) is provided with a display (305). The fixing assembly (4) comprises two rotating shafts (401), the outer surfaces of the two rotating shafts (401) are fixedly provided with adjusting gear rollers (402), the outer surfaces of the two adjusting gear rollers (402) are movably connected with two first toothed rods (404), the insides of the four first toothed rods (404) are movably provided with sliding blocks (409), the bottoms of the four sliding blocks (409) are fixedly provided with limiting sliding rods (410), the bottoms of the four limiting sliding rods (410) are fixedly provided with suction discs (411), the outer surfaces of the four suction discs (411) are fixedly provided with pressing blocks (412) close to the top, the outer surfaces of the four suction discs (411) are fixedly connected with pushing pieces (413) close to the bottom, the insides of the four pushing pieces (413) are provided with magnets (414), and the bottoms of the four first toothed rods (404) are provided with limiting holes (408). The auxiliary assembly (5) comprises an electric push rod (501), the top of the electric push rod (501) is fixedly provided with a lifting plate (502), the bottom of the lifting plate (502) is fixedly provided with four lifting rods (503), the bottoms of the four lifting rods (503) are provided with electromagnets (504), the bottom surface in the inside of the self-checking box (1) is fixedly provided with four fixing rods (7), the tops of the four fixing rods (7) movably penetrate into the top of the lifting plate (502), the tops of the four fixing rods (7) are fixedly provided with storage boxes (8), and the bottom of the electric push rod (501) is fixedly arranged on the bottom surface in the inside of the self-checking box (1).

2. The hardware device's live visualization self-test system of claim 1, wherein: The bottom surface in the inside of the self-checking table (301) is provided with a data acquisition module (311) close to the back wall, the bottom surface in the inside of the self-checking table (301) is provided with a data processing module (312) close to the data acquisition module (311), the bottom surface in the inside of the self-checking table (301) is provided with a wireless module (310) close to the data processing module (312), and the bottom surface in the inside of the self-checking table (301) is provided with an alarm module (309) close to the front wall.

3. The hardware device's live visualization self-test system of claim 2, wherein: The front surface of the adjusting plate (304) is fixedly installed with a rotating block (306), the inside of the rotating block (306) is movably embedded with a first connecting rod (307), both ends of the first connecting rod (307) are fixedly installed with a first fixed block (308), the bottoms of the two first fixed blocks (308) are fixedly installed on the top of the self-checking table (301) near the front surface, and the bottom of the adjusting plate (304) is equidistantly provided with a plurality of top grooves (317).

4. The hardware device's live visualization self-test system of claim 3, wherein: The rear surface wall inside the self-checking table (301) is fixedly installed with two second fixed blocks (313), the opposite sides of the two second fixed blocks (313) are fixedly installed with a second connecting rod (314), the outer surface of the second connecting rod (314) is movably sleeved with a top plate (315), the bottom of the top plate (315) is provided with a supporting table (316), and the bottom of the supporting table (316) is fixedly installed on the bottom surface inside the self-checking table (301).

5. The hardware device's live visualization self-test system of claim 4, wherein: The outer surfaces of the four limiting sliding rods (410) are movably embedded in the interiors of the four limiting holes (408), the bottom of the self-checking box (1) is provided with four movable holes (6), the outer surface of one end of one of the rotating shafts (401) is fixedly installed with a driving gear (416), the outer surface of the driving gear (416) is meshingly connected with a chain (417), the inner wall of the self-checking box (1) is installed with a forward and reverse motor (415) through an auxiliary plate, and one end of the output end of the forward and reverse motor (415) is fixedly connected with one of the rotating shafts (401).

6. The hardware device's live visualization self-test system of claim 5, wherein: The interior of the chain (417) is meshingly connected with a driven gear (418), the interior of the driven gear (418) is fixedly installed with a rotating rod (419), one end of the rotating rod (419) is fixedly installed with an auxiliary gear (420), the outer surface of the auxiliary gear (420) is meshed with the outer surface of one of the adjusting gear rollers (402), the outer surface of the rotating rod (419) is movably sleeved with a supporting seat (421), the bottom of the supporting seat (421) is fixedly installed on the bottom surface inside the self-checking box (1), the outer surface of the driven gear (418) is movably embedded in the interior of the supporting seat (421), and one end of the other rotating shaft (401) is movably embedded in the rear surface wall inside the self-checking box (1).

7. The hardware device's live visualization self-test system of claim 6, wherein: The outer surfaces of the two adjusting gear rollers (402) are meshingly connected with two second toothed rods (403), the top ends of the four second toothed rods (403) are fixedly installed on the bottom of the self-checking table (301), the bottom surface inside the self-checking box (1) is fixedly installed with eight limiting rods (405), every two limiting rods (405) vertically are a group, the outer surfaces of the limiting rods (405) in two groups are movably sleeved with a first connecting plate (406), and the outer surfaces of the limiting rods (405) in the other two groups are movably sleeved with a second connecting plate (407).

8. The hardware device's live visualization self-test system of claim 7, wherein: The outer surfaces of the four first tooth bars (404) are fixedly installed inside the two first connecting plates (406) respectively, the outer surfaces of the four second tooth bars (403) are fixedly installed inside the two second connecting plates (407) respectively, the top ends of the four first tooth bars (404) and the top ends of the eight limiting rods (405) are in contact with the bottom of the self-checking table (301), the other ends of the two rotating shafts (401) are movably embedded in the front wall inside the self-checking box (1), and the top of the self-checking box (1) is provided with a box cover (2) which is installed through hand-tightening bolts.

9. A method of using a live visualization self-test system for a hardware device, the method comprising: The on-site visual self-checking system using the hardware device of claim 8 comprises the following steps: S1, start the reversible motor (415), drive the right rotating shaft (401), the adjusting gear roller (402) and the driving gear (416) to rotate counterclockwise, drive the driven gear (418), the rotating rod (419) and the auxiliary gear (420) to rotate counterclockwise through the chain (417), further drive the left adjusting gear roller (402) to rotate clockwise, so that the first tooth bar (404) moves downward, and the suction cup (411) passes through the movable hole (6) and is in contact with the workbench through the sliding block (409) and the limiting sliding rod (410); S2, at the same time, the second tooth bar (403) moves upward, the self-checking assembly (3) is lifted upward, then the first tooth bar (404) generates pressure on the pressing block (412), so as to extrude the suction cup (411), so that the suction cup (411) generates negative pressure inside, and the suction cup (411) is tightly adsorbed on the workbench; S3, start the reversible motor (415) again, drive the right rotating shaft (401) to rotate clockwise, so that the left rotating shaft (401) rotates counterclockwise, thereby driving the four second tooth bars (403) to move downward, and then driving the self-checking assembly (3) to move downward to reduce the height; S4, rotate the angle of the adjusting plate (304), then lift the top plate (315) and clamp it into the top groove (317) at the corresponding position, run the self-checking software, the data acquisition module (311) is responsible for collecting and arranging various data collected by various sensors, and transmits the data to the data processing module (312) for analysis and processing, and displays the visual information of the self-checking result to the staff through the display (305), when an abnormality is found, the alarm module (309) is triggered, the alarm module (309) triggers the prompt light to light up for prompting; S5, start the electric push rod (501), pull the lifting plate (502) to move downward, so that the lifting rod (503) moves to above the paddle (413) through the movable hole (6), then start the four electromagnets (504), so that the magnet (414) and the electromagnet (504) are adsorbed together, then the electric push rod (501) pushes the lifting plate (502) to move upward, drives the paddle (413) to move upward, so that the connection between the suction cup (411) and the paddle (413) is lifted, and the external air enters the suction cup (411), eliminating the negative pressure state; S6, then the electromagnet (504) is powered off, the magnet (414) and electromagnet (504) are separated, the electric push rod (501) drives the lifting rod (503) and electromagnet (504) reset, start the positive and negative motor (415) again, through the reverse rotation of its output end, so that the self-checking assembly (3) and suction cup (411) reset.

Citation Information

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