Electric power engineering informatization field supervision device and supervision method
By using dustproof components and wear detection devices in the monitoring equipment of power engineering information construction sites, and utilizing compressed gas to form a wind wall to prevent dust, combined with micro-displacement sensors and wear detection for simultaneous detection, the problems of dust accumulation and vibration effects are solved, and the monitoring accuracy and stability are improved.
Patent Information
- Application Number
- CN202511471020.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2025-11-25
AI Technical Summary
In the context of dust accumulation and mechanical vibration, the monitoring devices at the construction site of power engineering information systems are prone to problems such as rotational jamming and reduced monitoring accuracy.
It employs dustproof components and wear detection devices, using compressed gas to form an annular air wall to prevent dust accumulation, and uses micro-displacement sensors to synchronously detect the degree of wear with the wear detection device, combined with compressed air as a power source to regulate and absorb vibration.
It achieves long-term dustproof effect, improves monitoring accuracy and device stability, prevents aging of sealing rings and misjudgment, and reduces the impact of mechanical vibration.
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Figure CN121007541A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of supervision management, in particular to a power engineering informatization site supervision device and a supervision method. BACKGROUND
[0002] The power engineering informatization site supervision device is an intelligent supervision tool, and the main purpose is to improve the supervision efficiency, accuracy and safety. In the process of use, the power engineering informatization site supervision device can transmit the monitored data to the server in real time, so as to facilitate real-time monitoring by the staff and realize the effect of early prevention. In the process of implementing power engineering informatization, the civil foundation, line path and other facilities need to be supervised to ensure the smooth construction.
[0003] The supervision device is a key equipment in the power engineering informatization site supervision, and has been widely applied. However, it still has many defects in use, which are as follows: the power engineering informatization construction site environment is relatively complex, especially with a lot of dust, which will accumulate in the rotating part of the supervision device after long-term use, so that the supervision device will appear rotating jamming phenomenon in the process of use, and then the adjustment accuracy will be inconvenient; the existing supervision device generally does not set the wear detection device at the rotating part, so that the monitoring accuracy will be reduced after long-term use; in addition, the power engineering informatization construction site has relatively complex mechanical vibration, which will continue to conduct to the supervision device in the process of use, and also affect the monitoring accuracy.
[0004] In view of the above problems, a power engineering informatization site supervision device and a supervision method are provided. SUMMARY
[0005] The purpose of the present application is to provide a power engineering informatization site supervision device and a supervision method. The present application works, thereby solving the problems that the power engineering informatization construction site has a lot of dust, the dust accumulates in the rotating part of the supervision device, which causes the supervision device to appear rotating jamming in the process of use, and the rotating part of the supervision device does not set the wear detection device, which will cause the monitoring accuracy to be reduced after long-term use; in addition, the power engineering informatization construction site has relatively complex mechanical vibration, which will continue to conduct to the supervision device, and affect the monitoring accuracy.
[0006] To achieve the above object, the present application provides the following technical scheme: a power engineering information field supervision device, comprising a mounting seat one, a plurality of support assemblies are rotatably arranged on the mounting seat one, an adjusting assembly is arranged on the support assembly, a lifting assembly is slidably arranged on the plurality of support assemblies, a micro air pump is fixedly arranged on the lifting assembly, a mounting seat two is arranged on the mounting seat one, a measuring device is arranged on the mounting seat two, a dustproof assembly is fixedly arranged on the mounting seat one, and the dustproof assembly is arranged at the connection between the mounting seat one and the mounting seat two, and a wear detection device is arranged on the top surface of the mounting seat two; The dustproof assembly comprises an annular air chamber fixedly installed on the top surface of the mounting seat one, a sealing cover is slidably installed through the top surface of the annular air chamber, a plurality of limiting blocks are fixedly installed on the circumferential sidewall of the sealing cover, the limiting blocks can vertically slide in the annular air chamber and cannot rotate in the annular air chamber, a plurality of air inlet assemblies are fixedly installed in the annular air chamber, a guide assembly is slidably installed in the air inlet assembly, the guide assembly is fixedly connected with the sealing cover, and a plurality of nozzles are fixedly and communicatively installed on the top surface of the annular air chamber and arranged in a circumferential array.
[0007] Further, the mounting seat one comprises a seat body one, a plurality of installation grooves are formed in the circumferential outer wall of the seat body one, the support assemblies are rotatably installed in the installation grooves, a plurality of air holes are formed in the seat body one, the air holes and the air outlet of the micro air pump are respectively communicated through air pipes, and the plurality of air holes are correspondingly communicated with the plurality of air inlet assemblies.
[0008] Further, the support assembly comprises a support plate one rotatably installed in the installation groove, the adjusting assembly is slidably sleeved on the support plate one, the support plate two is fixedly installed on the bottom surface of the adjusting assembly, and the inner side wall of the support plate two is provided with a sliding groove.
[0009] Further, the lifting assembly comprises a bearing plate arranged below the mounting seat one, a plurality of pairs of mounting ears one are fixedly installed at the top surface edge of the bearing plate, a circular shaft is fixedly installed on each pair of mounting ears one, a connecting rod is rotatably installed on the circular shaft, the side wall of the connecting rod and the side wall of the mounting ear one are elastically installed through a torsional spring one, a sliding plate is slidably installed in the sliding groove, a pair of mounting ears two are fixedly installed on the side wall of the sliding plate, a circular shaft is fixedly installed on the two mounting ears two, the end of the connecting rod away from the mounting ear one is rotatably installed on the circular shaft of the mounting ear two, and the side wall of the connecting rod and the side wall of the mounting ear two are elastically installed through a torsional spring two.
[0010] Further, the mounting seat two comprises a seat body two arranged above the seat body one, an installation shaft is rotatably installed through the center of the seat body two, there is a gap between the seat body two and the installation shaft, the bottom of the installation shaft is fixedly installed on the top surface of the seat body one, and a micro displacement sensor is embedded in the seat body two.
[0011] Further, the ventilation assembly comprises a fixed seat fixedly installed inside the annular air chamber, a through hole is formed in the bottom surface of the fixed seat, the through hole is in communication with the air hole, a conical plugging block is further fixedly installed on the side wall of the inner cavity of the fixed seat, and two opposite side walls of the inner cavity of the fixed seat are respectively provided with a sliding channel.
[0012] Further, the guide assembly comprises a sliding seat slidingly installed in the sliding channel, the side wall of the sliding seat is elastically connected with the side wall of the inner cavity of the sliding channel through a spring one, the inner part of the sliding seat is respectively provided with an air duct one and an air outlet hole, the air duct one and the air outlet hole are in communication, and an inclined chute is further formed in the sliding seat, a U-shaped frame is slidingly installed in the inclined chute, and the upper end of the U-shaped frame is fixedly connected with the circumferential side wall of the sealing cover.
[0013] Further, the wear detection device comprises a plurality of pairs of mounting ears three fixedly installed on the top surface of the seat body two, a protective shell is further fixedly installed on the top surface of the seat body two, the plurality of pairs of mounting ears three are arranged in a circumferential array form at the edge of the gap, a circular shaft is fixedly installed on each pair of mounting ears three, a turnover plate is rotatably installed on the circular shaft, the side wall of the turnover plate is elastically connected with the side wall of the mounting ear three through a torsional spring three, a wind deflector is fixedly installed on one end of the turnover plate, a contact one is fixedly installed on the other end of the turnover plate, a plurality of contact twos are fixedly installed on the top surface of the seat body two, and the contact twos are arranged below the turnover plate.
[0014] Further, the support plate one comprises a plate body, fixed shafts are fixedly installed on the outer walls of the two sides of the plate body, the fixed shafts are rotatably installed in the installation grooves, a pair of column rods are fixedly installed on the bottom surface of the plate body, and pistons are fixedly installed at the bottoms of the two column rods. The adjusting assembly comprises an outer shell fixedly installed on the top surface of the support plate two, a gas collecting chamber is formed in the inner part of the outer shell, a gas valve is formed in the side wall of the gas collecting chamber, the gas valve and the air outlet of the miniature air pump are in communication through an air pipe, a pair of air duct twos are further formed in the inner part of the outer shell, the two air duct twos are in communication with the gas collecting chamber, the piston is slidingly installed in the air duct two, and the bottom surface of the piston and the side wall of the inner cavity of the gas collecting chamber are elastically connected through a spring two.
[0015] The present application also provides another technical scheme: a power engineering informationization field supervision method, and the specific steps are as follows: S1: first, a plurality of support assemblies are unfolded outwardly, so that the supervision device stands on the ground; S2: the miniature air pump is turned on to generate compressed gas, which enters the gas collecting chamber through the air pipe and the gas valve, and is used for adjusting the levelness of the supervision device; S3: the compressed gas enters the dustproof assembly through the air pipe and the air hole and generates an annular wind wall; S4: the micro-displacement sensor and the wear detection device are started to detect the wear degree and cross-verify the data synchronously.
[0016] Compared with the prior art, the application has the following beneficial effects: 1、The application can use the wind wall to prevent dust on the rotating part of the seat body two and the mounting shaft, compared with the traditional use of sealing ring or dust cover, the passive dust prevention is changed to active dust prevention by using this design method, and the aging phenomenon of the sealing ring or dust cover does not occur, and the dustproof effect can be realized continuously for a long time; in addition, part of the heat on the measuring device can be taken away at the same time, which is beneficial to realize the heat dissipation effect of the measuring device; and after the supervision device is used, auxiliary sealing can still be realized through the sealing cover, and better dustproof effect can be realized through double sealing.
[0017] 2、The application synchronously detects the wear degree through the micro-displacement sensor and the wear detection device, and cross- verifies the data, so that the wear position can be accurately determined, and the phenomenon of misjudgment of single detection can be prevented.
[0018] 3、Abandoning the traditional pure mechanical connection, using compressed air as a power source, not only the positioning effect can be realized, but also part of the mechanical vibration can be absorbed, and then the monitoring precision during the use of the supervision device can be improved. DETAILED DESCRIPTION
[0019] Figure 1 It is a schematic diagram of the overall structure of the application; Figure 2 It is a bottom view of the overall structure of the application; Figure 3 It is an enlarged view of A of Figure 2 ; Figure 4 It is an enlarged view of B of Figure 2 ; Figure 5 It is a schematic diagram of the mounting position of the mounting seat two of the application; Figure 6 It is a schematic diagram of the mounting seat two of the application; Figure 7 It is a schematic diagram of the dustproof assembly of the application; Figure 8 It is an internal structure diagram of the dustproof assembly of the application; Figure 9 It is an enlarged view of C of Figure 8 ; Figure 10 It is a sectional view of the ventilation assembly and the guide assembly of the application; Figure 11 It is a schematic diagram of the mounting position of the wear detection device of the application; Figure 12The exploded view of the wear detection device of the present application; Figure 13 The Figure 12 enlarged view of D; Figure 14 The installation position schematic view of the micro displacement sensor of the present application; Figure 15 The cross-sectional schematic view of the adjusting assembly of the present application.
[0020] In the figure: 1, mounting seat one; 11, seat body one; 12, mounting groove; 13, air hole; 2, support assembly; 21, support plate one; 211, plate body; 212, fixed shaft; 213, column rod; 214, piston; 22, support plate two; 23, sliding groove; 3, adjusting assembly; 31, shell; 32, gas collecting chamber; 33, air passage two; 34, air valve; 35, spring two; 4, lifting assembly; 41, bearing plate; 42, mounting ear one; 43, connecting rod; 44, torsional spring one; 45, sliding plate; 46, mounting ear two; 47, torsional spring two; 5, micro air pump; 6, mounting seat two; 61, seat body two; 62, mounting shaft; 63, gap; 64, micro displacement sensor; 7, measuring device; 8, dustproof assembly; 81, annular air chamber; 82, sealing cover; 83, limiting block; 84, ventilation assembly; 841, fixed seat; 842, through hole; 843, conical plugging block; 844, sliding way; 85, guiding assembly; 851, sliding seat; 852, inclined slot; 853, U-shaped frame; 854, air passage one; 855, air outlet hole; 856, spring one; 86, spout; 9, wear detection device; 91, protective shell; 92, mounting ear three; 93, turnover plate; 94, torsional spring three; 95, wind deflector; 96, contact one; 97, contact two. DETAILED DESCRIPTION
[0021] 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 other embodiments obtained by those skilled in the art without creative work belong to the scope of protection of the present application.
[0022] In order to solve the technical problem that the power engineering informatization construction site has a lot of dust, the dust accumulates in the rotating part of the supervision device, and the supervision device appears rotating jam in the process of use, such as Figures 1-15 As shown in the figure, the following preferred technical solutions are provided: As shown in the figure, Figures 1-2As shown, a power engineering information field supervision device, including mounting seat one 1, a plurality of support assemblies 2 are rotatably arranged on the mounting seat one 1, the mounting seat one 1 is arranged to support and fix each part, the support assembly 2 supports the whole supervision device, so that the supervision device can be stably erected on the ground, the support assembly 2 is provided with an adjusting assembly 3, the adjusting assembly 3 is used to adjust the height of the support assembly 2, so as to ensure that the supervision device can adapt to different road surfaces, in addition, the adjusting assembly 3 also has the effect of buffering vibration, which makes the supervision device can reduce the influence of mechanical vibration on the supervision device when used in power engineering information construction site, and improves the monitoring accuracy of the supervision device in use.
[0023] A plurality of support assemblies 2 are commonly arranged on the lifting assembly 4, the lifting assembly 4 is fixedly provided with a micro air pump 5, the micro air pump 5 generates compressed gas to form a gas wall, which can be used to achieve dustproof effect, the lifting assembly 4 is used to support the micro air pump 5, when the support assembly 2 is unfolded, the lifting assembly 4 drives the micro air pump 5 to move downward, which reduces the gravity center of the supervision device, which is beneficial to maintain stability, when the support assembly 2 is close to each other, the lifting assembly 4 drives the micro air pump 5 to move upward, which pushes the micro air pump 5 to the lower side of the mounting seat one 1, and the micro air pump 5 is surrounded by a plurality of support assemblies 2, such arrangement not only can save space and facilitate carrying, but also can protect the micro air pump 5 from damage during transportation, the mounting seat one 1 is provided with a mounting seat two 6, the mounting seat two 6 is consistent with the mounting seat one 1, which is also used to support and fix each part.
[0024] The mounting seat two 6 is provided with a measuring device 7 for supervising the civil foundation, line path and other facilities, Figure 5 As shown, the mounting seat one 1 is fixedly provided with a dustproof assembly 8, and the dustproof assembly 8 is arranged at the connection between the mounting seat one 1 and the mounting seat two 6, the dustproof assembly 8 is used to prevent dust from entering the connection position of the mounting seat one 1 and the mounting seat two 6, and prevent the phenomenon of rotation jamming, the top surface of the mounting seat two 6 is provided with a wear detection device 9 for detecting the wear degree of the connection position of the mounting seat one 1 and the mounting seat two 6.
[0025] As shown, Figures 7-8As shown, the dustproof assembly 8 comprises an annular air chamber 81 fixedly installed on the top surface of the mounting seat one 1, a sealing cover 82 is slidingly installed on the top surface of the annular air chamber 81, a plurality of limiting blocks 83 are fixedly installed on the circumferential side wall of the sealing cover 82, the limiting blocks 83 can vertically slide in the annular air chamber 81 and cannot rotate in the annular air chamber 81, a plurality of air passage assemblies 84 are fixedly installed in the annular air chamber 81, a guide assembly 85 is slidingly installed in the air passage assembly 84, the guide assembly 85 is fixedly connected with the sealing cover 82, a plurality of nozzles 86 are fixedly and communicatively installed on the top surface of the annular air chamber 81, and the plurality of nozzles 86 are arranged in a circumferential array.
[0026] As shown in Figures 5-6 As shown, the mounting seat one 1 comprises a seat body one 11, a plurality of installation grooves 12 are formed in the circumferential outer wall of the seat body one 11, the support assembly 2 is rotatably installed in the installation groove 12, a plurality of air holes 13 are formed in the seat body one 11, the air holes 13 and the air outlet of the miniature air pump 5 are respectively communicated through air tubes, and the air holes 13 and the air passage assemblies 84 are correspondingly communicated, the compressed gas generated by the miniature air pump 5 enters the air passage assembly 84 through the air tube and the air hole 13, then enters the inside of the annular air chamber 81 through the air passage assembly 84, and finally is sprayed out from the nozzle 86 to form an air wall for isolating dust from the outside, thereby preventing dust from entering the connection position of the mounting seat one 1 and the mounting seat two 6, and playing a dustproof role.
[0027] As shown in Figure 2 As shown, the support assembly 2 comprises a support plate one 21 rotatably installed in the installation groove 12, an adjusting assembly 3 is slidingly sleeved on the support plate one 21, a support plate two 22 is fixedly installed on the bottom surface of the adjusting assembly 3, and a sliding groove 23 is formed in the inner side wall of the support plate two 22.
[0028] As shown in Figure 2 As shown, the lifting assembly 4 comprises a bearing plate 41 arranged below the mounting seat one 1, as shown in Figure 3 As shown, a plurality of pairs of mounting ears one 42 are fixedly installed at the top surface edge of the bearing plate 41, a circular shaft is fixedly installed on each pair of mounting ears one 42, a connecting rod 43 is rotatably installed on the circular shaft, and the side wall of the connecting rod 43 and the side wall of the mounting ear one 42 are elastically installed through a torsional spring one 44, as shown in Figure 4 As shown, a sliding plate 45 is slidingly installed in the sliding groove 23, a pair of mounting ears two 46 are fixedly installed on the side wall of the sliding plate 45, a circular shaft is fixedly installed on each mounting ear two 46, one end of the connecting rod 43 away from the mounting ear one 42 is rotatably installed on the circular shaft of the mounting ear two 46, and the side wall of the connecting rod 43 and the side wall of the mounting ear two 46 are elastically installed through a torsional spring two 47.
[0029] When the monitoring device is in use, a plurality of support assemblies 2 will be unfolded, and the support plate two 22 will be expanded outward synchronously during the unfolding process of the support assembly 2. Under the cooperation of the sliding groove 23, when the support plate two 22 is expanded, it will drive the load plate 41 and the miniature air pump 5 to move downward through the sliding plate 45, the mounting ear two 46, the connecting rod 43 and the mounting ear one 42, thereby lowering the gravity center of the monitoring device and being beneficial to maintaining stability.
[0030] When the monitoring device is in use, a plurality of support assemblies 2 will be unfolded, and the support plate two 22 will be expanded outward synchronously during the unfolding process of the support assembly 2. Under the cooperation of the sliding groove 23, when the support plate two 22 is expanded, it will drive the load plate 41 and the miniature air pump 5 to move downward through the sliding plate 45, the mounting ear two 46, the connecting rod 43 and the mounting ear one 42, thereby lowering the gravity center of the monitoring device and being beneficial to maintaining stability.
[0031] As shown in Figures 11-12 , the mounting seat two 6 comprises a seat body two 61 arranged above the seat body one 11, a mounting shaft 62 is rotatably arranged at the center of the seat body two 61, and a gap 63 exists between the seat body two 61 and the mounting shaft 62, and the bottom of the mounting shaft 62 is fixedly installed on the top surface of the seat body one 11, as shown in Figure 14 , the inside of the seat body two 61 is embedded with a micro displacement sensor 64, and the micro displacement sensor 64 is used for monitoring the wear between the mounting shaft 62 and the seat body two 61.
[0032] As shown in Figures 9-10 , the air ventilation assembly 84 comprises a fixed seat 841 fixedly installed in the annular air chamber 81, a through hole 842 is formed in the bottom surface of the fixed seat 841, and the through hole 842 is in communication with the air hole 13, and the through hole 842 is used for air intake, and a conical plugging block 843 is fixedly installed on the side wall of the inner cavity of the fixed seat 841, and a sliding channel 844 is formed in the opposite two side walls of the inner cavity of the fixed seat 841.
[0033] As shown in Figures 9-10As shown, the guide assembly 85 comprises a sliding seat 851 slidingly installed inside the slide 844, the side wall of the sliding seat 851 is elastically connected with the side wall of the inner cavity of the slide 844 by a spring 856, the inner part of the sliding seat 851 is respectively provided with an air duct 854 and an air outlet hole 855, and the air duct 854 and the air outlet hole 855 are communicated, and the sliding seat 851 is further provided with an inclined groove 852, and a U-shaped frame 853 is slidingly installed in the inclined groove 852, and the upper end of the U-shaped frame 853 is fixedly connected with the circumferential side wall of the sealing cover 82.
[0034] Specifically, as shown in Figure 1 and Figure 10 , during the use of the supervision device, the miniature air pump 5 is started to generate compressed gas, which enters the inside of the fixed seat 841 through the air pipe, the air hole 13 and the through hole 842, in the initial state, the conical plugging block 843 is in a plugging state with the air duct 854, and the air outlet hole 855 is also plugged by the inner wall of the fixed seat 841, when the compressed gas enters the inside of the fixed seat 841, it pushes the sliding seat 851 to slide on the slide 844 under the action of air pressure and stretches the spring 856, at this time, the sliding seat 851 is separated from the conical plugging block 843, so that the air duct 854 is in a passage state, because the sliding seat 851 slides outward, the air outlet hole 855 is no longer plugged by the inner wall of the fixed seat 841, at this time, the compressed gas enters the inside of the annular air chamber 81 through the air duct 854 and the air outlet hole 855, as shown in Figure 7 , finally, the compressed gas is sprayed out through the several nozzles 86, forming an annular air wall around the rotating part of the seat body 2 61 and the mounting shaft 62, which is used to isolate the dust of the power information construction site, prevent the dust from accumulating in the gap 63, and prevent the phenomenon of rotation jamming.
[0035] As shown in Figures 9-10 , because the limiting block 83 can vertically slide in the inside of the annular air chamber 81 and cannot rotate in the inside of the annular air chamber 81, in the process of the sliding seat 851 sliding outward, the sealing cover 82 is driven to slide downward under the cooperation of the inclined groove 852 and the U-shaped frame 853, thereby making the sealing cover 82 retract into the inside of the annular air chamber 81, preventing the wind direction of the wind wall from being disturbed when the wind wall is generated, thereby affecting the dustproof effect, when the use of the supervision device is finished, the miniature air pump 5 stops supplying air, under the elastic force of the spring 856, the sliding seat 851 starts to reset, so that the conical plugging block 843 and the air duct 854 are again in a plugging state, at the same time, under the cooperation of the inclined groove 852 and the U-shaped frame 853, the sealing cover 82 is driven to slide upward, so that the sealing cover 82 is in contact with the bottom surface of the seat body 2 61, sealing and protecting the rotating part of the seat body 2 61 and the mounting shaft 62, preventing dust from continuing to accumulate in the rotating part of the seat body 2 61 and the mounting shaft 62 during the carrying process and causing the jamming phenomenon.
[0036] The cooperation between the above components can generate an annular wind wall, which uses the wind wall to prevent dust from the rotating part of the seat body two 61 and the mounting shaft 62. Compared with the traditional use of a sealing ring or a dust cover, the passive dust prevention is changed to active dust prevention, and the aging phenomenon of the sealing ring or the dust cover does not occur, so that the dust prevention effect can be achieved continuously and for a long time. In addition, part of the heat on the measuring device 7 can be taken away when the wind wall is generated, which is beneficial to achieve the heat dissipation effect of the measuring device 7. Moreover, after the supervision device is used, the auxiliary sealing can still be realized through the sealing cover 82, and the better dust prevention effect can be realized through the double sealing.
[0037] In order to solve the technical problem that the existing supervision device generally does not provide a wear detection device 9 at the rotating part, so that the monitoring accuracy is reduced after a long time of use, such as Figures 11-13 As shown in As shown in Figures 12-13 The wear detection device 9 includes a plurality of pairs of mounting ears three 92 fixedly installed on the top surface of the seat body two 61. A protective shell 91 is also fixedly installed on the top surface of the seat body two 61. The plurality of pairs of mounting ears three 92 are arranged in a circumferential array at the edge of the gap 63. A circular shaft is fixedly installed on each pair of mounting ears three 92. A turnover plate 93 is rotatably installed on the circular shaft. The side wall of the turnover plate 93 is elastically connected to the side wall of the mounting ear three 92 through a torsional spring three 94. A wind deflector 95 is fixedly installed at one end of the turnover plate 93. A contact one 96 is fixedly installed at the other end of the turnover plate 93. A plurality of contact twos 97 are fixedly installed on the top surface of the seat body two 61, and the contact twos 97 are arranged below the turnover plate 93.
[0038] Specifically, when there is no serious wear at the connecting part of the seat body two 61 and the mounting shaft 62, part of the airflow generated by the air wall blows evenly on the plurality of wind deflectors 95 through the gap 63, so that the plurality of wind deflectors 95 are driven to turn the turnover plate 93 on the circular shaft, and finally the contact one 96 and the contact two 97 are in contact, and the electrical signal is transmitted to the controller (not shown in the figure). After the controller (not shown in the figure) receives the signal, it is determined that the wear degree is within the controllable range. If the connecting part of the seat body two 61 and the mounting shaft 62 is seriously worn, at this time, the gap 63 will be deformed, and part of the airflow will be blocked and cannot pass through the gap 63. This makes part of the wind deflector 95 not receive the thrust force of the airflow, and the turnover plate 93 will not be turned on the circular shaft. In turn, part of the contact one 96 and the contact two 97 cannot be in contact. After the electrical signal is transmitted to the controller (not shown in the figure), the controller (not shown in the figure) can accurately determine the position of the serious wear, such as Figure 14As shown, the inside of the seat body two 61 is embedded with a micro displacement sensor 64 for synchronous detection of the wear degree.
[0039] By setting the micro displacement sensor 64 and the wear detection device 9 to synchronously detect the wear degree, and cross-verify the data, the precise determination of the wear position is realized, and the phenomenon of false judgment in single detection is prevented.
[0040] In order to solve the technical problem that the power engineering information construction site has relatively complex mechanical vibration, and the vibration will continue to be conducted to the supervision device, affecting the monitoring precision, such as Figure 15 As shown, the following preferred technical solutions are provided: As shown, Figure 15 As shown, the support plate one 21 includes a plate body 211, two fixed shafts 212 are fixedly installed on the two side outer walls of the plate body 211, the fixed shafts 212 are rotatably installed in the inside of the installation groove 12, a pair of column rods 213 are fixedly installed on the bottom surface of the plate body 211 in a symmetrical manner, and pistons 214 are fixedly installed at the bottom of the two column rods 213.
[0041] The adjusting assembly 3 includes an outer shell 31 fixedly installed on the top surface of the support plate two 22, a gas collection chamber 32 is formed in the inside of the outer shell 31, a gas valve 34 is formed in the side wall of the gas collection chamber 32, the gas valve 34 and the gas outlet of the micro air pump 5 are communicated by a gas pipe, a pair of gas channels two 33 are formed in the inside of the outer shell 31, and the two gas channels two 33 are communicated with the gas collection chamber 32, the piston 214 is slidably installed in the gas channel two 33, and the bottom surface of the piston 214 and the side wall of the inner cavity of the gas collection chamber 32 are elastically connected by a spring two 35.
[0042] Specifically, in the process of using the supervision device, a plurality of support assemblies 2 are unfolded, so that the supervision device stands on the ground. Since the ground of the power information construction site is uneven, the extension length of the support plate one 21 needs to be adjusted by the adjusting assembly 3, so that the supervision device is in a horizontal state, and the monitoring precision is maintained. The specific adjustment is as follows: Firstly, the compressed gas generated by the micro air pump 5 enters the gas collection chamber 32 through the gas pipe and the gas valve 34, and then enters the gas channel two 33. The piston 214 is pushed upward by the compressed gas, so that the piston 214 and the column rod 213 drive the plate body 211 to be lifted upward, thereby adjusting the position of the supervision device. Since the gas collection chamber 32 and the gas channel two 33 are filled with compressed gas, part of the vibration can be absorbed, so that when the supervision device is used in the power information construction site, part of the mechanical vibration can be filtered out, the amplitude of the supervision device is reduced, and the monitoring precision of the supervision device is improved.
[0043] The traditional adjusting mechanism is generally driven by an electric adjusting device, such as an electric push rod or an electric motor, but the adjusting mode is generally rigidly connected, which directly transmits mechanical vibration to the monitoring device, affecting the monitoring precision, and the design discards the traditional pure mechanical connection, uses compressed air as a power source, not only realizes the adjusting effect, but also can absorb part of the mechanical vibration, thereby improving the monitoring precision of the monitoring device during use.
[0044] In order to better illustrate the above-mentioned embodiments, the present application also proposes another embodiment: a power engineering information field supervision method, comprising the following steps: Step one: first, several support assemblies 2 are unfolded outwardly, so that the supervision device stands upright on the ground; Step two: open the micro air pump 5 to generate compressed gas, which enters the gas collecting chamber 32 through the air pipe and the air valve 34, for adjusting the levelness of the supervision device; Step three: the compressed gas enters the dustproof assembly 8 through the air pipe and the air hole 13 and generates an annular wind wall; Step four: start the micro displacement sensor 64 and the wear detection device 9 to detect the wear degree synchronously and cross-verify the data.
[0045] It should be noted that in this paper, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0046] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An electric power engineering informatization field supervision device, comprising a mounting seat one (1), a plurality of support assemblies (2) are rotatably arranged on the mounting seat one (1), characterized in that: The support assembly (2) is provided with an adjusting assembly (3), a plurality of support assemblies (2) are provided with a lifting assembly (4) in common sliding manner, the lifting assembly (4) is fixedly provided with a miniature air pump (5), the mounting seat one (1) is provided with a mounting seat two (6), the mounting seat two (6) is provided with a measuring device (7), the mounting seat one (1) is fixedly provided with a dustproof assembly (8), and the dustproof assembly (8) is arranged at the connecting position of the mounting seat one (1) and the mounting seat two (6), and the top surface of the mounting seat two (6) is provided with a wear detection device (9). The dustproof assembly (8) comprises an annular air chamber (81) fixedly installed on the top surface of the mounting seat one (1), a sealing cover (82) is slidably installed through the top surface of the annular air chamber (81), a plurality of limiting blocks (83) are fixedly installed on the circumferential side wall of the sealing cover (82), the limiting blocks (83) can vertically slide in the annular air chamber (81), and the limiting blocks (83) cannot rotate in the annular air chamber (81), a plurality of air passage assemblies (84) are fixedly installed in the annular air chamber (81), a guide assembly (85) is slidably installed in the air passage assembly (84), the guide assembly (85) is fixedly connected with the sealing cover (82), and a plurality of nozzles (86) are fixedly and communicatively installed on the top surface of the annular air chamber (81) and arranged in a circumferential array.
2. The electric power engineering informatization field supervision device according to claim 1, characterized in that: The mounting seat one (1) comprises a seat body one (11), a plurality of mounting grooves (12) are formed in the circumferential outer wall of the seat body one (11), the support assembly (2) is rotatably installed in the mounting groove (12), a plurality of air holes (13) are formed in the seat body one (11), the air holes (13) and the air outlet of the miniature air pump (5) are communicated through air pipes, and the air holes (13) and the air passage assemblies (84) are correspondingly communicated.
3. The electric power engineering informatization field supervision device according to claim 2, characterized in that: The support assembly (2) comprises a support plate one (21) rotatably installed in the mounting groove (12), the adjusting assembly (3) is slidably sleeved on the support plate one (21), the support plate two (22) is fixedly installed on the bottom surface of the adjusting assembly (3), and the inner side wall of the support plate two (22) is provided with a sliding groove (23).
4. The electric power engineering informatization field supervision device according to claim 3, characterized in that: The lifting assembly (4) comprises a bearing plate (41) arranged below the mounting seat one (1), a plurality of pairs of mounting ears one (42) are fixedly installed at the top surface edge of the bearing plate (41), a circular shaft is fixedly installed on each pair of mounting ears one (42), a connecting rod (43) is rotatably installed on the circular shaft, the side wall of the connecting rod (43) and the side wall of the mounting ear one (42) are elastically installed through the torsional spring one (44), a sliding plate (45) is slidably installed in the sliding groove (23), a pair of mounting ears two (46) are fixedly installed on the side wall of the sliding plate (45), a circular shaft is fixedly installed on the two mounting ears two (46), one end of the connecting rod (43) away from the mounting ear one (42) is rotatably installed on the circular shaft of the mounting ear two (46), and the side wall of the connecting rod (43) and the side wall of the mounting ear two (46) are elastically installed through the torsional spring two (47).
5. The electric power engineering informatization field supervision device according to claim 4, characterized in that: The mounting seat two (6) comprises a seat body two (61) arranged above the seat body one (11), a mounting shaft (62) rotatably arranged at the center of the seat body two (61), a gap (63) between the seat body two (61) and the mounting shaft (62), the bottom of the mounting shaft (62) is fixedly installed on the top surface of the seat body one (11), and the micro displacement sensor (64) is inlaid in the seat body two (61).
6. The electric power engineering informatization field supervision device according to claim 5, characterized in that: The ventilation assembly (84) comprises a fixed seat (841) fixedly installed in the annular air chamber (81), a through hole (842) is formed in the bottom surface of the fixed seat (841), the through hole (842) is in communication with the air hole (13), a conical plugging block (843) is further fixedly installed on the side wall of the inner cavity of the fixed seat (841), and opposite side walls of the inner cavity of the fixed seat (841) are respectively provided with sliding grooves (844).
7. The electric power engineering information field supervision device according to claim 6, characterized in that: The guide assembly (85) comprises a sliding seat (851) slidingly installed in the sliding groove (844), the side wall of the sliding seat (851) and the side wall of the inner cavity of the sliding groove (844) are elastically connected through a spring one (856), the inner part of the sliding seat (851) is respectively provided with an air channel one (854) and an air outlet hole (855), the air channel one (854) and the air outlet hole (855) are in communication, and the sliding seat (851) is further provided with an inclined groove (852), a U-shaped frame (853) is slidingly installed in the inclined groove (852), and the upper end of the U-shaped frame (853) is fixedly connected to the circumferential side wall of the sealing cover (82).
8. The electric power engineering informatization field supervision device according to claim 7, characterized in that: The wear detection device (9) comprises a plurality of pairs of mounting ears three (92) fixedly installed on the top surface of the seat body two (61), a protective shell (91) is further fixedly installed on the top surface of the seat body two (61), the plurality of pairs of mounting ears three (92) are arranged in a circumferential array form at the edge of the gap (63), a circular shaft is fixedly installed on each pair of mounting ears three (92), a turnover plate (93) is rotatably installed on the circular shaft, the side wall of the turnover plate (93) and the side wall of the mounting ear three (92) are elastically connected through a torsional spring three (94), one end of the turnover plate (93) is fixedly installed with a wind shield (95), the other end of the turnover plate (93) is fixedly installed with a contact one (96), a plurality of contact twos (97) are fixedly installed on the top surface of the seat body two (61), and the contact twos (97) are arranged below the turnover plate (93).
9. The electric power engineering information field supervision device according to claim 8, characterized in that: The support plate one (21) comprises a plate body (211), a fixed shaft (212) is fixedly installed on the both side outer walls of the plate body (211), the fixed shaft (212) is rotatably installed in the mounting groove (12), a pair of column rods (213) are fixedly installed on the bottom surface of the plate body (211) in a symmetrical manner, and a piston (214) is fixedly installed at the bottom of each column rod (213); The adjusting assembly (3) comprises a shell (31) fixedly installed on the top surface of the second support plate (22), an air collecting chamber (32) is formed in the shell (31), an air valve (34) is formed in the side wall of the air collecting chamber (32), the air valve (34) and the air outlet of the micro air pump (5) are communicated through an air pipe, a pair of air passages (33) are further formed in the shell (31), the two air passages (33) are communicated with the air collecting chamber (32), a piston (214) is slidingly installed in the air passage (33), and the bottom surface of the piston (214) and the side wall of the inner cavity of the air collecting chamber (32) are elastically connected through a spring (35).
10. A power engineering informatization site supervision method, implemented using the power engineering informatization site supervision device of any one of claims 1-9, characterized in that, The specific steps are as follows: S1: first, a plurality of support assemblies (2) are unfolded outwardly, so that the monitoring device stands upright on the ground; S2: open the micro air pump (5) to generate compressed gas, which enters the air collecting chamber (32) through the air pipe and the air valve (34), and is used for adjusting the levelness of the monitoring device; S3: the compressed gas enters the dustproof assembly (8) through the air pipe and the air hole (13) and generates an annular wind wall; S4: start the micro displacement sensor (64) and the wear detection device (9) to synchronously detect the wear degree and cross verify the data.