Power distribution equipment temperature detection device and monitoring method thereof

By combining a self-locking rotating mechanism and a sliding mechanism, the problem of inflexible installation of temperature detection devices for power distribution equipment is solved, enabling multi-directional monitoring and rapid alarm, and improving the timeliness of monitoring.

CN114777941BActive Publication Date: 2026-02-17GUANGDONG POWER GRID CO LTD +1
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202210591049.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-27
Publication Date
2026-02-17
Estimated Expiration
2042-05-27

AI Technical Summary

Technical Problem

Existing temperature detection devices for power distribution equipment tend to cause messy internal wiring when the temperature monitoring range is increased, and they need to be fixed to the inner lining plate during installation, making it impossible to flexibly adjust the monitoring range and affecting the timeliness of monitoring.

Method used

The device employs a self-locking rotating mechanism and multiple sliding mechanisms, combined with a powerful suction cup and bolt fixing, to achieve stable installation and flexible position adjustment. It communicates with the control device through a temperature detection module to monitor the temperature in real time and issue an alarm when the temperature is abnormal.

Benefits of technology

It enables multi-directional and multi-point temperature monitoring, is installed stably and flexibly, improves monitoring timeliness, and can promptly notify on-duty personnel to handle abnormal situations.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN114777941B_ABST
    Figure CN114777941B_ABST
Patent Text Reader

Abstract

The application discloses a kind of power distribution equipment temperature detection device and its monitoring method, device includes: control device, fixed seat, self-locking rotating mechanism, multiple groups of sliding mechanisms and base, one end of self-locking rotating mechanism is connected with fixed seat, the other end is connected with base.Base is connected with sliding mechanism, locking mechanism is set in base and is used with each group of sliding mechanism, sliding mechanism is provided with rotating seat, rotating seat is rotatably connected with the bottom of first telescopic rod, and the top of first telescopic rod is provided with temperature detection module.Temperature detection module is connected with control device, temperature detection module is used to collect the temperature information of equipment, and is sent to control device to display.By installing the self-locking rotating mechanism that can be stretched and rotated on fixed seat, the rotation angle of base is adjusted.Multiple groups of sliding mechanisms are installed on base to change the telescopic range of first telescopic rod, and monitoring range can be flexibly adjusted according to scene needs during use.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power distribution equipment temperature detection devices, and particularly relates to a power distribution equipment temperature detection device and a monitoring method thereof. BACKGROUND

[0002] With the continuous construction and improvement of urban power systems, the power distribution equipment for managing and monitoring the circuit is also increasing and relatively dispersed. The power distribution equipment is prone to failure due to abnormal temperature rise. Therefore, in order to ensure the normal operation of the power distribution equipment, the temperature of the power distribution equipment needs to be monitored.

[0003] The existing power distribution equipment temperature detection device mainly adopts single-point installation detector. This type of power distribution equipment temperature detection device is prone to limited temperature monitoring range, resulting in the need for space temperature to propagate to the detector when the detected temperature changes, affecting the timeliness of monitoring.

[0004] In order to solve the above problems, the temperature monitoring can be performed by setting a temperature sensing cable inside the power distribution equipment. However, this temperature monitoring method increases the temperature monitoring range, causes disorderly laying inside the power distribution equipment, and needs to be fixedly arranged on the inner lining during installation, resulting in that the monitoring range cannot be flexibly adjusted according to the scene requirements during use. SUMMARY

[0005] The present application provides a power distribution equipment temperature detection device and a monitoring method thereof, which solves the technical problem that the existing temperature monitoring method increases the temperature monitoring range, causes disorderly laying inside the power distribution equipment, and needs to be fixedly arranged on the inner lining during installation, resulting in that the monitoring range cannot be flexibly adjusted according to the scene requirements during use.

[0006] The present application provides a power distribution equipment temperature detection device, which comprises a control device, a fixing seat, a self-locking rotating mechanism, a plurality of sliding mechanisms and a base;

[0007] One end of the self-locking rotating mechanism is connected with the fixing seat, and the other end is connected with the base;

[0008] The base is connected with the sliding mechanism, and the base is provided with a locking mechanism matched with each group of sliding mechanisms;

[0009] One end of the sliding mechanism is provided with a rotating seat, the rotating seat is rotationally connected with the bottom of the first telescopic rod, and the top of the first telescopic rod is provided with a temperature detection module;

[0010] The temperature detection module is in communication connection with the control device, the temperature detection module is used for collecting temperature information of the equipment and sending to the control device for display.

[0011] Optionally, one end of the fixed seat is connected with the self-locking rotating mechanism, and the other end of the fixed seat is provided with a plurality of groups of bolts.

[0012] Optionally, one end of the fixed seat is connected with the self-locking rotating mechanism, and the other end of the fixed seat is provided with a cylindrical groove for mounting a strong suction cup, and the strong suction cup is arranged in the cylindrical groove.

[0013] Optionally, the self-locking rotating mechanism comprises a positioning cylinder, a rotating cylinder, a second telescopic rod and a first spring.

[0014] One end of the positioning cylinder is connected with the fixed seat, and the other end of the positioning cylinder is provided with a plurality of clamping grooves.

[0015] One end of the rotating cylinder is provided with a protruding tooth for clamping with each clamping groove, and the other end of the rotating cylinder is connected with the base.

[0016] Both ends of the second telescopic rod are fixedly connected with the inner center of the positioning cylinder and the rotating cylinder, respectively.

[0017] The first spring is sleeved on the second telescopic rod, and both ends of the first spring are fixedly connected with the inner center of the positioning cylinder and the rotating cylinder, respectively.

[0018] Optionally, the base is provided with two groups of telescopic grooves penetrating through the opposite side walls of the base, and each group of telescopic grooves comprises a plurality of sub-telescopic grooves.

[0019] An extrusion positioning groove is arranged above the telescopic groove, and the extrusion positioning groove is in communication with each group of telescopic grooves.

[0020] The locking mechanism is arranged in the extrusion positioning groove and is used for adjusting the extension distance of the sliding mechanism.

[0021] Optionally, the base further comprises a top plate, and the top plate is provided with a through hole.

[0022] The locking mechanism comprises a locking plate, a positioning tooth, a fixed rod, a handle and a second spring.

[0023] One end of the fixed rod is connected with the locking plate, and the other end of the fixed rod penetrates through the through hole and is connected with the handle.

[0024] The second spring is sleeved on the fixed rod, one end of the second spring is fixedly connected with the inner center of the top plate, and the other end of the second spring is fixedly connected with the top center of the locking plate.

[0025] The positioning tooth is arranged on the bottom of the locking plate, and the positioning tooth is used for clamping with the sliding mechanism.

[0026] Optionally, the sliding mechanism comprises the rotating seat, the sliding rod and the anti-dropping block which are sequentially fixedly connected.

[0027] The longitudinal width of the rotating seat is greater than the longitudinal width of the sub telescopic groove.

[0028] The sliding rod is provided with a locking groove at the top of the extrusion positioning groove, which is locked by the locking mechanism.

[0029] The anti-dropping block is used for limiting the maximum extension distance of the sliding rod.

[0030] Optionally, the rotating seat is internally provided with a rotating groove, and a fixed shaft is fixedly arranged in the rotating groove.

[0031] A rotating block is sleeved on the fixed shaft, the top of the rotating block is connected with the bottom of the first telescopic rod, and the bottom of the rotating block is attached to the rotating positioning mechanism.

[0032] Optionally, the rotating positioning mechanism comprises a rotating locking block and a propelling bolt, the bottom of the rotating seat is provided with a threaded hole which is used in cooperation with the propelling bolt, and the propelling bolt is connected with the bottom of the rotating locking block through the threaded hole.

[0033] The top of the rotating locking block is an arc-shaped concave surface which is attached to the bottom of the rotating block, and the rotating locking block is used for locking the rotating block.

[0034] The application further provides a power distribution equipment temperature monitoring method applied to the power distribution equipment temperature detection device.

[0035] In response to the received scene information, a preset alarm temperature of the temperature detection module is determined.

[0036] Temperature information collected by the temperature detection module in real time is acquired through the sensor module.

[0037] The temperature information is compared with the preset alarm temperature.

[0038] When the temperature information is greater than or equal to the preset alarm temperature, an alarm is triggered.

[0039] When the temperature information is less than the preset alarm temperature, the step of acquiring the temperature information collected by the temperature detection module in real time through the sensor module is executed.

[0040] From the above technical solutions, the application has the following advantages:

[0041] The application adjusts the rotation angle of the base by installing the self-locking rotation mechanism capable of stretching and rotating on the fixing seat. One end of the fixing seat is fixed on the monitoring equipment panel by installing the powerful suction disc through a plurality of groups of uniformly arranged bolts or by setting the cylindrical groove, so that the power distribution equipment temperature detection device is fixed stably and is convenient for position adjustment through the powerful suction disc. The extension range of the first extension rod is changed by installing a plurality of groups of sliding mechanisms on the base, and the top of the first extension rod is installed with the temperature detection module for detecting temperature, so that the multi-directional and multi-point space monitoring range is realized. The sliding mechanism and the first extension rod after the adjustment position are locked by the locking mechanism and the rotation positioning mechanism respectively, so that the operation is convenient, the installation is stable, and the monitoring needs of various scenes are met. The temperature detection module is in communication connection with the control device, when the equipment temperature is detected to be abnormal, the control device controls the alarm lamp or the alarm to issue an alarm, so that the on-duty personnel is notified in the first time for processing, the monitoring reaction time is greatly reduced, and the monitoring timeliness is improved. The technical problem that the existing temperature monitoring mode causes the internal laying of the power distribution equipment to be messy when increasing the temperature monitoring range, and the internal lining plate needs to be fixed during installation, so that the monitoring range cannot be flexibly adjusted according to the scene needs during use is solved. BRIEF DESCRIPTION OF DRAWINGS

[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0043] Figure 1 A perspective view of the power distribution equipment temperature detection device is provided for the first embodiment of the present application Figure 1 ;

[0044] Figure 2 A perspective view of the power distribution equipment temperature detection device is provided for the first embodiment of the present application Figure 2 ;

[0045] Figure 3 A fixing seat half-section perspective view is provided for the first embodiment of the present application;

[0046] Figure 4 A self-locking rotation mechanism partial-section perspective view is provided for the first embodiment of the present application;

[0047] Figure 5 A base, a plurality of groups of sliding mechanisms and a plurality of groups of first extension rod installation perspective view is provided for the first embodiment of the present application;

[0048] Figure 6 A base perspective view is provided for the first embodiment of the present application;

[0049] Figure 7 The base half-section view is provided for the first embodiment of the present application.

[0050] Figure 8 The locking mechanism view is provided for the first embodiment of the present application.

[0051] Figure 9 The sliding mechanism view is provided for the first embodiment of the present application.

[0052] Figure 10 The rotating seat half-section view is provided for the first embodiment of the present application.

[0053] Figure 11 The step flow chart of the power distribution equipment temperature monitoring method is provided for the second embodiment of the present application.

[0054] In Figures 1-10 , the present application provides a power distribution equipment temperature monitoring method.

[0055] 1, fixed seat; 2, cylindrical groove; 3, strong suction cup; 4, bolt; 5, positioning cylinder; 6, rotating cylinder; 7, second telescopic rod; 8, first spring; 9, clamping groove; 10, protruding tooth; 11, base; 12, sub-telescopic groove; 13, extrusion positioning groove; 14, locking plate; 15, positioning tooth; 16, fixed rod; 17, handle; 18, second spring; 19, sliding rod; 20, anti-dropping block; 21, rotating seat; 22, locking groove; 23, rotating groove; 24, fixed shaft; 25, rotating block; 26, rotating locking block; 27, advancing bolt; 28, first telescopic rod; 29, temperature detection module. DETAILED DESCRIPTION

[0056] The power distribution equipment temperature detection device and monitoring method provided by the embodiments of the present application are used to solve the technical problem that the existing temperature monitoring method can increase the temperature monitoring range, but can cause the internal laying of the power distribution equipment to be messy, and needs to be fixedly arranged on the inner lining plate during installation, so that the monitoring range cannot be flexibly adjusted according to the scene requirement during use.

[0057] In order to make the invention purpose, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the following described embodiments are only part of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0058] For ease of understanding, please refer to Figures 1-10The application provides a power distribution equipment temperature detection device, which comprises a control device, a fixing base 1, a self-locking rotating mechanism, a plurality of sliding mechanisms and a base 11.

[0059] One end of the self-locking rotating mechanism is connected with the fixing base 1, and the other end is connected with the base 11.

[0060] The base 11 is connected with the sliding mechanism, and the base 11 is provided with a locking mechanism used in cooperation with each group of sliding mechanisms.

[0061] One end of the sliding mechanism is provided with a rotating seat 21, the rotating seat 21 is rotationally connected with the bottom of a first telescopic rod 28, and the top of the first telescopic rod 28 is provided with a temperature detection module 29.

[0062] The temperature detection module 29 is in communication connection with the control device, the temperature detection module 29 is used for collecting temperature information of equipment and sending the temperature information to the control device for display.

[0063] In the embodiment, the first telescopic rod 28 is a multi-stage telescopic rod, the connection mode of the self-locking rotating mechanism and the fixing base 1 can be set as fixed connection, for example, welding, riveting and the like, and the self-locking rotating mechanism can be fixedly connected on the base 11 through a plurality of connecting plates. When the base 11 needs to be rotated, the base 11 is pulled along the direction from the self-locking rotating mechanism to the base 11, so that the teeth 10 on the self-locking rotating mechanism are separated from the clamping grooves 9 and then rotated, after the rotation is completed, the first spring 8 on the self-locking rotating mechanism pulls the teeth 10 to be clamped with the clamping grooves 9, so that automatic reset locking is realized.

[0064] The base 11 is provided with a sub-telescopic groove 12 for placing a plurality of sliding mechanisms and a locking mechanism for adjusting the extension distance of each group of sliding mechanisms in parallel, the sliding mechanism is placed in the sub-telescopic groove 12, and the locking mechanism is used for locking the sliding mechanism. When the extension distance of the sliding mechanism needs to be adjusted, the locking mechanism is unlocked to the sliding mechanism, and then each group of sliding mechanisms is extended outward or inward, after the locking mechanism is released, the locking mechanism is automatically reset to lock the sliding mechanism.

[0065] One end or both ends of the sliding mechanism are connected with the rotating seat 21, the rotating seat 21 is rotationally connected with the bottom of the first telescopic rod 28, and the temperature detection module 29 is arranged at the top of the first telescopic rod 28. The extension distance of each first telescopic rod 28 is adjusted through the sliding mechanism, so that the temperature of different regions can be accurately monitored at multiple points. The rotating block 25 in the rotating seat 21 is adjusted, the extension angle of the first telescopic rod 28 connected with the rotating seat 21 is changed, the monitoring coverage is further increased, the temperature detection module 29 arranged at the top of the first telescopic rod 28 can keep a specific detection distance from the equipment to be monitored according to the detection requirement, and the requirement of different space scenes can be met.

[0066] The temperature detection module 29 is used to collect the temperature information of the equipment in real time, and transmit the collected temperature information to the control device for display. When the collected temperature information is greater than or equal to the preset alarm temperature, the control device triggers an alarm, and the alarm light flashes or the alarm sound is emitted.

[0067] Optionally, the temperature detection module 29 collects the temperature information of the equipment to be monitored in real time, and transmits the temperature information to the control device. The control device compares the temperature information with the first preset temperature. When the temperature information is equal to or greater than the first preset temperature and less than the second preset temperature, the control device controls the alarm light to flash, and transmits the alarm position and alarm level to the user end. When the temperature information is equal to or greater than the second preset temperature, the control device controls the alarm light to flash, and controls the alarm sound to be emitted, while transmitting the alarm position and alarm level to the user end. This facilitates the on-duty personnel to obtain the alarm position and alarm level when obtaining the alarm signal, and different disposal processes can be taken according to the alarm level.

[0068] It should be noted that the preset alarm temperature is divided into two levels. The first preset temperature is the temperature at which the equipment appears temperature abnormality but does not affect the normal operation of the equipment in a short period of time. The first preset temperature can be set by combining the temperature during normal operation of the equipment with the temperature amplitude that may be increased during operation of the equipment. The second preset temperature is the temperature that will cause the equipment to malfunction if not handled in time. The second preset temperature can be set by combining the temperature during normal operation of the equipment with the temperature threshold that affects the normal operation of the equipment.

[0069] Further, the connection mode of the temperature detection module 29 and the control device has multiple options, which can be wired connection or wireless connection. For example, the temperature detection module 29 can transmit the collected temperature to the control device through a wireless sensor. The temperature detection module 29 includes a thermistor, which has the advantages of high sensitivity, high resistance value, small size, simple structure, short response time, low power consumption, no need for reference end compensation, and suitability for long-distance measurement and control.

[0070] Please refer to Figures 1-3 As shown in the figure, one end of the fixed seat 1 is connected with the self-locking rotating mechanism, and the other end of the fixed seat 1 can be connected with the equipment to be monitored through multiple groups of uniformly arranged bolts 4, or can be connected with the equipment to be monitored through the strong suction cup 3 installed on the fixed seat 1. The strong suction cup 3 is placed in the cylindrical groove 2, so that the fixed seat 1 can be connected with the equipment to be monitored through the strong suction cup 3.

[0071] In the embodiment of the present application, when the power distribution equipment temperature detection device needs to be installed above the equipment to be monitored, the fixing seat 1 can be fixed on the equipment to be monitored through a plurality of bolts 4; when the power distribution equipment temperature detection device needs to be installed on the side of the equipment to be monitored, the fixing seat 1 can be fixed on the equipment to be monitored through the strong suction cup 3, which is convenient for position conversion and installation.

[0072] Please refer to Figure 1 , 2 , 4, the self-locking rotating mechanism includes a positioning cylinder 5, a rotating cylinder 6, a second telescopic rod 7 and a first spring 8, the second telescopic rod 7 is a multi-stage telescopic rod, the diameters and thicknesses of the positioning cylinder 5 and the rotating cylinder 6 are the same, wherein one end of the positioning cylinder 5 is fixedly connected with the fixing seat 1, and the other end of the positioning cylinder 5 is provided with a plurality of uniformly distributed clamping grooves 9. A convex tooth 10 is arranged on one end of the rotating cylinder 6 connected with the positioning cylinder 5 and is clamped with each clamping groove 9, so that the clamping groove 9 and the convex tooth 10 realize a mechanical positioning and mounting relationship, and the other end of the rotating cylinder 6 is fixedly connected with the surface of the base 11 through a plurality of connecting plates. The two ends of the second telescopic rod 7 are fixedly connected with the inner sides of the positioning cylinder 5 and the rotating cylinder 6, respectively, and the first spring 8 for pulling each group of convex teeth 10 to insert into the corresponding clamping groove 9 is arranged on the second telescopic rod 7, and the two ends of the first spring 8 are fixedly connected with the inner sides of the positioning cylinder 5 and the rotating cylinder 6, respectively.

[0073] In the embodiment of the present application, when it is necessary to adjust the angle of monitoring temperature by rotating, the base 11 can be pulled along the direction from the positioning cylinder 5 to the rotating cylinder 6, so that the base 11 drives the rotating cylinder 6 to move, thereby causing each group of convex teeth 10 on the rotating cylinder 6 to be separated from the corresponding clamping groove 9 on the positioning cylinder 5, the rotating angle of the base 11 is adjusted, and when the rotating angle is set, the base 11 is loosened, the first spring 8 pulls the rotating cylinder 6 to move along the direction of the positioning cylinder 5, so that each group of convex teeth 10 is clamped with the corresponding clamping groove 9, and the effect of locking after rotating is realized.

[0074] Please refer to Figure 5 , 6 , 7, two groups of telescopic grooves penetrating the opposite side walls of the base 11 are arranged on the base 11, and each group of telescopic grooves includes a plurality of sub-telescopic grooves 12 for placing the sliding mechanism. An extrusion positioning groove 13 communicating with each group of telescopic grooves is arranged above the telescopic grooves, and the locking mechanism is arranged in the extrusion positioning groove 13 to adjust the extension distance of the sliding mechanism placed in the sub-telescopic groove 12.

[0075] In the embodiment of the present application, the sliding mechanism and the locking mechanism are built in the base 11 by setting the sub telescopic groove 12 for placing the sliding mechanism and the extrusion positioning groove 13 for placing the locking mechanism. The locking mechanism locks the sliding mechanism in the sub telescopic groove 12. When it is needed to adjust the sliding mechanism placed in the sub telescopic groove 12, the locking mechanism is moved along the telescopic groove to the extrusion positioning groove 13, the locking of the sliding mechanism by the locking mechanism is released, the telescopic distance of the sliding mechanism is adjusted, then the locking mechanism is moved towards the sliding mechanism to lock the sliding mechanism, so that the sliding mechanism and the locking mechanism have the characteristics of stable sliding and stable locking.

[0076] Further, as shown in Figure 7 、 8 , 9, the width of the extrusion positioning groove 13 along the telescopic direction of the sliding mechanism is equal to the maximum telescopic distance of the sliding mechanism in one direction. By limiting the width of the extrusion positioning groove 13, the telescopic distance of the sliding mechanism is increased, and the monitoring coverage is indirectly increased.

[0077] As shown in Figure 7 、 8 , the base 11 further comprises a top plate, and a through hole is arranged on the top plate. The through hole is preferably arranged at the center of the top plate. The connecting position of the second spring 18 and the top plate is appropriately adjusted to ensure that the second spring 18 can drive the locking plate 14 to move. The locking mechanism comprises the locking plate 14, the positioning teeth 15, the fixed rod 16, the handle 17 and the second spring 18. One end of the fixed rod 16 is connected with the locking plate 14, and the other end of the fixed rod 16 penetrates through the through hole and is connected with the handle 17, so that the locking plate 14 can be pulled to move by the handle 17. The second spring 18 is sleeved on the fixed rod 16. One end of the second spring 18 is fixedly connected with the inside center of the top plate, and the other end of the second spring 18 is fixedly connected with the top center of the locking plate 14. The positioning teeth 15 are symmetrically arranged at the bottom of the locking plate 14 and are used for clamping the sliding mechanism.

[0078] In the embodiment of the present application, the handle 17 drives the fixed rod 16 to move towards the top plate, so that the fixed rod 16 drives the locking plate 14 to move towards the top plate, the positioning teeth 15 arranged on the locking plate 14 are separated from the locking groove 22 arranged on the sliding mechanism, the telescopic distance of the sliding rod 19 placed in the sub telescopic groove 12 is adjusted, the handle 17 is released after the telescopic distance of the sliding rod 19 is adjusted, the second spring 18 drives the locking plate 14 to move towards the sliding mechanism, the positioning teeth 15 symmetrically arranged at the bottom of the locking plate 14 are inserted into the locking groove 22 arranged on the sliding mechanism, and the locking of the sliding mechanism is realized. The operation is convenient, and the locking is stable.

[0079] As shown in Figure 9As shown, the sliding mechanism includes sequentially fixedly connected rotating seat 21, sliding rod 19 and anti-off block 20, lock grooves 22 for being clamped and locked by the locking mechanism are uniformly arranged on the top of sliding rod 19 towards the top of the extrusion positioning groove 13, the rotating seat 21 with a longitudinal width greater than that of the sub telescopic groove 12 is arranged at one end of the sliding rod 19, and the anti-off block 20 for limiting the maximum extension distance of the sliding rod 19 is arranged at the other end of the sliding rod 19.

[0080] In the embodiment of the present application, two groups of sliding rods 19 are inserted into the sub telescopic groove 12, and the anti-off blocks 20 for limiting the maximum extension distance of the sliding rod 19 are symmetrically installed on the inner side ends of the sliding rods 19. The sum of the longitudinal widths and the height of the two groups of sliding rods 19 plus the anti-off blocks 20 are equal to the sum of the longitudinal widths and the height of the sub telescopic groove 12, and the outer side ends of the sliding rods 19 are symmetrically fixedly installed with the rotating seat 21. The longitudinal width of the rotating seat 21 is greater than that of the sub telescopic groove 12, so as to increase the sliding stability. The locking mechanism is inserted into the lock groove 22 arranged on the top of the sliding rod 19, so that the sliding rod 19 is locked and positioned in the sub telescopic groove 12 after telescopic adjustment, thereby avoiding the sliding phenomenon caused by equipment vibration.

[0081] As shown in Figure 9 , 10 As shown, the rotating seat 21 is internally provided with a rotating groove 23, a fixed shaft 24 is fixedly arranged in the rotating groove 23, a rotating block 25 for adjusting the monitoring angle is sleeved on the fixed shaft 24, the top of the rotating block 25 is connected with the bottom of the first telescopic rod 28, and the bottom of the rotating block 25 is attached to the rotating positioning mechanism for limiting.

[0082] In the embodiment of the present application, the rotating groove 23 with an opening is arranged on the rotating seat 21 and faces away from the fixed seat 1 and the outer side end, the fixed shaft 24 is fixedly installed in the rotating groove 23, the rotating block 25 with a semicylindrical inner side end is rotatably installed on the fixed shaft 24, the rotating positioning mechanism is installed on the rotating seat 21 at the bottom of the rotating block 25, and the top of the rotating block 25 is fixedly connected with the bottom of the first telescopic rod 28. The position of the rotating block 25 is limited by the rotating positioning mechanism, when the rotating positioning mechanism moves away from the rotating block 25, the position of the rotating block 25 on the fixed shaft 24 can be adjusted, the monitoring angle of the first telescopic rod 28 is changed, after the monitoring angle is set, the rotating positioning mechanism moves towards the rotating block 25, and the rotating block 25 is positioned and locked.

[0083] Further, the connection mode of the first telescopic rod 28 and the rotating block 25 has multiple choices, which can be detachable connection or fixed connection, and the person skilled in the art can set the connection mode of the first telescopic rod 28 and the rotating block 25 according to different scenes, and the embodiment of the present application does not limit this.

[0084] As shown inFigure 10 As shown, the rotating positioning mechanism comprises a rotating locking block 26 for locking the rotating block 25 and a pushing bolt 27 for connecting with the bottom of the rotating locking block 26, the top of the rotating locking block 26 is arc-shaped concave and matched with the bottom of the rotating block 25, and the bottom of the rotating seat 21 is provided with a threaded hole matched with the pushing bolt 27.

[0085] In the embodiment of the application, the inner side end of the top of the rotating locking block 26 is quarter arc-shaped concave and matched with the bottom cylindrical surface of the rotating block 25, the pushing bolt 27 is installed through the threaded hole on the rotating seat 21 below the fixed shaft 24, the rotating locking block 26 with the quarter arc-shaped concave top of the side end is arranged to increase the contact and extrusion area, after the rotating angle of the rotating block 25 is adjusted, the pushing bolt 27 is rotated to extrude and press the rotating locking block 26, so that the rotating locking block 26 can lock the rotating block 25.

[0086] In the embodiment of the application, the self-locking rotating mechanism that can be stretched and rotated is installed on the fixed seat 1, so as to adjust the rotating angle of the base 11. One end of the fixed seat 1 is installed with the strong suction disc 3 through the bolts 4 or the columnar grooves 2, so as to fix the power distribution equipment temperature detection device on the monitoring equipment panel, which is stable in installation and convenient for position adjustment. A plurality of sliding mechanisms are installed on the base 11 to change the extension range of the first extension rod 28, and the temperature detection module 29 for detecting temperature is installed on the top of the first extension rod 28, so as to realize multi-directional and multi-point space monitoring range. The locking mechanism and the rotating positioning mechanism are used to lock the sliding mechanism and the first extension rod 28 after the position is adjusted, which is convenient to operate and stable in installation, and meets the monitoring requirements of various scenes. The temperature detection module 29 is in communication connection with the control device, when the temperature of the equipment is detected to be abnormal, the control device controls the alarm lamp or the alarm to give an alarm, so as to inform the on-duty personnel to deal with in the first time, greatly shortens the monitoring reaction time and improves the monitoring timeliness. The technical problem that the existing temperature monitoring method can cause the internal laying of the power distribution equipment to be messy when the temperature monitoring range is increased, and the power distribution equipment needs to be fixed on the inner lining during installation, so that the monitoring range cannot be flexibly adjusted according to the scene requirement during use is solved.

[0087] Please refer to Figure 11 , Figure 11 The step flow chart of the power distribution equipment temperature monitoring method provided in the second embodiment of the application.

[0088] The power distribution equipment temperature monitoring method provided by the application is applied to any power distribution equipment temperature detection device, and comprises the following steps:

[0089] Step 101, in response to the received scene information, determining the preset alarm temperature of the temperature detection module 29.

[0090] The scene information refers to the working temperature of the device, the temperature threshold, the working environment and the like. The temperature detection module 29 is used for collecting the temperature information of the device in real time, and transmitting the collected temperature information to the control device for display.

[0091] The preset alarm temperature is divided into two levels. The first preset temperature is the temperature at which the device appears temperature anomaly but does not affect the normal operation of the device in a short period of time. The first preset temperature can be set by combining the temperature during normal operation of the device and the temperature range that can be increased during operation of the device. The second preset temperature is the temperature that will cause the device to malfunction if not handled in time. The second preset temperature can be set by combining the temperature during normal operation of the device and the temperature threshold affecting the normal operation of the device.

[0092] In the embodiment of the application, the control module obtains the scene information corresponding to the device to be monitored, and sets the preset alarm temperature of the temperature detection module 29 according to the working temperature of the device, the temperature threshold, the working environment and the like in the scene information. The temperature detection module 29 can be set to multiple groups of thermistors according to different use scenarios.

[0093] Step 102, obtaining the temperature information collected by the temperature detection module 29 in real time through the sensor module.

[0094] In the embodiment of the application, the temperature detection module 29 detects the temperature of the device in real time, and transmits the collected temperature information to the control device through the wireless sensor module for temperature comparison and storage.

[0095] Step 103, comparing the temperature information with the preset alarm temperature.

[0096] In the embodiment of the application, the control device compares the collected temperature with the preset alarm temperature, and judges whether the temperature meets the temperature value of the first preset temperature or the second preset temperature.

[0097] Step 104, when the temperature information is greater than or equal to the preset alarm temperature, triggering an alarm.

[0098] In the embodiment of the present application, the temperature detection module 29 collects the temperature information of the device to be monitored in real time, and transmits the temperature information to the control device, and the control device compares the temperature information with the first preset temperature, when the temperature information is equal to or greater than the first preset temperature and less than the second preset temperature, the control device controls the alarm lamp to flash, and transmits the alarm position and level to the user end; when the temperature information is equal to or greater than the second preset temperature, the control device controls the alarm lamp to flash, and controls the alarm to emit alarm sound, and simultaneously transmits the alarm position and level to the user end, which facilitates the on-duty personnel to obtain the alarm position and level when obtaining the alarm signal, and different disposal processes can be taken according to the alarm level.

[0099] In step 105, when the temperature information is less than the preset alarm temperature, the step of obtaining the temperature information collected by the temperature detection module 29 in real time through the sensor module is executed.

[0100] In the embodiment of the present application, when the temperature information is less than the preset alarm temperature, the temperature of the device is normal at this time, the temperature detection module 29 collects the temperature information of the device in real time, and transmits the temperature information collected each time to the control device through the wireless sensor module for comparison and judgment, so that the corresponding alarm can be sent in time when the temperature of the device is abnormal, and the on-duty personnel can take different disposal processes according to the alarm level.

[0101] In the embodiment of the present application, the preset alarm temperature of the temperature detection module 29 is determined by responding to the received scene information, the collected temperature information is compared with the preset alarm temperature, when the temperature information is greater than or equal to the preset alarm temperature, the alarm is triggered. When the temperature information is less than the preset alarm temperature, the step of obtaining the temperature information collected by the temperature detection module 29 in real time through the sensor module is executed. When the temperature of the device is abnormal, the alarm can be sent in the first time, the corresponding alarm information is sent to the on-duty personnel, and the device is cooled in time to avoid the device from malfunctioning due to high temperature.

[0102] The above-described embodiments are only used to illustrate the technical solutions of the present application, rather than limit them; although the foregoing embodiments of the present application have been described in detail, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalent ones; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A power distribution equipment temperature detection apparatus, characterized by, The utility model relates to a control device, fixed seat, self -locking rotation mechanism, multiple sets of sliding mechanism and pedestal include: One end of the self -locking rotation mechanism is connected with the fixed seat, and the other end is connected with the pedestal; The pedestal is connected with the sliding mechanism, and the pedestal is provided with a locking mechanism matched with each group of the sliding mechanism; One end of the sliding mechanism is provided with a rotating seat, the rotating seat is rotatably connected with the bottom of the first telescopic rod, and the top of the first telescopic rod is provided with a temperature detection module; The temperature detection module is in communication connection with the control device, the temperature detection module is used for collecting temperature information of equipment and sending to the control device for display; The rotating seat is internally provided with a rotating groove, and a fixed shaft is fixedly arranged in the rotating groove; A rotating block is sleeved on the fixed shaft, the top of the rotating block is connected with the bottom of the first telescopic rod, and the bottom of the rotating block is attached with a rotating positioning mechanism; The rotating positioning mechanism includes a rotating locking block and a propelling bolt, the bottom of the rotating seat is provided with a threaded hole matched with the propelling bolt, and the propelling bolt penetrates through the threaded hole and is connected with the bottom of the rotating locking block; The top of the rotating locking block is arc concave and attached with the bottom of the rotating block, and the rotating locking block is used for locking the rotating block; The pedestal is provided with two groups of telescopic grooves penetrating through the opposite side walls of the pedestal, and each group of the telescopic grooves includes a plurality of sub telescopic grooves; The top of the telescopic groove is provided with an extrusion positioning groove, and the extrusion positioning groove is communicated with each group of the telescopic groove; The locking mechanism is arranged in the extrusion positioning groove and is used for adjusting the extension distance of the sliding mechanism; The sliding mechanism includes the rotating seat, a sliding rod and an anti -drop block which are sequentially fixedly connected; The longitudinal width of the rotating seat is greater than the longitudinal width of the sub telescopic groove; The sliding rod is provided with a locking groove matched with the locking mechanism for locking at the top of the extrusion positioning groove; The anti -drop block is used for limiting the maximum extension distance of the sliding rod. One end of the fixed seat is connected with the self -locking rotation mechanism, and the other end of the fixed seat is provided with multiple bolts.

2. The power distribution equipment temperature detection apparatus of claim 1, wherein One end of the fixed seat is connected with the self -locking rotation mechanism, and the other end of the fixed seat is provided with a cylindrical groove for mounting a powerful suction cup, and the cylindrical groove is provided with the powerful suction cup.

3. The power distribution equipment temperature detection apparatus of claim 1, wherein The self -locking rotation mechanism includes a positioning cylinder, a rotating cylinder, a second telescopic rod and a first spring; 4. The power distribution equipment temperature detection apparatus of claim 1, wherein One end of the positioning cylinder is connected with the fixed seat, and the other end of the positioning cylinder is provided with multiple clamping grooves; One end of the rotating cylinder is provided with a protruding tooth matched with each clamping groove, and the other end of the rotating cylinder is connected with the pedestal; The two ends of the second telescopic rod are respectively fixedly connected with the inner side centers of the positioning cylinder and the rotating cylinder; The first spring is sleeved on the second telescopic rod, and the two ends of the first spring are respectively fixedly connected with the inner side centers of the positioning cylinder and the rotating cylinder. The pedestal further includes a top plate, and the top plate is provided with a through hole; 5. The power distribution equipment temperature detection apparatus of claim 1, wherein The locking mechanism includes a locking plate, a positioning tooth, a fixed rod, a handle and a second spring; ​ One end of the fixed rod is connected with the locking plate, and the other end of the fixed rod penetrates through the through hole and is connected with the handle; The fixed rod is sleeved with the second spring, one end of the second spring is fixedly connected with the inside center of the top plate, and the other end of the second spring is fixedly connected with the top center of the locking plate; The bottom of the locking plate is symmetrically provided with the positioning teeth at both ends, and the positioning teeth are used for clamping with the sliding mechanism.

6. A power distribution equipment temperature monitoring method, characterized by, The power distribution equipment temperature detection device is applied to any one of claims 1-5, comprising: In response to the received scene information, determine the preset alarm temperature of the temperature detection module; Obtain the temperature information collected by the temperature detection module in real time through the sensor module; Compare the temperature information with the preset alarm temperature; When the temperature information is greater than or equal to the preset alarm temperature, trigger the alarm; When the temperature information is less than the preset alarm temperature, jump to execute the step of obtaining the temperature information collected by the temperature detection module in real time through the sensor module.

Citation Information

Patent Citations

  • Temperature detecting device for detecting inner temperature of cabinet

    CN105092068A

  • Rotary sliding table with adjustable angle

    CN108994790A

  • Sliding block lock suitable for linear sliding table

    CN112879426A

  • Equipment operation state monitoring system and fixing structure thereof

    CN215769509U

  • Rotary fixing device

    TWI500854B