CN106767398B - A kind of suspension insulator comprehensive parameters detection device and detection method - Google Patents

A kind of suspension insulator comprehensive parameters detection device and detection method Download PDF

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Publication number
CN106767398B
CN106767398B CN201611039241.2A CN201611039241A CN106767398B CN 106767398 B CN106767398 B CN 106767398B CN 201611039241 A CN201611039241 A CN 201611039241A CN 106767398 B CN106767398 B CN 106767398B
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China
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suspension insulator
rangefinder
guide rail
rotating mechanism
measurement
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CN106767398A (en
Inventor
濮峻嵩
孙奇慧
邓涛
陈正雄
蔡钢
刘曦
李海庆
孙悦
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State Grid Corp of China SGCC
Electric Power Research Institute of State Grid Sichuan Electric Power Co Ltd
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State Grid Corp of China SGCC
Electric Power Research Institute of State Grid Sichuan Electric Power Co Ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B11/00Measuring arrangements characterised by the use of optical techniques
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B5/00Measuring arrangements characterised by the use of mechanical techniques
    • G01B5/0002Arrangements for supporting, fixing or guiding the measuring instrument or the object to be measured

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Insulators (AREA)
  • Length Measuring Devices With Unspecified Measuring Means (AREA)

Abstract

The invention discloses a kind of suspension insulator comprehensive parameters detection device and detection methods, by being axially tensioned to suspension insulator, influence of the roll attitude in measurement process to measurement accuracy is avoided, while avoiding multiple clamping location error caused by repeated clamping, improves measurement accuracy;Two the first rangefinders, which use, measures the mode of penetrating;Meanwhile axial fluctuation and radial undulation measurement are all made of scanning mode progress, avoid traditional approach and determine that test point causes extreme value to lose.The purpose of the present invention is to provide a kind of suspension insulator comprehensive parameters detection device and detection methods, to solve the problems, such as that suspension insulator detection efficiency is low in the prior art, error is big, measurement accuracy is unstable, realize the human factor reduced in measurement process, stably measured precision reduces measurement process labor intensity, improves the purpose of measurement efficiency.

Description

A kind of suspension insulator comprehensive parameters detection device and detection method
Technical field
The present invention relates to suspension insulator subdomains, and in particular to a kind of suspension insulator comprehensive parameters detection device and detection Method.
Background technique
Suspension insulator is an important component in power transmission, and the performance requirement of the component is with structure height, radial direction The modes such as size, radial dimension fluctuation, axial dimension fluctuation, locking pin pulling force provide.In producer's production testing and use unit These sizes are all concern main points when receiving detection.
Measurement method mostly uses manual measurement at present, by the primary measuring tool such as tape measure, ruler and bracing wire displacement sensing The tools such as device, hand-held laser rangefinder measure.A large amount of time, efficiency are generally required for the measurement of an insulator Under relatively low, insulator run-of-the-mill is larger, therefore the labor intensity measured is also larger.And measurement process is to operator's Technical level is more demanding, and human factor is larger in measurement process, and there are larger fluctuations for measurement data.The above factor is very big Restrict insulator exfactory inspection and examining goods for user inspects quantity by random samples, be unfavorable for the stabilization and guarantee of product quality.
Summary of the invention
The purpose of the present invention is to provide a kind of suspension insulator comprehensive parameters detection device and detection methods, existing to solve There is the problem that suspension insulator detection efficiency is low, error is big, measurement accuracy is unstable in technology, realizes and reduce in measurement process Human factor, stably measured precision reduce measurement process labor intensity, improve the purpose of measurement efficiency.
The present invention is achieved through the following technical solutions:
It is directed downwardly to be fixed with free end in the frame for a kind of suspension insulator comprehensive parameters detection device, including frame Tensioning apparatus, tensioning apparatus are used to mount the upper cap nest of suspension insulator, and rotating mechanism, institute is arranged in the underface of tensioning apparatus The bottom at the top and suspension insulator of stating rotating mechanism is detachably connected;It is each in the line two sides of tensioning apparatus and rotating mechanism One upright guide rail, the axis co-planar of the long axis and tensioning apparatus, rotating mechanism of two upright guide rails, every upright guide rail are set On be respectively provided with first rangefinder that can be moved along upright guide rail, the horizontal face of the measurement direction of two the first rangefinders, And two the first rangefinders move synchronously;It further include the horizontal guide rail for being set to lower portion, the long axis of the horizontal guide rail, Intersect with the line of tensioning apparatus and rotating mechanism, the second rangefinder that can be moved along horizontal guide rail be set on horizontal guide rail, The measurement direction of the lower section in horizontal guide rail region between tensioning apparatus and rotating mechanism, second rangefinder is vertical Upwards.
For the problem that suspension insulator detection efficiency is low, error is big, measurement accuracy is unstable in the prior art, the present invention A kind of suspension insulator comprehensive parameters detection device is proposed, free end tensioning apparatus directed downwardly is fixed in frame, is tensioned The upper cap nest of the lower end mounting suspension insulator of device, suspension insulator lower end to be detected are mounted on rotating mechanism, i.e., Suspension insulator is mounted between rotating mechanism and tensioning apparatus, drives suspension insulator rotation by rotating mechanism.Tensioning apparatus Region between rotating mechanism is the region for installing suspension insulator, which is respectively set a upright guide rail, is used In installing the first rangefinder, the horizontal face of the measurement direction of two the first rangefinders is that two the first rangefinders constitute one group To the rangefinder penetrated.Two the first rangefinders move synchronously, to ensure that it is enterprising that two rangefinders are in identical horizontal plane always Row measurement.Two rangefinders are moved synchronously on respective guide rail using the existing method of synchronization, for example pass through a controller Part such as A.C. contactor, relay etc. is able to achieve, or the mechanical control of the connecting rod by moving synchronously also is able to achieve, because This is not especially limited in the present invention.It further include the horizontal guide rail for being set to lower portion, horizontal guide rail setting is outstanding in installation The lower section in the region of formula insulator.The long axis of horizontal guide rail intersects with the line of tensioning apparatus and rotating mechanism, due to tensioning The line of device and rotating mechanism crosses the axis of suspension insulator, therefore is that the long axis of horizontal guide rail crosses the axis of suspension insulator Line, using straight line where ensuring horizontal guide rail as the diametrical direction of suspension insulator, so that it is guaranteed that the second ranging on horizontal guide rail Instrument is moved along the radial direction of suspension insulator.The measurement direction of second rangefinder straight up, thus to be mounted on tensioning The bottom of suspension insulator between device and rotating mechanism is scanned measurement, scans the irregular table in suspension insulator bottom The concave-convex arrangement situation in face.
Workflow of the invention is as follows, and suspension insulator is articulated to measurement position first, will be exhausted by tensioning apparatus Edge is axially tensioned;Adjustment two the first rangefinders in left and right and the second rangefinder of bottom (do not have to very smart to appropriate location Really, it is used to determine scanning approximate location);Start rotating mechanism, insulator drives slowly rotation by bottom rotating mechanism, and control is left Right two the first rangefinders move in certain distance up and down along upright guide rail, the second rangefinder edge on the horizontal guide rail Move back and forth in radial a certain range, measurement is scanned to measured zone.Due to the level between two the first rangefinders Distance is constant always, therefore is subtracted with the distance between two first rangefinders exhausted to suspension type measured by each first rangefinder The distance of edge can obtain the radial dimension data of suspension insulator.In addition, by the second rangefinder radially moved back and forth Measurement is scanned to the bottom of suspension insulator, scans the concave-convex arrangement situation of suspension insulator bottom irregular surface, To obtain suspension insulator bottom irregularity along the relative size data of suspension insulator axial direction.The present invention is to suspension insulator Sub axial tensioning, avoids influence of the roll attitude in measurement process to measurement accuracy, all parameters are in clamped one time, one kind It is measured in measurement posture, avoids multiple clamping location error caused by repeated clamping, improve measurement accuracy;Two first Rangefinder avoids measurement error caused by suspension insulator axle center misaligns using measuring to the mode of penetrating;Meanwhile it is axial Fluctuation and radial undulation measurement are all made of scanning mode progress, avoid traditional artificial mode and determine that test point causes extreme value to lose It loses, to realize the human factor reduced in measurement process, stably measured precision reduces measurement process labor intensity, improves and surveys The purpose of amount efficiency.
It further, further include the tension measuring device for being fixed on frame facet.When rotating mechanism does not rotate, manually will On tension measuring device carry to locking pin, locking pin pulling force is measured, so that the present invention can also lock The measurement of value of thrust is sold, service performance is improved.
Preferably, the rotating mechanism includes rotary shaft, and is connected to the electricity of rotary shaft bottom end, driving rotary shaft rotation Machine.It is to be rotated by motor driven rotary shaft, then suspension insulator rotation is driven by rotary shaft, realizes suspension insulator rotation It is controllable.Wherein motor is preferably stepper motor.
Preferably, first rangefinder, the second rangefinder are laser range finder.Accuracy of laser distance measuring instrument height, performance Stablize, compared to traditional manual measurement mode, can greatly improve precision ensures to measure stabilization.
It further, further include the processor for receiving the first rangefinder, the second rangefinder signal.The is received by processor The measuring signal of one rangefinder, the second rangefinder, convenient for the unified carry out data collection of staff and processing.
Preferably, the output end of the processor is connected to display device.It is that processor surveys the first rangefinder, second After the signal of distance meter carries out reception processing, while transmitting it to display device and being shown, it is intuitive convenient for staff, timely The tested suspension insulator of acquisition dimension information.
Suspension insulator detection method, comprising the following steps:
(a) bottom end of suspension insulator is connect with rotating mechanism, the top of suspension insulator is mounted, by rotating mechanism Driving suspension insulator is rotated;
(b) being radially arranged to two rangefinders penetrated at left and right sides of suspension insulator, to two rangefinders penetrated What is synchronized in suspension insulator thickness range moves up and down carry out ranging;With to the distance between two rangefinders penetrated Two rangefinders respectively measured distance is subtracted, the radial dimension of suspension insulator is obtained;
(c) by the rangefinder moved radially along suspension insulator, measurement is scanned to the bottom surface of suspension insulator, is obtained To the axial dimension of suspension insulator.
Preferably, suspension insulator is rotated under axial tension.Suspension insulator is axially tensioned, can be kept away Exempt from influence of the roll attitude in measurement process to measurement accuracy.
Preferably, the step (b) and step (c) carry out simultaneously.To improve working efficiency, time cost is saved.
Preferably, the radial dimension of the suspension insulator obtained according to step (b) and step (c), axial dimension data, it is real When be transmitted to display device and shown.Dimension information that is intuitive convenient for staff, timely obtaining tested suspension insulator.
Compared with prior art, the present invention having the following advantages and benefits:
A kind of suspension insulator comprehensive parameters detection device of the present invention and detection method are axially tensioned suspension insulator, Influence of the roll attitude in measurement process to measurement accuracy is avoided, all parameters are in clamped one time, a kind of measurement posture It is measured, avoids multiple clamping location error caused by repeated clamping, improve measurement accuracy;Two the first rangefinders use The mode of penetrating is measured, measurement error caused by suspension insulator axle center misaligns is avoided;Meanwhile axial direction fluctuates and radial direction Fluctuation measurement is all made of scanning mode progress, avoids traditional artificial mode and determines that test point causes extreme value to lose, thus real The human factor in measurement process is now reduced, stably measured precision reduces measurement process labor intensity, improves the mesh of measurement efficiency 's.
Detailed description of the invention
Attached drawing described herein is used to provide to further understand the embodiment of the present invention, constitutes one of the application Point, do not constitute the restriction to the embodiment of the present invention.In the accompanying drawings:
Fig. 1 is a kind of structural schematic diagram of suspension insulator comprehensive parameters detection device;
Fig. 2 is the flow diagram of suspension insulator detection method.
Label and corresponding parts title in attached drawing:
1- frame, 2- tensioning apparatus, 3- rotating mechanism, 4- upright guide rail, the first rangefinder of 5-, 6- horizontal guide rail, 7- Two rangefinders, 8- tension measuring device, 9- suspension insulator.
Specific embodiment
To make the objectives, technical solutions, and advantages of the present invention clearer, below with reference to embodiment and attached drawing, to this Invention is described in further detail, and exemplary embodiment of the invention and its explanation for explaining only the invention, are not made For limitation of the invention.
Embodiment 1:
As shown in Figure 1, a kind of suspension insulator comprehensive parameters detection device of the present invention, including frame 1, in the frame 1 It is fixed with free end tensioning apparatus 2 directed downwardly, tensioning apparatus 2 is used to mount the upper cap nest of suspension insulator, tensioning apparatus 2 Rotating mechanism 3 is arranged in underface, and the top of the rotating mechanism 3 and the bottom of suspension insulator are detachably connected;It is filled in tensioning It sets 2 and one upright guide rail 4, the long axis and tensioning apparatus 2 of two upright guide rails 4, rotation is respectively set with the line two sides of rotating mechanism 3 The axis co-planar of rotation mechanism 3 is respectively provided with first rangefinder 5 that can be moved along upright guide rail 4 on every upright guide rail 4, The horizontal face of measurement direction of two the first rangefinders 5, and two the first rangefinders 5 move synchronously;It further include being set to frame 1 Internal horizontal guide rail 6, the long axis of the horizontal guide rail 6 intersect, level is led with the line of tensioning apparatus 2 and rotating mechanism 3 The second rangefinder 7 that can be moved along horizontal guide rail 6 is set on rail 6, and the horizontal guide rail 6 is located at tensioning apparatus 2 and whirler The lower section in region between structure 3, the measurement direction of second rangefinder 7 is straight up.It further include the drawing for being fixed on 1 side of frame Force measuring device 8.The rotating mechanism 3 includes rotary shaft, and is connected to the electricity of rotary shaft bottom end, driving rotary shaft rotation Machine.First rangefinder 5, the second rangefinder 7 are laser range finder.In the course of work of the present invention, first by suspension insulator Son 9 is articulated to measurement position, is axially tensioned insulator by tensioning apparatus 2;Adjustment left and right two the first rangefinders 5 and The second rangefinder of bottom 7 arrives scanning approximate location;Start rotating mechanism 3, insulator is driven by bottom rotating mechanism 3 slowly to be turned Dynamic, two the first rangefinders 5 in control left and right move in certain distance up and down along upright guide rail 4, and the second rangefinder 7 exists It is moved back and forth in radial a certain range on horizontal guide rail 6, measurement is scanned to measured zone.Due to two the first rangings Horizontal distance between instrument 5 is constant always, therefore subtracts each first rangefinder 5 with the distance between two first rangefinders 5 The measured distance to suspension insulator 9 can obtain the radial dimension data of suspension insulator 9.In addition, by radially Lai The second dynamic rangefinder 7 of return is scanned measurement to the bottom of suspension insulator 9, scans 9 bottom of suspension insulator and does not advise The then concave-convex arrangement situation on surface, to obtain 9 bottom irregularity of the suspension insulator opposite ruler axial along suspension insulator 9 Very little data.The present invention is axial to suspension insulator 9 to be tensioned, and avoids the roll attitude in measurement process to the shadow of measurement accuracy It rings, all parameters are measured in clamped one time, a kind of measurement posture, avoid multiple clamping position caused by repeated clamping Error improves measurement accuracy;Two the first rangefinders 5 avoid 9 axle center of suspension insulator not using measuring to the mode of penetrating Measurement error caused by centering;Meanwhile axial fluctuation and radial undulation measurement are all made of scanning mode progress, avoid traditional Artificial mode determines that test point causes extreme value to lose, thus realize the human factor reduced in measurement process, stably measured precision, Measurement process labor intensity is reduced, the purpose of measurement efficiency is improved.When rotating mechanism 3 does not rotate, tension measurement is filled manually It sets on 8 carries to locking pin, locking pin pulling force is measured, to carry out the measurement of locking pin value of thrust.Shown pulling force is surveyed Measuring device 8 is preferably tensiometer.
Embodiment 2:
It on the basis of embodiment 1, further include the processor for receiving the first rangefinder 5,7 signal of the second rangefinder.It is described The output end of processor is connected to display device.After processor receives the signal of the first rangefinder 5, the second rangefinder 7, It transmits it to display device simultaneously to be shown, ruler that is intuitive convenient for staff, timely obtaining tested suspension insulator Very little information, processor and display device are able to achieve using active computer.
Embodiment 3:
Suspension insulator detection method as shown in Figure 2, comprising the following steps:
(a) bottom end of suspension insulator is connect with rotating mechanism, the top of suspension insulator is mounted, by rotating mechanism Driving suspension insulator is rotated;(b) being radially arranged to two rangefinders penetrated at left and right sides of suspension insulator, it is right What two rangefinders penetrated synchronized in suspension insulator thickness range moves up and down carry out ranging;With two surveys to penetrating The distance between distance meter subtracts two rangefinders respectively measured distance, obtains the radial dimension of suspension insulator;(c) pass through The rangefinder moved radially along suspension insulator is scanned measurement to the bottom surface of suspension insulator, obtains suspension insulator Axial dimension.
Wherein, suspension insulator is rotated under axial tension.The step (b) and step (c) carry out simultaneously. The radial dimension of the suspension insulator obtained according to step (b) and step (c), axial dimension data, real-time Transmission is to showing dress It sets and is shown.
Above-described specific embodiment has carried out further the purpose of the present invention, technical scheme and beneficial effects It is described in detail, it should be understood that being not intended to limit the present invention the foregoing is merely a specific embodiment of the invention Protection scope, all within the spirits and principles of the present invention, any modification, equivalent substitution, improvement and etc. done should all include Within protection scope of the present invention.

Claims (6)

1. a kind of suspension insulator comprehensive parameters detection device, including frame (1), which is characterized in that fixed in the frame (1) There is free end tensioning apparatus directed downwardly (2), tensioning apparatus (2) is used to mount the upper cap nest of suspension insulator, tensioning apparatus (2) Underface be arranged rotating mechanism (3), the top of the rotating mechanism (3) and the bottom of suspension insulator are detachably connected;? A upright guide rail (4), the long axis of two upright guide rails (4) is respectively arranged in the line two sides of tensioning apparatus (2) and rotating mechanism (3) With the axis co-planar of tensioning apparatus (2), rotating mechanism (3), being respectively provided with one on every upright guide rail (4) can be along upright guide rail (4) mobile the first rangefinder (5), the horizontal face of measurement direction of two the first rangefinders (5), and two the first rangefinders (5) it moves synchronously;Further include being set to the internal horizontal guide rail (6) of frame (1), the long axis of the horizontal guide rail (6), with The line of tight device (2) and rotating mechanism (3) intersects, and setting can be along the second of horizontal guide rail (6) movement on horizontal guide rail (6) Rangefinder (7), the horizontal guide rail (6) are located at the lower section in region between tensioning apparatus (2) and rotating mechanism (3), and described second The measurement direction of rangefinder (7) is straight up;It further include the tension measuring device (8) for being fixed on frame (1) side;The rotation Mechanism (3) includes rotary shaft, and is connected to the motor of rotary shaft bottom end, driving rotary shaft rotation.
2. a kind of suspension insulator comprehensive parameters detection device according to claim 1, which is characterized in that described first surveys Distance meter (5), the second rangefinder (7) are laser range finder.
3. a kind of suspension insulator comprehensive parameters detection device according to claim 1, which is characterized in that further include receiving The processor of first rangefinder (5), the second rangefinder (7) signal.
4. a kind of suspension insulator comprehensive parameters detection device according to claim 3, which is characterized in that the processor Output end be connected to display device.
5. the suspension insulator detection method based on detection device any in Claims 1-4, which is characterized in that including following Step:
(a) bottom end of suspension insulator is connect with rotating mechanism, the top of suspension insulator is mounted, is driven by rotating mechanism Suspension insulator is rotated;
(b) being radially arranged to two the first rangefinders (5) penetrated, to two first penetrated at left and right sides of suspension insulator What rangefinder (5) synchronized in suspension insulator thickness range moves up and down carry out ranging;With two first surveys to penetrating The distance between distance meter (5) subtracts the respective measured distance of two the first rangefinders (5), obtains the radial ruler of suspension insulator It is very little;
(c) by the second rangefinder (7) moved radially along suspension insulator, survey is scanned to the bottom surface of suspension insulator Amount, obtains the axial dimension of suspension insulator;
Wherein, suspension insulator is rotated under axial tension;
The step (b) and step (c) carry out simultaneously.
6. suspension insulator detection method according to claim 5, which is characterized in that obtained according to step (b) and step (c) The radial dimension of the suspension insulator arrived, axial dimension data, real-time Transmission to display device are shown.
CN201611039241.2A 2016-11-21 2016-11-21 A kind of suspension insulator comprehensive parameters detection device and detection method Active CN106767398B (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001157951A (en) * 1999-11-30 2001-06-12 Univ Chuo Shape accuracy measuring device by sequential two-point method, and method for measuring space between laser displacement meter for measuring shape accuracy by sequential two-point method
CN101619965A (en) * 2009-08-14 2010-01-06 北京领邦仪器技术有限公司 Wheel-pair automatic measuring device
CN104251664A (en) * 2014-09-25 2014-12-31 国家电网公司 Wireless network symmetrical laser ranging-based automatic coal checking method for power plant
CN204346365U (en) * 2014-12-31 2015-05-20 张秀斌 Lorry body dimension measuring device
CN204630508U (en) * 2015-04-20 2015-09-09 湖南省醴陵市鑫瑞电瓷电器有限公司 Pin insulator internal thread and thread depth Automated inspection equipment
CN106091944A (en) * 2016-07-18 2016-11-09 电子科技大学 A kind of creep age distance measurement apparatus of suspension insulator

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001157951A (en) * 1999-11-30 2001-06-12 Univ Chuo Shape accuracy measuring device by sequential two-point method, and method for measuring space between laser displacement meter for measuring shape accuracy by sequential two-point method
CN101619965A (en) * 2009-08-14 2010-01-06 北京领邦仪器技术有限公司 Wheel-pair automatic measuring device
CN104251664A (en) * 2014-09-25 2014-12-31 国家电网公司 Wireless network symmetrical laser ranging-based automatic coal checking method for power plant
CN204346365U (en) * 2014-12-31 2015-05-20 张秀斌 Lorry body dimension measuring device
CN204630508U (en) * 2015-04-20 2015-09-09 湖南省醴陵市鑫瑞电瓷电器有限公司 Pin insulator internal thread and thread depth Automated inspection equipment
CN106091944A (en) * 2016-07-18 2016-11-09 电子科技大学 A kind of creep age distance measurement apparatus of suspension insulator

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