CN1690703A - Technological process for ultrasonic flaw detection of post insulator and porcelain bushing - Google Patents

Technological process for ultrasonic flaw detection of post insulator and porcelain bushing Download PDF

Info

Publication number
CN1690703A
CN1690703A CN 200410014777 CN200410014777A CN1690703A CN 1690703 A CN1690703 A CN 1690703A CN 200410014777 CN200410014777 CN 200410014777 CN 200410014777 A CN200410014777 A CN 200410014777A CN 1690703 A CN1690703 A CN 1690703A
Authority
CN
China
Prior art keywords
ripple
probe
support insulator
insulator
porcelain bushing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 200410014777
Other languages
Chinese (zh)
Other versions
CN100406883C (en
Inventor
王维东
刘勇
王鲜凤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
XUZHOU ELECTRIC POWER EXPERIMENT CENTER
Original Assignee
XUZHOU ELECTRIC POWER EXPERIMENT CENTER
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by XUZHOU ELECTRIC POWER EXPERIMENT CENTER filed Critical XUZHOU ELECTRIC POWER EXPERIMENT CENTER
Priority to CN200410014777XA priority Critical patent/CN100406883C/en
Publication of CN1690703A publication Critical patent/CN1690703A/en
Application granted granted Critical
Publication of CN100406883C publication Critical patent/CN100406883C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2291/00Indexing codes associated with group G01N29/00
    • G01N2291/04Wave modes and trajectories
    • G01N2291/044Internal reflections (echoes), e.g. on walls or defects

Landscapes

  • Investigating Or Analyzing Materials By The Use Of Ultrasonic Waves (AREA)

Abstract

The present invention relates to post insulator used by power plant and electric substation and porcelain bushing ultrasonic detection technology. In the design, there is special probe for post insulator and porcelain bushing ultrasonic detection connected to display; use probe to measure the coincidence with object waited for detection, singlet bottom wave shows there is no damage and the object can be used continually; or else, doublet or multilet shows the object has been damaged and should be stopped and replaced. The technology can change the laggard method only fit handwork detect after power cut, can process detection to post insulator and porcelain bushing charged; can find out crack in time efficiently, prevent accidents.

Description

Support insulator and porcelain bushing ultrasonic wave defects detecting technology method
The Genus of institute technical field
A kind of support insulator and the insulator that the present invention relates to the use of generating plant and transformer station overlap technology and method with one of UT (Ultrasonic Testing).
Background technology
At present, support insulator and insulator are the important composition equipment of generating plant and substation operation, it plays a part support wire and insulation, because the mechanical load in the long-time running, and the influence of rugged surroundings such as strong wind precipitation, can make support insulator and insulator exist defective hidden danger, this defective hidden danger is a kind of big threat to electric power netting safe running, very easily damage accident, at present, to the prediction in advance of support insulator defective and hidden danger, traditional way is to be checked with hand wobble by experienced personnel, The method effort, time-consuming, the precision of checking is also poor, and tiny flaw is difficult to find also there is not good solution at present.
Summary of the invention
In order to overcome the potential problem of support insulator and insulator, the invention provides support insulator and porcelain bushing ultrasonic wave defects detecting technology method, this process is changed the manual moving backward way of checking that has a power failure, can be under situation about not having a power failure, chargedly carry out the flaw detection of support insulator and insulator, can find the crackle hidden danger of porcelain spare inside timely and effectively, can shift to an earlier date trouble-saving generation, it is a new breakthrough of repair based on condition of component, to electric substation of power plant lightning arrester, support insulators etc. have possessed proper prophylactic methods because of the fracture of porcelain spare causes accidents such as power failure.
The technical solution adopted for the present invention to solve the technical problems is:
(1) in this scheme, design has support insulator and porcelain bushing ultrasonic wave flaw detection special-purpose probe, the The frequency probe is 2.5 million, the refraction angle is 10.5 °~19.5 °, this UT (Ultrasonic Testing) dedicated probe (Fig. 1) has a connection-peg to be communicated with the display screen of instrument, with the test of sliding that coincide of the spill plexiglass block of this probe and measured object, on the display if demonstrate the ripple of the unimodal end (Fig. 6) of measured object, the not damage of this measured object is described, measured object can use continuously; If demonstrate the end ripple (Fig. 2) of bimodal or multimodal, illustrate that promptly this measured object has had damage on the display, should stop using at once, should change rapidly.
(2) determining of flaw detection sensitivity: before measured objects such as support insulator and insulator being detected with probe, should at first determine the benchmark wave height of probe and measured object, i.e. Tan Shang sensitivity wave height, its process is: before with probe measured objects such as support insulator and insulator being detected, should at first determine the benchmark wave height of probe and measured object, i.e. Tan Shang sensitivity wave height, its design has the special-purpose test block of support insulator and insulator special use, make the wall thickness of measured object, be equal to measured hole to the distance of measuring the limit reference measurement of popping one's head in, the benchmark of the wave height of the unimodal end that is recorded, there has been the benchmark wave height promptly to compare measurement again as the sensitivity wave height.
(3) determining of zero defect arranged:
(1) when scanning, if there is not bimodal defect waves, isolated end ripple is only arranged, do not have and adhere to clutter, breadth is clear, and acoustic pressure is also high, and this is the flawless definition of measured object.
(2) when scanning, when probe rotates detection with the measured object circumference, though intact trap occurs near the end ripple, but the stronger reflection wave group that similar defect waves really occurred, at this moment, except that end ripple is strong, it is indefinite that other clutter also rises and falls, if mobile probe, ripple rises one after another, and does not have indication length, changes also big, this belongs to significantly spot defect reflection wave, actual measurement proof, this situation belong to porcelain spare external waviness and cement bond the sand grains place penetrate ripple, it is that manufacturing plant is when inserting cast iron with support insulator, fill the cement of perfusion at the circumference place, glue and sand grains, the sand grains of these gummeds is looped around on the friendship knot face of cast iron and porcelain body as a kind of reinforcing section, and the false just herein zone as the formation of crackle ripple, therefore when ultrasonic scan, crackle ripple that must will be herein and real crackle make a distinction, and this kind situation should decide support insulator and insulator is a serviceable condition.
(4) several differentiation ways are as follows:
(1) when defect waves and end ripple occur simultaneously, the signal of two ripples is than less than 6 decibels, and promptly the defect waves signal is lower than end ripple signal, and the indicating length of ripple should be defined as surface damage during less than 10 millimeters; During greater than 10 millimeters, should be defined as the crackle damage;
(2) when defect waves and end ripple occur simultaneously, the signal of two ripples is than greater than 6 decibels, and the indicating length of end ripple is less than 10 millimeters, and promptly defect waves should be defined as defect waves greater than end wave-wave height;
(3) when defect waves and end ripple occur simultaneously, the signal of two ripples equates that the indicating length of ripple should be spot defect less than 10 millimeters, and indicating length should be decided to be the crackle damage during greater than 10 millimeters;
(4) when checking the outer wall defective, the outer wall defect waves is smaller or equal to surveying the piece wall thickness, during promptly smaller or equal to the benchmark wave height of exploration hole reflection, should measure indicating length, when indicating length during less than 10 millimeters, should be decided to be the crackle damage;
(5) when defect waves greater than surveying the piece wall thickness, during promptly greater than exploration hole reflection benchmark wave height, the indication ripple should be decided to be surface damage smaller or equal to 10 millimeters, when indication wave height during greater than 10 millimeters, should be decided to be the crackle damage.
(6) survey in as find support insulator and insulator inherent vice, should adopt the test block close to make the benchmark wave height and make comparisons with depth of defect.
(5) process that has a power failure support insulator and insulator are detected a flaw in labour: under the fine situation of weather, must use insulating ladder, dress insulated shoes and insulating glove, measure the induced voltage of checking the position and should be lower than 300v; During operation,,, coat machine oil, be attached to slide on the measured object by detecting head and detect, after detection is finished, again with tested position wiped clean as couplant with tested position wiped clean with cotton or toilet paper.
Its beneficial effect is: owing to adopted such scheme, can make this process change the backward way that has a power failure and check by hand, can be under situation about not having a power failure, chargedly carry out the flaw detection of support insulator and insulator, can find the crackle hidden danger of porcelain spare inside timely and effectively, can shift to an earlier date trouble-saving generation, it is a new breakthrough of repair based on condition of component, to electric substation of power plant lightning arrester, support insulator etc. have possessed proper prophylactic methods because of the accidents such as power failure that the fracture of porcelain spare causes.
Description of drawings
The invention will be further described below in conjunction with accompanying drawing.
Accompanying drawing 1 is the structural principle synoptic diagram of support insulator and porcelain bushing ultrasonic wave flaw detection special-purpose probe.
Accompanying drawing 2 is the structural principle synoptic diagram of support insulator and the special-purpose test block of porcelain bushing ultrasonic wave flaw detection probe.
Accompanying drawing 3 detects the synoptic diagram of solid pillar insulator and insulator detection for probe.
Accompanying drawing 4 detects the synoptic diagram of Hollow Pillar insulator and insulator detection for probe.
The situation synoptic diagram of double-humped wave appearred in defect waves and end ripple simultaneously when accompanying drawing 5 was detection.
Accompanying drawing 6 defect waves when detecting only has the situation synoptic diagram of ripple at the bottom of the benchmark.
Embodiment:
In Fig. 1, this probe comprises housing 1, plug socket 3, organic glass contact block 8, inserts 6, piezoelectric crystal 7, lead 5 and 2 seven parts of winding wire.It has a rectangular housing 1, the end sealing of housing, and connect a plug socket 3, and being connected with connection-peg 4 in the plug socket 3, the other end of housing 1 is installed organic glass contact block 8; In the housing, be close to organic glass contact block 8, order is equipped with between piezoelectric crystal 7 and inserts 6 plug sockets 3 and the piezoelectric crystal 7 and is connected with winding wire 2, is electrically connected with lead 5 between connection-peg 4 and the piezoelectric crystal 7.During use, plug socket 3 is connected with instrument, and after opening, organic glass contact block 8 coincide with measured object and slides, ultrasonic emitting, reflect through measured object, the unimodal waveform that occurs on the instrument is steady, proves the measured object zero defect, the bimodal waveform that instrument occurs, and alter a great deal, can conclude that measured object has had defective, can in time handle.
In Fig. 2, this special use test block comprises thin plate 9, slab body 13, horizontal, vertical scale mark 11,15, reaches exploration hole 12,14 4 parts; This test block is the steel plate of a rectangle, in its left side, has one curve that this rectangular slab is divided into thin plate 9 and slab body 13 two parts, the top of slab body 13 and right side, have millimetre-sized scale mark 13,15, at the lower side place near slab body 13, from the close-by examples to those far off order has 3 big exploration holes 12, at close upper side edge place, from top to bottom, order has 3 little exploration holes 14, the left side of this test block lower side, be an arc limit, the right-hand part limit is one straight flange; The upper side of this plate body is the face that has radian of a protrusion, and the depression radian face of its protruding radian face and probe matches.During use, move along the projection side of arc, make ultrasound wave, promptly can obtain the reference waveform of different-thickness,, can measure the size of accurate ratio and defective by relatively in different position emissions with the surface of contact of dedicated probe.
In Fig. 3 Fig. 4, on the tested outer wall of hollow and solid pillar insulator 16,21, be fitted with dedicated probe 17, the line slip of going forward side by side detects, after the ultrasound wave 19 of probe detects, double-humped wave 22 can occur on the display screen of instrument, the ripple of this moment is the ripple of gluing place 20 of support insulator 16,21 and cast iron flange 18, should not predicate the crackle ripple.

Claims (6)

1. support insulator and porcelain bushing ultrasonic wave defects detecting technology method, it is characterized in that: design has support insulator and porcelain bushing ultrasonic wave flaw detection special-purpose probe, the The frequency probe is 2.5 million, the refraction angle is 10.5 °~19.5 °, The probe is communicated with the display screen of instrument, tests with the slip that coincide of the spill plexiglass block and the measured object of this probe, on the display screen as if the ripple of the unimodal end that demonstrates measured object, the not damage of this measured object is described, measured object can use continuously; If demonstrate the end ripple of bimodal or multimodal, illustrate that promptly this measured object has had damage on the display, should stop using at once, should change rapidly.
2. a kind of support insulator according to claim 1 and porcelain bushing ultrasonic wave defects detecting technology method, it is characterized in that: before measured objects such as support insulator and insulator being detected with probe, should at first determine the benchmark wave height of probe and measured object, i.e. Tan Shang sensitivity wave height, its design has the special-purpose test block of support insulator and insulator special use, make the wall thickness of measured object, be equal to measured hole to the distance of measuring the limit, the benchmark location survey of popping one's head in then, the benchmark of the wave height of the unimodal end that is recorded, there has been the benchmark wave height to compare measurement again as the sensitivity wave height.
3. a kind of support insulator according to claim 1 and porcelain bushing ultrasonic wave defects detecting technology method, it is characterized in that: when scanning, make probe and the detection that rotates of measured object circumference, though intact trap occurs near the end ripple, but, the stronger reflection wave group that similar defect waves really occurred, at this moment, except that end ripple is strong, it is indefinite that other clutter also rises and falls, if mobile probe, ripple rises one after another, and does not have indication length, change also big, this belongs to significantly spot defect reflection wave, must the general herein the crackle ripple and real crackle make a distinction, this kind situation should decide support insulator and insulator is a serviceable condition.
4. a kind of support insulator according to claim 1 and porcelain bushing ultrasonic wave defects detecting technology method, it is characterized in that: (1). when defect waves and end ripple occur simultaneously, the signal ratio of two ripples is less than 6 decibels, be that the defect waves signal is lower than end ripple signal, the indicating length of ripple should be defined as surface damage during less than 10 millimeters; During greater than 10 millimeters, should be defined as the crackle damage; (2). when defect waves and end ripple occurred simultaneously, the signal of two ripples was than greater than 6 decibels, and the indicating length of end ripple is less than 10 millimeters, and promptly defect waves is tall and big in end wave-wave height, should be defined as defect waves.(3). when defect waves and end ripple occurred simultaneously, the signal of two ripples equated that the indicating length of ripple should be decided to be spot defect less than 10 millimeters, and indicating length should be decided to be crackle during greater than 10 millimeters; (4). when checking the outer wall defective, the outer wall defect waves during benchmark wave height of exploration hole reflection, should be measured indicating length smaller or equal to surveying the piece wall thickness, when indicating length during less than 10 millimeters, should be decided to be crackle; When flaw echo greater than surveying the piece wall thickness, during exploration hole reflection reference wave, the indication wave height should be decided to be surface damage smaller or equal to 10 millimeters; When indicating wave height, should be decided to be the crackle damage greater than 10 millimeters.
5. a kind of support insulator according to claim 1 and porcelain bushing ultrasonic wave defects detecting technology method is characterized in that: as finding support insulator and insulator inherent vice, should adopt the test block hole close with depth of defect to make the reference wave height ratio in the detection.
6. a kind of support insulator according to claim 1 and porcelain bushing ultrasonic wave defects detecting technology method, it is characterized in that: the process that has a power failure support insulator and insulator are detected a flaw in labour: under the fine situation of weather, must use insulating ladder, dress insulated shoes and insulating glove, measure the induced voltage of checking the position and should be lower than the 300v operation; During operation,,, coat machine oil, be attached to slide on the measured object by detecting head and detect, after detection is finished, again with tested position wiped clean as couplant with tested position wiped clean with cotton or toilet paper.
CN200410014777XA 2004-04-25 2004-04-25 Technological process for ultrasonic flaw detection of post insulator and porcelain bushing Expired - Fee Related CN100406883C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200410014777XA CN100406883C (en) 2004-04-25 2004-04-25 Technological process for ultrasonic flaw detection of post insulator and porcelain bushing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200410014777XA CN100406883C (en) 2004-04-25 2004-04-25 Technological process for ultrasonic flaw detection of post insulator and porcelain bushing

Publications (2)

Publication Number Publication Date
CN1690703A true CN1690703A (en) 2005-11-02
CN100406883C CN100406883C (en) 2008-07-30

Family

ID=35346289

Family Applications (1)

Application Number Title Priority Date Filing Date
CN200410014777XA Expired - Fee Related CN100406883C (en) 2004-04-25 2004-04-25 Technological process for ultrasonic flaw detection of post insulator and porcelain bushing

Country Status (1)

Country Link
CN (1) CN100406883C (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102608213A (en) * 2012-01-16 2012-07-25 中国特种设备检测研究院 Acoustic detection method for defects of cast iron material
CN103336059A (en) * 2013-06-28 2013-10-02 云南电力试验研究院(集团)有限公司电力研究院 Method for judging mechanical strength of post porcelain insulator
CN103575809A (en) * 2013-11-20 2014-02-12 大连赛瑞金属制品有限公司 Method for detecting steel foot crack of suspension insulator through ultrasonic
CN103901109A (en) * 2014-03-31 2014-07-02 华南理工大学 Phased array ultrasonic detection device and method for inner defects of composite insulator
CN104034799A (en) * 2014-03-18 2014-09-10 国家电网公司 Ultrasonic phased array detection method for strut porcelain insulator surface and near-surface defects
CN105388216A (en) * 2015-12-15 2016-03-09 华北电力科学研究院有限责任公司 Three-support point porcelain bushing vibration detector
CN106706763A (en) * 2017-01-18 2017-05-24 天津赛达鑫源检验检测有限公司 Portable and adjustable tubular-product inner-diameter ultrasonic detection rod
CN110596253A (en) * 2019-07-22 2019-12-20 株洲时代电子技术有限公司 Steel rail flaw detection signal generation and processing device

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03272459A (en) * 1990-03-22 1991-12-04 Ngk Insulators Ltd Deterioration detector of insulator
JPH10267900A (en) * 1997-03-28 1998-10-09 Ngk Insulators Ltd Method for inspecting interface peeling of polymer insulator tube
CN1167950C (en) * 2002-09-26 2004-09-22 大连理工大学 Nondestructive inspection method for electric insulator steel foot and cast zinc ring combined face

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102608213A (en) * 2012-01-16 2012-07-25 中国特种设备检测研究院 Acoustic detection method for defects of cast iron material
CN102608213B (en) * 2012-01-16 2014-05-07 中国特种设备检测研究院 Acoustic detection method for defects of cast iron material
CN103336059A (en) * 2013-06-28 2013-10-02 云南电力试验研究院(集团)有限公司电力研究院 Method for judging mechanical strength of post porcelain insulator
CN103575809A (en) * 2013-11-20 2014-02-12 大连赛瑞金属制品有限公司 Method for detecting steel foot crack of suspension insulator through ultrasonic
CN104034799A (en) * 2014-03-18 2014-09-10 国家电网公司 Ultrasonic phased array detection method for strut porcelain insulator surface and near-surface defects
CN103901109A (en) * 2014-03-31 2014-07-02 华南理工大学 Phased array ultrasonic detection device and method for inner defects of composite insulator
CN105388216A (en) * 2015-12-15 2016-03-09 华北电力科学研究院有限责任公司 Three-support point porcelain bushing vibration detector
CN106706763A (en) * 2017-01-18 2017-05-24 天津赛达鑫源检验检测有限公司 Portable and adjustable tubular-product inner-diameter ultrasonic detection rod
CN110596253A (en) * 2019-07-22 2019-12-20 株洲时代电子技术有限公司 Steel rail flaw detection signal generation and processing device
CN110596253B (en) * 2019-07-22 2022-05-06 株洲时代电子技术有限公司 Steel rail flaw detection signal generation and processing device

Also Published As

Publication number Publication date
CN100406883C (en) 2008-07-30

Similar Documents

Publication Publication Date Title
Hasiotis et al. Application of ultrasonic C-scan techniques for tracing defects in laminated composite materials
CN104458910B (en) Nondestructive testing method for bonding defects of shell of wind turbine blade and web plate
CN106770637A (en) A kind of weld seam EDDY CURRENT test block and preparation method thereof
CN104251882A (en) Establishment method of concrete compression strength curve
WO2002040959A1 (en) Device and method for acoustic diagnosis and measurement by pulse electromagnetic force
CN100406883C (en) Technological process for ultrasonic flaw detection of post insulator and porcelain bushing
CN105259254A (en) Scanning device for steel rail bottom transverse cracks
CN106706759B (en) Method for evaluating defects of welding joint of P92 steel main steam pipeline of ultra-supercritical generator set
CN111390388A (en) Intelligent manufacturing system
CN111650281A (en) Ultrasonic phased array detection method for tower welding seam
CN1712951A (en) Ultrasonic Rayleigh defects detector of train axle
CN106053601A (en) Method for detecting incomplete root penetration of butt weld of thick-walled pipe in ferrite
JP3616620B2 (en) Anchor bolt corrosion diagnosis method and apparatus
Uchanin et al. Detection of cracks in ferrous steel structures: new innovative eddy current techniques
CN108469236B (en) Intelligent upright column buried depth probe suitable for guardrail moving inspection platform
CN105004790A (en) Compressor impeller defect phased array ultrasonic detection method
CN116068045B (en) Composite structure defect identification method for inhibiting lift-off effect interference
CN101793871A (en) Ultrasonic testing method for butt-jointed seam of steel tube tower in electric transmission line
CN206671259U (en) A kind of weld seam EDDY CURRENT test block
CN112305077B (en) Nondestructive testing method for bonding quality of bearing surface coating and substrate interface
CN1268922C (en) Electromagnetic guided wave detector and method for sea platform structure defect
CN111522794B (en) Ultrasonic angle spectrum database establishment method for weld defect type analysis and defect qualitative method based on database
Vipparthy et al. Inspection of rails using interface of ultrasonic testing
CN106289140A (en) Nonmetal basal body face coat thickness detection apparatus and detection method
CN206671215U (en) The internal flaw on-line measuring device of glass substrate

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20080730