AGMA 12FTM22-2012 Crack Testing and Heat Treat Verification of Gears Using Eddy Current Technology.pdf
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1、12FTM22AGMA Technical PaperCrack Testing and HeatTreat Verification ofGears Using EddyCurrent TechnologyBy D. DeVries, Criterion NDTCrack Testing and Heat Treat Verification of Gears UsingEddy Current TechnologyDan DeVries, Criterion NDTThe statements and opinions contained herein are those of the a
2、uthor and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractWhile eddy current technology has long been used in the testing of bar, tube, and wire stock, advances inelectronics, automation, and coil design have paved the way for a new gene
3、ration of testers specificallydesigned for component testing applications. This includes the testing of gears and bearings which go intoautomotive and industrial applications. These testing systems easily integrate into production processesallowing forin-linetesting atproductionline speeds. Inadditi
4、on toenabling 100%of production componentstobeinspected,itcanhelpmonitorupstreamprocessesnotifyingoperatorsthatsomethingisnotfunctioningcorrectly. This greatly reduces scrap and warranty costs for gear and bearing manufacturers.Eddy current crack testing is performed by passing a small pair of coil
5、windings over a section of thecomponenttobetested. Thesecoilwindingsaresmallenoughtotestbetweengearteeth, andwithmulti-coilprobescantestverycomplexshapes. Mostcracktestapplicationsrequireonlyonetestfrequencysincemosttests require the detection of only surface flaws. Simultaneous testing with multipl
6、e frequencies allows fortesting of both surface and sub-surface defects when inspecting non-ferromagnetic parts.While not an absolute hardness test like a Rockwell test, eddy current heat treat verification can achievesortingresultsonparwithRockwelltesting. Thishasbeendemonstratedwithbothforgedandpo
7、wdermetalgears. Eddy current heat treat inspection coils come in both standard encircling coil configurations andmulti-coil custom configurations. The custom configurations allow for precise location testing verifying thatinduction heating parameters were correctly applied. Defects to be tested incl
8、ude misplaced case, shallowcase,shortquench,delayedquench,aircooled,non-heat-treat,andgroundoutconditions. Whenperformingheat-treatinspection,multipletestfrequenciesareusedtoreliablydetectthesevariousheat-treatanomalies.Eddy current testing offers fast, repeatable testing of gears and bearings. Test
9、ing data on each componentcan be stored electronically and re-analyzed off-line at a later date. Eddy current test instruments aredesignedtointegratewith PLC sinmaterialhandlingstationstosetupreal-timerejectioncapabilities. Theseare all features that complement modern QC requirements.Copyright 2012A
10、merican Gear Manufacturers Association1001 N. Fairfax Street, Suite 500Alexandria, Virginia 22314October 2012ISBN: 978-1-61481-053-73 12FTM22Crack Testing and Heat Treat Verification of GearsUsing Eddy Current TechnologyDan DeVries, Criterion NDTWhile eddy current technology was initially developed
11、for testing of bar, tube, and wire, advances inelectronics, automation and coildesign havepaved theway for a newgeneration of systems specifically de-signed to test components such as gears that go into automotive and industrial applications. These eddycurrentsystemsnotonlydetectcracksincomponents,b
12、utcanalsoverifyproperheat-treatconditions,properalloy composition, and the presence or absence of features such as splines or teeth.Eddycurrentsystemsarefast,clean,repeatableandeasytointegrateintoproductionprocesses allowingforin-linetestingatproductionlinespeeds. Inadditiontoenabling100%ofproductio
13、ncomponentstobeinspec-ted,eddycurrenttestinghelpmonitorupstream processesnotifyingoperatorsthat somethingis notfunction-ingcorrectly. This greatly reduces scrapandwarranty costsfor gearmanufacturers. Eliminatingorreducingoff-line chemical testing such as dye penetrant, magnetic particle or acid etch
14、 allows companies to reducewaste and go green.Eddy current 101Eddycurrenttestingworksbyinducinganelectromagneticfieldintoaconductivematerialandthenlookingforanomalies in that field. Figure 1 shows an energized coil that induces eddy currents to flow in the materialunder test. Changes in the material
15、 due to cracks or “structure” changes suchas heat treat variation, causetheeddycurrentsinthematerialtoflowdifferently. This differenceis detectedby aneddy currentinstrument.Figure 2shows ablock diagram of an eddy current test system. The eddy current instrument sends asinglefrequency or multiple fre
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