ASTM E1312-2009(2013)e1 8125 Standard Practice for Electromagnetic (Eddy-Current) Examination of Ferromagnetic Cylindrical Bar Product Above the Curie Temperature《在超过居里温度条件下对铁磁性圆柱棒.pdf
《ASTM E1312-2009(2013)e1 8125 Standard Practice for Electromagnetic (Eddy-Current) Examination of Ferromagnetic Cylindrical Bar Product Above the Curie Temperature《在超过居里温度条件下对铁磁性圆柱棒.pdf》由会员分享,可在线阅读,更多相关《ASTM E1312-2009(2013)e1 8125 Standard Practice for Electromagnetic (Eddy-Current) Examination of Ferromagnetic Cylindrical Bar Product Above the Curie Temperature《在超过居里温度条件下对铁磁性圆柱棒.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1312 09 (Reapproved 2013)1Standard Practice forElectromagnetic (Eddy Current) Examination ofFerromagnetic Cylindrical Bar Product Above the CurieTemperature1This standard is issued under the fixed designation E1312; the number immediately following the designation indicates the year of
2、original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEChanges were made editorially in July 2013.1. Scope*1.1 This pract
3、ice covers procedures for eddy current exami-nation of hot ferromagnetic bars above the Curie temperaturewhere the product is essentially nonmagnetic, but below2100 F (1149 C).1.2 This practice is intended for use on bar products havingdiameters of12 in. (12.7 mm) to 8 in. (203 mm) at linearthroughp
4、ut speeds up to 1200 ft/min (366 m/min). Larger orsmaller diameters may be examined by agreement between theusing parties.1.3 The purpose of this practice is to provide a procedure forin-line eddy current examination of bars during processing forthe detection of major or gross surface discontinuitie
5、s.1.3.1 The types of discontinuities capable of being detectedare commonly referred to as: slivers, laps, seams, roll-ins(scale, dross, and so forth), and mechanical damage such asscratches, scores, or indentations.1.4 This practice does not establish acceptance criteria.They must be specified by ag
6、reement between the usingparties.1.5 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.6 This practice does not purport to address all of
7、 thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this practice to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E543 Specification for A
8、gencies Performing NondestructiveTestingE1316 Terminology for Nondestructive Examinations2.2 Other Documents:SNT-TC-1A Recommended Practice for Personnel Qualifi-cation and Certification in Nondestructive Testing3ANSI/ASNT-CP-189 Standard for Qualification and Certifi-cation of NDT Personnel32.3 AIA
9、 Standard:NAS 410 Certification and Qualification of NondestructiveTesting Personnel43. Terminology3.1 Standard terminology relating to electromagnetic testingmay be found in Terminology E1316, Section C: Electromag-netic Testing.4. Summary of Practice4.1 PrincipleThe major advantage of examining fe
10、rro-magnetic bar product above the Curie temperature with eddycurrents is the enhanced signal-to-noise ratio obtained withoutthe need for magnetic saturation.4.2 SensorsThis examination may be performed withvarious types or designs of encircling coils or with probe coilsthat are fixed or rotating.4.
11、2.1 One or more exciter or sensor coils is used to encirclethe bar through which the product to be examined is passed.When the hot bar is in close proximity to the sensing and1This practice is under the jurisdiction of ASTM Committee E07 on Nonde-structive Testing and is the direct responsibility of
12、 Subcommittee E07.07 onElectromagnetic Method.Current edition approved July 15, 2013. Published August 2013. Originallyapproved in 1989. Last previous edition approved in 2009 as E1312 09. DOI:10.1520/E1312-09R13E01.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM
13、 Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available fromAmerican Society for Nondestructive Testing (ASNT), P.O. Box28518, 1711 Arlingate Ln., Columbus, OH 43228-0518, http:/www.asnt.org
14、.4Available from Aerospace Industries Association of America, Inc. (AIA), 1000Wilson Blvd., Suite 1700,Arlington, VA22209-3928, http:/www.aia-aerospace.org.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshoho
15、cken, PA 19428-2959. United States1exciting coils, eddy currents are induced in the hot product byan alternating current. The sensing coil detects the electromag-netic flux related to these currents. Changes or disruptions inthe normal flux pattern indicate the presence of discontinuities.This techn
16、ique is capable of examining the entire circumfer-ence without contacting the product.4.2.2 The surface can also be examined with probe coilshaving one or more exciters and sensors which are spaced inclose proximity to the product surface. The probe is usuallysmall and does not encircle the product,
17、 making it necessary torotate either the probes or the product to obtain 100 % coverageof the circumference. This is essentially a contact techniquebecause the coil is fixtured in a device that rides on thecircumference to maintain a fixed distance between the coil andproduct surface.4.2.3 Discontin
18、uities cause either a change in phase orsignal amplitude when detected by the sensing coil. Thesesignals are amplified and processed to activate marking orrecording devices, or both. Relative severity of the imperfec-tion can be indicated by the signal amplitude generated by theflux change or the de
19、gree of change in phase.4.2.4 Caution must be exercised in establishing referencestandards because flux changes caused by natural discontinui-ties might differ significantly from those generated by artificialdiscontinuities.5. Significance and Use5.1 The purpose of this practice is to describe a pro
20、cedurefor in-line-eddy-current examination of hot cylindrical bars inthe range of diameters listed in 1.2 for large and repetitivediscontinuities that may form during processing.5.2 The discontinuities in bar product capable of beingdetected by the electromagnetic method are listed in 1.3.1. Themeth
21、od is capable of detecting surface and some subsurfacediscontinuities that are typically in the order of 0.030 in. (0.75mm) and deeper, but some shallower discontinuities might alsobe found.5.3 Discontinuities that are narrow and deep, but short inlength, are readily detectable by both probe and enc
22、ircling coilsbecause they cause abrupt flux changes. Surface and subsur-face discontinuities (if the electromagnetic frequency providessufficient effective depth of penetration) can be detected by thismethod.5.3.1 Discontinuities such as scratches or seams that arecontinuous and uniform for the full
23、 length of cut length bars orextend for extensive linear distances in coiled product may notalways be detected when encircling coils are used. These aremore detectable with probe coils by intercepting the disconti-nuity in their rotation around the circumference.5.3.2 The orientation and type of coi
24、l are important param-eters in coil design because they influence the detectability ofdiscontinuities.5.4 The eddy current method is sensitive to metallurgicalvariations that occur as a result of processing, thus all receivedsignals above the alarm level are not necessarily indicative ofdefective pr
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