ASTM E571-1998(2003)e1 Standard Practice for Electromagnetic (Eddy-Current) Examination of Nickel and Nickel Alloy Tubular Products《镍及镍合金管形制品的电磁(涡电流)检验》.pdf
《ASTM E571-1998(2003)e1 Standard Practice for Electromagnetic (Eddy-Current) Examination of Nickel and Nickel Alloy Tubular Products《镍及镍合金管形制品的电磁(涡电流)检验》.pdf》由会员分享,可在线阅读,更多相关《ASTM E571-1998(2003)e1 Standard Practice for Electromagnetic (Eddy-Current) Examination of Nickel and Nickel Alloy Tubular Products《镍及镍合金管形制品的电磁(涡电流)检验》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 571 98 (Reapproved 2003)e1Standard Practice forElectromagnetic (Eddy-Current) Examination of Nickel andNickel Alloy Tubular Products1This standard is issued under the fixed designation E 571; the number immediately following the designation indicates the year oforiginal adoption or, i
2、n the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.e1NOTEEditorial changes made throughout the standard in July 2003.1. Scope1.1 This practice2c
3、overs the procedures for eddy-currentexamination of nickel and nickel alloy tubes. These proceduresare applicable for tubes with outside diameters up to 2 in. (50.8mm), incl, and wall thicknesses from 0.035 to 0.120 in. (0.889to 3.04 mm), incl. These procedures may be used for tubesbeyond the size r
4、ange recommended, by contractual agreementbetween the purchaser and the producer.1.2 The procedures described in this practice make use offixed encircling coils or probe systems.1.3 The values stated in inch-pound units are to be regardedas the standard.NOTE 1For convenience, the term “tube” or “tub
5、ular product” willhereinafter be used to refer to both pipe and tubing.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine th
6、e applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:E 309 Practice for Eddy-Current Examination of Steel Tu-bular Products Using Magnetic Saturation3E 543 Practice for Agencies Performing NondestructiveTesting3E 1316 Terminology for Nondestructive Examin
7、ations32.2 Other Documents:SNT-TC-1A Recommended Practice for Personnel Qualifi-cation and Certification in Nondestructive Testing4ANSI/ASNT-CP-189 ASNT Standard for Qualification andCertification of Nondestructive Testing Personnel4NAS-410 Certification and Qualification of NondestructivePersonnel
8、(Quality Assurance Committee)53. Terminology3.1 Standard terminology relating to electromagnetic ex-amination may be found in Terminology E 1316, Section C,Electromagnetic Testing.4. Summary of Practice4.1 Examination is usually performed by the use of one oftwo general techniques:4.1.1 Encircling C
9、oil TechniqueExamination is per-formed by passing the tube lengthwise through a coil energizedwith alternating current at one or more frequencies. See Fig. 1.The electrical impedance of the coil is modified by theproximity of the tube, the tube dimensions, electrical conduc-tivity, saturating magnet
10、ic field, magnetic permeability, andmetallurgical or mechanical discontinuities in the tube. As thetube passes through the coil, the changes in electromagneticresponse caused by these variables in the tube change the coilimpedance, which activates an audible or visual signalingdevice or a mechanical
11、 marker.4.1.2 Probe Coil TechniqueProbe coils are positioned inclose proximity to the outside diameter or to the insidediameter, or to both diameter surfaces, of the tubular productbeing examined as shown in Fig. 1. Since the probe is generallysmall and does not encircle the tube, it examines only a
12、 limitedarea in the vicinity of the probe. When required to examine theentire volume of the tubular product, it is common practice torotate either the tubular product or the probe around the tube.Frequently, in the case of welded tubular products, only theweld is examined by scanning along the weld
13、zone.4.2 The magnetic permeability of magnetic materials se-verely limits the depth of penetration of induced eddy currents.Furthermore, the permeability variations inherent in magnetictubular products can cause spurious test results. A usefulsolution to this problem involves the application of a st
14、rong1This practice is under the jurisdiction of ASTM Committee E07 on Nonde-structive Testing and is the direct responsibility of Subcommittee E07.07 onElectromagnetic Methods.Current edition approved July 10, 2003. Published September 2003. Originallyapproved in 1976. Last previous edition approved
15、 in 1998 as E 571 - 98.2For ASME Boiler and Pressure Vessel Code applications see related PracticeSE-571 in Section II of that Code.3Annual Book of ASTM Standards, Vol 03.03.4Available from The American Society for Nondestructive Testing (ASNT), P.O.Box 28518, 1711 Arlingate Lane, Columbus, OH 43228
16、-0518.5Available from Aerospace Industries Association of America, Inc., 1250 EyeStreet, N.W., Washington, DC 20005.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.external magnetic field in the region of the examining coil orprobe.
17、This technique, known as magnetic saturation, causes amagnetic material to exhibit sufficiently small magnetic char-acteristics of permeability, hysteresis, etc., so that the materialunder examination is effectively rendered nonmagnetic. Whenachieved, this condition allows an eddy-current system tom
18、easure and detect electrical resistivity and geometrical varia-tions (including defects) independent of concurrent variationsin magnetic properties.NOTE 2Practice E 309 may be used for strongly magnetic materials.4.2.1 During the examination of slightly magnetic tubingthe signals resulting from the
19、variation of magnetic permeabil-ity can mask the signals resulting from small imperfections. Amagnetic saturation technique can be used to reduce thisinterference to an acceptable level.5. Significance and Use5.1 Eddy-current examination is a nondestructive method oflocating discontinuities in metal
20、lic materials. Signals can beproduced by discontinuities originating on either the externalor internal surfaces of the tube or by discontinuities totallycontained within the wall. Since the density of eddy currentsdecreases nearly exponentially with increasing distance fromthe surface nearest the co
21、il, the response to deep-seated defectsdecreases correspondingly. Phase changes are also associatedwith changes in depth, allowing the use of phase analysistechniques.5.2 The response from natural discontinuities can be signifi-cantly different than that from artificial discontinuities, such asdrill
22、ed holes or notches. For this reason, sufficient work shouldbe done to establish the sensitivity level and setup required todetect natural discontinuities of consequence to the end use ofthe product.5.3 Some indications obtained by this method may not berelevant to product quality; for example, an i
23、rrelevant indica-tion may be caused by minute dents or tool chatter marks,which are not detrimental to the end use of the product.Irrelevant indications can mask unacceptable discontinuities.Relevant indications are those which result from discontinui-ties. Any indication that exceeds the rejection
24、level shall betreated as a relevant indication until it can be demonstrated thatit is irrelevant.5.4 Generally, eddy-current examination systems are notsensitive to discontinuities adjacent to the ends of the tube (endeffect).5.5 Discontinuities such as scratches or seams that arecontinuous and unif
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