ASTM E309-1995(2006) Standard Practice for Eddy-Current Examination of Steel Tubular Products Using Magnetic Saturation《用磁饱和法做管状钢产品涡流检验的标准实施规范》.pdf
《ASTM E309-1995(2006) Standard Practice for Eddy-Current Examination of Steel Tubular Products Using Magnetic Saturation《用磁饱和法做管状钢产品涡流检验的标准实施规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM E309-1995(2006) Standard Practice for Eddy-Current Examination of Steel Tubular Products Using Magnetic Saturation《用磁饱和法做管状钢产品涡流检验的标准实施规范》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 309 95 (Reapproved 2006)Standard Practice forEddy-Current Examination of Steel Tubular Products UsingMagnetic Saturation1This standard is issued under the fixed designation E 309; the number immediately following the designation indicates the year oforiginal adoption or, in the case o
2、f 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.This specification has been approved for use by agencies of the Department of Defense.1. Scope1.1 This pr
3、actice2covers a procedure for applying theeddy-current method to detect discontinuities in ferromagneticpipe and tubing (Note 1) where the article being examined isrendered substantially non-magnetic by the application of aconcentrated, strong magnetic field in the region adjacent to theexamining co
4、il.NOTE 1For convenience, the term tube or tubular product willhereafter be used to refer to both pipe and tubing.1.2 The procedure is specifically applicable to eddy-currentexamination methods using an encircling-coil assembly. How-ever, eddy-current techniques that employ either fixed orrotating p
5、robe-coil assemblies may be used to either enhancediscontinuity sensitivity on the large diameter tubular productsor to maximize the response received from a particular type ofdiscontinuity.1.3 This practice is intended for use on tubular productshaving outside diameters from approximately14 to 10 i
6、n. (6.35to 254.0 mm). These techniques have been used for smaller andlarger sizes however, and may be specified upon contractualagreement between the purchaser and the supplier.2. Referenced Documents2.1 ASTM Standards:3E 543 Specification for Agencies Performing Nondestruc-tive TestingE 1316 Termin
7、ology for Nondestructive Examinations2.2 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 Personnel42.3 Military Standard:MIL-STD-410E No
8、ndestructive Testing Personnel Qualifi-cation and Certification53. Terminology3.1 GeneralStandard terminology relating to electromag-netic examination may be found in Terminology E 1316,Section C, “Electromagnetic Testing.”4. Summary of Practice4.1 The examination is conducted using one of two gener
9、altechniques shown in Fig. 1.4.1.1 One technique employs one or more exciter and sensorcoils that encircle the tube and through which the tubularproduct to be examined is passed. Some circuit configurationsemploy one or more coils that concurrently function as bothexciters and sensors. Alternating c
10、urrent passes through theexciting coil which, by reason of its proximity, inducescorresponding currents (eddy currents) to flow in the tubularproduct. The sensor coil detects the resultant electromagneticflux related to these currents. The presence of discontinuities inthe tubular product will alter
11、 the normal flow of currents andthis change is detected by the sensor. The encircling-coiltechnique is capable of examining the entire circumference ofa tubular product.4.1.2 Another technique employs a probe coil with one ormore sensors that are in close proximity to the surface of thetubular produ
12、ct to be examined. Since the probe is generallysmall and does not encircle the article being examined, itexamines only a limited area in the vicinity of the probe. This1This practice is under the jurisdiction of ASTM Committee E07 on Nonde-structive Testing and is the direct responsibility of Subcom
13、mittee E07.07 onElectromagnetic Method.Current edition approved July 1, 2006. Published July 2006. Originally approvedin 1966. Last previous edition approved in 2001 as E 309 - 95(2001).2For ASME Boiler and Pressure Vessel Code applications see related Recom-mended Practice SE 309 in Section V of th
14、at Code.3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.4Available fromAmerican Society for Nondestructive Te
15、sting (ASNT), P.O. Box28518, 1711 Arlingate Ln., Columbus, OH 43228-0518.5Available from Standardization Documents Order Desk, Bldg. 4 Section D, 700Robbins Ave., Philadelphia, PA 19111-5094, Attn: NPODS.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2
16、959, United States.technique is frequently used for examination of welded tubularproducts in which only the weld is examined by scanning alongthe weld zone.4.1.3 The magnetic permeability of ferromagnetic materialsseverely limits the depth of penetration of induced eddycurrents. Furthermore, the per
17、meability variations inherent inferromagnetic tubular products often cause anomalous testresults. A useful solution to this problem involves the applica-tion of a strong external magnetic field in the region of theexamining coil or probe. This technique, known as magneticsaturation, is applied to a
18、magnetic material, such as a steeltube, to suppress the magnetic characteristics of permeability,hysteresis, etc., so that the material under examination iseffectively rendered nonmagnetic. When achieved, this condi-tion allows an eddy-current system to measure and detectelectrical resistivity and g
19、eometrical variations (including de-fects) independent of concurrent variations in magnetic prop-erties.4.1.4 Changes in electromagnetic response caused by thepresence of discontinuities are detected by the sensor, ampli-fied, and modified in order to actuate audio or visual indicatingdevices, or bo
20、th, a mechanical marker, or a signal-recordingdevice, or a combination of these. Signals can be caused byouter surface, inner surface, or subsurface discontinuities if theeddy-current frequency provides sufficient depth of penetration(see 11.1). The eddy-current method is sensitive to metallur-gical
21、 variations that occur as a result of processing, thus allreceived indications are not necessarily indicative of defectivetubing.5. Significance and Use5.1 The purpose of this practice is to outline a procedure forthe detection and location of discontinuities such as pits, voids,inclusions, cracks,
22、or abrupt dimensional variations in ferro-magnetic tubing using the electromagnetic (eddy-current)method. Furthermore, the relative severity of a discontinuitymay be indicated, and a rejection level may be set with respectto the magnitude of the indication.5.2 The response from natural discontinuiti
23、es can be signifi-cantly different than that from artificial discontinuities such asdrilled holes or notches. For this reason, sufficient work should(a) Encircling Coil.(b) Probe Coillongitudinal scanning of weld seam only.(c) Probe Coilscanning along a spiral path.FIG. 1 Encircling-Coil and Probe-C
24、oil Techniques for Electromagnetic Testing of Tubular ProductsE 309 95 (2006)2be done to establish the sensitivity level and set-up required todetect natural discontinuities of consequence to the end use ofthe product.5.3 Eddy-current examination systems are generally notsensitive to discontinuities
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