ASTM E1930-2007 Standard Practice for Examination of Liquid-Filled Atmospheric and Low-Pressure Metal Storage Tanks Using Acoustic Emission《用声发射检验充液气压和低压金属贮油罐的标准实施规程》.pdf
《ASTM E1930-2007 Standard Practice for Examination of Liquid-Filled Atmospheric and Low-Pressure Metal Storage Tanks Using Acoustic Emission《用声发射检验充液气压和低压金属贮油罐的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1930-2007 Standard Practice for Examination of Liquid-Filled Atmospheric and Low-Pressure Metal Storage Tanks Using Acoustic Emission《用声发射检验充液气压和低压金属贮油罐的标准实施规程》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1930 07Standard Practice forExamination of Liquid-Filled Atmospheric and Low-PressureMetal Storage Tanks Using Acoustic Emission1This standard is issued under the fixed designation E 1930; the number immediately following the designation indicates the year oforiginal adoption or, in t
2、he 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.1. Scope1.1 This practice covers guidelines for acoustic emission(AE) examinations of new and in
3、-service aboveground storagetanks of the type used for storage of liquids.1.2 This practice will detect acoustic emission in areas ofsensor coverage that are stressed during the course of theexamination. For flat-bottom tanks these areas will generallyinclude the sidewalls (and roof if pressure is a
4、pplied above theliquid level). The examination may not detect flaws on thebottom of flat-bottom tanks unless sensors are located on thebottom.1.3 This practice may require that the tank experience a loadthat is greater than that encountered in normal use. The normalcontents of the tank can usually b
5、e used for applying this load.1.4 This practice is not valid for tanks that will be operatedat a pressure greater than the examination pressure.1.5 It is not necessary to drain or clean the tank beforeperforming this examination.1.6 This practice applies to tanks made of carbon steel,stainless steel
6、, aluminum and other metals.1.7 This practice may also detect defects in tank linings (forexample, high-bulk, phenolics and other brittle materials).1.8 AE measurements are used to detect and localize emis-sion sources. Other NDT methods may be used to confirm thenature and significance of the AE in
7、dications (s). Proceduresfor other NDT techniques are beyond the scope of this practice.1.9 Examination liquid must be above its freezing tempera-ture and below its boiling temperature.1.10 Superimposed internal or external pressures must notexceed design pressure.1.11 Leaks may be found during the
8、course of this exami-nation but their detection is not the intention of this practice.1.12 The values stated in inch-pound units are to be re-garded as the standard. The SI units given in parentheses arefor information only.1.13 This standard does not purport to address all of thesafety concerns, if
9、 any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Specific precau-tionary statements are given in Section 8.2. Referenced Documents2.1 ASTM
10、 Standards:2E 543 Specification for Agencies Performing Nondestruc-tive TestingE 650 Guide for Mounting Piezoelectric Acoustic EmissionSensorsE 976 Guide for Determining the Reproducibility of Acous-tic Emission Sensor ResponseE 1316 Terminology for Nondestructive ExaminationsE 2374 Guide for Acoust
11、ic Emission System PerformanceVerification2.2 ANSI/ASNT Standard:Recommended Practice ASNT SNT-TC-1A for Qualifica-tion and Certification of Nondestructive Testing Person-nel3ANSI/ASNT CP-189 Standard for Qualification and Certi-fication of NDT Personnel32.3 ASME Standard:Section V, Article 12, Boil
12、er metal storage tanks; above groundstorage tanksFIG. 3 In Service Tank Fill ScheduleE1930078ANNEX(Mandatory Information)A1. SPECIFICATIONS FOR APPARATUSA1.1 Instrumentation SpecificationsA1.1.1 AE sensors shall be resonant in a 100 to 200 kHzfrequency band.A1.1.2 Sensors shall have a peak sensitivi
13、ty greater than -77dB (referred to 1 volt per microbar, determined by face-to-faceultrasonic examination) within the frequency range 100 to 200kHz. Sensitivity within the 100 - 200 kHz range shall not varymore than 3 dB within the temperature range of intended use.A1.1.3 Sensors shall be shielded ag
14、ainst electromagneticinterference through proper design practice or differential(anti-coincidence) element design, or both.A1.1.4 Sensors shall be electrically isolated from conduc-tive surfaces.A1.1.5 Sensors shall have omni-directional response, withvariations not exceeding 2 dB from the peak resp
15、onse.A1.2 Sensor-Preamplifier CableA1.2.1 Cable connecting sensor to preamplifier shall notattenuate the sensor peak voltage in the 100 to 200 kHzfrequency range more than 3 dB (6 ft (1.83 m) is a typicallength). Integral preamplifier sensors meet this requirement.They have inherently short, interna
16、l, signal cables.A1.2.2 Sensor-preamplifier cable shall be shielded againstelectromagnetic interference. Standard low-noise coaxial cableis generally adequate.A1.3 CouplantA1.3.1 Commercially available couplants for ultrasonicflaw detection may be used. Silicone-based stopcock greasehas been found t
17、o be particularly suitable. Quick-settingadhesives may be used, provided the reduced couplant sensi-tivity is accounted for by closer sensor spacing. Couplantselection should be made to minimize changes in couplingsensitivity during an examination. Consideration should begiven to the time duration o
18、f the examination and to the surfacetemperature of the tank.A1.4 PreamplifierA1.4.1 Preamplifier shall have noise level no greater than 5microvolts rms (referred to a shorted input) within the 100 to200 kHz frequency range.A1.4.2 Preamplifier gain shall vary no more than 6 1dBwithin the 100 to 200 k
19、Hz frequency band and temperaturerange of use.A1.4.3 Preamplifier shall be shielded from electromagneticinterference.A1.4.4 Preamplifiers of differential design shall have aminimum of 40 dB common-mode rejection.A1.4.5 Preamplifier shall include a bandpass filter with aminimum of 18 dB/octave signal
20、 attenuation below the 100kHz and 18 dB/octave above 200 kHz. Note that the crystalresonant characteristics provide additional filtering as does theband pass filter in the signal conditioner.A1.4.6 It is preferred that the preamplifier be mountedinside the sensor housing.A1.5 Power-Signal CableA1.5.
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