ASTM D5720-1995(2002) Standard Practice for Static Calibration of Electronic Transducer-Based Pressure Measurement Systems for Geotechnical Purposes《土工用电子传感器型压力测量系统静态校准标准规程》.pdf
《ASTM D5720-1995(2002) Standard Practice for Static Calibration of Electronic Transducer-Based Pressure Measurement Systems for Geotechnical Purposes《土工用电子传感器型压力测量系统静态校准标准规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5720-1995(2002) Standard Practice for Static Calibration of Electronic Transducer-Based Pressure Measurement Systems for Geotechnical Purposes《土工用电子传感器型压力测量系统静态校准标准规程》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5720 95 (Reapproved 2002)Standard Practice forStatic Calibration of Electronic Transducer-Based PressureMeasurement Systems for Geotechnical Purposes1This standard is issued under the fixed designation D 5720; the number immediately following the designation indicates the year oforigi
2、nal adoption or, in 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.1. Scope1.1 This practice covers the procedure for static calibrationof ele
3、ctronic transducer-based systems used to measure fluidpressures in laboratory or in field applications associated withgeotechnical testing.1.2 This practice is used to determine the accuracy ofelectronic transducer-based pressure measurement systemsover the full pressure range of the system or over
4、a specifiedoperating pressure range within the full pressure range.1.3 This practice may also be used to determine a relation-ship between pressure transducer system output and appliedpressure for use in converting from one value to the other(calibration curve). This relationship for electronic pres
5、suretransducer systems is usually linear and may be reduced to theform of a calibration factor or a linear calibration equation.1.4 The values stated in SI units are to be regarded as thestandard. The inch-pound units in parentheses are for informa-tion only.1.5 This standard does not purport to add
6、ress 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 the applica-bility of regulatory limitations prior to use. Specific precau-tionary statements are given in Section
7、 7.2. Referenced Documents2.1 ANSI/ISA Standards:S37.1 (R1982) Electrical Transducer Nomenclature and Ter-minology2S37.3 (R1982) Specifications and Tests For Strain GagePressure Transducers2S37.6 (R1982) Specifications and Tests For PotentiometricPressure Transducers2S37.10 (R1982) Specifications an
8、d Tests For PiezoelectricPressure and Sound-pressure Transducers23. Terminology3.1 Terms marked with “(ANSI, ISA-S37.1)” are takendirectly from ANSI/ISA-S37.1 (R1982) and are included forthe convenience of the user.3.2 Definitions of Terms Specific to This Standard:3.2.1 absolute pressurepressure me
9、asured relative to zeropressure (vacuum) (ANSI, ISA-S37.1).3.2.2 accuracyratio of the error to the full-scale output orthe ratio of the error to the output, as specified, expressed inpercent (ANSI, ISA-S37.1).3.2.3 ambient conditionsconditions (pressure, tempera-ture, etc.) of the medium surrounding
10、 the case of the transducer(ANSI, ISA-S37.1).3.2.4 best straight lineline midway between the twoparallel straight lines closest together and enclosing all outputversus measurand values on a calibration curve (ANSI, ISA-S37.1).3.2.5 bondedpermanently attached over the length andwidth of the active el
11、ement (ANSI, ISA-S37.1).3.2.6 bourdon tubepressure-sensing element consisting ofa twisted or curved tube of non-circular cross section that tendsto be straightened by the application of internal pressure(ANSI, ISA-S37.1).3.2.7 calibrationtest during which known values of mea-surand are applied to th
12、e transducer and corresponding outputreadings are recorded under specified conditions (ANSI, ISA-S37.1).3.2.8 calibration curvegraphical representation of thecalibration record (ANSI, ISA-S37.1).3.2.9 calibration cycleapplication of known values ofmeasurand, and recording of corresponding output rea
13、dings,over the full (or specified portion of the) range of a transducerin an ascending and descending direction (ANSI, ISA-S37.1).3.2.10 calibration recordrecord (for example, table orgraph) of the measured relationship of the transducer output tothe applied measurand over the transducer range (ANSI
14、,ISA-S37.1).3.2.11 calibration traceabilityrelation of a transducercalibration, through a specified step-by-step process, to aninstrument or group of instruments calibrated by the NationalInstitute of Standards and Technology (ANSI, ISA-S37.1).1This practice is under the jurisdiction of ASTM Committ
15、ee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.95 on InformationRetrieval and Data Automation.Current edition approved April 15, 1995. Published June 1995.2Available from Instrument Society of America, P.O. Box 12277, ResearchTriangle Park, NC 27709.1Copyright ASTM Inter
16、national, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.12 capsulepressure-sensing element consisting of twometallic diaphragms joined around their peripheries (ANSI,ISA-S37.1).3.2.13 diaphragmsensing element consisting of a thin,usually circular, plate that
17、 is deformed by pressure differentialapplied across the plate (ANSI, ISA-S37.1).3.2.14 differential pressuredifference in pressure betweentwo points of measurement (ANSI, ISA-S37.1).3.2.15 end pointsoutputs at the specified upper and lowerlimits of the range (ANSI, ISA-S37.1).3.2.16 end-point linest
18、raight line between the end points(ANSI, ISA-S37.1).3.2.17 end point linearitylinearity referred to the end-point line (ANSI, ISA-S37.1).3.2.18 environmental conditionsspecified external condi-tions (shock, vibration, temperature, etc.) to which a transducermay be exposed during shipping, storage, h
19、andling, andoperation (ANSI, ISA-S37.1).3.2.19 erroralgebraic difference between the indicatedvalue and the true value of the measurand (ANSI, ISA-S37.1).3.2.20 excitationexternal electrical voltage or current, orboth, applied to a transducer for its proper operation (ANSI,ISA-S37.1).3.2.21 fluida s
20、ubstance, such as a liquid or gas, that iscapable of flowing and that changes its shape at a steady ratewhen acted upon by a force.3.2.22 full-scale outputalgebraic difference between theend points (ANSI, ISA-S37.1).3.2.23 gage pressurepressure measured relative to ambi-ent pressure (ANSI, ISA-S37.1
21、).3.2.24 hermetically sealedmanufacturing process bywhich a device is sealed and rendered airtight.3.2.25 hysteresismaximum difference in output, at anymeasurand value within the specified range, when the value isapproached first with increasing and then with decreasingmeasurand (ANSI, ISA-S37.1).3.
22、2.25.1 DiscussionHysteresis is expressed in percent offull-scale output, during any one calibration cycle.3.2.26 least-squares linestraight line for which the sum ofthe squares of the residuals (deviations) is minimized (ANSI,ISA-S37.1).3.2.27 least squares linearitylinearity referred to theleast-sq
23、uares line (ANSI, ISA-S37.1).3.2.28 linearitycloseness of a calibration curve to a speci-fied straight line (ANSI, ISA-S37.1).3.2.28.1 DiscussionLinearity is expressed as the maxi-mum deviation of any calibration point from a specifiedstraight line, during any one calibration cycle. Linearity isexpr
24、essed in percent of full-scale output.3.2.29 measurandphysical quantity, property, or condi-tion that is measured (ANSI, ISA-S37.1).3.2.30 measured fluidfluid that comes in contact with thesensing element (ANSI, ISA-S37.1).3.2.31 normal atmospheric pressure101.325 kPa (14.696lbf/in.2); equivalent to
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