ASTM E230-2003 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples《标准化热电偶用标准规范和温度-电动势(EMF)图表》.pdf
《ASTM E230-2003 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples《标准化热电偶用标准规范和温度-电动势(EMF)图表》.pdf》由会员分享,可在线阅读,更多相关《ASTM E230-2003 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples《标准化热电偶用标准规范和温度-电动势(EMF)图表》.pdf(192页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 230 03An American National StandardStandard Specification andTemperature-Electromotive Force (EMF) Tables forStandardized Thermocouples1This standard is issued under the fixed designation E 230; the number immediately following the designation indicates the year oforiginal adoption or
2、, 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.NoteParagraph 1.1, and Tables 7, 13, 19, 21, and 46 were editorially corrected and the yea
3、r date changed on Sept. 23, 2003.1. Scope1.1 This specification contains reference tables (Tables825) that give temperature-electromotive force (emf) relation-ships for Types B, E, J, K, N, R, S, T, and C thermocouples.2These are the thermocouple types most commonly used inindustry.1.2 Also included
4、 are lists of standard and special toleranceson initial values of emf versus temperature for thermocouples(Table 1), thermocouple extension wires (Table 2), and com-pensating extension wires for thermocouples (Table 3).1.3 Tables 45, included herein, give data on insulationcolor coding for thermocou
5、ple and thermocouple extensionwires as customarily used in the United States.1.4 Recommendations regarding upper temperature limitsfor the thermocouple types referred to in 1.1 are given in Table6.1.5 Tables 2645 give temperature-emf data for single-legthermoelements referenced to platinum (NIST Pt
6、67). Thetables include values for Types BP, BN, JP, JN, KP (same asEP), KN, NP, NN, TP, and TN (same as EN).1.6 Tables for Types RP, RN, SP, and SN thermoelementsare not included since, nominally, Tables 1821 represent thethermoelectric properties of Type RP and SP thermoelementsreferenced to pure p
7、latinum. Tables for the individual thermo-elements of Type C are not included because materials for TypeC thermocouples are normally supplied as matched pairs only.1.7 Polynomial coefficients that may be used for computa-tion of thermocouple emf as a function of temperature aregiven in Table 7. Coef
8、ficients for the emf of each thermocouplepair as well as for the emf of most individual thermoelementsversus platinum are included. Coefficients for type RP and SPthermoelements are not included since they are nominally thesame as for the types R and S thermocouples, and coefficientsfor type RN or S
9、N relative to the nominally similar Pt-67would be insignificant. Coefficients for the individual thermo-elements of type C are not established.1.8 Coefficients for sets of inverse polynomials are given inTable 44. These may be used for computing a close approxi-mation of temperature (C) as a functio
10、n of thermocouple emf.Inverse functions are provided only for thermocouple pairs andare valid only over the emf ranges specified.1.9 This specification is intended to define the thermoelec-tric properties of materials that conform to the relationshipspresented in the tables of this standard and bear
11、 the letterdesignations contained herein. Topics such as ordering infor-mation, physical and mechanical properties, workmanship,testing, and marking are not addressed in this specification. Theuser is referred to specific standards such as SpecificationsE 235, E 574, E 585, E 608, E 1159, or E 1223,
12、 as appropriate,for guidance in these areas.1.10 The temperature-emf data in this specification areintended for industrial and laboratory use.2. Referenced Documents2.1 ASTM Standards:E 235 Specification for Thermocouples, Sheathed, Type K,for Nuclear or for Other High-Reliability Applications3E 574
13、 Specification for Duplex, Base-Metal ThermocoupleWire with Glass Fiber or Silica Fiber Insulation3E 585 Specification for Sheathed Base-Metal Thermo-couple Materials3E 608 Specification for Metal-Sheathed Base-Metal Ther-mocouples3E 1159 Specification for Thermocouple Materials,Platinum-Rhodium All
14、oys, and Platinum3E 1223 Specification for Type N Thermocouple Wire32.2 NIST Monograph:NIST Monograph 175 Temperature-Electromotive ForceReference Functions and Tables for the Letter-DesignatedThermocouple Types Based on the ITS-9041These tables are under the jurisdiction of ASTM Committee E20 on Te
15、mpera-ture Measurement and are the direct responsibility of Subcommittee E20.04 onThermocouples.Current edition approved September 23, 2003. Published September 2003.Originally approved in 1963 . Last previous edition approved in 2002 as E 230 02.2These temperature-emf relationships have been revise
16、d as required by theinternational adoption in 1989 of a revised International Temperature Scale(ITS-90).3Annual Book of ASTM Standards, Vol 14.03.4Available from National Institute of Standards and Technology, U.S. Depart-ment of Commerce, Gaithersburg, MD 20899.1Copyright ASTM International, 100 Ba
17、rr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.2.3 IEC Standard:IEC 5843 First edition, 19893. Source of Data3.1 The data in these tables are based upon the SI volt5andthe International Temperature Scale of 1990.3.2 The temperature-emf data in Tables 823 and 2645,toget
18、her with the corresponding equations in Tables 7 and 46for all of the thermocouple types, except type C, have beenextracted from NIST Monograph 175. Temperature-emf data inTables 2425 and the coefficients for type C in Tables 7 and 46have been developed from curves fitted to wire manufacturersdata.N
19、OTE 1It is beyond the scope of this standard to discuss the origin ofthese tables, but if further information is desired, the reader should consultthe NIST reference noted above.3.3 These tables give emf values to three decimalplaces (1 V) at temperature intervals of one degree. Suchtables are satis
20、factory for most industrial uses but may not beadequate for computer and similar applications. If greaterprecision is required, the reader should refer to the NISTreference noted above which includes tables giving emf valuesto four decimal places (0.1 V) for each type except type C.Equations which p
21、ermit easy and unique generation of thetemperature-emf relationships will be found in Table 7. Forconvenience, coefficients of inverse polynomials that may beused to compute approximate temperature (C) as a function ofthermocouple emf are given in Table 46.4. Thermocouple Types and Letter Designatio
22、ns4.1 The letter symbols identifying each reference table arethose which are in common use throughout industry andidentify the following thermocouple calibrations:4.1.1 Type BPlatinum-30% rhodium (+) versus platinum-6 % rhodium ().4.1.2 Type ENickel-10 % chromium (+) versus copper-45% nickel (consta
23、ntan) ().4.1.3 Type JIron (+) versus copper-45% nickel (constan-tan) ().4.1.4 Type KNickel-10 % chromium (+) versus nickel-5 % (aluminum, silicon) () (Note 2).NOTE 2Silicon, or aluminum and silicon, may be present in combi-nation with other elements.4.1.5 Type NNickel-14 % chromium, 112 % silicon (
24、+ )versus nickel-412 % silicon-110 % magnesium ().4.1.6 Type RPlatinum-13 % rhodium ( + ) versus plati-num ().4.1.7 Type SPlatinum-10 % rhodium ( + ) versus platinum().4.1.8 Type TCopper ( + ) versus copper-45% nickel (con-stantan) ().4.1.9 Type CTungsten-5% Rhenium (+) versus Tungsten-26% Rhenium (
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