ASTM E527-2012 8071 Standard Practice for Numbering Metals and Alloys in the Unified Numbering System (UNS)《统一编号系统 (UNS) 中金属和合金编号的标准实施规程》.pdf
《ASTM E527-2012 8071 Standard Practice for Numbering Metals and Alloys in the Unified Numbering System (UNS)《统一编号系统 (UNS) 中金属和合金编号的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E527-2012 8071 Standard Practice for Numbering Metals and Alloys in the Unified Numbering System (UNS)《统一编号系统 (UNS) 中金属和合金编号的标准实施规程》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E527 12Standard Practice forNumbering Metals and Alloys in the Unified NumberingSystem (UNS)1This standard is issued under the fixed designation E527; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last re
2、vision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Department of Defense.1. Scope*1.1 This practice (Note 1) covers a unified num
3、beringsystem (UNS) for metals and alloys that have a “commercialstanding” (see Note 2), and covers the procedure by whichsuch numbers are assigned. Section 2 describes the system ofalphanumeric designations or “numbers” established for eachfamily of metals and alloys. Section 3 outlines the organiza
4、tionestablished for administering the system. Section 5 describesthe procedure for requesting number assignment to metals andalloys for which UNS numbers have not previously beenassigned.NOTE 1UNS designations are not to be used for metals and alloys thatare not registered under the system described
5、 herein, or for any metal oralloy whose composition differs from those registered.NOTE 2The terms “commercial standing,” “production usage,” andother similar terms are intended to apply to metals and alloys in activecommercial production and use, although the actual amount of such usewill depend, am
6、ong other things, upon the type of metals and alloysinvolved and their application.The various standardizing organizations involved with the individualindustries apply their own established criteria to define the status of ametal or alloy in terms of when a UNS designation number will beassigned. Fo
7、r instance, ASTM Committee A01 requires details of heatanalysis, mechanical properties, and processing requirements for additionof a new grade or alloy to its specifications. The Copper DevelopmentAssociation requires that the material be “in commercial use (withouttonnage limits);” the Aluminum Ass
8、ociation requires that the alloy be“offered for sale (not necessarily in commercial use);” the SAE AerospaceMaterials Division calls for “repetitive procurement by at least two users.”Thus, while no universal definition for usage criteria is established, theUNS numbers are intended to identify metal
9、s and alloys that are generallyin regular production and use.AUNS number will not ordinarily be issuedfor a material that has just been conceived or that is still in onlyexperimental trial.2. Description of Numbers (or Codes) Established forMetals and Alloys2.1 The UNS establishes 18 series of numbe
10、rs for metalsand alloys, as shown in Table 1. Each UNS number consists ofa single letter-prefix followed by five digits. In most cases theletter is suggestive of the family of metals identified; forexample, A for aluminum, P for precious metals, and S forstainless steels.2.2 Whereas some of the digi
11、ts in certain UNS numbergroups have special assigned meaning, each series is indepen-dent of the others in such significance; this practice permitsgreater flexibility and avoids complicated and lengthy UNSnumbers.NOTE 3This arrangement of alphanumeric six-character numbers is acompromise between the
12、 thinking that identification numbers shouldindicate many characteristics of the material, and the belief that numbersshould be short and uncomplicated to define only the chemical composi-tion and leaving the other properties to the specifications involved.2.3 Wherever feasible, identification “numb
13、ers” from pre-vious systems are incorporated into the UNS numbers. Forexample: carbon steel, originally identified by “American Ironand Steel Institute (AISI) 1020,” is covered by “UNS G10200,”and free cutting brass, presently identified by “Copper Devel-opment Association (CDA) C36000,” is covered
14、by“UNS C36000.” Table 2 shows the secondary division of someprimary series of numbers.1This practice is under the jurisdiction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.91 on Editorial.Current edition approved Oct. 15, 2012.
15、 Published November 2012. Originallyapproved in 1974. Last previous edition approved in 2007 as E52707. DOI:10.1520/E0527-12.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United Sta
16、tes1TABLE 2 Secondary Division of Some Series of NumbersE00001E99999 Rare Earth and Rare Earth-Like Metals and AlloysE00000E00999 actiniumE01000E20999 ceriumE21000E45999 mixed rare earthsAE46000E47999 dysprosiumE48000E49999 erbiumE50000E51999 europiumE52000E55999 gadoliniumE56000E57999 holmiumE58000
17、E67999 lanthanumE68000E68999 lutetiumE69000E73999 neodymiumE74000E77999 praseodymiumE78000E78999 promethiumE79000E82999 samariumE83000E84999 scandiumE85000E86999 terbiumE87000E87999 thuliumE88000E89999 ytterbiumE90000E99999 yttriumL00001L99999 Low-Melting Metals and AlloysL00001L00999 bismuthL01001L
18、01999 cadmiumL02001L02999 cesiumL03001L03999 galliumL04001L04999 indiumL06001L06999 lithiumL07001L07999 mercuryL08001L08999 potassiumL09001L09999 rubidiumL10001L10999 seleniumL11001L11999 sodiumL12001L12999 thalliumL13001L13999 tinL50001L59999 leadM00001M99999 Miscellaneous Nonferrous Metals and All
19、oysM00001M00999 antimonyM01001M01999 arsenicM02001M02999 bariumM03001M03999 calciumM04001M04999 germaniumM05001M05999 plutoniumM06001M06999 strontiumM07001M07999 telluriumM08001M08999 uraniumTABLE 1 Primary Series of NumbersNonferrous Metals and AlloysA00001A99999 aluminum and aluminum alloysC00001C
20、99999 copper and copper alloysE00001E99999 rare earth and rare earth-like metals and alloys (18items; see Table 2)L00001L99999 low melting metals and alloys (15 items; see Table 2)M00001M99999 miscellaneous nonferrous metals and alloys (12 items;see Table 2)N00001N99999 nickel and nickel alloysP0000
21、1P99999 precious metals and alloys (8 items; see Table 2)R00001R99999 reactive and refractory metals and alloys (14 items; seeTable 2)Z00001Z99999 zinc and zinc alloysFerrous Metals and AlloysD00001D99999 specified mechanical properties steelsF00001F99999 cast ironsG00001G99999 carbon and alloy stee
22、lsH00001H99999 H-steelsJ00001J99999 cast steels (except tool steels)K00001K99999 miscellaneous steels and ferrous alloysS00001S99999 heat and corrosion resistant (stainless) steelsT00001T99999 tool steelsW00001W99999 welding filler metals, covered and tubular electrodes,classified by weld deposit co
23、mposition (see Table 2)E527 122TABLE 2 ContinuedM10001M19999 magnesiumM20001M29999 manganeseM30001M39999 siliconP00001P99999 Precious Metals and AlloysP00001P00999 goldP01001P01999 iridiumP02001P02999 osmiumP03001P03999 palladiumP04001P04999 platinumP05001P05999 rhodiumP06001P06999 rutheniumP07001P0
24、7999 silverR00001R99999 Reactive and Refractory Metals and AlloysR01001R01999 boronR02001R02999 hafniumR03001R03999 molybdenumR04001R04999 niobium (columbium)R05001R05999 tantalumR06001R06999 thoriumR07001R07999 tungstenR08001R08999 vanadiumR10001R19999 berylliumR20001R29999 chromiumR30001R39999 cob
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