ASTM E1409-2008 Standard Test Method for Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by the Inert Gas Fusion Technique《用惰性气体熔解技术测定钛及钛合金中氧和氮的标准试验方法》.pdf
《ASTM E1409-2008 Standard Test Method for Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by the Inert Gas Fusion Technique《用惰性气体熔解技术测定钛及钛合金中氧和氮的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1409-2008 Standard Test Method for Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by the Inert Gas Fusion Technique《用惰性气体熔解技术测定钛及钛合金中氧和氮的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1409 08Standard Test Method forDetermination of Oxygen and Nitrogen in Titanium andTitanium Alloys by the Inert Gas Fusion Technique1This standard is issued under the fixed designation E 1409; 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 () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determination of oxygen intitanium and titanium alloy
3、s in concentrations from 0.01 % to0.5 % and the determination of nitrogen in titanium andtitanium alloys in concentrations from 0.003 % to 0.11 %.1.2 The values stated in both inch-pound and SI units are tobe regarded separately as the standard. The values given inparentheses are for information onl
4、y.1.3 This standard does not purport to address 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 war
5、ningstatements are given in 8.8.2. Referenced Documents2.1 ASTM Standards:2E50 Practices for Apparatus, Reagents, and Safety Consid-erations for Chemical Analysis of Metals, Ores, andRelated MaterialsE 135 Terminology Relating to Analytical Chemistry forMetals, Ores, and Related MaterialsE 173 Pract
6、ice for Conducting Interlaboratory Studies ofMethods for Chemical Analysis of Metals3E 882 Guide for Accountability and Quality Control in theChemical Analysis LaboratoryE 1019 Test Methods for Determination of Carbon, Sulfur,Nitrogen, and Oxygen in Steel and in Iron, Nickel, andCobalt AlloysE 1601
7、Practice for Conducting an Interlaboratory Study toEvaluate the Performance of an Analytical MethodE 1914 Practice for Use of Terms Relating to the Develop-ment and Evaluation of Methods for Chemical Analysis3. Terminology3.1 DefinitionsFor definitions of terms used in thismethod, refer to Terminolo
8、gy E 135 and Practice E 1914.4. Summary of Test Method4.1 This test method is intended for use with automated,commercially available, inert gas fusion analyzers. Theseanalyzers typically measure both oxygen and nitrogen simul-taneously or sequentially utilizing parallel measurement sys-tems.4.2 The
9、test sample, plus flux, is fused in a graphite crucibleunder a flowing inert gas stream (argon, helium) at a tempera-ture sufficient to release oxygen and nitrogen. Oxygen com-bines with carbon to form carbon monoxide (CO) and nitrogenis released as N2. Depending on instrument design, the CO isoxidi
10、zed to carbon dioxide (CO2) or left as CO and swept bythe inert gas stream into either an infrared or thermal conduc-tivity detector. The detector output is compared to that ofreference materials and the result is displayed as percentoxygen. The nitrogen is swept by the inert gas stream (heliumgas)
11、into a thermal conductivity detector. The detector responseis compared to that of reference materials and the result isdisplayed as percent nitrogen.4.3 In a typical instrument for the determination of nitrogen,the sample gases are swept with inert gas through heated rareearth/copper oxide that conv
12、erts CO to CO2and hydrogen (H2)to water (H2O). The CO2is absorbed on sodium hydroxideimpregnated on clay, and the H2O is removed with magnesiumperchlorate. The nitrogen, as N2, enters the measuring cell andthe thermistor bridge output is integrated and processed todisplay percent oxygen.5. Significa
13、nce and Use5.1 This test method is primarily intended as a test forcompliance with compositional specifications. It is assumedthat all who use this test method will be trained analysts1E01 onAnalytical Chemistry for Metals, Ores, and Related Materials and is thedirect responsibility of Subcommittee
14、E01.06 on Ti, Zr, W, Mo, Ta, Nb, Hf, Re.Current edition approved June 15, 2008. Published July 2008. Originallyapproved in 1991. Last previous edition approved in 2005 as E 1409 05.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.or
15、g. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.capable of performing common laboratory procedures ski
16、ll-fully and safely. It is expected that the work will be performedin a properly equipped laboratory.6. Interferences6.1 The elements usually present in titanium and its alloysdo not interfere but there is some evidence to suggest that lowpurity flux can cause some adsorption of the released oxygen.
17、7. Apparatus7.1 InstrumentFusion and measurement apparatus, auto-matic oxygen and nitrogen determinator consisting of anelectrode furnace, provision for scrubbing impurities fromanalytical gas stream; infrared or thermal conductivity mea-surement system(s), or both, and auxiliary gas purificationsys
18、tems (Note 1).NOTE 1The apparatus and analysis systems have been previouslydescribed in Test Method E 1019. Several models of commercial oxygenand nitrogen determinators are available and presently in use by industry.Each has its own unique design characteristics and operational require-ments. Consu
19、lt the instrument manufacturers instruction manual foroperational details.7.2 Graphite CruciblesThe crucibles must be made ofhigh-purity graphite and be of the dimensions recommended bythe instrument manufacturer.7.3 FluxWire baskets must be made of high-purity nickeland the dimensions must meet the
20、 requirements of the auto-matic sample drop, if present, on the instrument. (See Note 2.)NOTE 2In some instruments, nitrogen and oxygen are run sequen-tially and platinum is the required flux for nitrogen. High-purity platinumcan be substituted for nickel in the same ratio of flux to sample.7.4 Twee
21、zersSix-inch tweezers made of solvent and acid-resistant plastic.8. Reagents8.1 AcetoneResidue after evaporation must be0.0005 %.8.2 Graphite PowderHigh-purity as specified by the in-strument manufacturer.8.3 Inert GasUse the purity and type specified by theinstrument manufacturer.8.4 Magnesium Perc
22、hlorate, Anhydrous4Used in the in-strument to absorb water. Use the purity specified by theinstrument manufacturer.8.5 Nickel Flux Cleaning SolutionPrepare a fresh solutionby combining 75 mL of acetic acid, 25 mL of nitric acid(HNO3), and 2 mL of hydrochloric acid (HCl).8.6 Rare Earth/Copper OxideRe
23、agent used in some in-struments to oxidize CO to CO2for thermal conductivitydetection. Use the purity specified by the instrument manufac-turer.8.7 Sodium Hydroxide on Clay5Reagent used in someinstruments to absorb CO2. Use a purity specified by theinstrument manufacturer.8.8 Titanium Sample Pickle
24、SolutionPrepare a fresh solu-tion of 3 parts 30 % hydrogen peroxide (H2O2) and 1 part 48 %hydrofluoric acid (HF). HNO3may be substituted for 30 %H2O2(see Note 3). (WarningHF causes serious burns thatmay not be immediately painful; refer to the paragraph aboutHF in the Safety Precautions Section of P
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