ASTM E1938-2002 Standard Test Method for Determination of Titanium in Nickel Alloys by Diantipyrylmethane Molecular Absorption Spectrometric Method《用二安替比林甲烷分子吸收光谱测定法测定镍合金中钛含量的标准试验方.pdf
《ASTM E1938-2002 Standard Test Method for Determination of Titanium in Nickel Alloys by Diantipyrylmethane Molecular Absorption Spectrometric Method《用二安替比林甲烷分子吸收光谱测定法测定镍合金中钛含量的标准试验方.pdf》由会员分享,可在线阅读,更多相关《ASTM E1938-2002 Standard Test Method for Determination of Titanium in Nickel Alloys by Diantipyrylmethane Molecular Absorption Spectrometric Method《用二安替比林甲烷分子吸收光谱测定法测定镍合金中钛含量的标准试验方.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1938 02Standard Test Method forDetermination of Titanium in Nickel Alloys by theDiantipyrylmethane Molecular Absorption SpectrometricMethod1This standard is issued under the fixed designation E 1938; the number immediately following the designation indicates the year oforiginal adopti
2、on 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 test method covers the determination of titanium innickel alloys in
3、the 0.3 through 5.0 % range. With appropriatereference materials the test method may be extended down to0.05 %.1.2 Molybdenum, if present, may cause a high bias to theextent of 0.001 % Ti for every 1 % Mo.1.3 This standard does not purport to address all of thesafety concerns, if any, associated wit
4、h 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. For specific hazardsassociated with the use of this test method see Practices E50.2. Referenced Documents2.1
5、ASTM Standards:2E50 Practices for Apparatus, Reagents, and Safety Precau-tions for Chemical Analysis of MetalsE 882 Guide for Accountability and Quality Control in theChemical Analysis LaboratoryE 1452 Practice for Preparation of Calibration Solutions forSpectrophotometric and for Spectroscopic Atom
6、ic Analy-sisE 1601 Practice for Conducting an Interlaboratory Study toEvaluate the Performance of an Analytical Method2.2 ISO Standards:ISO 5725:1986 - Precision of Test Methods Determina-tion of Repeatability and Reproducibility for a StandardTest Method by Inter-Laboratory Tests3ISO 11433:1993(E)
7、- Nickel Alloys - Determination ofTitanium Content - Diantipyrylmethane Molecular Ab-sorption Spectrometric Method33. Summary of Test Method3.1 This sample is dissolved in a mixture of hydrochloricand nitric acid. The solution is evaporated to sulfuric acidfumes to remove the hydrochloric and nitric
8、 acids. Color isdeveloped with diantipyrylmethane, and the absorbance ismeasured at 390 nm.4. Significance and Use4.1 This practice is used for the analysis of nickel and nickelbase alloy samples by molecular absorption spectrometry tocheck compliance with compositional specifications. It isassumed
9、that all who use the procedure will be trained analystscapable of performing common laboratory procedures skill-fully and safely. It is expected that the work will be performedin a properly equipped laboratory and that proper wastedisposal procedures will be followed. Appropriate qualitycontrol prac
10、tices must be followed such as those described inGuide E 882.5. Apparatus5.1 Spectrophotometer, capable of measuring absorbance ata wavelength of 390 nm.5.2 Cells, to fit spectrophotometer, having an optical path of1 cm.NOTE 1Cells having other dimensions can be used, provided suitableadjustments ca
11、n be made in the amount of sample and reagents used.6. Reagents6.1 Purity and Concentration of ReagentsThe purity andconcentration of common chemical reagents shall conform toPractices E50. The reagents should be free of or contain onlyminimal amounts ( 0.1 g/g) of titanium. Calibration solu-tions s
12、hall be prepared in accordance with Practice E 1452.6.2 Potassium Hydrogen Sulfate (KHSO4).6.3 Ascorbic Acid SolutionDissolve 20 g ascorbic acid(C6H8O6) in water, dilute to 200 mL and mix.1This test method is under the jurisdiction of ASTM Committee E01 onAnalytical Chemistry of Metals, Ores and Rel
13、ated Materials, and is the directresponsibility of Subcommittee E01.08 on Nickel, Cobalt and High TemperatureAlloys.Current edition approved Oct 10, 2002. Published June 2003. Originallyapproved in 1997. Last previous edition approved in 1997 as E 193897.2For referenced ASTM standards, visit the AST
14、M website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American National Standards Institute, 11 West 42nd Street,New York, NY 10036.1Copyright A
15、STM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6.4 Oxalic Acid SolutionDissolve 10 g of oxalic aciddihydrate (COOH)22H2O in water and dilute to 200 mL andmix.6.5 Diantipyrylmethane SolutionDissolve4gofdian-tipyrylmethane monohydrate (C23H24N4O2
16、H2O) in water con-taining 25 mL hydrochloric acid (1+1). Dilute with water to200 mL to mix.6.6 Sodium Chloride SolutionDissolve 117 g of sodiumchloride (NaCl) in water and dilute to 500 mL and mix.6.7 Titanium Stock Calibration SolutionDissolve 0.739 gof potassium titanyl oxalate dihydrate K2TiO(C2O
17、4)22H2O inwater.Add 50 mL of sulfuric acid (1+1) and evaporate to densefumes. Cool and dilute with water. Cool and transfer the roomtemperature solution to a 500 mL volumetric flask. Dilute tothe mark with water and mix.Alternative Preparation:Transfer 0.1000 g of titanium metal(purity: 99.9% min.)
18、weighed to within 6 0.2 mg to a 500-mLglass volumetric flask. Add 50 mL of H2SO4 (1+3) anddissolve over low heat. Oxidize the titanium by adding HNO3dropwise until the blue color is just discharged (avoid excessHNO3 which will cause the titanium to precipitate). Cool toroom temperature and dilute to
19、 volume with H2SO4 (1+9).6.8 Titanium Calibration Solution (25g/mL)Transfer25.0 mL of the titanium stock calibration solution (see 6.7)toa 200 mL volumetric flask. Add 20 mL of sulfuric acid (1+1).Cool the solution to room temperature, dilute to the mark withwater and mix.7. Sampling and Sample Prep
20、aration7.1 The sampling shall be carried out by normal proceduresagreed upon between the parties, or in the event of a dispute,according to the relevant standard, if one is available.7.2 The laboratory sample is normally in the form ofmillings or drillings and no further preparation of the sample is
21、necessary.7.3 If it is suspected that the laboratory sample is contami-nated with oil or grease from the milling or drilling operation,it shall be cleaned by washing it with high purity acetone anddrying in air.7.4 If the sample contains particles or pieces of widelyvarying sizes, the test sample sh
22、ould be obtained by riffling.8. Interlaboratory Studies (ILS)8.1 This test method was evaluated by a subcommitteewithin ISO Technical Committee 155 (ISO/TC 155/SC 4) onanalysis of nickel alloys, in accordance with ISO Standard5725. It was published as ISO Standard 11433. ILS test datawere not availa
23、ble for recalculation.9. Procedure9.1 Preparation of Test Solution:9.1.1 Test PortionWeigh the test portion of the sample inaccordance with Table 1.9.1.2 Dissolution of Test PortionTransfer the test portionto a 125-mLErlenmeyer flask and add 10 mLof HC1 and 3 mLof HNO3. Apply sufficient heat to init
24、iate and maintain thereaction until dissolution is complete. If the alloy resistsdissolution, some adjustment in the acid mixture may berequired.Add HC1 in 1-mL increments and continue heating todissolve the test portion.9.1.3 Preparation of Final Test Solution9.1.3.1 Add 7 mL H2SO4(1+1) and evapora
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