ASTM E367-2009 6875 Standard Test Methods for Chemical Analysis of Ferroniobium《铌铁化学分析的标准试验方法》.pdf
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1、Designation: E367 09Standard Test Methods forChemical Analysis of Ferroniobium1This standard is issued under the fixed designation E367; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenth
2、eses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover the chemical analysis offerroniobium having chemical compositions within the follow-ing limits:Element Concentration, %Aluminum
3、 2.00 maxCarbon 0.30 maxChromium 2.00 maxCobalt 0.25 maxLead 0.01 maxManganese 3.00 maxNiobium 40.00 to 75.00Phosphorus 0.05 maxSilicon 4.00 maxSulfur 0.03 maxTantalum 7.00 maxTin 0.15 maxTitanium 5.00 maxTungsten 0.50 max1.2 The test methods appear in the following order:SectionsSeparation of Niobi
4、um, Tantalum, and Titaniumby the Ion-Exchange Test Method10-16Titanium by the Photometric Test Method 0.05 % to 5.0 % 17-21Niobium by the Gravimetric Test Method 40 % to 75 % 22-23Tantalum by the Gravimetric Test Method 1 % to 7 % 24-25Tantalum by the Photometric Test Method 0.25 % to 1 % 26-301.3 T
5、he values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of whoever uses this standard to consult andestabli
6、sh appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior to use.Specific precautionary statements are given in Section 6, andspecific warning statements in 11.1.2. Referenced Documents2.1 ASTM Standards:2A550 Specification for FerrocolumbiumE29 Prac
7、tice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE32 Practices for Sampling Ferroalloys and Steel Additivesfor Determination of Chemical CompositionE50 Practices for Apparatus, Reagents, and Safety Consid-erations for Chemical Analysis of Metals, Ores, andRel
8、ated MaterialsE60 Practice for Analysis of Metals, Ores, and RelatedMaterials by Molecular Absorption SpectrometryE135 Terminology Relating to Analytical Chemistry forMetals, Ores, and Related MaterialsE173 Practice for Conducting Interlaboratory Studies ofMethods for Chemical Analysis of Metals3E16
9、01 Practice for Conducting an Interlaboratory Study toEvaluate the Performance of an Analytical Method3. Terminology3.1 For definition of terms used in this test method, refer toTerminology E135.4. Significance and Use4.1 These test methods for the chemical analysis of metalsand alloys are primarily
10、 intended to test such materials forcompliance with compositional specifications such as Specifi-cation A550. It is assumed that all who use these test methods1These test methods are under the jurisdiction of ASTM Committee E01 onAnalytical Chemistry for Metals, Ores, and Related Materials and are t
11、he directresponsibility of Subcommittee E01.01 on Iron, Steel, and Ferroalloys.Current edition approved Oct. 1, 2009. Published November 2009. Originallyapproved in 1970. Last previous edition approved in 2003 as E367 03. DOI:10.1520/E0367-09.2For referenced ASTM standards, visit the ASTM website, w
12、ww.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.3Withdrawn. The last approved version of this historical standard is referencedon www.astm.org.1Copyright ASTM Interna
13、tional, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.will be trained analysts capable of performing common labo-ratory procedures skillfully and safely. It is expected that workwill be performed in a properly equipped laboratory.5. Apparatus, Reagents, and Phot
14、ometric Practice5.1 Apparatus, standard solutions, and other reagents re-quired for each determination are listed in separate sectionspreceding the procedure. Photometers shall conform to therequirements prescribed in Practice E60.5.2 Photometric practice prescribed in these test methodsshall confor
15、m to Practice E60.6. Hazards6.1 For precautions to be observed in the use of certainreagents in these test methods, refer to Practices E50.6.2 Specific warning statements are given in 11.1.7. Sampling7.1 For procedures for sampling the material, and forparticle size of the sample for chemical analys
16、is, refer toPractices E32.8. Rounding Off Calculated Values8.1 Calculated values shall be rounded off to the desirednumber of places as directed in Practice E29.9. Interlaboratory Studies9.1 These test methods have been evaluated in accordancewith Practice E173, unless otherwise noted in the precisi
17、on andbias section.NIOBIUM, TANTALUM, AND TITANIUM BY THEION-EXCHANGE TEST METHOD10. Scope10.1 These test methods cover the determination of nio-bium, tantalum, and titanium in ferroniobium from 40 % to75 %, 0.25 % to 7 %, and 0.05 % to 5.0 %, respectively.11. Summary of Test Method11.1 The sample i
18、s dissolved in a HCl-HF acid mixture andtransferred to an anion-exchange column. Titanium, iron, andother elements are eluted with anNH4Cl-HCl-HF acid mixture.This eluate is treated with boric acid (H3BO3) and cupferron,and the precipitate, containing the titanium, is ignited, fusedwith potassium hy
19、drogen sulfate, and leached in dilute H2SO4.The titanium is oxidized to the yellow pertitanate with hydro-gen peroxide. Photometric measurement is made at approxi-mately 410 nm. Niobium is removed by eluting with anammonium chloride-hydrofluoric acid mixture. Tantalum isremoved by eluting with an am
20、monium chloride-ammoniumfluoride solution adjusted to a pH of 5 to 6. The eluates aretreated with the H3BO3to complex the fluorides, and each ofthe elements, niobium and tantalum, is precipitated withcupferron, ignited, and weighed as the pentoxide. For tantalumbelow 1 %, zirconium is added as a gat
21、herer in the cupferronseparation and the tantalum is converted to the pyrogallolcomplex. Photometric measurement is made at approximately420 nm. (WarningHF produces very serious burns whichmay or may not be painful on first contact. Such burns oftendamage bone and other tissue within the body. Stand
22、ardprocedure is to use gloves and protective clothing whenhandling this reagent. After the material is added, the closedcontainer, gloves, and all surfaces that may later be touched arerinsed with large quantities of water. Even one drop of HF onthe skin or fingernail must receive immediate first-ai
23、d andmedical attention should be promptly sought.)12. Interferences12.1 Any bismuth present will appear in the tantalumfraction, but this element is seldom present greater than0.005 % in this ferroalloy. Trivalent antimony, if present, iseluted with the titanium and precipitated with cupferron, but
24、itdoes not interfere in the photometric test method for titanium.13. Apparatus13.1 Ion-Exchange ColumnsThe columns must be con-structed of polystyrene tubing approximately 300-mm long and25 mm in inside diameter. A suitable column can be preparedas follows: Insert a waxed, No. 5 rubber stopper conta
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