ASTM E2371-21 - 1.8.2021
 
Significance and Use

5.1?This test method for the chemical analysis of titanium and titanium alloys is primarily intended to test material for compliance with specifications of chemical composition such as those under the jurisdiction of ASTM Committee B10. It may also be used to test compliance with other specifications that are compatible with the test method.

5.2?It is assumed that all who use this test method will be trained analysts capable of performing common laboratory procedures skillfully and safely and that the work will be performed in a properly equipped laboratory.

5.3?This is a performance-based test method that relies more on the demonstrated quality of the test result than on strict adherence to specific procedural steps. It is expected that laboratories using this test method will prepare their own work instructions. These work instructions will include detailed operating instructions for the specific laboratory, the specific reference materials used, and performance acceptance criteria. It is also expected that, when applicable, each laboratory will participate in proficiency test programs, such as described in Practice E2027, and that the results from the participating laboratory will be satisfactory.

 
1. Scope

1.1?This method describes the analysis of titanium and titanium alloys, such as specified by committee B10, by inductively coupled plasma atomic emission spectrometry (ICP-AES) and direct current plasma atomic emission spectrometry (DCP-AES) for the following elements:

Element

Application
Range (wt.%)

Quantitative
Range (wt.%)

Aluminum

08

0.009 to 8.0

Boron

00.04

0.0008 to 0.01

Cobalt

0-1

0.006 to 0.1

Chromium

05

0.005 to 4.0

Copper

00.6

0.004 to 0.5

Iron

03

0.004 to 3.0

Manganese

00.04

0.003 to 0.01

Molybdenum

08

0.004 to 6.0

Nickel

01

0.001 to 1.0

Niobium

0-6

0.008 to 0.1

Palladium

0-0.3

0.02 to 0.20

Ruthenium

0-0.5

0.004 to 0.10

Silicon

00.5

0.02 to 0.4

Tantalum

0-1

0.01 to 0.10

Tin

04

0.02 to 3.0

Tungsten

0-5

0.01 to 0.10

Vanadium

015

0.01 to 15.0

Yttrium

00.04

0.001 to 0.004

Zirconium

05

0.003 to 4.0

1.2?This test method has been interlaboratory tested for the elements and ranges specified in the quantitative range part of the table in 1.1. It may be possible to extend this test method to other elements or broader mass fraction ranges as shown in the application range part of the table above provided that test method validation is performed that includes evaluation of method sensitivity, precision, and bias. Additionally, the validation study shall evaluate the acceptability of sample preparation methodology using reference materials or spike recoveries, or both. Guide E2857 provides information on validation of analytical methods for alloy analysis.

1.3?Because of the lack of certified reference materials (CRMs) containing bismuth, hafnium, and magnesium, these elements were not included in the scope or the interlaboratory study (ILS). It may be possible to extend the scope of this test method to include these elements provided that method validation includes the evaluation of method sensitivity, precision, and bias during the development of the testing method.

1.4?UnitsThe values stated in SI units are to be regarded as the standard. No other units of measurement are included in this standard.

1.5?This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. Specific safety hazards statements are given in Section 9.

1.6?This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

 
2. Referenced Documents

E50-17

Standard Practices for Apparatus, Reagents, and Safety Considerations for Chemical Analysis of Metals, Ores, and Related Materials

E135-23a

Standard Terminology Relating to Analytical Chemistry for Metals, Ores, and Related Materials (Includes all amendments and changes 7/17/2023).

ISO Guide 98-3

Uncertainty of measurement Part 3: Guide to the Expression of Uncertainty in Measurement (GUM: 1995)-First Edition

E2626-08

Standard Guide for Spectrometric Analysis of Reactive and Refractory Metals

E1832-08(2017)

Standard Practice for Describing and Specifying a Direct Current Plasma Atomic Emission Spectrometer

E1763-06

Standard Guide for Interpretation and Use of Results from Interlaboratory Testing of Chemical Analysis Methods (Withdrawn 2015)

E1601-19

Standard Practice for Conducting an Interlaboratory Study to Evaluate the Performance of an Analytical Method

E1479-16

Standard Practice for Describing and Specifying Inductively Coupled Plasma Atomic Emission Spectrometers

E1329-10

Standard Practice for Verification and Use of Control Charts in Spectrochemical Analysis (Withdrawn 2019)

E1097-12(2017)

Standard Guide for Determination of Various Elements by Direct Current Plasma Atomic Emission Spectrometry

E2027-17

Standard Practice for Conducting Proficiency Tests in the Chemical Analysis of Metals, Ores, and Related Materials

D1193-06(2018)

Standard Specification for Reagent Water

ISO Guide 31

Reference Materials-Contents of Certificates and Labels

ISO/IEC 17025

Requirements for the Competence of Calibration and Test Laboratories

E2857-22

Standard Guide for Validating Analytical Methods

ISO Guide 34

General Requirements for the Competence of Reference Material Producers