
| Element Tested | Mass Fraction Range (Wt %) | |---|---| | Antimony | 0.001 to 0.003 | | Arsenic | 0.001 to 0.006 | | Beryllium | 0.0004 to 0.24 | | Bismuth | 0.03 to 0.6 | | Boron | 0.0006 to 0.009 | | Calcium | 0.0002 to — | | Chromium | 0.001 to 0.23 | | Cobalt | 0.4 to — | | Copper | 0.001 to 5.5 | | Gallium | 0.02 to — | | Iron | 0.2 to 0.5 | | Lead | 0.04 to 0.6 | | Lithium | 0.0003 to 2.1 | | Magnesium | 0.03 to 5.4 | | Manganese | 0.001 to 1.2 | | Nickel | 0.005 to 2.6 | | Phosphorus | 0.003 to — | | Silicon | 0.07 to 16 | | Sodium | 0.003 to 0.02 | | Strontium | 0.03 to — | | Tin | 0.03 to — | | Titanium | 0.001 to 0.12 | | Vanadium | 0.002 to 0.022 | | Zinc | 0.002 to 5.7 | | Zirconium | 0.001 to 0.12 |
2. Core Elements and Analytical Ranges covered by ASTM E1251-17a
Avoid utilizing unverified "free" online sources, as they may offer outdated versions (e.g., the 2011 version instead of 17a), which can lead to compliance errors in your laboratory. Conclusion astm e125117a pdf
If you only need to read the standard once, consider the "PDF Single User" option. If your lab has 10 spectrometers, buy a multi-user license.
Ensures incoming raw materials and outgoing products meet alloy specifications. | Element Tested | Mass Fraction Range (Wt
: International supply chains require universally recognized testing methods to ensure parts manufactured in one country meet the requirements of an assembly plant in another.
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