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YS/T 539.13-2009 English PDF

YS/T 539.13: Evolution and historical versions

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YS/T 539.13-2009English159 Add to Cart 2 days [Need to translate] Methods for chemical analysis of nickel base alloy powder. Part 13: Determination of oxygen content. The pulse heating inert gas fusion-infrared absorption method Obsolete YS/T 539.13-2009
YS/T 539.13-2006English199 Add to Cart 2 days [Need to translate] Nickel base alloy powder. Determination of oxygen content. Pulse heating inert gas fusion coulometric titrimetric method Obsolete YS/T 539.13-2006

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Standard similar to YS/T 539.13-2009

GB/T 4295   GB/T 7160   YS/T 798   YS/T 539.11   YS/T 539.1   YS/T 539.10   

Basic data

Standard ID YS/T 539.13-2009 (YS/T539.13-2009)
Description (Translated English) Methods for chemical analysis of nickel base alloy powder. Part 13: Determination of oxygen content. The pulse heating inert gas fusion-infrared absorption method
Sector / Industry Nonferrous Metallurgy Industry Standard (Recommended)
Classification of Chinese Standard H71
Classification of International Standard 77.120.40
Word Count Estimation 4,456
Date of Issue 2009-12-04
Date of Implementation 2010-06-01
Older Standard (superseded by this standard) YS/T 539.13-2006
Regulation (derived from) MIIT [2009] No. 66
Issuing agency(ies) Ministry of Industry and Information Technology
Summary This standard specifies: Determination of oxygen content nickel-base alloy powder. This standard applies to the oxygen content of the nickel -base alloy powder measurement, measuring range: 0. 005% to 0. 2 %.

YS/T 539.13-2009: Methods for chemical analysis of nickel base alloy powder. Part 13: Determination of oxygen content. The pulse heating inert gas fusion-infrared absorption method


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Methods for chemical analysis of nickel base alloy powder.Part 13. Determination of oxygen content.The pulse heating inert gas fusion-infrared absorption method ICS 77.120.40 H71 People's Republic of China Nonferrous Metals Industry Standard Replacing YS/T 539.13-2006 Nickel-based alloy powder chemical analysis Determination of oxygen. Part 13 The pulse heating inert gas fusion - infrared absorption method Posted 2009-12-04 2010-06-01 implementation Ministry of Industry and Information Technology of the People's Republic of China released

Foreword

YS/T 539 "nickel-based alloy powder chemical analysis method" is divided into 13 parts as follows. --- Part 1. Determination of the amount of boron in the titration; --- Part 2. Determination of the amount of chrome aluminum Azure S Spectrophotometry; --- Part 3. Determination of silicon content of perchloric acid dehydration gravimetric method; --- Part 4. Determination of chromium content of ammonium persulfate oxidation titration; --- Part 5. Determination of manganese content of sodium periodate (K) oxidation spectrophotometry; --- Part 6. Determination of iron content of titanium trichloride - potassium dichromate titration; --- Part 7. Determination of cobalt content nitroso R salt spectrophotometric method; --- Part 8. Determination of copper content Neocuproine - chloroform extraction spectrophotometric method; --- Part 9. Determination of copper content of sodium thiosulfate iodometry; --- Part 10. Determination of molybdenum content - Thiocyanate spectrophotometric method; --- Part 11. Determination of cinchonine gravimetric method tungsten content; --- Part 12. Determination of phosphorus content of n-butyl alcohol - chloroform extraction spectrophotometric method; --- Part 13. Determination of oxygen pulse heating inert gas fusion - infrared absorption method. This section is YS/T Part 13 539. The partial replacement of YS/T 539.13-2006 "nickel-based alloy powder chemical analysis of pulse heating inert gas fusion coulometric titration Determination of oxygen. " This portion of YS/T 539.13-2006 phase comparator major changes are as follows. --- The coulometric titration method to the infrared absorption method; --- Increasing the foreword; --- Complements the repeatability limit. The non-ferrous metal part by the National Standardization Technical Committee and centralized. This section is responsible for drafting unit. Beijing Nonferrous Metal Research Institute, China Nonferrous Metals Industry Institute of Standards and Metrology and Quality. This section is drafted. Beijing Nonferrous Metal Research Institute, Steel Research Institute. The main drafters of this section. Zhou Hai income, Wang Hongbin, Song Xiao force. This part of the standard replaces the previous editions are. --- GB/T 8638.13-1988; --- YS/T 539.13-2006. Nickel-based alloy powder chemical analysis Determination of oxygen. Part 13 The pulse heating inert gas fusion - infrared absorption method

1 Scope

YS/T 539 This part specifies the method for determination of nickel-base alloy powder oxygen content. This section applies to the determination of nickel-base alloy powder oxygen content measurement range. 0.005% to 0.2%.

2 Method summary

Under an inert atmosphere, the graphite crucible sample is heated and melted by the pulse and oxygen in a sample in the form of carbon monoxide precipitation, precipitation CO contained in the inert gas taken off, copper oxide by oxidation of carbon monoxide to carbon dioxide will be produced, enters the infrared detector to measure the oxygen content.

3 Reagents

Unless otherwise indicated in the analysis using only recognized as analytical grade reagents and distilled or deionized water or equivalent purity. 3.1 Metal foil. nickel foil (Ni≥99.9%) or tin capsules (Sn≥99.9%), oxygen content (O≤0.0050%); nickel foil before use applications CTC dip cotton scrub, cut the same size, the size quite small, dry and set aside. 3.2 CTC. 3.3 Helium (volume fraction ≥99.99%). 3.4 graphite crucible. sets of spectral pure graphite crucible. 3.5 Sample. choose between standard steel 0.0050% to 0.20% oxygen mass fraction. 3.6 magnesium perchlorate and alkali asbestos (chemically pure).

4 Instrument

Pulse heating infrared analyzer. --- Pulse furnace. temperature greater than 2000 ℃; --- Detector sensitivity. 0.01μg/g. Step 5 Analysis 5.1 Sample When the content of oxygen in the sample O≤0.02%, a sample was weighed 0.15g ~ 0.25g, accurate to 0.001g; when the content of oxygen in the sample O > At 0.02%, a sample was weighed 0.10g ~ 0.20g, accurate to 0.001g. Sample with 1.0g (accurate to 0.001g) metal foil (3.1) package. 5.2 Determination of the number of Independent of the two measurements, the mean value. 5.3 warmed up Required equipment specification, switch on the instrument, and preheating system checks. 5.4 Calibration Blank 5.4.1 Open pulse furnace, the crucible (3.4) placed under electrodes, 1.0g (accurate to 0.0001g) metal foil (3.1), placed in sample loading Inside.