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plasma mass spectrometry introduction interpretation standard technology analysis dimension features plasma mass spectrometer traditional methods detection chemical analysis government information technology projects toughened glass panels volcanic gas reservoirs
YS/T 1563.4-2022 in English

YS/T 1563.4-2022 in English

VALID

Methods for chemical analysis of molybdenum rhenium alloy- Part 4: Determination of aluminum, calcium, copper, iron, magnesium, manganese, nickel, tin and tungsten contents- Inductively coupled plasma mass spectrometry

  • Issued on:2022-09-30
  • Implemented on:2023-04-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $270.00
$262.00
Standard No: YS/T 1563.4-2022
Document status: VALID
Title in English: Methods for chemical analysis of molybdenum rhenium alloy- Part 4: Determination of aluminum, calcium, copper, iron, magnesium, manganese, nickel, tin and tungsten contents- Inductively coupled plasma mass spectrometry
Title in Chinese: 钼铼合金化学分析方法 第4部分:铝、钙、铜、铁、镁、锰、镍、锡、钨含量的测定 电感耦合等离子体质谱法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2022-09-30
Implemented on: 2023-04-01
Professional Classification: YS-Non-ferrous Metal
Related Keywords: plasma mass spectrometry introduction interpretation
standard technology analysis dimension features
plasma mass spectrometer
traditional methods detection
chemical analysis
Related Topics: inductive coupling
inductive coupling
Rhenium Ionization Mass Spectrometry
Inductively Coupled Plasma Mass Spectrometry
Coupled inductor
aluminum calcium
aluminum calcium
plasma mass spectrometry
ys/t 4
plasma mass spectrometry
Tungsten tin
Coupled inductor
Inductively Coupled Plasma Measurements
Inductively Coupled Plasma Mass Spectrometry
Separation of molybdenum and aluminum
Ionization Methods for Mass Spectrometry
Iron Manganese Nickel
Chemical Analysis Method of Al-Mn-Fe Alloy
Coupled Inductance Measurement
Determination of Tungsten Content in Iron and Steel by Inductive Coupling
molybdenum iron inductive coupling
YS/T 1562.3-2022
Copper-nickel separation method
Method for masking metal cations iron, magnesium and aluminum
Chemical analysis method of molybdenum-rhenium alloy
ys/t 1523-2022
ys/t1568-2022

本文件规定了钼铼合金中铝、钙、铜、铁、镁、锰、镍、锡、钨含量的测定方法。
本文件适用于钼铼合金中铝、钙、铜、铁、镁、锰、镍、锡、钨含量的测定。各元素的测定范围:0.0001%~0.010%。


Introduction

Interpretation of standard technology

Analysis dimension Features of YS/T 1563.4 Comparison with traditional methods
Detection limit Ultra-low detection limit of 0.1μg/g Conventional AAS is 1-10μg/g
Multi-element synchronization Simultaneous determination of 9 elements Multiple experiments are required
Hydrofluoric acid resistant system Equipped with a dedicated sample injection system Ordinary ICP-MS is prone to corrosion

Core Technology Innovation

The standard adopts inductively coupled plasma mass spectrometer combined with collision reaction cell technology, and optimizes the detection conditions for easily interfered elements such as Ca and Fe. Sc(45) and Cs(133) are selected as internal standard elements to correct the signal drift of light and heavy elements respectively.


Implementation Points

Typical Application Case: The detection of a certain aviation-grade molybdenum-rhenium alloy sample showed that the Mn content was 0.0023%, and the RSD of repeated determination was only 2.1%, which fully met the repeatability limit of 0.0003% required by the standard.

Background of Standard Evolution

With the expansion of the application of molybdenum-rhenium alloy in key components such as aerospace engine nozzles, this part has been added to the original YS/T standard system to fill the gap in the detection method of ultra-trace impurities. Compared with the 2005 series of standards, the 2022 version has a 10-100 times higher detection sensitivity.

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