Cooperation with Institute of Metal Research, Chinese Academy of Sciences

2025-04-30

Institute of Metal Research, Chinese Academy of Sciences, was established in 1953, which is one of the first research institutes newly established by the Chinese Academy of Sciences after the founding of New China. Institute of Metal Research, Chinese Academy of Sciences requires high-precision carbon sulfur and oxygen nitrogen hydrogen analysis techniques to support their research work in multiple new material research fields such as high-temperature alloys, metal ceramics, and graphite materials. Our company has partnered with the Institute of Metals, Chinese Academy of Sciences to provide advanced carbon sulfur analyzer and oxygen nitrogen hydrogen analyzer, leveraging our professional expertise and high-quality products in the fields of carbon sulfur analysis and oxygen nitrogen hydrogen analysis.

The researchers from the Institute of Metal Research, Chinese Academy of Sciences highly praised the carbon sulfur analyzer and oxygen nitrogen hydrogen analyzer provided by our company. They stated that our instrument is easy to operate, the analysis results are accurate and reliable, greatly improving the efficiency and quality of scientific research work. The stability and repeatability of the instrument are very good, which can meet the precise analysis needs of a large number of samples in daily scientific research. At the same time, our professional pre-sales consulting and after-sales service team has provided them with strong technical support, ensuring that any problems encountered during the use of the instrument can be resolved in a timely manner. Through successful cooperation with the Institute of Metal Research, Chinese Academy of Sciences, our carbon sulfur analyzer and oxygen nitrogen hydrogen analyzer have fully demonstrated its outstanding performance and application value in the field of materials science research.


Carbon Sulfur Analyzer

The carbon sulfur analyzer plays an irreplaceable role in the development of a new generation of high-strength and high toughness steel based alloys. Carbon, as a key element affecting the performance of steel, can significantly alter the strength, hardness, and toughness of alloys with small changes in its content. For example, when developing a new type of alloy steel for key components of aircraft engines, the research team hopes to improve the high-temperature strength and fatigue resistance of the alloy by optimizing the carbon content.

Strict control of sulfur content is also crucial. As a harmful element, excessive sulfur content can increase the thermal brittleness of steel. Through the precise detection of carbon sulfur analyzer, the sulfur content is stably controlled within the specified range, effectively avoiding the phenomenon of hot brittleness, ensuring the quality stability of the new alloy steel, and providing material guarantee for the reliable operation of aircraft engine components.


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