Comparison and analysis of standard methods for the determination of nickel-based alloy by spark discharge atomic emission spectrometry
LIU Manyu1,2, FENG Wei1,2, WANG Chun1,2, WU Chao3 HOU Yongtao1,2, SUN Shuqi1,2
1. Harbin Well Welding Co., Ltd., Harbin 150028, China; 2. Harbin Welding Research Institute Co., Ltd., Harbin 150028, China; 3. China Railway Third Bureau Group Guangdong Construction Engineering Co., Ltd., Guangzhou 510000, China
Abstract:In recent years, American Society for Materials and Testing (ASTM) and Japanese Industrial Standards (JIS) have developed the analysis standards of nickel-based alloy by spark discharge atomic emission spectrometry. In order to meet the needs of development, the national standard GB/T 38939-2020 Nickel-based alloy-Determination of multi-element contents-Spark discharge atomic emission spectrometric method (routine method) had been officially implemented since 1st December 2020 in China. The similarities and differences of three standards above were compared and the contents in newly issued national standard were analyzed, which was helpful to deepen the understanding and recognition of standard by the users. The results showed that compared to the corresponding ASTM and JIS standards, the criterions in standardization of instrument type and accuracy of measurement results in GB were more detailed and comprehensive. The control of instrument and analytical conditions in GB and JIS standards were more rigorous. In terms of sample preparation and excitation, it was suggested for GB to developed the standard methods in sampling and sample preparation of nickel-based alloys as soon as possible. For the application scope, measurement wavelength and interference elements, the clauses in GB and ASTM standards had their own merits.
刘满雨, 冯伟, 王纯, 吴超, 侯永涛, 孙墅畦. 火花放电原子发射光谱法分析镍基合金标准的对比和解析[J]. 冶金分析, 2021, 41(7): 54-60.
LIU Manyu, FENG Wei, WANG Chun, WU Chao HOU Yongtao, SUN Shuqi. Comparison and analysis of standard methods for the determination of nickel-based alloy by spark discharge atomic emission spectrometry. , 2021, 41(7): 54-60.
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