Abstract:The tantalum-tungsten alloy sample was pretreated by removing surface dirt with a file followed by rinsing with acetone and natural air drying. Then the sample was added into high purity nickel basket. The detection of oxygen and nitrogen in tantalum-tungsten alloy by inert gas fusion infrared absorption-thermal conductivity method was established. The effects of flux, analytical power and sample mass on the analysis results were discussed. The following experimental conditions were selected: the flux was nickel basket, the analytical power was 5.0 kW, and the sample mass was about 0.10 g. Titanium alloy standard sample GBW(E)020188 was used for calibration, and another zirconium alloy standard sample AR640 was used for verification. The determination results of oxygen and nitrogen in the standard sample were within the range of standard values. Under the optimized conditions, the limits of detection of oxygen and nitrogen were 0.000 13% and 0.000 04%, and the limits of quantification were 0.000 44% and 0.000 13%, respectively. The proposed method was applied for the analysis of tantalum-tungsten alloy. The relative standard deviations (RSD, n=11) of determination results of oxygen and nitrogen were 6.6% and 11.2%, respectively. The recoveries were 93%-102% and 95%-103%, respectively.
柴琴琴, 石新层, 王宽, 王芳, 张哲. 惰气熔融红外/热导法测定钽钨合金中氧和氮[J]. 冶金分析, 2022, 42(4): 69-74.
CHAI Qinqin, SHI Xinceng, WANG Kuan, WANG Fang, ZHANG Zhe. Determination of oxygen and nitrogen in tantalum-tungsten alloy by inert gas fusion infrared absorption-thermal conductivity method. , 2022, 42(4): 69-74.
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