首页> 外文期刊>Powder Metallurgy and Metal Ceramics >GLOW-DISCHARGE MASS SPECTROMETRY, EMISSION SPECTROMETRY, AND X-RAY FLUORESCENCE IN COMPOSITIONAL ANALYSIS OF THERMAL-SPRAYED STEEL-BASED ALUMINUM PHOSPHATE COATINGS
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GLOW-DISCHARGE MASS SPECTROMETRY, EMISSION SPECTROMETRY, AND X-RAY FLUORESCENCE IN COMPOSITIONAL ANALYSIS OF THERMAL-SPRAYED STEEL-BASED ALUMINUM PHOSPHATE COATINGS

机译:热喷涂钢基磷酸铝涂层成分分析中的辉光放电质谱,发射光谱和X射线荧光

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摘要

Phosphorus and trace impurities in aluminum phosphate powders and coatings are identified with glow-discharge mass spectrometry (GDMS), atom emission spectrometry (AES), x-ray fluorescence (XRF), and chemical analysis. Alumina powders with particles 60 to 40 mu m in size that are covered with Al(PO_3)_3 and AlPO_4 with TiO_2 additives are sprayed using a supersonic air plasmatron. The distribution of elements across the coating on a steel substrate is examined with GDMS. The effect of polyatomic clusters is taken into account in determining Mg, P, S, and Ti by mathematical simulation. Phosphorus is identified with AES in a dc air arc controlled to produce similar conditions for exciting PI lines in the evaporation of test and reference (Ca_3(PO_4)_2) samples. Comparing the results obtained by different methods shows that x-ray fluorescence reveals the concentration from the surface of nucleus-shell particles. Measurements show that some part of phosphorus is lost in spraying because orthophosphates transform into metaphosphates.
机译:通过辉光放电质谱(GDMS),原子发射光谱(AES),X射线荧光(XRF)和化学分析来鉴定磷酸铝粉末和涂料中的磷和微量杂质。使用超声空气等离子体加速器喷涂尺寸为60至40微米的氧化铝粉,这些粉被Al(PO_3)_3和AlPO_4以及TiO_2添加剂覆盖。用GDMS检查元素在钢质基材上的分布情况。在通过数学模拟确定Mg,P,S和Ti时要考虑多原子团簇的作用。磷是通过AES在直流空气电弧中鉴定的,该空气电弧被控制为在测试样品和参考样品(Ca_3(PO_4)_2)的蒸发中产生类似于激发PI线的条件。比较通过不同方法获得的结果,结果表明X射线荧光揭示了核壳颗粒表面的浓度。测量表明,由于正磷酸盐转化为偏磷酸盐,磷在喷涂过程中损失了一部分。

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