Technological parameters of gas-dynamic spraying affecting the formation coating based on mixture of particles copper, zinc and corundum

V. E. Arhipov, G. Moskvitin, M. Pugachev
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Abstract

The results of a study of the effect of the spraying temperature and the overlap coefficient on the formation of the coating structure based on a mixture of Cu, Zn and Al2O3 particles applied by cold gas-dynamic spraying are presented. X-ray diffraction analysis has shown a decrease in the size of coherent scattering regions (CSR) from 200 nm to 90 nm for copper and to 64 nm for zinc when using an overlap coefficient of 55 % and more significant (up to 22 nm) with an overlap of 64 %. The CSR sizes of electronic type compounds CuZn3 (ε-phase) and Cu5 Zn8 (γ-phase) are quite close to the CSR size of zinc. The microdeformation of copper decreases from 187 to 119 % with an increase in the deposition temperature and does not depend on the overlap coefficient. For the electronic compound of the ε-phase, the microstrain value increases, and the γ-phase decreases by 2 times (from 0.31 to 0.17 %). The mass fraction of aluminum oxide (corundum) decreases from 5.4 to 2.2 % with an increase in the spraying temperature. The use of the maximum spraying temperature of 450 °C is accompanied by the formation of zinc oxide, the mass fraction of which is 4.3 % with 64 % overlap.
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气动力喷涂工艺参数对铜、锌、刚玉混合颗粒地层涂层的影响
本文研究了喷涂温度和重叠系数对Cu、Zn和Al2O3混合粒子冷气动力喷涂涂层结构形成的影响。x射线衍射分析表明,当使用55%的重叠系数时,铜的相干散射区域(CSR)的大小从200 nm减少到90 nm,锌的相干散射区域(CSR)减少到64 nm,而更显著的(高达22 nm)重叠为64%。电子型化合物CuZn3 (ε-相)和Cu5 Zn8 (γ-相)的CSR尺寸与锌的CSR尺寸非常接近。随着沉积温度的升高,铜的微变形从187%减小到119%,并且与重叠系数无关。对于ε-相的电子化合物,微应变值增加,而γ-相的微应变值下降了2倍(从0.31%降至0.17%)。随着喷涂温度的升高,氧化铝(刚玉)的质量分数从5.4%下降到2.2%。使用时最高喷涂温度为450℃,伴随着氧化锌的形成,其质量分数为4.3%,重叠度为64%。
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