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Effect of self-propagating high-temperature combustion synthesis on the deposition of NiTi coating by cold spraying using mechanical alloying Ni/Ti powder

机译:自蔓延高温燃烧合成对Ni / Ti粉末机械合金化冷喷涂NiTi涂层沉积的影响

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Nickel titanium alloy powder was fabricated by mechanical alloying process. The powder was employed to form Ni50-Ti50 alloy deposit by cold spraying. The thermal stability of the as-milled powders was characterized by differential scanning calorimetry. The surface morphology and cross-sectional microstructure of the coatings were examined by scanning electron microscopy (SEM). The coating microstructure was also characterized by X-ray diffraction analysis. It was observed that the Self-propagating High-temperature combustion Synthesis (SHS) phenomenon occurs during cold spraying using Ni/Ti mechanical alloying powders. The deposition efficiency of Ni50-Ti50 coating was significantly influenced by the SHS reaction level of MA powder. The gas temperature igniting the SHS reaction during cold spraying decreased with the increase of ball milling time. The ignition of SHS reaction led to partial melting of Ni/Ti powder. It was found that the melted particle fraction which resulted from SHS reaction led to splashing of spray particles off substrate on impact, which significantly decreased the deposition efficiency. A model was proposed to explain the coating deposition behavior during cold spraying using the mechanically alloyed metastable Ni/Ti powder with the stoichiometry of a NiTi intermetallic compound.
机译:通过机械合金化工艺制备了镍钛合金粉末。该粉末用于通过冷喷涂形成Ni50-Ti50合金沉积物。研磨后的粉末的热稳定性通过差示扫描量热法表征。通过扫描电子显微镜(SEM)检查涂层的表面形态和截面显微结构。还通过X射线衍射分析表征了涂层的微观结构。观察到在使用Ni / Ti机械合金粉末进行冷喷涂时会发生自蔓延高温燃烧合成(SHS)现象。 Ni粉末的SHS反应水平显着影响Ni50-Ti50涂层的沉积效率。随着球磨时间的增加,点燃SHS反应的气体温度降低。 SHS反应的引发导致Ni / Ti粉末的部分熔融。已经发现,由SHS反应引起的熔化的颗粒级分导致在冲击下将喷雾颗粒从基底飞溅,这显着降低了沉积效率。提出了一个模型来解释使用机械合金化的亚稳态Ni / Ti粉末和化学计量的NiTi金属间化合物在冷喷涂过程中的涂层沉积行为。

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