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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Oxidation dependency of critical velocity for aluminum feedstock deposition in kinetic spraying process
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Oxidation dependency of critical velocity for aluminum feedstock deposition in kinetic spraying process

机译:动态喷涂过程中铝原料沉积临界速度的氧化依赖性

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In kinetic spraying process, critical velocity is an important criterion which determines the deposition of feedstock onto the substrate. It has been proven experimentally and numerically that the critical velocity is determined by physical and mechanical properties and the state of materials such as initial temperature and size. In this study, the oxidation effect on critical velocity was investigated using experimental methods. As oxygen content of feedstock increased, critical velocity significantly decreased. In order to find out reasons for difference in critical velocity with oxygen content, individual impact behavior was analyzed and interface microstructure was observed. Due to high brittleness and hardness of oxide, oxide layer on particle influences the particle deformation behavior during impact. And oxide accumulated at interface obstructs the adhesion between activated particle and substrate surface during impact.
机译:在动态喷涂过程中,临界速度是决定原料沉积在基材上的重要标准。实验和数值证明,临界速度取决于物理和机械性能以及材料的状态(例如初始温度和尺寸)。在这项研究中,使用实验方法研究了氧化对临界速度的影响。随着原料氧含量的增加,临界速度显着降低。为了找出临界速度与氧含量不同的原因,分析了各个冲击行为并观察了界面微观结构。由于氧化物的高脆性和硬度,颗粒上的氧化物层会影响冲击过程中的颗粒变形行为。并且在碰撞期间,在界面处累积的氧化物阻碍了活化颗粒与基底表面之间的粘附。

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