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Impact of high velocity cold spray particles

机译:高速冷喷颗粒的影响

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This article presents experimental data and a computational model of the cold spray solid particle impact process. Copper particles impacting onto a polished stainless steel substrate were examined in this study. The high velocity impact causes significant plastic deformation of both the particle and the substrate, but no melting was observed. The plastic deformation exposes clean surfaces that, under the high impact pressures, result in significant bond strengths between the particle and substrate. Experimental measurements of the splat and crater sizes compare well with the numerical calculations. It was shown that the crater depth is significant and increases with impact velocity. However, the splat diameter is much less sensitive to the impact velocity. It was also shown that the geometric lengths of the splat and crater scale linearly with the diameter of the impacting particle. The results presented will allow a better understanding of the bonding process during cold spray.
机译:本文介绍了冷喷涂固体颗粒撞击过程的实验数据和计算模型。在这项研究中检查了铜颗粒撞击到抛光的不锈钢基材上的情况。高速冲击导致颗粒和基材均发生明显的塑性变形,但未观察到熔化。塑性变形会暴露出干净的表面,这些表面在高冲击压力下会导致颗粒与基材之间的显着粘结强度。槽口和坑口尺寸的实验测量结果与数值计算结果非常吻合。结果表明,火山口深度很大,并且随着撞击速度的增加而增加。但是,飞溅直径对冲击速度的敏感度要低得多。还表明,飞溅和弹坑的几何长度与撞击颗粒的直径成线性比例。呈现的结果将使您更好地了解冷喷涂过程中的粘合过程。

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