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首页> 外文期刊>Journal of Thermal Spray Technology >Optimization of Cold Spray Deposition of High-Density Polyethylene Powders
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Optimization of Cold Spray Deposition of High-Density Polyethylene Powders

机译:高密度聚乙烯粉末冷雾沉积的优化

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When a solid, ductile particle impacts a substrate at sufficient velocity, the resulting heat, pressure and plastic deformation can produce bonding between the particle and the substrate. The use of a cool supersonic gas flow to accelerate these solid particles is known as cold spray deposition. The cold spray process has been commercialized for some metallic materials, but further research is required to unlock the exciting potential material properties possible with polymeric particles. In this work, a combined computational and experimental study was employed to study the cold spray deposition of high-density polyethylene powders over a wide range of particle temperatures and impact velocities. Cold spray deposition of polyethylene powders was demonstrated across a range broad range of substrate materials including several different polymer substrates with different moduli, glass and aluminum. A material-dependent window of successful deposition was determined for each substrate as a function of particle temperature and impact velocity. Additionally, a study of deposition efficiency revealed the optimal process parameters for high-density polyethylene powder deposition which yielded a deposition efficiency close to 10% and provided insights into the physical mechanics responsible for bonding while highlighting paths toward future process improvements.
机译:当固体的延展性颗粒以足够的速度冲击基材时,所得到的热量,压力和塑性变形可以在颗粒和基材之间产生粘合。使用冷却的超声波气流以加速这些固体颗粒被称为冷喷雾沉积。冷喷涂工艺已为某些金属材料商业化,但需要进一步的研究来解锁可与聚合物颗粒的激发潜在的材料特性。在这项工作中,采用了组合的计算和实验研究来研究高密度聚乙烯粉末在宽范围的颗粒温度和冲击速度上的冷喷雾沉积。聚乙烯粉末的冷喷涂沉积在宽范围的基底材料范围内,包括几种不同的聚合物基材,其具有不同的模胶,玻璃和铝。针对每个基板测定作为颗粒温度和冲击速度的函数的成功沉积的依赖性窗口。另外,沉积效率的研究显示了高密度聚乙烯粉末沉积的最佳过程参数,其产生接近10%的沉积效率,并提供了负责粘接的物理力学的见解,同时突出导致未来过程改进的路径。

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