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Discrete element simulation and experimental study of powder spreading process in additive manufacturing

机译:添加剂制造中粉末涂布过程的离散元模拟与实验研究

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摘要

Powders used in additive manufacturing (AM) are spread into a compact layer of particles for sintering and this process is repeated layer by layer to form the final products. Spreading of rod-shaped particles in realistic AM settings is simulated using the discrete element method (DEM) to investigate the effects of particle shape and operating conditions on the bed quality, characterised by its surface roughness and solid volume fraction. It is discovered that larger particle aspect ratios, Ar, or higher spreader translational velocities result in a lower bed quality, i.e. a larger surface roughness and a smaller volume fraction. The surface roughness increases monotonically with Ar. However, the volume frac- tion exhibits a maximum at Ar = 1.5 for randomly packed powder beds that are formed by the roller type spreaders moving at low translational velocities. It is also found that a roller outperforms a blade spreader in terms of the quality of the prepared bed at the same operating conditions. The micro-structural anal- ysis of the beds also shows particle alignment in response to the induced flow, which is qualitatively confirmed by a set of purposely-designed experiments. In addition, a shape segregation is documented for powders with mixed aspect ra- tios (Ar) such that particles with larger Ar tend to accumulate on the upper layers of the bed.
机译:增材制造(AM)中使用的粉末被散布在致密的颗粒层中以进行烧结,然后逐层重复此过程以形成最终产品。使用离散元方法(DEM)模拟了棒状颗粒在实际AM设置中的扩散,以研究颗粒形状和操作条件对床质量的影响,并以其表面粗糙度和固体体积分数为特征。已经发现,较大的颗粒长径比,Ar或较高的扩散器平移速度导致较低的床质量,即较大的表面粗糙度和较小的体积分数。表面粗糙度随Ar单调增加。但是,对于随机堆积的粉末床,其体积碎屑在Ar = 1.5处表现出最大值,该粉末床是由以低平移速度移动的辊式撒布机形成的。还发现,在相同的操作条件下,就所制备的床的质量而言,辊的性能优于刮刀分布器。床的微观结构分析还显示了响应于诱导流的颗粒排列,这由一组专门设计的实验定性证实。此外,记录了具有混合纵横比(Ar)的粉末的形状偏析,使得具有较大Ar的颗粒易于积聚在床的上层。

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