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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Packing quality of powder layer during counter-rolling-type powder spreading process in additive manufacturing
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Packing quality of powder layer during counter-rolling-type powder spreading process in additive manufacturing

机译:添加剂制造中的抗轧型粉末涂抹过程中粉末层的包装质量

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摘要

Powder spreading is an essential procedure in powder-bed-based additive manufacturing, and the resultant packing quality of the powder layer has important effects on the quality of the final products. In this work, the counter-rolling-type powder spreading is investigated by experiments and numerical simulations. Non-invasive in-situ measurements are performed to evaluate the packing qualities of the powder layer such as surface roughness and packing density, where the effect of the spreading speed is studied. It is found that both the surface quality and packing density of the powder layer decrease with the increase of spreading speed. Besides, the sensitivity of the surface roughness of the powder layer increases with the spreading speed, i.e., the higher the spreading speed is, the more remarkably the surface quality decreases. Numerical simulations using the discrete element method are performed to investigate the dynamics of the powder spreading in terms of the velocity, contact force and coordination number of powder particles, providing new insight to the physical mechanisms underlying the counter-rolling-type powder spreading at particulate scale.
机译:粉末涂抹是粉末床的添加剂制造中的必要方法,粉末层的所得包装质量对最终产品的质量具有重要影响。在这项工作中,通过实验和数值模拟来研究反滚型粉末涂抹。进行非侵入式原位测量以评估粉末层的填充质量,例如表面粗糙度和填充密度,其中研究了扩散速度的效果。发现粉末层的表面质量和包装密度随着扩散速度的增加而降低。此外,粉末层的表面粗糙度的敏感性随着扩散速度而增加,即,扩散速度越高,表面质量越明显降低。进行使用离散元件方法的数值模拟,研究了粉末颗粒的速度,接触力和配位数量方面的粉末蔓延的动态,为颗粒处于反轧型粉末施加的物理机制提供了新的洞察规模。

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