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An experimental and theoretical investigation of surface roughness of poly-jet printed parts This paper explains how local surface orientation affects surface roughness in a poly-jet process

机译:对多喷嘴印刷零件的表面粗糙度进行实验和理论研究本文解释了局部表面取向如何影响多喷嘴印刷过程中的表面粗糙度

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摘要

The present study has attempted to investigate and model surface roughness on parts printed using a poly-jet additive manufacturing system. Initially the study investigated the effect of layer thickness, local surface orientation and finish type on surface roughness in poly-jet printed parts. The study shows that the surface orientation and finish type are the major factors affecting surface roughness of poly-jet parts. Then a detailed experimental study was conducted by varying surface orientation in very close intervals to obtain the surface roughness distribution. The study reveals that surface roughness distribution for poly-jet parts is different from that obtained for parts made by other additive manufacturing processes. A detailed experimental and theoretical analysis of droplet geometry, as formed by the jetting process, and its effect on the edge profile of the polymerised layer is presented. A surface roughness prediction model is proposed based on these studies and validated using profilometric measurements.
机译:本研究试图研究和建模使用多喷射增材制造系统打印的零件的表面粗糙度。最初,该研究调查了层厚度,局部表面取向和表面处理类型对多喷印刷件表面粗糙度的影响。研究表明,表面取向和表面处理类型是影响多喷零件表面粗糙度的主要因素。然后,通过以非常接近的间隔改变表面方向进行详细的实验研究,以获得表面粗糙度分布。研究表明,多喷嘴零件的表面粗糙度分布与通过其他增材制造工艺制成的零件的表面粗糙度分布不同。给出了由喷射过程形成的液滴几何形状的详细实验和理论分析,及其对聚合层边缘轮廓的影响。基于这些研究提出了表面粗糙度预测模型,并使用轮廓测量法进行了验证。

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