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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Virtual bead representation and surface roughness evaluation challenges for additive manufacturing material extrusion processes
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Virtual bead representation and surface roughness evaluation challenges for additive manufacturing material extrusion processes

机译:虚拟珠子表示和表面粗糙度评估挑战,适用于加性制造材料挤出工艺

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摘要

Additive manufacturing (AM) processes, such as material extrusion, are part of a popular growing technology field; with limited human assistance required and advanced rapid prototyping capabilities, this technology is advertised to have limitless possibilities. The common challenge faced by users is a lack of design control of the surface roughness, which is highlighted by a characteristic stair case layering effect at the boundary. Focusing on material extrusion processes, the goal of this research is to model representative bead shapes, and highlight the surface roughness challenges for assessing boundary-fill regions. Various bead shapes are explored and compared through virtual simulation. Unique material extrusion AM-related issues arise, and it is shown that machining solutions may not provide the desired surface smoothness. This research illustrates that specific physical and virtual assessment tools and standards need to be further developed to convey surface roughness attributes for material extrusion additive manufactured components.
机译:添加剂制造(AM)方法,如材料挤出,是流行的生长技术领域的一部分;拥有有限的人类援助和先进的快速原型功能,这项技术被宣传为具有无限可能性的可能性。用户面临的共同挑战是缺乏对表面粗糙度的设计控制,这是通过边界处的特征阶梯案分层效应突出的。专注于材料挤出工艺,本研究的目标是模拟代表性珠子形状,并突出表面粗糙度挑战,用于评估边界填充区域。通过虚拟仿真探索各种珠子形状并比较。出现独特的材料挤出am相关的问题,并显示加工溶液可能不提供所需的表面光滑度。该研究表明,需要进一步开发具体的物理和虚拟评估工具和标准以传送材料挤出添加剂制造部件的表面粗糙度属性。

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