首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A CAD-based approach for measuring volumetric error in layered manufacturing
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A CAD-based approach for measuring volumetric error in layered manufacturing

机译:基于CAD的衡量分层制造中的容积误差的方法

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摘要

Rapid prototyping uses layered manufacturing technology to produce functional parts directly from 3D computer-aided design model without involving any tools and human intervention. Due to layer by layer deposition, volumetric error remains in the part which is basically the volumetric difference between computer-aided design model and the fabricated part. This volumetric error causes poor dimensional accuracy and surface finish, which has limited the widespread applications of rapid prototyping. Although rapid prototyping is able to produce functional parts in less build time with less material wastage, today many industries are looking for better surface quality associated with these parts. Literature discloses that the part quality can be improved by selecting proper build orientation that corresponds to minimum volumetric error. In support of this, current study presents a computer-aided design-based novel methodology to precisely measure the volumetric error in layered manufacturing process, in particular fused deposition modeling process. The proposed method accepts computer-aided design model of the part in .CAT format and automatically calculates volumetric error for different build orientations. An Excel function is integrated with it to determine optimum build orientation based on minimum volumetric error. Several simple and complex examples verified the robustness of our proposed methodology. We anticipate that the current invention will help future rapid prototyping users in producing high-quality products through an intelligent process planning.
机译:快速原型设计使用分层制造技术直接从3D计算机辅助设计模型生产功能部件,而不涉及任何工具和人为干预。由于层沉积层,容积误差仍然存在于基本上是计算机辅助设计模型和制造部分之间的体积差异。该体积误差导致尺寸尺寸精度和表面光洁度差,这限制了快速原型设计的广泛应用。虽然快速的原型设计能够在更少的建筑时间内生产功能部件,但由于材料浪费更少,但今天许多行业正在寻找与这些部件相关的更好的表面质量。文献公开了通过选择对应于最小体积误差的正确构建方向来改善零件质量。为了支持这一点,目前的研究提出了一种基于计算机辅助设计的新方法,精确地测量分层制造过程中的容积误差,特别是融合沉积建模过程。该方法接受零件的计算机辅助设计模型.CAT格式,并自动计算不同构建方向的体积误差。 Excel功能与其集成,以确定基于最小容量误差的最佳构建方向。几个简单和复杂的例子验证了我们提出的方法的稳健性。我们预计本发明将通过智能流程规划帮助未来的快速原型用户在生产高质量产品方面。

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