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Function-aware slicing using principal stress line for toolpath planning in additive manufacturing

机译:使用主应力线进行添加剂制造中的刀具路径规划的功能感知切片

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Additive manufacturing (AM) has been widely used in many different areas due to its unique advantages, such as the possibility of creating complex shapes, no specific tools required, relatively fast, and less material waste with light-weight designs. The design freedom enabled by AM also allows a component to be highly optimized on its topology and shape according to its function. Currently, there are advanced algorithms that enable designers to perform topology optimization (TO) in the computer-aided design (CAD) phase. However, the optimization results are not considered during the downstream AM process planning like toolpath generation, and the optimized structure may lose its designed performance. Instead of only considering TO in the CAD phase, this work presents a breakthrough in adopting the TO principles in the toolpath planning process and considering the toolpath characteristics presented in the AM processes. Since toolpaths are lines, this paper applies a line-based TO method that uses the principal stress line (PSL) as guidances to the generation of toolpaths to improve structural rigidity. The PSL-based method is efficient, controllable, and able to consider the characteristics of the AM process. The computation results can be directly converted into toolpaths that can be faithfully fabricated and achieve the component function specified in the design phase. Structural tests were performed on the developed method. The experimented results demonstrate that the strategy of applying the PSL-based toolpath planning is a promising direction to incorporate topology optimization from the CAD phase to computer-aided manufacturing (CAM). To the best of our knowledge, this study is the first to explore the use of PSL in the AM?s toolpath planning.
机译:添加剂制造(AM)已被广泛应用于许多不同的领域,因为其独特的优点,例如创造复杂形状的可能性,无需具体工具,相对较快,更少的材料浪费,具有轻量级设计。通过AM启用的设计自由还允许根据其功能对其拓扑和形状进行高度优化的组件。目前,存在高级算法,使设计人员能够在计算机辅助设计(CAD)阶段中执行拓扑优化(to)。但是,在刀具路径生成等下游AM过程规划期间不考虑优化结果,并且优化的结构可能失去其设计的性能。而不是仅考虑在CAD阶段,这项工作突破了采用刀具路径规划过程中的原则,并考虑到AM进程中呈现的刀具路径特征。由于刀具路径是线路,本文适用于使用主要应力线(PSL)作为产生刀具路径的指导来提高结构刚度的方法。基于PSL的方法是有效,可控的方法,能够考虑AM过程的特征。计算结果可以直接转换为刀具路径,可以忠实地制造和实现设计阶段中规定的组件函数。结构试验是对开发方法进行的。实验结果表明,应用基于PSL的刀具路径规划的策略是将来自CAD阶段的拓扑优化与计算机辅助制造(CAM)施加到有希望的方向。据我们所知,这项研究是第一个探讨在AM的刀具路径规划中使用PSL的使用。

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