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Determining the relationships between the build orientation, process parameters and voids in additive manufacturing material extrusion processes

机译:确定添加剂制造材料挤出过程中建立方向,工艺参数和空隙之间的关系

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It stands to reason that the additive manufacturing build orientation for the material extrusion process affects the support material requirements, processing time, surface finish, etc. This paper aims to study the influence of the build orientation on the optimal process parameter settings (bead width, overlap, and raster angle), the amount, and location of unwanted voids. This research shows that there are limited optimal solution alternatives over the large solution space explored. The layer by layer process parameters are not selected independently. Knowledge of a void location in one layer is utilized to select a process parameter set for the next layer, preventing void regions from being stacked in 3D, and avoiding creating an internal chimney. Material extrusion processes, with a wide selection of nozzle sizes (0.4mm to 21mm), are considered suitable candidates for this solution. To carry out this study, a literature review was performed to understand the influence of the build parameters. Then, an analysis of valid parameter settings to be targeted was performed for a commercial system. The mathematical model is established based on the component geometry and the available build options for a given machine-material configuration. A C++ program has been developed to select a set of standards (available) toolpath parameters to determine the optimal process variables. Case studies are presented to show the merits of this approach. The influence of the orientation on the optimal process parameters is illustrated as well as its impact on voids. As expected, it is statistically shown that the amount and location of the voids depends on the build orientation. The optimal solution for the void minimization may be suboptimal for other criteria such as support material usage; consequently, a comprehensive multi-objective optimization heuristic algorithm needs to be developed. The processing time is long and is unacceptable for industrial applications. This outcome also needs to be addressed.
机译:推测材料挤出过程的添加制造制造方向影响支持材料要求,处理时间,表面光洁等。本文旨在研究在最佳过程参数设置上的建立方向的影响(珠宽,重叠和光栅角度,不需要的空隙的量和位置。本研究表明,探索了大型解决方案空间的最佳解决方案替代方案有限。通过层处理参数的图层未独立选择。利用一层中的空隙位置的知识来选择用于下一层的工艺参数,防止空隙区域堆叠在3D中,并避免创建内部烟囱。具有多种喷嘴尺寸(0.4mm至21mm)的材料挤出工艺被认为是该溶液的合适候选者。为进行本研究,进行了文献综述以了解构建参数的影响。然后,对商业系统执行要定位的有效参数设置的分析。基于组件几何和给定的机器材料配置的可用构建选项建立数学模型。已经开发了C ++程序以选择一组标准(可用)刀具路径参数以确定最佳过程变量。提出了案例研究以表明这种方法的优点。方向对最佳过程参数的影响以及其对空隙的影响。正如预期的那样,在统计上表明空隙的数量和位置取决于建立方向。空隙最小化的最佳解决方案可以是其他标准的次优,例如支持材料使用;因此,需要开发全面的多目标优化启发式算法。处理时间很长,对于工业应用而言是不可接受的。此结果也需要解决。

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