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Investigating Surface Finish for Material Extrusion Process using Graphical Programming Tools

机译:使用图形编程工具研究材料挤出工艺的表面光洁度

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摘要

Abstract: The additive manufacturing material extrusion surface finish is periodic in nature, which has been explored by researchers employing either rectangular or elliptical bead models. The shallow inclination angle configurations exhibit the greatest ‘staircase impact’, but in addition to this, the assumed bead geometry influences physical distribution of undercuts and voids. Depending on the initial assumptions, the predictive model may not reflect a valid build configuration. Consequently, graphical programming tools are employed to develop rectangular, obround, and elliptical bead sets, which allows the bead shape and inclination angle to be altered dynamically for a wide range of configurations. The surface finish is predicted for selected bead geometry while considering the critical angle (multiple beads on the base layer) impact.
机译:摘要: 增材制造材料挤出表面光洁度本质上是周期性的,研究人员采用矩形或椭圆形珠子模型对此进行了探索。浅倾斜角配置表现出最大的“阶梯冲击”,但除此之外,假设的珠子几何形状会影响底切和空隙的物理分布。根据初始假设,预测模型可能无法反映有效的生成配置。因此,采用图形编程工具来开发矩形、椭圆形和椭圆形珠子组,从而允许动态改变珠子形状和倾斜角度,以适应各种配置。在考虑临界角度(基层上的多个珠子)影响的同时,预测所选磁珠几何形状的表面光洁度。

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