Additive manufacturing is a process that has facilitated the cost effective production of complicated designs. Objects fabricated via additive manufacturing technologies often suffer from dimensional accuracy issues and other part specific problems such as thin part robustness, overhang geometries that may collapse, support structures that cannot be removed, engraved and embossed details that are indistinguishable. In this work we present an approach to predict the dimensional accuracy per vertex and per part. Furthermore, we provide a framework for estimating the probability that a model is fabricated correctly via an additive manufacturing technology for a specific application. This framework can be applied to several 3D printing technologies and applications. In the context of this paper, a thorough experimental evaluation is presented for binder jetting technology and applications.
翻译:添加式制造是一个有助于以成本效益高的方式生产复杂设计的工艺过程。通过添加式制造技术制造的物体经常遇到尺寸准确性问题和其他具体问题,如细小部分坚固度问题、可能崩溃的悬浮地貌、无法拆除的支撑结构、刻画和嵌入的无法区分的细节。在这项工作中,我们提出了一个预测每顶脊椎和部分的维度精确度的方法。此外,我们提供了一个框架,用以估计模型通过添加式制造技术正确制造用于特定应用的可能性。这个框架可以适用于若干三维打印技术和应用程序。在本文中,对粘合式喷射技术和应用程序进行了彻底的实验评估。