论文标题

用3D射线跟踪的多功能体积添加剂制造

Versatile volumetric additive manufacturing with 3D ray tracing

论文作者

Webber, Daniel, Zhang, Yujie, Picard, Michel, Boisvert, Jonathan, Paquet, Chantal, Orth, Antony

论文摘要

层析成像体积添加剂制造(VAM)是一种光学3D打印技术,其中通过层析成像预测通过光聚合树形成对象。当前,这些预测是使用计算机断层扫描的ra换变换来计算的,但它忽略了实际光学投影系统的两个基本属性:有限的eTendue和非转换性。在这项工作中,我们将3D射线追踪作为计算层析成像VAM计算预测的新方法,并在非电位和更高的eTendue系统中展示了高富达印刷,从而导致垂直构建体积比标准rad子方法增加了3倍。此处介绍的方法扩展了可能的层析成像VAM打印配置,使得更快,更便宜且更高的保真度打印。

Tomographic volumetric additive manufacturing (VAM) is an optical 3D printing technique where an object is formed by photopolymerizing resin via tomographic projections. Currently, these projections are calculated using the Radon transform from computed tomography but it ignores two fundamental properties of real optical projection systems: finite etendue and non-telecentricity. In this work, we introduce 3D ray tracing as a new method of computing projections in tomographic VAM and demonstrate high fidelity printing in non-telecentric and higher etendue systems, leading to a 3X increase in vertical build volume than the standard Radon method. The method introduced here expands the possible tomographic VAM printing configurations, enabling faster, cheaper, and higher fidelity printing.

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