Robot-assisted 3D printing has drawn a lot of attention by its capability to fabricate curved layers that are optimized according to different objectives. However, the support generation algorithm based on a fixed printing direction for planar layers cannot be directly applied for curved layers as the orientation of material accumulation is dynamically varied. In this paper, we propose a skeleton-based support generation method for robot-assisted 3D printing with curved layers. The support is represented as an implicit solid so that the problems of numerical robustness can be effectively avoided. The effectiveness of our algorithm is verified on a dual-material printing platform that consists of a robotic arm and a newly designed dual-material extruder. Experiments have been successfully conducted on our system to fabricate a variety of freeform models.
翻译:机器人辅助 3D 打印由于它能够制造根据不同目标优化的曲线层而引起很多注意。 但是,基于平板层固定打印方向的支持生成算法不能直接应用于曲线层,因为材料累积的方向变化很大。 在本文中,我们建议了一种基于骨架的支持生成方法,用于带有曲线层的机器人辅助 3D 打印。 支持是一种隐含的固态, 从而可以有效避免数字稳健性问题。 我们的算法的有效性通过由机器人臂和新设计的双材料挤出器组成的双材料打印平台进行验证。 在我们的系统上成功地进行了实验,以构建各种自由模型。