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Robotics-driven Printing of Curved 3D Structures for Manufacturing Cardiac Therapeutic Devices

机译:用于制造心脏治疗装置的弯曲3D结构的机器人驱动的印刷

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Cardiovascular disease (CVD) is the leading cause of death in the United States. 3D printing technology has increasingly paved its way into cardiovascular applications, in particular for manufacturing cardiac therapeutic devices. However, currently available commercial 3D printers and those under development exclusively work by successively depositing layers of material using axis-aligned slicing methods, thus need unacceptably high demand of support materials and even fail fabricating for some complex cardiovascular structures, not to mention printing for the purpose of repairing an existing abnormal strictures. To solve this problem, we propose and develop a novel and robust robotics-driven printing system, consisting of a robotic arm and an extruder tool to allow printing along trajectories on any curved surface. Given the target structure, a new set of algorithms for robot toolpath planning was implemented, which include mesh parameterization, distance transform, contouring and smooth interpolation. Using both simulation and actual physical testing, we showed our system can successfully print layers of the target structure on curved geometry by following planned tool paths and depositing materials. In this paper, we describe our methodology and algorithm pipeline, compare and analyze the printing results of different techniques, and most importantly, envision the promising future extension of our robotics-driven printing system in manufacturing cardiac therapeutic devices.
机译:心血管疾病(CVD)是美国死亡的主要原因。 3D打印技术越来越铺平的方式进入心血管应用,特别是用于制造治疗心脏的设备。不过,现有的商用3D打印机和正在开发完全由连续沉积的使用材料与轴对准的切片方法层工作,因此需要辅助材料的不可接受的高需求,甚至无法制造了一些复杂的心血管结构,更不用说为印刷修复现有异常狭窄目的。为了解决这个问题,我们提出并开发一种新颖的和健壮的机器人驱动的打印系统中,由机器人臂和挤出机的工具,以允许沿任何曲面轨迹印刷的。给定靶结构,一组新的算法机器人的刀具路径规划被实现,其包括网格参数化,距离变换,轮廓和光滑内插。同时使用模拟和实际物理测试,我们发现我们的系统可以按照计划刀具路径和材料沉积成功打印在弯曲几何目标结构的层。在本文中,我们描述的方法和算法管道,比较和分析不同技术的印刷效果,最重要的是,我们的设想机器人驱动的制造心脏治疗设备上打印系统的充满希望的未来扩展。

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