1、单击此处编辑母版标题样式,单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,3D Printing of Embedded Optical Elements for Interactive Devices,(,3,d,打印技术嵌入的光元素的交互,设备,),机械,1304,班,聂伟:,20131804419,庞博:,20131804420,3D,printing and embedded in interactive devices,opening up new possibilities for interaction including,unique display surface
2、s made from 3D printed light pipes,(a),novel internal illumination techniques,(b),custom optical sensors,(c),独特的显示表面由,3 d,打印“光管”,(a),小说内部照明技术,(b),定制的光学传感器,(c,),Abstract,(,文摘,),We present an approach to 3D printing custom optical ele-ments for interactive devices labelled,Printed Optics,.,Printed,Opt
3、ics,enable sensing,display,and illumination elements to,be directly embedded in the casing or mechanical structure of an interactive device,.,Using these elements,unique display surfaces,novel illumination techniques,custom optical sen-sors,and embedded optoelectronic components can be dig-itally fa
4、bricated for rapid,high fidelity,highly customized interactive devices.,Printed Optics,is part of our long term vision for interactive devices that are 3D printed in their en-tirety.,我们提出一种方法,3 d,打印自定义标签印刷光学光学部件交互设备。印刷光学使传感、显示和照明元素直接嵌入在套管或交互式设备的机械结构。,使用这些元素,独特的显示表面,新的照明技术,定制的光学,sen-sors,和嵌入式光电组件可以快速
5、dig-itally,捏造,高保真,高度定制的互动设备。印刷光学是我们长期愿景的一部分交互设备,en-tirety 3 d,印刷。,Keywords,(,关键词,),3D,printing,:,3,d,打印,技术,Optics,:,光学,Light,:,光,Sensing,:,遥感,Projection,:,预测,Display,:,显示器,rapid prototyping,:,快,型,速成,additive,manufacturing,:,添加剂制造,Introduction,(,介绍,),3D printing is becoming increasingly capable and
6、affordable.We envision a future world where interactive devices can be printed rather than assembled;a world where a device with active components is created as a single object,rather than a case enclosing circuit boards and individually assembled parts,3 d,打印技术越来越能干的和负担得起的。我们想象未来的世界,互动装置可以打印而不是组装,;
7、创建一个世界,一个设备与活跃的组件作为一个单独的对象,而不是一个封闭的电路板和单独组装部分,Fabrication,(,制造,),3D printing of optical quality materials typically requires a photopolymer-based process.Each layer is fabricated in sequence by selectively exposing a liquid photopolymer material to an ultra-violet(UV)light source,causing the materi
8、al to cure into a solid state.Tradition-ally this has been achieved using stereolithography,where a precise laser is traced through a vat of liquid photopolymer.Other approaches include controlled exposure to UV light using a projector,or physical deposition of liquid photopoly-mer in the presence o
9、f a UV light source.The fundamental process of layer-by-layer fabrication with photopolymer ma-terials is common throughout each approach.,3 d,打印技术的光学质量材料通常需要一个,photopolymer-based,过程。每一层是捏造的序列有选择地公开液态光敏聚合物材料的紫外,(UV),光源,导致材料治疗成固态。,Tradition-ally,这是通过使用,“,有限元,”,在一个精确的激光跟踪通过增值税的液态感光性树脂。其他方法包括使用投影仪控制暴露于
10、紫外线光,或物理沉积的液体,photopoly-mer,紫外光源的存在。叠层制造的基本过程与光敏聚合物基本概念在每种方法是很常见的。,Capabilities,(,功能,),3D printing technology enables the fabrication of custom 3D printed optical elements with unique capabilities that are oth-erwise difficult to achieve.,3 d,打印技术使制造定制的,3 d,打印,oth-erwise,光学元素具有独特的功能难以实现。,Example,Applications,(,示例应用程序,),We outline several example applications that demonstrate uses for 3D printed light pipes.,移动投影仪的小的形状使他们适合,tangi-ble,投影仪显示配件,可以映射到,arbi-trary,表面。,我们想象触摸感应使用,3 d,印刷光管嵌在墙上的未来设备。我们的概念原型,(a),高度的手势控制移动投影仪投影内容,(b),谢谢观看,






