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Opportunities and challenges for 3-D printing of solid-state lighting systems

机译:固态照明系统3D打印的机遇与挑战

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Low energy use and reduced maintenance have made the LED, a solid-state light (SSL) source, the preferred technology for many lighting applications. With the explosion of products in the marketplace and subsequent price erosion, manufacturers are looking for lower cost materials and manufacturing methods. 3-D printing, also known as additive manufacturing, could be a potential solution. Recently, manufacturers in the automotive, aerospace, and medical industries have embraced 3-D printing for manufacturing parts and systems. This could pave the way for the lighting industry to produce lower cost, custom lighting systems that are 3-D printed on-site to achieve on-time and on-demand manufacturing. One unique aspect of LED fixture manufacturing is that it requires thermo-mechanical, electrical, and optical components. The goal of our investigation was to understand if current 3-D printing technologies and materials can be used to manufacture functional thermo-mechanical, electrical, and optical components for SSL fixtures. We printed heat sink components and electrical traces using an FFF-type 3-D printer with different filaments. The results showed that the printed heat sinks achieved higher thermal conductivity values compared to components made with plastic materials. For electrical traces, graphene-infused PLA showed low resistivity but it is much higher than bulk copper resistivity. For optics, SLA-printed optical components showed that print resolution, print orientation, and postprocessing affect light transmission and light scatter properties. Overall, 3-D printing offers an opportunity for mass customization of SSL fixtures and changing architectural lighting practice, but several challenges in terms of process and materials still have to be overcome.
机译:低能耗和减少维护使LED(固态光源(SSL))成为许多照明应用的首选技术。随着市场上产品的爆炸式增长以及随之而来的价格下跌,制造商正在寻找成本更低的材料和制造方法。 3-D打印(也称为增材制造)可能是一种潜在的解决方案。最近,汽车,航空航天和医疗行业的制造商已经接受了3D打印来制造零件和系统。这可以为照明行业生产低成本的定制照明系统铺平道路,这些照明系统是在现场进行3D打印以实现按时按需制造的。 LED灯具制造的一个独特方面是,它需要热机械,电气和光学组件。我们研究的目的是了解当前的3D打印技术和材料是否可用于制造SSL固定装置的功能性热机械,电气和光学组件。我们使用带有不同细丝的FFF型3-D打印机打印散热器组件和电气走线。结果表明,与采用塑料材料制成的部件相比,印刷的散热器具有更高的导热系数。对于电迹线,注入石墨烯的PLA显示出低电阻率,但远高于体铜电阻率。对于光学器件,SLA印刷的光学组件显示出印刷分辨率,印刷方向和后处理会影响光传输和光散射特性。总体而言,3D打印为SSL灯具的大规模定制和不断变化的建筑照明实践提供了机会,但在工艺和材料方面仍需克服一些挑战。

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