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3D Printing of Transparent Glass

机译:透明玻璃的3D打印

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摘要

Traditional assembly line manufacturing is speculative, costly and environmentally unsustainable. It is speculative because it commits substantial resources-energy, materials, shipping, handling, stocking and displaying-without a guaranteed sale. It is costly because each of these resources-material, process, people and place-involves expense not encountered when a product is manufactured at the time of sale. It is environmentally unsustainable because, no matter how much recycling is done, not using the resources unless actually needed is always a better path. As part of the RAGNAROK (Research on Advancing Glass & Nonorganic Applications to Recreate Objects & Kinetics) project in HP Labs, we identified glass as a promising candidate for additive manufacturing based on 3-D printing methods. Glass is a silica-based material. With 90% of the earth's crust composed of silicate minerals, there will be no shortage of silica resources. Glass is easy to recycle and is environmentally friendly. Glass is inexpensive but looks precious, is pleasant to the touch and is so familiar that customers will not be disappointed by its fragility-under certain conditions. A major need, and concomitantly a major challenge, for 3D printed glass is transparency. We will discuss several methods how to achieve it.
机译:传统的流水线制造具有投机性,成本高且在环境上不可持续。它是投机性的,因为它在不保证销售的情况下投入大量资源(能源,材料,运输,装卸,库存和展示)。这是昂贵的,因为在销售时制造产品时没有遇到这些资源,过程,人员和地点相关的费用。这在环境上是不可持续的,因为无论进行了多少回收利用,除非实际需要,否则不使用资源始终是一条更好的途径。作为HP Labs的RAGNAROK(先进的玻璃与非有机应用再造物体和动力学研究)项目的一部分,我们确定玻璃是基于3-D打印方法的增材制造的有前途的候选人。玻璃是二氧化硅基材料。地壳中90%由硅酸盐矿物组成,因此不会缺少二氧化硅资源。玻璃易于回收并且对环境友好。玻璃价格便宜,但看起来很珍贵,触感令人愉悦,并且非常熟悉,以至于在某些情况下,客户不会对它的易碎性感到失望。 3D打印玻璃的主要需求和随之而来的主要挑战是透明度。我们将讨论几种方法来实现它。

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