3D打印
立体光刻
模块化设计
材料科学
挤压
过程(计算)
3d打印机
计算机科学
工程制图
组分(热力学)
机械工程
复合材料
工程类
热力学
操作系统
物理
作者
KleinJohn,SternMichael,Giorgia Franchin,KayserMarkus,InamuraChikara,DaveShreya,C WeaverJames,HoukPeter,ColomboPaolo,YangMaria,OxmanNeri
出处
期刊:3D printing and additive manufacturing
[Mary Ann Liebert]
日期:2015-09-01
卷期号:2 (3): 92-105
被引量:178
标识
DOI:10.1089/3dp.2015.0021
摘要
We present a fully functional material extrusion printer for optically transparent glass. The printer is composed of scalable modular elements able to operate at the high temperatures required to process glass from a molten state to an annealed product. We demonstrate a process enabling the construction of 3D parts as described by computer-aided design models. Processing parameters such as temperature, which control glass viscosity, and flow rate, layer height, and feed rate can thus be adjusted to tailor printing to the desired component, its shape, and its properties. We explored, defined, and hard-coded geometric constraints and coiling patterns as well as the integration of various colors into the current controllable process, contributing to a new design and manufacturing space. We report on performed characterization of the printed materials executed to determine their morphological, mechanical, and optical properties. Printed parts demonstrated strong adhesion between layers and satisfying optical clarity. This molten glass 3D printer demonstrates the production of parts that are highly repeatable, enable light transmission, and resemble the visual and mechanical performance of glass constructs that are conventionally obtained. Utilizing the optical nature of glass, complex caustic patterns were created by projecting light through the printed objects. The 3D-printed glass objects described here can thus be extended to implementations across scales and functional domains including product and architectural design. This research lies at the intersection of design, engineering, science, and art, representing a highly interdisciplinary approach.
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