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首页> 外文期刊>Science Advances >Grayscale digital light processing 3D printing for highly functionally graded materials
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Grayscale digital light processing 3D printing for highly functionally graded materials

机译:灰度数字光处理3D打印,适用于功能梯度高的材料

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Three-dimensional (3D) printing or additive manufacturing, as a revolutionary technology for future advanced manufacturing, usually prints parts with poor control of complex gradients for functional applications. We present a single-vat grayscale digital light processing (g-DLP) 3D printing method using grayscale light patterns and a two-stage curing ink to obtain functionally graded materials with the mechanical gradient up to three orders of magnitude and high resolution. To demonstrate the g-DLP, we show the direct fabrication of complex 2D/3D lattices with controlled buckling and deformation sequence, negative Poisson’s ratio metamaterial, presurgical models with stiffness variations, composites for 4D printing, and anti-counterfeiting 3D printing.
机译:三维(3D)打印或增材制造,作为未来先进制造的一项革命性技术,通常会在功能应用中打印复杂梯度控制不佳的零件。我们提出了一种使用灰度光图案和两阶段固化油墨的单槽灰度数字光处理(g-DLP)3D打印方法,以获得具有机械梯度高达三个数量级和高分辨率的功能渐变材料。为了演示g-DLP,我们演示了直接制造具有受控屈曲和变形顺序的复杂2D / 3D晶格,负泊松比超材料,具有刚度变化的术前模型,用于4D打印的复合材料以及防伪3D打印。

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