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Biobased Acrylate Photocurable Resin Formulation forStereolithography 3D Printing

机译:生物基丙烯酸酯光固化树脂配方立体光刻3D打印

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摘要

To facilitate the ongoing transition toward a circular economy, the availability of renewable materials for additive manufacturing becomes increasingly important. Here, we report the successful fabrication of complex shaped prototypes from biobased acrylate photopolymer resins, employing a commercial stereolithography apparatus (SLA) 3D printer. Four distinct resins with a biobased content ranging from 34 to 67% have been developed. All formulations demonstrated adequate viscosity and were readily polymerizable by the UV-laser-based SLA process. Increasing the double-bond concentration within the resin results in stiff and thermally resilient 3D printed products. High-viscosity resins lead to high-resolution prototypes with a complex microarchitecture and excellent surface finishing, comparable to commercial nonrenewable resins. These advances can facilitate the wide application of biobased resins for construction of new sustainable products via stereolithographic 3D printing methods.
机译:为了促进向循环经济的持续过渡,用于增材制造的可再生材料的可用性变得越来越重要。在这里,我们报告了使用商用立体光刻设备(SLA)3D打印机成功地从生物基丙烯酸酯光敏聚合物树脂制造复杂形状的原型的过程。已经开发出四种生物基含量范围从34%到67%的独特树脂。所有配方均显示出足够的粘度,并且可以通过基于紫外线激光的SLA工艺轻松聚合。树脂中双键浓度的增加会导致刚性和热弹性3D打印产品。与商业不可再生树脂相比,高粘度树脂可产生具有复杂微结构和出色表面光洁度的高分辨率原型。这些进步可以促进通过立体光刻3D打印方法将生物基树脂广泛用于构建可持续性新产品。

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