Department of Chemistry, University of Washington , P.O. Box 351700, Seattle, Washington 98195, United States.
ACS Appl Mater Interfaces. 2017 Nov 15;9(45):39708-39716. doi: 10.1021/acsami.7b13909. Epub 2017 Nov 1.
A series of photoresins suitable for the production of elastomeric objects via digital light processing additive manufacturing are reported. Notably, the printing procedure is readily accessible using only entry-level equipment under ambient conditions using visible light projection. The photoresin formulations were found to be modular in nature, and straightforward adjustments to the resin components enabled access to a range of compositions and mechanical properties. Collectively, the series includes silicones, hydrogels, and hybrids thereof. Printed test specimens displayed maximum elongations of up to 472% under tensile load, a tunable swelling behavior in water, and Shore A hardness values from 13.7 to 33.3. A combination of the resins was used to print a functional multimaterial three-armed pneumatic gripper. These photoresins could be transformative to advanced prototyping applications such as simulated human tissues, stimuli-responsive materials, wearable devices, and soft robotics.
本文报道了一系列适用于通过数字光处理增材制造生产弹性体物体的光致树脂。值得注意的是,仅使用入门级设备在环境条件下使用可见光投影即可轻松进行打印操作。研究发现,光致树脂配方具有模块化特性,通过对树脂成分进行简单的调整,就可以获得一系列不同的组成和机械性能。总的来说,该系列包括硅树脂、水凝胶及其混合物。打印的测试样条在拉伸载荷下的最大伸长率高达 472%,在水中具有可调节的溶胀行为,邵氏 A 硬度值为 13.7 至 33.3。将这些树脂组合用于打印功能多样的三臂气动夹持器。这些光致树脂可能会彻底改变先进的原型制作应用,如模拟人体组织、刺激响应材料、可穿戴设备和软机器人。