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4D printing of high performance shape memory polymer using stereolithography

机译:使用立体光刻技术对高性能形状记忆聚合物进行4D打印

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摘要

High shape fixity, shape recovery, and prolonged shape memory cycle life are desirable aspects of 4D printed parts; however, the durability of 4D printed parts is rarely investigated. Here, we demonstrated a photopolymer printable by stereolithography apparatus (SLA) which uses a tBA-co-DEGDA network based on dual-component phase switching mechanism to build parts of complex geometries and exhibit shape memory behavior. The material can achieve a high curing rate and precise printing that are highly desired for SLA process. The mechanical strength of the printed parts is comparable statistically to industrial SMPs and shape memory tests showed excellent shape memory performance with higher durability of > 20 shape memory cycles as compared to current 4D printed parts. This work is believed to enable the use of SLA technology to fabricate responsive components of high performance, which also significantly advances the 3D printing technology for more robust applications.
机译:高形状固定性,形状恢复性和延长的形状记忆周期寿命是4D打印零件的理想方面;但是,很少研究4D打印部件的耐久性。在这里,我们展示了一种可通过立体光刻设备(SLA)打印的光敏聚合物,该设备使用基于双组分相转换机制的tBA-co-DEGDA网络来构建复杂几何形状的零件并表现出形状记忆行为。该材料可以实现SLA工艺高度期望的高固化速率和精确印刷。印刷零件的机械强度在统计上可与工业SMP相比,并且形状记忆测试显示出优异的形状记忆性能,与当前的4D印刷零件相比,其耐用性大于20个形状记忆周期。相信这项工作可以使用SLA技术来制造高性能的响应组件,这也显着提高了3D打印技术的应用范围,使其更可靠。

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