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3D Printing: 3D Printing of Shape Memory Polymers for Flexible Electronic Devices (Adv. Mater. 22/2016)
Advanced Materials ( IF 27.4 ) Pub Date : 2016-06-06 , DOI: 10.1002/adma.201670148
Matt Zarek 1 , Michael Layani 1 , Ido Cooperstein 1 , Ela Sachyani 1 , Daniel Cohn 1 , Shlomo Magdassi 1
Advanced Materials ( IF 27.4 ) Pub Date : 2016-06-06 , DOI: 10.1002/adma.201670148
Matt Zarek 1 , Michael Layani 1 , Ido Cooperstein 1 , Ela Sachyani 1 , Daniel Cohn 1 , Shlomo Magdassi 1
Affiliation
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On page 4449, D. Cohn, S. Magdassi, and co‐workers describe a general and facile method based on 3D printing of methacrylated macromonomers to fabricate shape‐memory objects that can be used in flexible and responsive electrical circuits. Such responsive objects can be used in the fabrication of soft robotics, minimal invasive medical devices, sensors, and wearable electronics. The use of 3D printing overcomes the poor processing characteristics of thermosets and enables complex geometries that are not easily accessible by other techniques.
中文翻译:
3D打印:用于柔性电子设备的形状记忆聚合物的3D打印(Adv。Mater。22/2016)
在第4449页上,D。Cohn,S。Magdassi及其同事描述了一种基于3D打印甲基丙烯酸酯化大分子单体的通用且简便的方法,以制造可用于柔性和响应性电路的形状记忆对象。此类响应对象可用于制造软机器人,微创医疗设备,传感器和可穿戴电子设备。3D打印的使用克服了热固性塑料加工性能差的缺点,并实现了其他技术无法轻易实现的复杂几何形状。
更新日期:2016-06-06
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中文翻译:
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3D打印:用于柔性电子设备的形状记忆聚合物的3D打印(Adv。Mater。22/2016)
在第4449页上,D。Cohn,S。Magdassi及其同事描述了一种基于3D打印甲基丙烯酸酯化大分子单体的通用且简便的方法,以制造可用于柔性和响应性电路的形状记忆对象。此类响应对象可用于制造软机器人,微创医疗设备,传感器和可穿戴电子设备。3D打印的使用克服了热固性塑料加工性能差的缺点,并实现了其他技术无法轻易实现的复杂几何形状。
