Wang Hongyan, Zhang Zhongsen, Fu Kunkun, Li Yan
School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai 200092, China.
Beijing Institute of Electronic System Engineering, Beijing 100854, China.
Polymers (Basel). 2023 Sep 12;15(18):3740. doi: 10.3390/polym15183740.
Four-dimensionally printed continuous carbon fiber-reinforced shape memory polymer composite (CFSMPC) is a smart material with the ability to bear loads and undergo deformation. The deformation of CFSMPC can be driven by the electrothermal effect of carbon fibers. In this study, the effect of temperature on the shape memory recovery performance of polylactic acid (PLA) was first studied experimentally. Continuous carbon fibers were incorporated into PLA to design CFSMPCs with thickness gradients and hand-shaped structures, respectively. The distribution strategy of the carbon fibers was determined based on simulations of the electrically driven shape recovery process of the aforementioned structures. Both the simulations and experiments demonstrated that the electrification of the CFSMPC structures resulted in an inhomogeneous temperature field, leading to distinct deformation recovery processes. Eventually, a precise unfolding was achieved for the thickness gradient structure and the five fingers in the hand-shaped structure by utilizing a safe voltage of 6 V. This demonstrates that the 4D-printed CFSMPC with diverse deformations based on an inhomogeneous temperature field has potential applications in actuators, reconfigurable devices, and other fields.
四维打印连续碳纤维增强形状记忆聚合物复合材料(CFSMPC)是一种具有承载负荷和发生变形能力的智能材料。CFSMPC的变形可由碳纤维的电热效应驱动。在本研究中,首先通过实验研究了温度对聚乳酸(PLA)形状记忆恢复性能的影响。将连续碳纤维分别掺入PLA中,以设计具有厚度梯度和手形结构的CFSMPC。基于上述结构电驱动形状恢复过程的模拟确定了碳纤维的分布策略。模拟和实验均表明,CFSMPC结构的通电导致温度场不均匀,从而导致不同的变形恢复过程。最终,通过使用6V的安全电压,厚度梯度结构和手形结构中的五个手指实现了精确展开。这表明基于不均匀温度场的具有多种变形的4D打印CFSMPC在致动器、可重构设备和其他领域具有潜在应用。