Park Sanghyeon, Oh Youngtaek, Moon Jeseung, Chung Hayoung
Department of Mechanical Engineering, Ulsan National Institute of Science and Technology, Ulsan 44919, Republic of Korea.
Polymers (Basel). 2023 Apr 15;15(8):1904. doi: 10.3390/polym15081904.
This work aims to provide a comprehensive review of the continuum models of the phase behaviors of liquid crystal networks (LCNs), novel materials with various engineering applications thanks to their unique composition of polymer and liquid crystal. Two distinct behaviors are primarily considered: soft elasticity and spontaneous deformation found in the material. First, we revisit these characteristic phase behaviors, followed by an introduction of various constitutive models with diverse techniques and fidelities in describing the phase behaviors. We also present finite element models that predict these behaviors, emphasizing the importance of such models in predicting the material's behavior. By disseminating various models essential to understanding the underlying physics of the behavior, we hope to help researchers and engineers harness the material's full potential. Finally, we discuss future research directions necessary to advance our understanding of LCNs further and enable more sophisticated and precise control of their properties. Overall, this review provides a comprehensive understanding of the state-of-the-art techniques and models used to analyze the behavior of LCNs and their potential for various engineering applications.
这项工作旨在全面综述液晶网络(LCNs)相行为的连续介质模型,LCNs是一种新型材料,由于其独特的聚合物和液晶组成而具有各种工程应用。主要考虑两种不同的行为:材料中发现的软弹性和自发变形。首先,我们重新审视这些特征相行为,随后介绍各种本构模型,这些模型在描述相行为时采用了不同的技术和精度。我们还展示了预测这些行为的有限元模型,强调了此类模型在预测材料行为方面的重要性。通过传播理解该行为潜在物理原理必不可少的各种模型,我们希望帮助研究人员和工程师充分发挥该材料的潜力。最后,我们讨论了进一步推进我们对LCNs的理解并实现对其性能更复杂、精确控制所需的未来研究方向。总体而言,本综述全面介绍了用于分析LCNs行为的最新技术和模型,以及它们在各种工程应用中的潜力。