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Characterization and modeling of compliant active materials

机译:顺应性活性材料的表征和建模

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Active materials respond mechanically to changes in environmental conditions. One example of a compliant active material is a polymer gel. Active polymer gels expand and contract in response to certain environmental stimuli, such as the application of an electric field or a change in the pH level of the surroundings. This ability to achieve large, reversible deformations with no external mechanical loading has generated much interest in the use of these gels as actuators and "artificial muscles". While much work has been done to study the behavior and properties of these gels, little information is available regarding the full constitutive description of the mechanical and actuation properties. This work focuses on developing a means of characterizing the mechanical properties of compliant active materials. A thermodynamically consistent finite-elastic constitutive model was developed to describe the mechanical and actuation behaviors of these kinds of materials. The mechanical properties of compliant active materials are characterized by a free-energy function, and the model utilizes an evolving internal variable to describe the actuation state. A biaxial testing system has been developed which can measure stresses and deformations of polymer gel films in a variety of liquid environments. This testing system is used to determine the form and parameters of the free-energy function for a specific active polymer gel, poly(vinyl alcohol)-poly(acrylic acid) gel.
机译:活性材料对环境条件的变化有机械反应。顺应性活性材料的一个例子是聚合物凝胶。响应于某些环境刺激(例如施加电场或环境pH值变化),活性聚合物凝胶会膨胀和收缩。在没有外部机械载荷的情况下实现大的可逆变形的能力引起了人们对将这些凝胶用作致动器和“人造肌肉”的兴趣。尽管已经进行了大量工作来研究这些凝胶的行为和性质,但有关机械和致动性质的完整组成描述却很少。这项工作着重于开发表征顺应活性材料机械性能的方法。建立了热力学一致的有限弹性本构模型,以描述这些材料的机械和驱动行为。顺应性活性材料的机械性能以自由能函数为特征,并且该模型利用不断演变的内部变量来描述致动状态。已开发出一种双轴测试系统,该系统可以测量各种液体环境中聚合物凝胶薄膜的应力和变形。该测试系统用于确定特定活性聚合物凝胶,聚(乙烯醇)-聚(丙烯酸)凝胶的自由能功能的形式和参数。

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