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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Modeling of the Photo-Thermal-pH Triple-Responsive Hydrogels Considering the Coupled Effect of Photothermal Conversion and Electrochemistry
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Modeling of the Photo-Thermal-pH Triple-Responsive Hydrogels Considering the Coupled Effect of Photothermal Conversion and Electrochemistry

机译:考虑光热转换和电化学耦合效应的光热 - pH三重响应水凝胶的建模

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摘要

Photo-thermal-pH triple-responsive hydrogels are special kinds of smart materials which can respond to changes in ambient temperature, pH, and light intensity simultaneously. In this paper, a field theory is developed for the photo-thermal-pH triple-responsive hydrogels by incorporating effects of dissociation of acidic groups and photo-thermal conversion into the thermodynamic theory of temperature-sensitive hydrogels. Constitutive equations are derived by means of the free energy imbalance inequality. The feasibility of the presented model is tested and validated by comparing the simulation results for stress-free swelling with the available experimental data. Moreover, the sensitivities of the presented model to changes in temperature, pH, and light intensity are further studied through the biaxial constrained swelling case, and the factors affecting deformation is investigated numerically.
机译:光 - pH值三重响应水凝胶是特殊的智能材料,可以同时响应环境温度,pH值和光强度的变化。 本文通过将酸性基团解离和光热转化掺入温度敏感水凝胶的热力学理论的效果掺入光 - 热 - pH三重响应水凝胶,开发了现场理论。 通过自由能量不平衡来源的构成方程。 通过比较可用实验数据的无应力溶胀的模拟结果来测试和验证所提出的模型的可行性。 此外,通过双轴约束膨胀情况进一步研究了所呈现的模型对温度,pH和光强度的变化的敏感性,并且在数值上研究了影响变形的因素。

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