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Modeling of smart materials with thermal effects: Dynamic and quasi-static evolution

机译:具有热效应的智能材料建模:动态和准静态演变

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摘要

We present a mathematical model for linear magneto-electro-thermo-elastic continua, as sensors and actuators can be thought of, and prove the well-posedness of the dynamic and quasi-static problems. The two proofs are accomplished, respectively, by means of the Hille-Yosida theory and of the Faedo-Galerkin method. A validation of the quasi-static hypothesis is provided by a nondimensionalization of the dynamic problem equations. We also hint at the study of the convergence of the solution to the dynamic problem to that to the quasi-static problem as a small parameter - the ratio of the largest propagation speed for an elastic wave in the body to the speed of light - tends to zero.
机译:我们提出了线性磁电热弹性连续体的数学模型,可以考虑传感器和执行器,并证明了动态和准静态问题的适定性。这两个证明分别通过Hille-Yosida理论和Faedo-Galerkin方法完成。动态问题方程的无量纲化提供了对准静态假设的验证。我们还暗示着将动态问题的解与准静态问题的解作为一个小参数(人体中弹性波的最大传播速度与光速之比)的收敛性进行研究的趋势归零。

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