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Galerkin-type solution for the theory of strain and temperature rate-dependent thermoelasticity

机译:Galerkin型解决方案,用于应变和温度依赖性热弹性理论

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摘要

Ultrafast heating has gained serious attention due to technological advancements in recent years. The thermoelastic process accounting for the finite speed of thermal signals is therefore becoming increasingly important. With the help of extended thermodynamics, Yu et al. (Meccanica 53(10):2543-2554, 2018) have established a thermoelastic model by including the strain rate and temperature rate in the constitutive equations. This model is also an attempt to remove the discontinuity in the displacement field under temperature rate-dependent thermoelasticity theory. The present work seeks to derive the representation of a Galerkin-type solution in the context of this recently proposed model in terms of elementary functions. The representation theorem of the Galerkin-type solution of the system of equations for steady oscillation is also proved. In accordance with this theorem, we finally establish a theorem which expresses the general solution of the system of homogeneous equations of steady oscillation in terms of metaharmonic functions.
机译:由于近年来技术进步,超快加热已经严重关注。因此,热弹性过程占热信号的有限速度变得越来越重要。在扩展热力学的帮助下,Yu等人。 (Meccanica 53(10):2543-2554,2018)通过包括本构方程中的应变速率和温度率建立了热弹性模型。该模型还试图在温度依赖于温度依赖的热弹性理论下去除位移场中的不连续性。目前的工作寻求在最近提出的模型的上下文中获得Galerkin型解决方案的表示。还证明了用于稳定振荡的方程系统的Galerkin型解决方案的表示定理。根据本定理,我们终于建立了一种定理,其表达了在宫内函数方面表达了稳定振荡稳定振荡的均匀方程系统的一般解。

著录项

  • 来源
    《Acta Mechanica》 |2019年第10期|共11页
  • 作者单位

    Indian Inst Technol BHU Dept Math Sci Varanasi 221005 Uttar Pradesh India;

    Indian Inst Technol BHU Dept Math Sci Varanasi 221005 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 力学;
  • 关键词

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