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首页> 外文期刊>International Journal of Mechanical Sciences >Analytic solutions of thermoelectric materials containing a circular hole with a straight crack
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Analytic solutions of thermoelectric materials containing a circular hole with a straight crack

机译:具有直裂纹的圆孔的热电材料的分析解

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The two-dimensional problem of thermoelectric materials under the action of uniform electric current and uniform total energy flux is studied by means of the complex variable function method and the conformal mapping technique. The model of infinite thin plate containing a circular hole with a straight crack is considered, and the boundary conditions of the inner surface are assumed to be electrically and thermally impermeable. The analytic solutions of the electric current density and total energy flux are derived. In addition, the electric current density intensity factor (EIF), the total energy flux density intensity factor (UIF) and the stress intensity factor (SIF) near the crack tip are obtained, which have a great significance for the engineering application of thermoelectric materials. It is found that, on the one hand, the EIF and UIF are in proportion to the applied far-field electric current loads and the total energy flux loads, respectively. On the other hand, all these field's intensity factors are closely related to the geometrical characteristics of the inner boundary (i.e. the circular hole radius R and crack length L). When the radius tends to zero, the degenerated results are identical to the pre-existing solutions in case of the Griffith crack. Numerical results are also made to mainly discuss the effects of radius and crack length on these nondimensionalized field's intensity factors.
机译:通过复杂的可变函数方法和保形映射技术研究了均匀电流和均匀总能量通量的动作下热电材料的二维问题。考虑含有直裂纹的圆孔的无限薄板的模型,并且假设内表面的边界条件是电和热不可渗透的。衍生电流密度和总能量通量的分析解。另外,获得电流密度强度因子(EIF),获得裂缝尖端附近的总能量磁度密度强度因子(UIF)和应力强度因子(SIF),对热电材料的工程应用具有重要意义。发现,一方面,EIF和UIF分别与应用的远场电流负荷和总能量通量负载成比例。另一方面,所有这些领域的强度因子与内边界的几何特征密切相关(即圆形孔半径R和裂纹长度L)。当半径趋于为零时,在Griffith裂缝的情况下,退化的结果与预先存在的解决方案相同。还提出了数值结果,主要探讨了半径和裂缝长度对这些非潜能的田间强度因子的影响。

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