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Analysis of edge stresses in composite laminates under combined thermo-mechanical loading, using a complementary energy approach

机译:使用互补能量方法分析热-机械载荷作用下复合材料层压板的边缘应力

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An approximate method is presented to investigate the interlaminar stresses near the free edges of composite laminate plates that are subjected to a combined thermo-mechanical loading. The method is based upon admissible function representations of stresses which account for the effects of both the global mismatches and the local mismatches in two of the elastic properties, the Poisson's ratio and the coefficient of mutual influence. For this purpose, new thermo-mechanical mismatch terms are defined to reflect an effective deformation under the combined thermo-mechanical loading. Closed form solutions of all the stress components are sought by minimizing the complementary energy with respect to the unknown functions, in the stress representations, of the width coordinate. These unknown functions are determined by solving five ordinary differential equations along with a set of free edge boundary conditions, which allow complex as well as real roots for their exponential decaying rates. The resulting solutions satisfy the stress equilibrium and all of the boundary conditions exactly, but compatibility is met in a weak form. Numerical examples are given for several typical laminates, and are compared with previous results obtained by finite element and other approximate methods. It is found that the present approximate method yields interlaminar stress results in an efficient, fast and yet reliable way. It is also concluded that unlike some previous approximate methods, the current method is numerically robust and stable.
机译:提出了一种近似方法来研究复合层压板自由边缘附近的层间应力,该复合层合板受到热机械载荷的共同作用。该方法基于应力的允许函数表示,该函数表示考虑了两种弹性特性(泊松比和相互影响系数)中全局不匹配和局部不匹配的影响。为此,定义了新的热机械失配项,以反映热机械组合载荷下的有效变形。通过在宽度表示的应力表示中相对于未知函数最小化互补能量,寻求所有应力分量的闭合形式解。这些未知函数是通过求解五个常微分方程以及一组自由边沿边界条件而确定的,这些条件允许复数和实数根都具有指数衰减率。所得的解恰好满足应力平衡和所有边界条件,但以弱形式满足兼容性。给出了几个典型层压板的数值示例,并与通过有限元和其他近似方法获得的先前结果进行了比较。发现本发明的近似方法以有效,快速且可靠的方式产生层间应力结果。还得出结论,与某些先前的近似方法不同,当前方法在数值上是鲁棒且稳定的。

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