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首页> 外文期刊>International Journal of Solids and Structures >Exact resultant equilibrium conditions in the non-linear theory of branching and self-intersecting shells
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Exact resultant equilibrium conditions in the non-linear theory of branching and self-intersecting shells

机译:分支和自相交壳的非线性理论中的精确合成平衡条件

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We formulate the exact, resultant equilibrium conditions for the non-linear theory of branching and self-intersecting shells. The conditions are derived by performing direct through-the-thickness integration in the global equilibrium conditions of continuum mechanics. At each regular internal and boundary point of the base surface our exact, local equilibrium equations and dynamic boundary conditions are equivalent, as expected, to the ones known in the literature. As the new equilibrium relations we derive the exact, resultant dynamic continuity conditions along the singular surface curve modelling the branching and self-intersection as well as the dynamic conditions at singular points of the surface boundary. All the results do not depend on the size of shell thicknesses, internal through-the-thickness shell structure, material properties, and are valid for an arbitrary deformation of the shell material elements. (c) 2006 Elsevier Ltd. All rights reserved.
机译:我们为分支和自相交壳的非线性理论制定了精确的最终平衡条件。这些条件是通过在连续力学的整体平衡条件下进行直接的厚度积分而得出的。正如预期的那样,在基体表面的每个规则内部和边界点,我们的精确局部平衡方程和动态边界条件与文献中已知的方程相同。作为新的平衡关系,我们沿奇异的曲面曲线得出精确的合成动态连续性条件,模拟分支和自相交以及曲面边界奇异点处的动态条件。所有结果均不取决于壳体厚度的大小,内部贯穿厚度的壳体结构,材料属性,并且对于壳体材​​料元素的任意变形均有效。 (c)2006 Elsevier Ltd.保留所有权利。

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