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首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >STRENGTH CALCULATIONS AND OPTIMAL WEIGHT DESIGN OF MULTILAYER SHELL-SHAPED COMPOSITE PRODUCTS: UNDER A SET OF LOADS
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STRENGTH CALCULATIONS AND OPTIMAL WEIGHT DESIGN OF MULTILAYER SHELL-SHAPED COMPOSITE PRODUCTS: UNDER A SET OF LOADS

机译:多层壳型复合材料的强度计算和最佳重量设计:一组载荷下

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Abstract: The stress-strain state of axisymmetric multilayer shells is analyzed using kinematic and static hypotheses that allow for the transverse shear stresses satisfying the necessary equations of state, continuity conditions at the boundaries between the layers and given boundary conditions. A numerical solution of the problem of the stress-strain state for a multilayer bar is compared with the Lekhnitskii solution (for a cantilever beam loaded by a concentrated force and moment) to asses the applicability of the employed bending equations of multilayer shells. It is shown that these solutions are in good agreement. The problem of the initial fracture of the shells considered is formulated using phenomenological strength criteria for each layer. A coordinate-wise descent method in the unit interval is proposed to solve weight optimization problems for multilayer shells of composite materials under combined loading. Regions of safe operating loads and the optimal weight distribution of layer thicknesses are determined for a multilayer bar acted upon by a uniformly distributed load and concentrated force.
机译:摘要:使用运动学和静态假设分析了轴对称多层壳的应力-应变状态,该假设允许横向剪应力满足必要的状态方程,层边界处的连续性条件以及给定的边界条件。将多层杆的应力-应变状态问题的数值解与Lekhnitskii解(对于由集中力和力矩加载的悬臂梁)进行比较,以评估所采用的多层壳弯曲方程的适用性。结果表明,这些解决方案非常吻合。使用每一层的现象强度标准来确定所考虑的壳体的初始断裂问题。为了解决复合材料在复合载荷作用下多层壳的重量优化问题,提出了一种单位间隔的坐标下降法。对于由均匀分布的载荷和集中力作用的多层棒,确定了安全操作载荷的区域和层厚度的最佳重量分布。

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