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Dynamic buckling of thin thermoviscoplastic cylindrical shell under radial impulsive loading

机译:径向冲击载荷作用下薄热粘塑性圆柱壳的动态屈曲

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摘要

The dynamic plastic buckling of a homogeneous and isotropic thin thermoviscoplastic cylindrical shell loaded radially is studied analytically by analyzing the stability of its stressed/deformed configuration under superimposed infinitesimal perturbations. The wave number of the perturbation that maximizes its initial growth rate is assumed to determine the buckling mode. Cubic algebraic equations are obtained for both the maximum initial growth rate of perturbation and the corresponding wave number. The buckled shape of a cylindrical shell is found to match well with that observed experimentally. The sensitivity of the buckled shape to the impact velocity, the hardening modulus, and the material viscosity has been delineated. For axially restrained shells, it is found that for materials exhibiting strain rate hardening only the maximum initial growth rate of the perturbation and the corresponding wave number vary as (σ~0/ρβ)~(1/3)h~(-2/3) and (ρ/σ~0)~(1/6)Rβ~(-1/3)h~(-2/3), respectively. For axially unrestrained cylindrical shells made of strain hardening only materials, the maximum initial growth rate of a perturbation and the corresponding wave number vary as (σ~0/h)(ρE)~(-1/2) and (R/h(σ~0/E))~(1/2), respectively. Here σ~0 is the mean value of the generalized stress, ρ the mass density, β the material viscosity, h the shell thickness, and R the mean radius of the shell.
机译:通过分析在无限微小摄动叠加作用下其应力/变形构型的稳定性,对径向加载的均质各向同性薄热粘塑性圆柱壳的动态塑性屈曲进行了分析研究。假定扰动的波数最大化其初始增长率,以确定屈曲模式。对于最大的初始扰动增长率和相应的波数,均获得了三次代数方程。发现圆柱壳的弯曲形状与实验观察到的形状非常匹配。已经描述了弯曲形状对冲击速度,硬化模量和材料粘度的敏感性。对于轴向受约束的壳体,发现对于表现出应变速率硬化的材料,仅扰动的最大初始增长率和相应的波数随(σ〜0 /ρβ)〜(1/3)h〜(-2 / 3)和(ρ/σ〜0)〜(1/6)Rβ〜(-1/3)h〜(-2/3)。对于仅由应变硬化材料制成的轴向不受约束的圆柱壳,摄动的最大初始增长率和相应的波数随(σ〜0 / h)(ρE)〜(-1/2)和(R / h( σ〜0 / E))〜(1/2)。此处,σ〜0是广义应力的平均值,ρ是质量密度,β是材料粘度,h是壳体厚度,R是壳体的平均半径。

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