复杂载荷下 9X2 钢制圆柱壳的变形

S. Cheremnykh
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引用次数: 0

摘要

建筑行业在设计和制造由具有复杂机械性能的材料制成的非标准建筑形式的壳体结构方面的发展,要求使用现代集成计算机辅助设计系统,对结构元件在工作条件下的变形进行逐步建模,并考虑其在塑性变形过程中累积残余应变后的后续行为。本研究的目的是根据 A.A. Ilyushin 的弹塑性过程一般理论进行理论计算,模拟 9X2 GOST 5950-2000(国家间标准)钢制薄壁圆柱形壳体在压缩和扭转条件下的塑性变形过程。本文介绍了 A.A. Ilyushin 的弹塑性过程理论中关于复杂加载路径和偏离应变空间中材料变形的构成方程。根据模型中 9X2 钢壳的应变路径,在所给出的解法基础上,构建了显示材料矢量和标量属性与应变路径弧长关系的图表。对材料的硬化程度及其与复合路径折点处收敛角大小的关系做出了结论。此外,还给出了构成塑性函数随应变路径弧长增加而变化的曲线图。
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Deformation of Cylindrical Shell Made of 9X2 Steel Under Complex Loading
The development of the construction industry in terms of the design and manufacture of shell structures of non-standard architectural forms made of materials with complex mechanical properties requires using modern integrated computer-aided design systems with step-by-step modeling of deformation of structural elements under operating conditions, as well as taking into account their subsequent behavior after accumulation of residual strains during plastic deformation. The purpose of the study is to simulate the process of plastic deformation of a thin-walled cylindrical shell made of 9X2 GOST 5950-2000 (Interstate Standard) steel under compression and torsion with theoretical calculations based on the general theory of elastoplastic processes by A.A. Ilyushin. The constitutive equations of the theory of elastoplastic processes by A.A. Ilyushin for complex loading path and deformation of materials in the deviatoric strain space are presented. Based on the presented solutions, according to the strain path of the 9X2 steel shell implemented in the model, the graphs showing the relation of the vector and scalar properties of the material to the arc length of the strain path are constructed. A conclusion is made about the degree of hardening of the material in question and its dependence on the magnitude of the angle of convergence at the kink point of the complex path. The graphs of changes in the constitutive plasticity functions with respect to the increments of the arc length of the strain path are presented.
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来源期刊
自引率
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发文量
26
审稿时长
18 weeks
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