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首页> 外文期刊>International Journal of Mechanical Sciences >Static and kinematic limit analysis of orthotropic strain-hardening pressure vessels involving large deformation
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Static and kinematic limit analysis of orthotropic strain-hardening pressure vessels involving large deformation

机译:正交异性应变硬化压力容器大变形的动静极限分析

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This paper analytically investigates plastic limit pressure of orthotropic strain-hardening cylindrical vessels under internal pressure. It is an interesting problem to illustrate the interaction between strengthening and weakening behavior during the deformation process. The Voce hardening law and Hill's yield criterion were adopted in the paper. A sequence of static and kinematic limit analysis problems were performed by updating the yield criterion and the deformed configuration. The equality relation between the greatest lower bound and the least upper bound was confirmed explicitly. Accordingly, exact solutions of plastic limit pressure were developed with an integral term. Particularly, exact closed-form solutions were obtained for certain values of the hardening exponent of the Voce hardening law. Finally, numerical efforts were also made for rigorous validations.
机译:本文分析性研究了在内部压力下正交各向异性应变硬化圆柱容器的塑性极限压力。说明变形过程中强化行为与弱化行为之间的相互作用是一个有趣的问题。本文采用了Voce硬化定律和Hill的屈服准则。通过更新屈服准则和变形构型,进行了一系列的静态和运动极限分析问题。明确确认了最大下限和最小上限之间的相等关系。因此,开发了带有积分项的塑料极限压力的精确解决方案。特别是,对于Voce硬化定律的某些硬化指数值,获得了精确的封闭形式解。最后,还对数值进行了严格的验证。

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