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首页> 外文期刊>International Journal of Solids and Structures >Quasi-static cylindrical cavity expansion in an elastoplastic compressible Mises solid
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Quasi-static cylindrical cavity expansion in an elastoplastic compressible Mises solid

机译:弹塑性可压缩Mises固体中的准静态圆柱孔扩张

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摘要

The self-similar elastoplastic field induced by quasi-static expansion of a pressurized cylindrical cavity is investigated for Mises solids under the assumption of plane-strain. Material behavior is modeled by the elastoplastic J(2) flow theory with the standard hypoelastic version. The theory accounts for elastic-compressibility and allows for arbitrary strain-hardening (or softening) in the plastic range. A formulation of the exact governing equations is presented and analyzed in detail for the remote elastic field and for asymptotic plastic behavior near the cavity wall, along with numerical investigations for the entire deformation zone. An analytical solution was obtained under the axially-hydrostatic assumption (axial stress coincides with hydrostatic stress) within an error of about 2% or less as compared to the exact, numerically evaluated, value of cavitation pressure. Two ad-hoc compressibility approximations for cavitation pressure are suggested. These relations, which give very accurate results, appear to provide tight lower and upper bounds on the exact value of cavitation pressure within an error of less than 0.5%. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在平面应变的假设下,对米塞斯固体研究了受压圆柱腔准静态膨胀引起的自相似弹塑性场。材料行为通过具有标准次弹性版本的弹塑性J(2)流动理论建模。该理论考虑了弹性可压缩性,并允许在塑性范围内进行任意应变硬化(或软化)。给出了精确控制方程的公式,并详细分析了远程弹性场和腔壁附近的渐近塑性行为,并对整个变形区域进行了数值研究。在轴向静水压力假设(轴向应力与静水应力一致)的条件下,与精确的数值评估气穴压力值相比,误差在大约2%或更小范围内。提出了两种针对空化压力的临时压缩率近似值。这些关系提供了非常精确的结果,似乎为空化压力的精确值提供了严格的上下限,误差小于0.5%。 (c)2006 Elsevier Ltd.保留所有权利。

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