材料科学
静水应力
约束(计算机辅助设计)
裂纹尖端张开位移
张力(地质)
结构工程
有限元法
裂缝闭合
裂纹扩展阻力曲线
应力集中
流体静力平衡
机械
巴黎法
数学
强度因子
压力(语言学)
断裂力学
几何学
复合材料
极限抗拉强度
工程类
物理
量子力学
哲学
语言学
作者
James C. Newman,C. A. Bigelow,Kunigal Shivakumar
标识
DOI:10.1016/0013-7944(93)90299-8
摘要
Three-dimensional elastic-plastic (small-strain) finite-element analyses were used to study the stresses, deformations, and constraint variations around a straight-through crack in finite-thickness plates for an elastic-perfectly plastic material under monotonic and cyclic loading. Middle-crack tension specimens were analyzed for thicknesses ranging from 1.25 to 20 mm with various crack lengths. Three local constraint parameters, related to the normal, tangential, and hydrostatic stresses, showed similar variations along the crack front for a given thickness and applied stress level. Numerical analyses indicated that cyclic stress history and crack growth reduced the local constraint parameters in the interior of a plate, especially at high applied stress levels. A global constraint factor alpha(sub g) was defined to simulate three-dimensional effects in two-dimensional crack analyses. The global constraint factor was calculated as an average through-the-thickness value over the crack-front plastic region. Values of alpha(sub g) were found to be nearly independent of crack length and were related to the stress-intensity factor for a given thickness.
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