The relation between crack growth resistance and fracture process parameters in elastic-plastic solids

材料科学 断裂韧性 可塑性 平面应力 复合材料 聚结(物理) 断裂(地质) 空隙(复合材料) 应变硬化指数 断裂力学 裂缝闭合 韧性 裂纹扩展阻力曲线 裂纹尖端张开位移 极限抗拉强度 强度因子 法律工程学 机械 压力(语言学) 物理
作者
Viggo Tvergaard,John W. Hutchinson
出处
期刊:Journal of The Mechanics and Physics of Solids [Elsevier]
卷期号:40 (6): 1377-1397 被引量:1426
标识
DOI:10.1016/0022-5096(92)90020-3
摘要

CKA~K growth initiation and subsequent resistance is computed for an elastic-plastic solid with an idealized traction separation law specified on the crack plane to characterize the fracture process. The solid is specified by its Young’s modulus, E, Poisson’s ratio, v, initial tensile yield stress, (or, and strain hardening exponent, N. The primary parameters specifying the traction-separation law of the fracture process are the work of separation per unit area, To. and the peak traction, 6. Highly refined calculations have been carried out for resistance curves. K,(Arr), for plane strain, mode I growth in small-scale yielding as dependent on the parameters characterizing the elastic-plastic properties of the solid and its fracture process. With K,, = [El-,/( I ~ v’)] ’ 2 as the intensity needed to advance the crack in the absence ofplasticity, K,J& is presented in terms of its dependence on the two most important parameters, d/nr and N, with special emphasis on initiation toughness and steady-state toughness, Three applications of the results are made : to predict toughnesss when the fracture process is void growth and coalescence, to predict the role of plasticity on interface toughness for similar materials bonded together, and to illuminate the role of plasticity in enhancing toughness in dual-phase solids. The regime of applicability of the present model to ductile fracture due to void growth and coalescence, wherein multiple voids interact within the fracture process zone, is complementary to the regime of applicability of models describing the interaction between a single void and the crack tip. The two mechanism regimes are delineated and the consequence of a transition between them is discussed.
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