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首页> 外文期刊>International Journal of Fracture >Stationary and propagating cracks in a strain gradient visco-plastic solid
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Stationary and propagating cracks in a strain gradient visco-plastic solid

机译:应变梯度粘塑性固体中的平稳裂纹和扩展裂纹

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A first order visco-plastic strain gradient constitutive model and a cohesive zone formulation are embedded within a modified boundary layer (MBL) model for the analysis of crack tip fields and crack growth. The MBL model is loaded using a mode I asymptotic crack tip solution, with the boundary displacement calculated from the stress intensity factor. The influence of the rate-dependent constitutive parameters and the intrinsic material length on fracture relevant quantities are investigated in parametric study. Two scenarios are considered: (1) a stationary crack under constant loading and (2) a crack advance under monotonic loading. Finite element model analyzes are performed. For stationary cracks it was found that the effects of the intrinsic lengthscale of the strain gradient plasticity model are more prominent for large visco-plastic power exponents, and increase with hold time. The results of computations of crack advances under monotonic loading suggest that plastic strain gradients reduce crack growth resistance and crack initiation toughness, especially for a large visco-plastic power exponent. For small values of intrinsic material length the dependence of the initiation toughness and tearing modulus on the intrinsic length is strong, but then saturates for large values of intrinsic material length. Loading rate effects are found to be more pronounced for cases with a small value of the intrinsic lengthscale.
机译:将一阶粘塑性应变梯度本构模型和内聚区公式嵌入到改进​​的边界层(MBL)模型中,以分析裂纹尖端场和裂纹扩展。使用模式I渐近裂纹尖端解决方案加载MBL模型,并根据应力强度因子计算边界位移。在参数研究中研究了速率相关的本构参数和固有材料长度对裂缝相关量的影响。考虑了两种情况:(1)在恒定载荷下的静态裂纹,以及(2)在单调载荷下的裂纹扩展。进行有限元模型分析。对于固定裂纹,发现对于大的粘塑性幂指数,应变梯度可塑性模型的固有长度尺度的影响更为突出,并且随着保持时间的增加而增加。单调加载下裂纹扩展的计算结果表明,塑性应变梯度会降低裂纹扩展阻力和裂纹萌生韧性,特别是对于大的粘塑性幂指数而言。对于较小的本征材料长度值,初始韧性和撕裂模量对本征长度的依赖性很强,但是对于较大的本征材料长度则饱和。发现对于固有长度尺度较小的情况,加载速率的影响更为明显。

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