Mode I and mode II crack tip asymptotic fields with strain gradient effects

被引:5
作者
Chen Shaohua
Wang Tzuchiang
机构
[1] Chinese Academy of Sciences,LNM, Institute of Mechanics
关键词
strain gradient effect; crack tip asymptotic field; plane stress; plane strain;
D O I
10.1007/BF02486883
中图分类号
学科分类号
摘要
The strain gradient effect becomes significant when the size of fracture process zone around a crack tip is comparable to the intrinsic material lengthl, typically of the order of microns. Using the new strain gradient deformation theory given by Chen and Wang, the asymptotic fields near a crack tip in an elastic-plastic material with strain gradient effects are investigated. It is established that the dominant strain field is irrotational. For mode I plane stress crack tip asymptotic field, the stress asymptotic field and the couple stress asymptotic field can not exist simultaneously. In the stress dominated asymptotic field, the angular distributions of stresses are consistent with the classical plane stress HRR field; In the couple stress dominated asymptotic field, the angular distributions of couple stresses are consistent with that obtained by Huang et al. For mode II plane stress and plane strain crack tip asymptotic fields, only the stress-dominated asymptotic fields exist. The couple stress asymptotic field is less singular than the stress asymptotic fields. The stress asymptotic fields are the same as mode II plane stress and plane strain HRR fields, respectively. The increase in stresses is not observed in strain gradient plasticity for mode I and mode II, because the present theory is based only on the rotational gradient of deformation and the crack tip asymptotic fields are irrotational and dominated by the stretching gradient.
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页码:269 / 280
页数:11
相关论文
共 45 条
[1]  
Lloyd DJ(1994)Particle reinforced aluminum and magnesium matrix composites Int Mater Rev 39 1-23
[2]  
Ma Q(1995)Size dependent hardness in silver single crystals J Materials Research 10 853-863
[3]  
Clarke DR(1996)Microhardness of annealed and work-hardened copper polycrystals Scripta Metall Mater 34 559-564
[4]  
Poole WJ(1998)Determination of indenter tip geometry and indentation contact area for depth-sensing indentation experiments J Mater Res 13 1300-1306
[5]  
Ashby MF(1996)The role of strain gradients in the grain size effect for polycrystals J Mech Phys Solids 44 465-495
[6]  
Fleck NA(1994)Strain gradient plasticity: Theory and experiment Acta Metal et Mater 42 475-487
[7]  
McElhaney KW(1998)A microbend test method for measuring the plasticity length scale Acta Mater 46 5109-5115
[8]  
Vlassak JJ(1993)A phenomenological theory for strain gradient effects in plasticity J Mech Phys Solids 41 1825-1857
[9]  
Nix WD(1998)The mechanics of size-dependent indentation J Mech Phys Solids 46 2049-2068
[10]  
Smyshlyaev VP(1997)Steady-state crack growth and work of fracture for solids characterized by strain gradient plasticity J Mech Phys Solids 45 1253-1273