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左宏, 陈宜亨. 各向同性材料中微裂纹的最大屏蔽效应[J]. 力学学报, 1999, 31(4): 493-497. DOI: 10.6052/0459-1879-1999-4-1995-058
引用本文: 左宏, 陈宜亨. 各向同性材料中微裂纹的最大屏蔽效应[J]. 力学学报, 1999, 31(4): 493-497. DOI: 10.6052/0459-1879-1999-4-1995-058
MAXIMAL COCK TIP SHIELDING BY MICROCRACKING IN ISOTROPIC ELASTIC SOLIDS[J]. Chinese Journal of Theoretical and Applied Mechanics, 1999, 31(4): 493-497. DOI: 10.6052/0459-1879-1999-4-1995-058
Citation: MAXIMAL COCK TIP SHIELDING BY MICROCRACKING IN ISOTROPIC ELASTIC SOLIDS[J]. Chinese Journal of Theoretical and Applied Mechanics, 1999, 31(4): 493-497. DOI: 10.6052/0459-1879-1999-4-1995-058

各向同性材料中微裂纹的最大屏蔽效应

MAXIMAL COCK TIP SHIELDING BY MICROCRACKING IN ISOTROPIC ELASTIC SOLIDS

  • 摘要: 通过对微裂纹屏蔽不同来源的分析及计算,发现在各向同性脆性材料中,残余应力释放引起的微裂纹对主裂尖产生最大屏蔽效应时该微裂纹的倾角与最大张应力的方向没有明显的对应关系.在Hutchinson1所指出的屏蔽效应的第二个来源中,还应计及微裂纹形成引起的远场应力在微裂纹处产生的应力场的释放从而导致应力场的再分布.

     

    Abstract: In Hutchinson's (1987) opinion, there are two sources of microcrack shielding, one is the reduction in the effective elastic moduli resulting from microcracking and the other is the strain arising from the release of residual stresses when micro-cracks are formed. This residual stresses in question develop in the fabrication of polycrystalline or multi-phase materials due to thermal mismatches between phases or thermal anisotropies of the single crystals. In this paper, besides the two sources of the redi...

     

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