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首页> 外文期刊>International Journal of Solids and Structures >Grain-boundary interactions and orientation effects on crack behavior in polycrystalline aggregates
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Grain-boundary interactions and orientation effects on crack behavior in polycrystalline aggregates

机译:晶界相互作用和取向对多晶聚集体裂纹行为的影响

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摘要

A dislocation-density grain-boundary interaction scheme has been developed to account for the interrelated dislocation-density interactions of emission, absorption and transmission in GB regions. The GB scheme is based on slip-system compatibility, local resolved shear stresses, and immobile and mobile dislocation-density accumulation at critical GB locations. To accurately represent dislocation-density evolution, a conservation law for dislocation-densities is used to balance dislocation-density absorption, transmission and emission from the GB. The behavior of f.c.c. polycrystalline copper, with different random low and high angle GBs, are investigated for different crack lengths. For aggregates with random low angle GBs, dislocation-density transmission dominates at the GBs, which can indicate that the low angle GB will not significantly change crack growth directions. For aggregates with random high angle GBs, extensive dislocation-density absorption and pile-ups occur. The high stresses associated with this behavior, along the GBs, can result in intergranular crack growth due to potential crack nucleation sites in the GB.
机译:已经开发出位错-密度晶界相互作用方案,以解决GB区域中发射,吸收和传输的相互关联的位错-密度相互作用。 GB方案基于滑移系统兼容性,局部解析切应力以及在关键GB位置的不动和移动位错密度累积。为了准确表示位错密度的演变,使用了位错密度的守恒定律来平衡GB的位错密度吸收,传输和发射。 f.c.c.的行为研究了具有不同随机低,高角度GBs的多晶铜的不同裂纹长度。对于具有随机低角度GBs的骨料,位错-密度传递在GBs上占主导地位,这表明低角度GB不会显着改变裂纹扩展方向。对于具有随机大角度GB的骨料,会发生大量的位错密度吸收和堆积。沿GBs,与该行为相关的高应力可能会由于GB中潜在的裂纹成核点而导致晶间裂纹扩展。

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