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Prediction and Control of Grain Boundary Fracture in Brittle Materials on the Basis of the Strongest-Link Theory

机译:基于最强链路理论的脆性材料中晶界骨折预测与控制

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This paper discusses micropstructural aspects of brittleness fracture of polycrystalline materials caused by intergranular fracture. Structure-dependent intergranular brittle fracture in bicrystals and polycrystals are discussed and predicted theoretically. Experimental evidence for the structure-dependent intergranular fracture is shown and some general features are discussed to demonstrate the relationship between grain boundary structure/character, grain boundary energy and intergranular fracture strength. Theoretical prediction of the fracture toughness based on the strongest-link theory is introduced for polycrystals with different grain boundary microstructures, primarily defined by the grain boundary character distribution, grain boundary connectivity. Finally recent achievements of successful control of intergranular brittleness by grain boundary engineering based on the strongest-link theory are introduced for different materials.
机译:本文讨论了骨髓间骨折引起的多晶材料脆性骨折的微结构方面。理论上讨论和预先讨论了双结构和多晶体中的结构依赖性晶状体脆性骨折。显示了结构依赖性骨膜骨折的实验证据,讨论了一些一般特征以证明晶界结构/特征,晶界能量和晶间断裂强度之间的关系。基于最强连杆理论的裂缝韧性的理论预测被引入具有不同晶界微观结构的多晶,主要由晶界性质分布,晶界连接。最后,近期基于最强链路理论的晶界工程成功控制晶体脆性的成功控制,不同的材料。

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