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How to Measure a Dislocation's Breakthrough Stress to Estimate the Grain Boundary Resistance against Slip Transfer Based on the DFZ-Model of Fracture

机译:基于断裂的DFZ模型如何测量位错的突破应力以估计抗滑移的晶界阻力

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Stage-I-fatigue-cracks are used as highly localized dislocation sources with well-known Burger's vectors to study the interaction between dislocations and grain boundaries. This interaction in the plastic zone is of particular interest to understand the fluctuating crack growth in the very short crack regime. In the case of a blocked slip band the dislocations pile up at the grain boundary causing a local stress concentration. The resulting local stress distribution is calculated based on measurements of the dislocation density distribution in the plastic zone. For this purpose the slip line profiles were measured by AFM, the dislocation density distribution was determined and the dislocation-free zone model of fracture (DFZ) was validated. With this it is possible to quantify the grain boundary resistance and to combine geometric and stress approach for grain boundary resistance against slip transfer.
机译:I级疲劳裂纹与众所周知的Burger's矢量一起用作高度局部的位错源,以研究位错与晶界之间的相互作用。为了理解非常短的裂纹状态下波动的裂纹扩展,塑料区域中的这种相互作用特别有意义。在滑带受阻的情况下,位错在晶界处堆积,导致局部应力集中。根据对塑料区域中位错密度分布的测量结果,计算得出的局部应力分布。为此,通过AFM测量滑移线轮廓,确定位错密度分布,并验证了无位错断裂带模型(DFZ)。这样就可以量化晶界阻力,并结合几何和应力方法来抵抗滑移的晶界阻力。

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