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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Subsurface Crack Initiation and Propagation Mechanism under the Super-Long Fatigue Regime for High Speed Tool Steel (JIS SKH51) by Fracture Surface Topographic Analysis
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Subsurface Crack Initiation and Propagation Mechanism under the Super-Long Fatigue Regime for High Speed Tool Steel (JIS SKH51) by Fracture Surface Topographic Analysis

机译:基于断裂表面形貌分析的高速工具钢(JIS SKH51)超长疲劳制度下的表面裂纹萌生与扩展机制

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摘要

In order to study the subsurface crack initiation and propagation mechanism of high strength steel under a very high cycle fatigue regime, computational simulation with fracture surface topographic analysis (FRASTA) was carried out for subsurface fatigue crack initiated specimens of high speed tool steel (JIS SKH51) obtained from the rotating bending fatigue test in air. A remarkable area formed around the nonmetallic inclusion inside the fish-eye region on the fracture surface, which is a feature on the fracture surface in super long fatigue. This so-called GBF (granular-bright-facet) was observed in detail by a scanning probe microscope and a three-dimensional SEM. The GBF area, in which a rich carbide distribution was detected by EPMA, revealed a very rough and granular morphology in comparison with the area inside the fish-eye. It was clearly simulated by FRASTA that multiple microcracks were initiated and dispersed by the decohesion of a spherical carbide from the matrix around a nonmetallic inclusion, and converged into the GBF area during the fatigue process. After the formation of the GBF area, interior cracks grew radially and a fish-eye pattern formed on the fracture surface.
机译:为了研究高强度钢在非常高的循环疲劳状态下的表面裂纹萌生和扩展机理,对高速工具钢的表面疲劳裂纹萌生标本(JIS SKH51)进行了基于断裂表面形貌分析(FRASTA)的计算仿真。 )是从空气中的旋转弯曲疲劳试验获得的。在断裂面的鱼眼区域内的非金属夹杂物周围形成显着区域,这是超长疲劳时断裂面的特征。通过扫描探针显微镜和三维扫描电镜详细观察了这种所谓的GBF(粒状亮面)。与鱼眼内部区域相比,EPMA检测到丰富的碳化物分布的GBF区域显示出非常粗糙和颗粒状的形态。 FRASTA清楚地模拟出,由于球形碳化物从非金属夹杂物周围的基体脱粘,引发并分散了多个微裂纹,并在疲劳过程中收敛到GBF区域。 GBF区域形成后,内部裂缝呈放射状增长,并且在裂缝表面形成了鱼眼图案。

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