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Effect of surface residual stress and inclusion size on fatigue failure mode of matrix HSS in very high cycle regime

机译:表面残余应力和夹杂物规模对高循环状态下矩阵HSS疲劳失效模式的影响

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Fatigue properties in high cycle and very high cycle fatigue regime of matrix high-speed tool steel (1.3C-6W-5Mo-3V-8Co) were investigated through the experimental results obtained from a cantilever-type rotary bending fatigue test in air at room temperature using hourglass shaped specimens. Two kinds of specimen were processed by grinder and cutting tool, which led to different surface compressive residual stress. Both specimens showed clear duplex S-N curve, composed of three or two types of failure mode depending on the stress amplitude, such as, a surface inclusion-induced failure mode (S-mode), a subsurface inclusion-induced failure mode without (I-mode) and with granular bright facet (GBF) area in the vicinity of inclusion (IG-mode). The transition of the failure mode from S-mode to I-mode and from I-mode to IG-mode was occurred at high stress amplitude level by the effect of large compressive residual stress on the surface layer. A map of the appearance of failure modes relating the stress amplitude with the residual stress was proposed and showed a good agreement with the experimental results. Fatigue life in very high-cycle regime was almost same between the both specimens because of the existence of almost same size inclusion at crack origin. S-N curve depended on the inclusion size was provided with the estimation of crack growth rate from the S-N data.
机译:通过在室内空气中的空气中的悬臂式旋转弯曲疲劳试验中获得的实验结果,研究了高循环中的疲劳性能和基质高速工具钢(1.3C-6W-5MO-3V-8Co)的高循环疲劳制度使用沙漏形样品的温度。通过研磨机和切削工具处理两种样品,从而导致不同的表面压缩残余应力。两种样本显示出清晰的双工Sn曲线,由三种或两种类型的故障模式组成,这取决于应力幅度,例如表面包涵诱导的故障模式(S-Mode),地下包含引起的故障模式而没有(i-模式)和颗粒明亮刻面(GBF)区域在包含(IG-MODE)附近。通过大的压缩残余应力对表面层的影响,在高应力幅度水平下发生从S-Mode到I-Mode和I-Mode的从S-Mode转换到IG-Mode的转变。提出了与残余应力相关的失效模式的外观图,并与实验结果显示了良好的一致性。由于在裂缝起源处存在几乎相同的含义,两个标本之间的疲劳寿命几乎几乎相同。依赖于夹杂物尺寸的S-N曲线随着S-N数据的裂缝生长速率估计。

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