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Cause and Effect of Factors Affecting the ΔK_(th) of Small Crack

机译:影响小裂纹ΔK_(th)的因素的因果分析

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摘要

The threshold stress intensity factor (ΔK_(th)) of small crack is affected by various factors, especially by material hardness, stress ratio and crack size. Test results showed that harder material had higher ΔK_(th) and smaller crack had lower ΔK_(th). The crack closure measurement on a very small crack was done to make clear the root cause of those effects. Most of those effects could be explained by the peculiar behavior of crack closure for crack deeper than 100μm. However, everything could not be understood only by the crack closure behaviour. In addition to the difference in crack closure, (ΔK_(eff))_(th) itself was also dependent on crack size when the crack depth was shallower than 100μm. Another remarkable phenomenon was experienced in this study. Unusual decrease in ΔK_(th), was found in some case. The large decrease of ΔK_(th), occurred under the conjunction of three factors, that is, extremely high stress ratio (R) higher than 0.8, small crack and hard material. This kind of large reduction in ΔK_(th) in high R region is of much importance in turbo machinery that operates under high mean stress with small vibratory stress.
机译:小裂纹的阈值应力强度因子(ΔK_(th))受各种因素影响,尤其是材料硬度,应力比和裂纹尺寸。试验结果表明,较硬的材料具有较高的ΔK_(th),较小的裂纹具有较低的ΔK_(th)。对很小的裂纹进行了裂纹闭合测量,以弄清这些影响的根本原因。这些影响中的大多数可以通过深度大于100μm的裂纹的闭合行为来解释。但是,仅靠裂纹闭合行为无法理解所有情况。除了裂纹闭合的差异外,当裂纹深度小于100μm时,(ΔK_(eff))_(th)本身也取决于裂纹尺寸。这项研究还遇到了另一个显着现象。在某些情况下,发现ΔK_(th)异常降低。 ΔK_(th)的大幅降低是在三个因素的共同作用下发生的,即,极高的应力比(R)高于0.8,小裂纹和坚硬的材料。这种高R区域中ΔK_(th)的大幅度减小对于在高平均应力和小振动应力下运行的涡轮机械非常重要。

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