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How Texture and Microtexture Influence Dwell Fatigue Lifetime in Forged IMI834 Titanium Alloys

机译:质地和微观纹理如何影响锻造IMI834钛合金的疲劳寿命

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IMI 834 specimens have been cut off from various regions of a forged disk and tested under cold dwell fatigue conditions. A large spread of dwell fatigue lifetime was observed. Bright regions on the fracture surfaces were related to numerous quasi cleavage facets and were identified as crack initiation and short distance propagation regions. EBSD measurements were performed to characterize the crystallography of these regions. It was found that sharp textured regions (called macrozones) prevailed with c axes at less than 30° from the solicitation axis. A detailed analysis of the specimens with the shortest fatigue lifetimes shows that the crack nucleation and propagation regions were within such large macrozones well o-riented for quasi-cleavage. This confirms that the presence of macrozones with a pronounced concentration of grains oriented at less than 30° from the solicitation axis strongly reduces the service life of specimens under cold dwell fatigue.
机译:从锻造盘的各个区域切下了IMI 834标本,并在冷驻留疲劳条件下进行了测试。观察到保压疲劳寿命的大范围扩展。断裂表面上的明亮区域与许多准解理面有关,并被确定为裂纹萌生和短距离传播区域。进行EBSD测量以表征这些区域的晶体学。发现尖锐的纹理区域(称为大区域)的c轴与拉制轴之间的夹角小于30°。对具有最短疲劳寿命的样品的详细分析表明,裂纹成核和扩展区域位于这样的大宏观区域内,该区域易于取向为准劈裂。这证实了大区域的存在与从拉制轴线到小于30°的明显取向的晶粒浓度强烈降低了样品在冷停留疲劳下的使用寿命。

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