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Effect of overloading and band overloading on fatigue crack growth of aluminum alloy 7075 -T651

机译:超载和带超载对7075-T651铝合金疲劳裂纹扩展的影响

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摘要

Present investigation involves the study of fatigue crack growth behavior of thermo-mechanically treated aluminum alloy 7075-T651. The investigation is focused to study the effect of single and multiple loading cycles on crack growth behavior. The test were carried out at stress ratio, R=0.3. The fatigue cracked specimens were subjected to overloading spike or band at a/w=0.35 followed by constant amplitude loading cycles. Significant crack growth rate retardation was noticed for multiple overloads in case of OLRs 1.5 and 1.75. However, there were insignificant retardation in case of overload spikes of 1.25 and 1.5. No sign of retardation were noticed even on application of 10 overload cycles of OLR 1.25. Insignificant retardation in case of OLR=1.25 may be due to low value of maximum stress at the notch tip and corresponding stress intensity factors ƒ¢K(6.14 MPaãm) and Kmax(6.822 MPaãm). This has resulted monotonic plastic zone size not large enough to retard growing crack. Overload of higher magnitude induce large monotonic plastic zone and therefore the significant retardation is observed. The application of band overload, on the other hand, developed a series of monotonic plastic zone, identical to plastic wake and enhanced the effect of retardation for given value of overload.
机译:目前的研究涉及对热机械处理的7075-T651铝合金的疲劳裂纹扩展行为的研究。该调查的重点是研究单个和多个加载周期对裂纹扩展行为的影响。在应力比R = 0.3下进行测试。疲劳破裂的试样在a / w = 0.35时承受过大的尖峰或带,然后进行恒定的振幅加载循环。在OLR为1.5和1.75的情况下,多次过载时,裂纹扩展速率明显降低。但是,在过载峰值为1.25和1.5的情况下,延迟不明显。即使应用了10个OLR 1.25超载循环,也没有发现减速的迹象。在OLR = 1.25的情况下,微不足道的延迟可能是由于切口尖端的最大应力值较低以及相应的应力强度因子ƒK(6.14 MPa·m)和Kmax(6.822 MPa·m)。这导致单调塑性区的大小不足以阻止裂纹的扩展。较高强度的过载导致较大的单调塑性区,因此观察到明显的延迟。另一方面,带超载的应用发展了一系列与塑料尾流相同的单调塑性区,并在给定超载值的情况下增强了延迟效应。

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    Nautiyal Hemant;

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  • 年度 2014
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