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Fatigue Crack Propagation Behavior of Friction Stir WeSded 6061-T651 Al Alloy

机译:搅拌摩擦6061-T651铝合金的疲劳裂纹扩展行为

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Fatigue crack propagation (FCP) behavior of friction stir welded (FSWed) 6061-T651 Al alloy was examined with the fatigue crack growing either along the dynamically recrystallized zone (DXZ) at variable AK or perpendicular to the DXZ at a constant AK value of 7.5, 10 and 15 MPaVm, respectively. The FCP rates in the DXZ tended to be significantly lower than those in the PM particularly in low AK regime. Comprcssive residual stress reducing effective AK cannot be solely responsible for the enhanced FCP resistance. The fine recrystallized grains in the DXZ causing intergranular fatigue failure appeared to be detrimental to the FCP behavior of FSWed 6061-T651 specimen. The constant AK fatigue test across the weld zone showed that substantial crack retardation occurred far beyond the heat affected zone (FIAZ) at low AK regime. The FCP behavior of FSWed 6061-T651 is discussed based on residual stress measurement and fractographic observation.
机译:研究了摩擦搅拌焊(FSWed)6061-T651铝合金的疲劳裂纹扩展(FCP)行为,疲劳裂纹沿动态重结晶区(DXZ)在变量AK处或垂直于DXZ在AK值为7.5恒定时生长分别为10和15 MPaVm。 DXZ中的FCP速率往往显着低于PM中的FCP速率,尤其是在低AK模式下。强制降低残余应力的有效AK不能完全归因于增强的FCP抵抗力。 DXZ中导致晶粒间疲劳破坏的细小再结晶晶粒似乎对FSWed 6061-T651标本的FCP行为有害。在整个焊接区进行的恒定AK疲劳试验表明,在低AK工况下,远远超过热影响区(FIAZ)发生了明显的裂纹延迟。基于残余应力测量和分形观察,讨论了FSWed 6061-T651的FCP行为。

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