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Effect of solution treatment on the fatigue behavior of an as-forged Mg-Zn-Y-Zr alloy

机译:溶液处理对锻造Mg-Zn-Y-Zr合金疲劳行为的影响

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Through investigating and comparing the fatigue behavior of an as-forged Mg-6.7Zn-1.3Y-0.6Zr (wt.%) alloy before and after solid solution treatment (T4) in laboratory air, the effect of T4 treatment on fatigue crack initiation was disclosed. S-N curves illustrated that the fatigue strength of as-forged samples was 110?MPa, whereas the fatigue strength of T4 samples was only 80?MPa. Observations to fracture surfaces demonstrated that for as-forged samples, fatigue crack initiation sites were covered with a layer of oxide film. However, due to the coarse grain structure and the dissolution of MgZn2 precipitates, the activation and accumulation of {10-12} twins in T4 samples were much easier, resulting in the preferential fatigue crack initiation at cracked twin boundaries (TBs). Surface characterization demonstrated that TB cracking was mainly ascribed to the incompatible plastic deformation in the twinned area and nearby α-Mg matrix.
机译:通过研究和比较在实验室空气中固溶处理(T4)之前和之后的锻造Mg-6.7zn-1.3Y-0.6 Zr(重量%)合金的疲劳行为(T4),T4治疗对疲劳裂纹引发的影响披露。 S-N曲线示出了锻造样品的疲劳强度为110℃,而T4样品的疲劳强度仅为80≤MPa。对骨折表面的观察结果证明,对于锻造样品,用一层氧化物膜覆盖疲劳裂纹引发位点。然而,由于粗晶体结构和MgZN2沉淀物的溶解,T4样品中{10-12}双胞胎的激活和积累更容易,导致裂纹双界(TBS)处的疲劳裂纹引发。表面表征证明Tb裂缝主要归因于孪晶区域和附近α-Mg基质中不相容的塑性变形。

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