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Cyclic Deformation Behavior of a Rare-Earth Containing Extruded Magnesium Alloy: Effect of Heat Treatment

机译:稀土挤压镁合金的循环变形行为:热处理的影响

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摘要

The present study was aimed at evaluating strain-controlled cyclic deformation behavior of a rare-earth (RE) element containing Mg-10Gd-3Y-0.5Zr (GW103K) alloy in different states (as-extruded, peak-aged (T5), and solution-treated and peak-aged (T6)). The addition of RE elements led to an effective grain refinement and weak texture in the as-extruded alloy. While heat treatment resulted in a grain growth modestly in the T5 state and significantly in the T6 state, a high density of nano-sized and bamboo-leaf/plate-shaped β′ (Mg7(Gd,Y)) precipitates was observed to distribute uniformly in the α-Mg matrix. The yield strength and ultimate tensile strength, as well as the maximum and minimum peak stresses during cyclic deformation in the T5 and T6 states were significantly higher than those in the as-extruded state. Unlike RE-free extruded Mg alloys, symmetrical hysteresis loops in tension and compression and cyclic stabilization were present in the GW103K alloy in different states. The fatigue life of this alloy in the three conditions, which could be well described by the Coffin–Manson law and Basquin’s equation, was equivalent within the experimental scatter and was longer than that of RE-free extruded Mg alloys. This was predominantly attributed to the presence of the relatively weak texture and the suppression of twinning activities stemming from the fine grain sizes and especially RE-containing β′ precipitates. Fatigue crack was observed to initiate from the specimen surface in all the three alloy states and the initiation site contained some cleavage-like facets after T6 heat treatment. Crack propagation was characterized mainly by the characteristic fatigue striations.
机译:本研究旨在评估含有Mg-10Gd-3Y-0.5Zr(GW103K)合金的稀土(RE)元素在不同状态(挤压,峰值时效(T5),以及固溶处理和峰值时效(T6))。 RE元素的添加导致了挤压合金中有效的晶粒细化和较弱的织构。热处理导致晶粒在T5状态适度增长,在T6状态显着增长,但观察到高密度的纳米级竹叶/板状β'(Mg7(Gd,Y))沉淀物分布均匀地在α-Mg矩阵中在T5和T6状态下,屈服强度和极限抗拉强度以及在循环变形期间的最大和最小峰值应力显着高于在挤压状态下的屈服强度和极限拉伸强度。与不含RE的挤压Mg合金不同,GW103K合金在不同状态下在拉伸,压缩和循环稳定方面存在对称的磁滞回线。这种合金在三种条件下的疲劳寿命可以通过科芬–曼森定律和巴斯金方程很好地描述,在实验散射范围内是等效的,并且比无稀土的挤压镁合金更长。这主要归因于相对较弱的织构的存在以及由于细晶粒尺寸,尤其是含RE的β'沉淀物而导致的孪晶活性的抑制。在所有三种合金状态下,都观察到疲劳裂纹从试样表面开始,并且在T6热处理后,其起始部位含有一些类似分裂的小平面。裂纹扩展的主要特征是疲劳条纹。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2015年第3期|1168-1187|共20页
  • 作者单位

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

    The State Key Laboratory of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University">(2);

    The State Key Laboratory of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University">(2);

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