Mechanical Behavior and Failure Mechanism of an As-Extruded Mg–11wt%Y Alloy at Elevated Temperature

IF 2.9 2区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Lan Zhang, Dao-Kui Xu, Bao-Jie Wang, Cui-Lan Lu, Shuo Wang, Xiang-Bo Xu, Dong-Liang Wang, Xin Lv, En-Hou Han
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Abstract

Through carrying out the high-temperature tensile experiments on an as-extruded Mg–11wt%Y alloy at 350 °C, 400 °C, 450 °C, 500 °C and 550 °C, the mechanical behavior and fracture mechanisms at elevated temperatures are investigated and compared. Tensile results show that with the increase of temperature, the yield strength and ultimate tensile strength of the alloy increase at first and then decrease, while that the elongation ratio decreases firstly and then increases. For the sample being tested at 350 °C, the values of yield strength, ultimate tensile strength and the elongation ratio are 188 MPa, 266 MPa and 11%, respectively. At 400 °C, the yield strength and ultimate tensile strength reach the maximum values of, respectively, 198 MPa and 277 MPa, but the elongation ratio is the lowest and its value is only 8%. When the applied temperature is increased to 550 °C, the values of yield strength and ultimate tensile strength, respectively, decrease to 140 MPa and 192 MPa and the elongation ratio increases to 38%. Failure analysis demonstrates that the fracture surfaces of different samples are mainly composed of plastic dimples and exhibit the typical characteristic of ductile fracture. The observation to the fracture side surfaces indicates that at the temperatures of 350 °C and 400 °C, microcracks mainly initiate in the interior of Mg24Y5 particles. When the temperatures are 450 °C, 500 °C and 550 °C, the cracks preferentially initiate at the Mg24Y5/α-Mg interfaces.

Abstract Image

Abstract Image

高温下挤压成型的 Mg-11wt%Y 合金的力学行为和失效机理
通过在 350 °C、400 °C、450 °C、500 °C 和 550 °C条件下对挤压成型的 Mg-11wt%Y 合金进行高温拉伸实验,研究并比较了高温下的力学行为和断裂机制。拉伸结果表明,随着温度的升高,合金的屈服强度和极限拉伸强度先增大后减小,而伸长率先减小后增大。在 350 °C 下测试的样品,屈服强度、极限抗拉强度和伸长率值分别为 188 兆帕、266 兆帕和 11%。400 °C 时,屈服强度和极限拉伸强度达到最大值,分别为 198 兆帕和 277 兆帕,但伸长率最低,仅为 8%。当施加温度升高到 550 ℃ 时,屈服强度和极限抗拉强度值分别下降到 140 兆帕和 192 兆帕,伸长率上升到 38%。断裂分析表明,不同样品的断裂面主要由塑性凹陷组成,表现出典型的韧性断裂特征。对断裂侧表面的观察表明,在温度为 350 ℃ 和 400 ℃ 时,微裂纹主要在 Mg24Y5 颗粒内部产生。当温度为 450 ℃、500 ℃ 和 550 ℃ 时,裂纹优先在 Mg24Y5/α-Mg 接口处产生。
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来源期刊
Acta Metallurgica Sinica-English Letters
Acta Metallurgica Sinica-English Letters METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.60
自引率
14.30%
发文量
122
审稿时长
2 months
期刊介绍: This international journal presents compact reports of significant, original and timely research reflecting progress in metallurgy, materials science and engineering, including materials physics, physical metallurgy, and process metallurgy.
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