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纳米CoCrCuFeNi高熵合金原子尺度的实时变形行为
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作者 仝永刚 田楠 +5 位作者 陈浩 张显程 胡永乐 吉希希 张明军 赵超杰 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2023年第4期1156-1163,共8页
通过分子动力学方法分别在2×10^(8)~1×10^(10)s^(-1)的不同应变率和10~1200 K的不同温度下进行拉伸试验,并研究纳米CoCrCuFeNi高熵合金的实时变形行为。结果表明,在高温和低应变速率下的主要变形机制是晶界滑移。随着温度的... 通过分子动力学方法分别在2×10^(8)~1×10^(10)s^(-1)的不同应变率和10~1200 K的不同温度下进行拉伸试验,并研究纳米CoCrCuFeNi高熵合金的实时变形行为。结果表明,在高温和低应变速率下的主要变形机制是晶界滑移。随着温度的降低和应变速率的增加,位错滑移取代晶界滑移来控制塑性变形,进而提高合金的强度。此外,为进一步研究晶界对力学行为的影响,对具有不同晶粒尺寸的合金进行模拟。结果发现,当晶粒尺寸过小时,纳米高熵合金的强度随着晶粒尺寸的增加而增加,表现出反Hall-Petch关系。 展开更多
关键词 纳米高熵合金 错位演化 变形机制 应变速率 晶粒尺寸
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Microstructure and deformation mechanism of dual-phase Al_(0.5)CoCrNiFe high-entropy alloy
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作者 Yong-Gang Tong Nan Tian +5 位作者 Hong-Feng Huang Zhi-Bin Zhang Xiu-Bing Liang xi-xi ji jing-Zhong Fang Yong-Le Hu 《Rare Metals》 SCIE EI CAS CSCD 2023年第6期2020-2027,共8页
Dual-phase high-entropy alloys containing facecentered cubic(fcc) and body-centered cubic(bcc) phases achieve a combination of high strength and high ductility,which attract extensive attention.Compared with singlepha... Dual-phase high-entropy alloys containing facecentered cubic(fcc) and body-centered cubic(bcc) phases achieve a combination of high strength and high ductility,which attract extensive attention.Compared with singlephase high-entropy alloys,the dual-phase structure generates more complex deformation mechanisms such as structural transformation and interactions between grain boundaries and dislocations during deformation.In order to understand the structural transformation of the dual-phase high-entropy alloy during deformation and its effect on mechanical properties,Al_(0.5)CoCrNiFe high-entropy alloy was prepared and its deformation mechanism was investigated by molecular dynamics simulations combined with experiments.The results show that phase transformation occurred during deformation,and dislocation slip was the main deformation mechanism.In addition,there was significant dislocation pile-up at the interface between fcc and bcc phases after tensile deformation.Temperatures and strain rates significantly affected the mechanical properties and deformation behavior of high-entropy alloys.At low temperature and high strain rate,the dislocation density of the alloy increases after stretching,resulting in the enhancement of tensile strength. 展开更多
关键词 Dual-phase high-entropy alloy(HEA) MICROSTRUCTURE Deformation behavior DISLOCATION
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