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Heterostructuring an equiatomic CoNiFe medium-entropy alloy for enhanced yield strength and ductility synergy
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作者 Xin-Xin Ding Jing Wang +6 位作者 Dong Liu Chang Wang Ping Jiang Hua Qu Guang-Hua Liu Fu-Ping Yuan Xiao-Lei Wu 《Rare Metals》 SCIE EI CAS CSCD 2022年第8期2894-2905,共12页
High-/medium-entropy alloys(H/MEAs)of face-centered-cubic-structured single phase usually suffer from a glaring drawback of low yield strength.Even worse,the trade-off emerges frustratingly between strength and ductil... High-/medium-entropy alloys(H/MEAs)of face-centered-cubic-structured single phase usually suffer from a glaring drawback of low yield strength.Even worse,the trade-off emerges frustratingly between strength and ductility as strength increases.Here,the lamellar heterostructure(HS)is designed in an equiatomic ternary CoNiFe ME A by means of cold rolling followed by an incomplete recrystallization annealing.The lamellar HS consists of the soft recrystallized grains as well as severely deformed structures which are partly reserved.By comparison to the coarse-grained counterpart,the lamellar HS,shows a well enhanced yield strength-ductility synergy,together with an increased yield strength.This is ascribed to the hetero-deformation-induced(HDI)stress in HS during tensile deformation.Accordingly,the HDI strain hardening is induced,serving as an important addition to the conventional forest hardening.The HDI hardening is evidenced experimentally to account for a large proportion of global strain hardening.Furthermore,a fully recrystallized microstructure is obtained to show a simultaneous increase in both yield strength and ductility.The microstructures are evaluated in detail prior to and after tensile deformation by using the electron backscattered diffraction and transmission electron microscope observations.The mechanism for HDI strain hardening in various microstructures is analyzed to correlate to the evolution of microstructures in terms of the kernel average misorientation values,Schmid factor,and dislocation behaviors in response to plastic deformation. 展开更多
关键词 Heterostructure(HS) Medium-entropy alloy(mea) Hetero-deformation DUCTILITY Strength
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质子交换膜燃料电池膜电极的形变量研究
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作者 肖宇 明平文 +2 位作者 侯明 衣宝廉 邵志刚 《电源技术》 CAS CSCD 北大核心 2009年第3期172-174,181,共4页
通过实验的方法测量了质子交换膜燃料电池(PEMFC)工况条件下膜电极(MEA)在不同压差下的形变量。基于力学中固定梁模型建立了MEA形变与其两侧压差之间的关系,并应用泰勒公式展开对挠曲变形进行一阶近似修正,可预测不同压力差或流道宽度... 通过实验的方法测量了质子交换膜燃料电池(PEMFC)工况条件下膜电极(MEA)在不同压差下的形变量。基于力学中固定梁模型建立了MEA形变与其两侧压差之间的关系,并应用泰勒公式展开对挠曲变形进行一阶近似修正,可预测不同压力差或流道宽度时对应MEA的挠度曲线,为流场设计提供可靠依据。 展开更多
关键词 质子交换膜燃料电池 mea形变 两端固支梁 挠曲线
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室外暴露条件下掺MgO膨胀剂C70混凝土的性能
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作者 曹元辉 邓敏 莫立武 《混凝土》 CAS CSCD 北大核心 2013年第10期62-65,共4页
研究MgO膨胀剂(MEA)对C70混凝土和易性、抗压强度和变形的影响,MEA活性指数为40、133 s,掺量为0、4%、6%、8%、12%。结果表明:外掺MEA对C70混凝土扩展度和坍落度影响不大。掺MEA-40和MEA-133混凝土在掺量为8%时7、28 d抗压强度最高。ME... 研究MgO膨胀剂(MEA)对C70混凝土和易性、抗压强度和变形的影响,MEA活性指数为40、133 s,掺量为0、4%、6%、8%、12%。结果表明:外掺MEA对C70混凝土扩展度和坍落度影响不大。掺MEA-40和MEA-133混凝土在掺量为8%时7、28 d抗压强度最高。MEA掺量相同时,掺MEA-133混凝土7、28 d抗压强度均高于掺MEA-40混凝土强度。掺MEA对置于室外暴露条件下C70混凝土收缩的补偿作用明显。150 d内,同龄期同掺量时,MEA-40对混凝土收缩的补偿效果优于MEA-133。由150 d数据看出,掺6%MEA-133和掺4%MEA-40对混凝土的补偿效果较好。 展开更多
关键词 mea膨胀剂 抗压强度 变形
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