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首页> 外文期刊>Materials Science and Engineering >Superior tensile properties of Al_(0.3)CoCrFeNi high entropy alloys with B2 precipitated phases at room and cryogenic temperatures
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Superior tensile properties of Al_(0.3)CoCrFeNi high entropy alloys with B2 precipitated phases at room and cryogenic temperatures

机译:在室温和低温下具有B2沉淀相的Al_(0.3)CoCrFeNi高熵合金的优异拉伸性能

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摘要

Al0.3CoCrFeNi high-entropy alloys (HEAs) with B2 ordered phase mainly precipitated at grain boundaries are obtained by cold rolling, annealing and aging treatment. Tensile experiments show that both CRSA (annealed at 1100 degrees C for 1 h) and CRSA-600-24 (annealed at 1100 degrees C for 1 h and subsequently aging treatment at 600 degrees C for 24 h) samples have excellent combinations of yield strength, tensile strength and tensile elongation at room temperature, and more importantly, simultaneous enhancements in strength and ductility at liquid nitrogen (77 K) are attained for the latter condition. Analyses reveal that after aging treatment, the precipitation of B2 phase with ultrafine-grained or even nanoscale sizes, as well as moderate grain refinement, yields the significant increase in tensile strength and fascinating tensile plasticity. By transmission electron microscopy (TEM) characterization, it is found that the deformation mode dominated by dislocation glide at room temperature is transformed to that combined with dislocation glide plus nanoscale twinning at 77 K. Moreover, the twinning induced work hardening renders the onset of necking instability to a higher strain/stress value, which therefore improves the strength and ductility simultaneously.
机译:通过冷轧,退火和时效处理,获得了主要沉积在晶界处的B2有序相的Al0.3CoCrFeNi高熵合金。拉伸实验表明,CRSA(在1100摄氏度下退火1小时)和CRSA-600-24(在1100摄氏度下退火1小时,然后在600摄氏度下老化24小时)样品均具有优良的屈服强度组合,在室温下的抗张强度和拉伸伸长率,更重要的是,在后一种条件下,在液氮(77 K)下获得了强度和延展性的同时增强。分析表明,经过时效处理后,具有超细晶粒甚至纳米级尺寸的B2相析出,以及适度的晶粒细化,使拉伸强度和引人入胜的拉伸塑性显着提高。通过透射电子显微镜(TEM)表征,发现以位错滑移为主的变形模式在室温下转变为与位错滑移加纳米级孪晶相结合的模式。在77 K时,孪生诱发的工作硬化使颈缩开始。在较高的应变/应力值下不稳定,因此同时提高了强度和延展性。

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