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Effect of Ceramic Rolling and Annealing on Mechanical Properties of AlCoCrFeNi2.1 Eutectic High-Entropy Alloys

机译:陶瓷轧制和退火对阿尔科氏菌2.1共晶高熵合金机械性能的影响

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摘要

It was firstly proved that AlCoCrFeNi2.1 could optimize the strength-ductility combination by ceramic rolling at room temperature. The technique greatly enhanced the strength of the materials at the price of slight ductility, which is different from the previous studies. When the thickness reduction was 23.06%, the yield strength and compressive strength were 1611.42 and 2212.99 MPa, respectively, with the plastic strain of 28.36%. Such an excellent combination of strength and ductility was attributed to the distribution of the residual stress, the high hydrostatic stress and the shear bands in ceramic rolling process. The plastic strain of the material increased to 38.54%, and the strength reduced to 1900.73 MPa after annealing at 800 A degrees C for 1 h. A lot of like-flower patterns of recrystallized ultrafine grain were observed after annealing at 800 A degrees C due to the sluggish diffusion in HEAs and the effect of ceramic rolling. In addition, after annealing at 800 A degrees C, the fracture mode changed to shearing fracture of microvoid aggregation from cleavage/quasi-cleavage fracture of as-rolled sample due to the deposition of the second phase in the tested sample.
机译:首先证明AlcoCrfeni2.1可以通过在室温下通过陶瓷轧制优化强度 - 延展性组合。该技术大大提高了材料的强度,以轻微的延展性的价格与先前的研究不同。当厚度还原为23.06%时,屈服强度和抗压强度分别为1611.42和2212.99MPa,塑性应变为28.36%。这种优异的强度和延展性的组合归因于陶瓷轧制工艺中的残余应力,高静压应力和剪切带的分布。材料的塑料应变增加到38.54%,在800℃下退火1小时后,强度降至1900.73MPa。由于HEAS中的扩散缓慢和陶瓷轧制的效果,在800℃下退火后观察到重结晶超细晶粒的许多类似的花纹花纹。另外,在800℃下退火后,由于在测试样品中沉积第二相,裂缝模式改变为从裂解/准切割骨折的微胃分解的剪切断裂。

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