Fu Ao, Cao Yuankui, Liu Yuxi, Xu Shenghang
State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.
Institute of Laser Advanced Manufacturing, Zhejiang University of Technology, Hangzhou 310023, China.
Materials (Basel). 2022 Jan 4;15(1):355. doi: 10.3390/ma15010355.
A series of novel lightweight TaNbVTi-based refractory high entropy alloys (RHEA) were fabricated through ball-milling and spark plasma sintering (SPS). The reinforced phase of TiO precipitates were in-situ formed due to the introduction of AlO ceramic particles. The RHEA with 15% AlO exhibits a high compressive yield strength (1837 MPa) and a low density (7.75 g/cm) with an adequate ductility retention. The yield strength and density are 32% higher and 15% lower, respectively, compared to the RHEA without AlO addition. The specific yield strength (237 MPa cm/g) of the RHEAs is much higher than that of other reported RHEAs, and is mainly ascribed to the introduction of high volume fraction of AlO additives, resulting in solid solution strengthening and precipitation strengthening. Meanwhile, the ductile matrix is responsible for the good compressive plasticity.
通过球磨和放电等离子体烧结(SPS)制备了一系列新型轻质TaNbVTi基难熔高熵合金(RHEA)。由于引入了AlO陶瓷颗粒,原位形成了TiO析出强化相。含15%AlO的RHEA具有较高的压缩屈服强度(1837MPa)和较低的密度(7.75g/cm),并保留了足够的延展性。与未添加AlO的RHEA相比,屈服强度提高了32%,密度降低了15%。RHEA的比屈服强度(237MPa·cm/g)远高于其他已报道的RHEA,这主要归因于高体积分数AlO添加剂的引入,导致固溶强化和析出强化。同时,韧性基体赋予了良好的压缩塑性。