黄思玉, 欧阳德来, 崔霞, 朱彬, 涂婷婷, 贾洪涛, 莫洪生. 高能球磨对SPS法Ti75Al10V5Cr5Nb5高熵合金组织性能的影响[J]. 南昌航空大学学报(自然科学版), 2025, 39(4): 48-54. DOI: 10.3969/j.issn.2096-8566.2025.04.006
引用本文: 黄思玉, 欧阳德来, 崔霞, 朱彬, 涂婷婷, 贾洪涛, 莫洪生. 高能球磨对SPS法Ti75Al10V5Cr5Nb5高熵合金组织性能的影响[J]. 南昌航空大学学报(自然科学版), 2025, 39(4): 48-54. DOI: 10.3969/j.issn.2096-8566.2025.04.006
Siyu HUANG, Delai OUYANG, Xia CUI, Bin ZHU, Tingting TU, Hongtao JIA, Hongsheng MO. Effect of High Energy Ball Milling on Microstructure and Properties of Ti75Al10V5Cr5Nb5 High Entropy Alloy by SPS Method[J]. Journal of nanchang hangkong university(Natural science edition), 2025, 39(4): 48-54. DOI: 10.3969/j.issn.2096-8566.2025.04.006
Citation: Siyu HUANG, Delai OUYANG, Xia CUI, Bin ZHU, Tingting TU, Hongtao JIA, Hongsheng MO. Effect of High Energy Ball Milling on Microstructure and Properties of Ti75Al10V5Cr5Nb5 High Entropy Alloy by SPS Method[J]. Journal of nanchang hangkong university(Natural science edition), 2025, 39(4): 48-54. DOI: 10.3969/j.issn.2096-8566.2025.04.006

高能球磨对SPS法Ti75Al10V5Cr5Nb5高熵合金组织性能的影响

Effect of High Energy Ball Milling on Microstructure and Properties of Ti75Al10V5Cr5Nb5 High Entropy Alloy by SPS Method

  • 摘要: 采用高能球磨机械合金化(MA)和放电等离子烧结(SPS)相结合的方法制备Ti75Al10V5Cr5Nb5高熵合金,研究高能球磨时间对SPS烧结Ti75Al10V5Cr5Nb5高熵合金组织及力学性能的影响,以获得最优球磨工艺参数。结果表明,高能球磨可使Ti75Al10V5Cr5Nb5粉末合金化,合金化顺序为:Al、Ti、Cr、V、Nb。高能球磨过程中,球磨时间超过10 h时粉末出现六方紧密堆积相,经过放电等离子烧结后合金组织以细小晶粒为主,相结构转变为体心立方相。随着球磨时间增加,Ti75Al10V5Cr5Nb5高熵合金的硬度升高,压缩塑性先增加后降低。最优球磨时间为10 h,此时压缩强度可达2340 MPa,压下量可达2.65%。

     

    Abstract: Ti75Al10V5Cr5Nb5 high-entropy alloy was prepared by a combination of high energy ball mill alloyed (MA) and discharge plasma sintering (SPS). The influence of high energy ball milling time on the microstructure and mechanical properties of SPS sintered Ti75Al10V5Cr5Nb5 high-entropy alloy was studied, and the optimal milling process parameters were obtained. The results show that Ti75Al10V5Cr5Nb5 powder can be allotized by high-energy ball milling in the order of Al, Ti, Cr, V, Nb. In the process of high-energy ball milling (MA), the hexagonal close-packed phase appeared when the milling time was more than 10 hours. After discharge plasma sintering, the microstructure of the alloy was dominated by fine grains, and the phase structure changed to body-centered cubic phase. The hardness of Ti75Al10V5Cr5Nb5 high entropy alloy increases with the increase of milling time, and the compressive plasticity increases first and then decreases. The optimal ball milling time is 10 h, at which the compressive strength is 2340 MPa and the reduction is 2.65%.

     

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