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MA-SPS法制备WTaCrVTi难熔高熵合金的组织结构与力学性能
Microstructure and Mechanical Properties of WTaCrVTi High-Entropy Alloy Prepared by Mechanical Alloying and Spark Plasma Sintering
【摘要】 采用机械合金化-放电等离子烧结(MA-SPS)法制备W23.5Ta23.5Cr23.5V23.5Ti6难熔高熵合金,探索球磨时间对合金的元素分布及组织结构的影响。研究发现,经过40 h球磨后的粉末,颗粒尺寸大小一致,为3.65±1.91μm,并呈现等轴颗粒形貌,经1500℃的SPS烧结,得到了致密的、组织均匀的合金。其中bcc结构的WTaCrVTix固溶体连续分布,W、Ta、Cr和V的原子比接近等原子比;少量的Laves相弥散分布在基体中;fcc结构的TiO颗粒的平均尺寸为1.08±0.38μm,均匀分布在基体中。合金的室温/高温压缩屈服强度和显微硬度分别为2870、1954 MPa和873.4±7.6 HV。
【Abstract】 Mechanical alloying combined with spark plasma sintering(MA-SPS) was adopted to prepare W23.5Ta23.5Cr23.5V23.5Ti6 high-entropy alloys. The effects of ball milling durations on the elemental distribution and microstructure of the alloys were explored. Results show that the powder after 40 h ball milling has a homogeneous particle size with 3.65±1.91 μm, and presents an equiaxed particle morphology. The dense and uniform alloy can be obtained after SPS at 1500 ℃. The WTaCrVTix solid solution with bcc structure is continuously distributed, in which the atomic ratios of W, Ta, Cr and V are close to the equiatomic ratios. A small amount of Laves phase is distributed in the matrix. The TiO particles with fcc structure have an average size of 1.08±0.38 μm and are uniformly distributed in the matrix. The room-temperature compressive yield strength, high-temperature compressive yield strength and microhardness of the alloy are 2870, 1954 MPa and 873.4 ±7.6 HV, respectively.
【Key words】 W alloy; mechanical alloying; spark plasma sintering; microstructure; mechanical property;
- 【文献出处】 稀有金属材料与工程 ,Rare Metal Materials and Engineering , 编辑部邮箱 ,2025年09期
- 【分类号】TG139
- 【下载频次】40