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王志伟

作品数:3 被引量:12H指数:2
供职机构:北京航空航天大学材料科学与工程学院空天先进材料与服役教育部重点实验室更多>>
发文基金:国家高技术研究发展计划国家重点基础研究发展计划更多>>
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FeNiCrCoAl3颗粒增强2024铝合基复合材料的显微组织和力学性能
将不同比例的2024商业铝粉和由气雾化法制得的FeNiCrCoA13高熵合金粉球磨不同时间,然后,将混合粉末通过热挤出方法成型.通过XRD、SEM和TEM方法研究球磨粉和烧结后合金的显微组织,并通过应力测试机测试挤出样品...
王志伟原燕波郑瑞晓马朝利Kei AMEYAMA
关键词:铝合金高熵合金球磨纳米析出相
Effect of mechanical alloying and sintering process on microstructure and mechanical properties of Al-Ni-Y-Co-La alloy被引量:4
2014年
Al86Ni7Y4.5Co1La1.5 (mole fraction, %) alloy powder was produced by argon gas atomization process. After high-energy ball milling, the powder was consolidated by vacuum hot press sintering and spark plasma sintering (SPS) under different process conditions. The microstructure and morphology of the powder and consolidated bulk sample were examined by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). It is shown that amorphous phase appears when ball milling time is more than 100 h, and the bulk sample consolidated by SPS can maintain amorphous/ nanocrystalline microstructure but has lower relative density. A compressive strength of 650 MPa of Al86Ni7Y4.5Co1La1.5 nanostructured samples is achieved by vacuum hot extrusion (VHE).
原燕波王志伟郑瑞晓郝晓宁Kei AMEYAMA马朝利
关键词:AMORPHOUS
Microstructures and mechanical properties of extruded 2024 aluminum alloy reinforced by FeNiCrCoAl_3 particles被引量:8
2014年
Different proportions of commercial 2024 aluminum alloy powder and FeNiCrCoA13 high entropy alloy (HEA) powder were ball-milled (BM) for different time. The powder was consolidated by hot extrusion method. The microstructures of the milled powder and bulk alloy were examined by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Mechanical properties of the extruded alloy were examined by mechanical testing machine. The results show that after BM, the particle size and microstructures of the mixed alloy powder change obviously. After 48 h BM, the average size of mixed powder is about 30 nm, and then after hot extrusion, the average size of grains reaches about 70 rim. The compressive strength of the extruded alloy reaches 710 MPa under certain conditions of milling time and composition. As a result of the identification of the nano-/micro-strueture-property relationship of the samples, such high strength is attributed mainly to the nanocrystalline grains of a(Al) and nanoscaled FeNiCrCoAl3 particles, and the fine secondary phase of Al2Cu and Fe-rich phases.
王志伟原燕波郑瑞晓Kei AMEYAMA马朝利
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