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国家自然科学基金(51201016)

作品数:6 被引量:20H指数:3
相关作者:宋晓云李岩张东晖郝雪龙孙泽明更多>>
相关机构:北京有色金属研究总院北京航空航天大学更多>>
发文基金:国家自然科学基金更多>>
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Ni/Ti原子数比值对NiTiAlHf合金微观组织和力学性能的影响
2012年
采用扫描电镜、室温和高温压缩实验等方法研究了Ni/Ti值对Ni42+xTi50-xAl4Hf4(x=0~7)合金的微观组织和力学性能的影响.Ni42+xTi50-xAl4Hf4合金由NiTi基体和Ti2Ni相组成,随着Ni/Ti原子数比值的增加,Ti2Ni相的尺寸和数量急剧减少,析出强化效果减弱.室温时,随着Ni/Ti值的增加,NiTiAlHf合金的压缩屈服强度和显微硬度逐渐降低,塑性提高.高温下,当Ni/Ti<1时,Ti2Ni相的析出强化起主要作用,合金的屈服强度随Ni/Ti值增加而降低;当Ni/Ti>1时,Hf固溶强化作用的影响提高,并且Ti2Ni相趋于均匀弥散分布,使合金的屈服强度随Ni/Ti值增加而升高.在化学计量比(Ni/Ti=1)两侧,合金的屈服强度变化不对称.
宋晓云李岩张菲
关键词:金属间化合物镍合金钛合金
不同取向7050铝合金试样的晶间腐蚀动力学被引量:8
2014年
7050铝合金在使用中易发生晶间腐蚀,不同取向存在差异。采用光学金相显微镜、扫描电镜研究了60mm厚7050铝合金板材不同取向试样的组织分布、晶间腐蚀行为。结果表明:晶粒沿板材轧制方向呈扁平状,晶界处呈链状分布的第二相;晶间腐蚀开始于晶界的第二相处,L(纵向)-T(横向)面的晶界腐蚀后容易呈片状脱落,晶间腐蚀最大深度值最小,为3级晶间腐蚀;T-S(短横向)面和L-S面存在较多晶界,腐蚀容易向深度方向发展,T-S面的晶间腐蚀最大深度最大,为4级晶间腐蚀;腐蚀失重表明,T-S面的腐蚀失重最大,有较多的腐蚀产物脱落。此外,得到了不同取向试样的腐蚀失重和最大腐蚀深度随时间变化规律,并拟合得到了晶间腐蚀动力学方程。
郝雪龙张东晖宋晓云孙泽明
关键词:7050铝合金晶间腐蚀动力学
Microstructure and tensile properties of Ti-62421S alloy plate with different annealing treatments被引量:4
2018年
Ti-62421S (Ti-6A1-2Sn-4Zr-2Nb-lMo-0.2Si) is a novel short-time using high-temperature titanium alloy. The effects of annealing on microstructure and tensile properties of Ti-62421S alloy plate were studied through optical microscopy (OM), electron probe microanalysis (EPMA), transmission electron microscopy (TEM), and tensile tests. The results show that, with annealing tem- perature increasing, the volume fraction of primary α(αp)- phase decreases while that of transformed β(βt)-structure and secondary α (αs)-phase increases. The room-temperature strength and plasticity are insensitive to annealing temperature. However, with annealing temperature increasing, the tensile strength decreases at 550℃, while increases at 600 and 650℃ instead. It is suggested that, at 550℃, the strengthening mechanism is mainly boundary strengthening and the biggest contributor is ap-phase by providing αp/β-boundary area. Above 600 ℃, the strengthening mechanism is grain strengthening, where αs-phase strengthens the β-phase.
Yong-Ling WangXiao-Yun SongWen MaWen-Jing ZhangWen-Jun YeSong-Xiao Hui
关键词:MICROSTRUCTURE
热处理对Ni-42Ti-8Al合金组织和性能的影响被引量:1
2013年
采用扫描电镜、透射电镜和力学压缩实验研究了热处理对Ni-42Ti-8Al合金微观组织和力学性能的影响。结果表明,Ni-42Ti-8Al合金铸态组织由NiTi基体和沿晶界分布的(NiTi+Ni2TiAl)网状共晶组织组成,细小的规则排列的Ni2TiAl相与基体具有共格或半共格关系,产生沉淀强化效果。合金在1 090℃固溶处理5 h后,共晶组织基本全部溶解,经过600℃×26 h时效处理后,又重新在晶界处析出;时效温度升高到700℃,共晶组织呈均匀弥散分布。热处理使Ni-42Ti-8Al合金的高温压缩屈服强度随时效温度升高先升高后降低,合金存在一个最佳的时效温度(700℃),时效温度过高或过低时,均对合金的力学性能不利。
宋晓云李岩孟令杰
关键词:金属间化合物力学性能
Microstructure and tensile properties of isothermally forged Ni–43Ti–4Al–2Nb–2Hf alloy被引量:2
2013年
NiTi-Al-based alloys are promising high-tem- perature structural materials for aerospace and astronautics applications. A new NiTi-Al-based alloy Ni--43Ti-4AI- 2Nb-2Hf (at%) was processed via isothermal forging. The microstructure and mechanical properties at room temperature and high temperature were investigated through scanning electron microscope (SEM), X-ray diffraction (XRD), and tensile tests. Results show that the micro- structure of as-forged Ni-43Ti--4AI-2Nb-2Hf alloy con- sists of NiTi matrix, Ti2Ni phase, and Hf-rich phase. The simultaneous addition of Nb and Hf, which have strong affinities for Ti sites, promotes the precipitation of Hf-rich phases along the grain boundaries. The tensile strengths of Ni-43Ti-4A1-2Nb-2Hf alloy are dramatically increased compared with the ternary Ni-46Ti-4A1 alloy. At room temperature and 650℃, the yield stress of Ni--43Ti-4Al- 2Nb-2Hf alloy reaches 1,070 and 610 MPa, respectively, which are 30 % and 150 % higher than those of Ni--46Ti- 4Al alloy. The improved tensile property results from the solid solution strengthening by Nb and Hf, as well as the dispersion hardening of the Ti2Ni and Hf-rich phases.
Xiao-Yun SongYan LiFei Zhang
关键词:INTERMETALLICSMICROSTRUCTURE
Phase precipitation behavior and tensile property of a Ti-Al-Sn-Zr-Mo-Nb-W-Si titanium alloy被引量:5
2018年
The characteristic of precipitation behavior of a2 phase and silicide, and the tensile properties at room temperature and 650℃after heat treatments in anovel TiAl-Sn-Zr-Mo-Nb-W-Si titanium alloy(BTi-6431 S) were investigated by microstructure analysis and mechanics performance testing. The results show that no second phase precipitates after solution treatment(980 ℃/2 h, air cooling(AC)). However, when the solution-treated specimens are aged at 600 ℃(600 ℃/2 h,AC),α;phase precipitates in the primary α phase, and the size of α;phase increases with the aging temperature increasing to 750 ℃. Meanwhile, 50-100-nm S2-type silicide particles precipitate along lamellar phase boundaries of transformed β phase after aging at 750 ℃. BTi-6431 S alloy shows the best650 ℃ ultimate tensile strength(UTS) and yield strength(YS) when treated in solution treatment. However, aging treatment results in a decline in 650 ℃ ultimate tensile strength. This may be attributed to the loss of solution strengthening due to the depletion of Al, Si and Zr of the matrix caused by the precipitation of Ti;Al and(TiZr);Si;.Silicide is a brittle phase; therefore, its precipitation causes a sharp decrease in the room-temperature ductility of BTi-6431 S alloy.
Wen-Jing ZhangXiao-Yun SongSong-Xiao HuiWen-Jun YeWei-Qi Wang
关键词:SILICIDE
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