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共晶NiAl-9Mo合金的超塑性行为 被引量:5
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作者 杜兴蒿 郭建亭 周彼德 《金属学报》 SCIE EI CAS CSCD 北大核心 2001年第10期1112-1116,共5页
研究了共晶 NiAl-9Mo合金的超塑性行为及其变形机制.该合金的微观组织由 NiAl以及 NiAl和α-Mo共晶体组成.在 1323-1373 K温度区间,以 5.55×10-5-1.11×10-4 s-1的应变速... 研究了共晶 NiAl-9Mo合金的超塑性行为及其变形机制.该合金的微观组织由 NiAl以及 NiAl和α-Mo共晶体组成.在 1323-1373 K温度区间,以 5.55×10-5-1.11×10-4 s-1的应变速率拉伸变形时,表现出超塑性行为,最大延伸率达到 180%,应变速率敏感性指数达到 0.56.超塑性的变形机制为初生 NiAl基体的晶界滑动,断裂起源于超塑性变形过程中产生的孔洞. 展开更多
关键词 NIAL 共晶合金 超塑性 变形机制 金属间化合物 nial-9mo合金
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Directional solidification and characterization of NiAl-9Mo eutectic alloy 被引量:1
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作者 张建飞 沈军 +2 位作者 商昭 王雷 傅恒志 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第12期3499-3507,共9页
Ni-45.5Al-9Mo (mole fraction,%) alloy was directionally solidified with a constant temperature gradient (GL=334 K/cm) and growth rates ranging from 2 to 300 μm/s using a Bridgman type crystal growing facility wit... Ni-45.5Al-9Mo (mole fraction,%) alloy was directionally solidified with a constant temperature gradient (GL=334 K/cm) and growth rates ranging from 2 to 300 μm/s using a Bridgman type crystal growing facility with liquid metal cooling (LMC) technique. The effect of growth rate (v) on the solidified microstructures such as rod spacing (λ), rod size (d) and rod volume fraction was experimentally investigated. Two types of the solidified interfaces, planar and cellular, were identified. On the condition of both planar and cellular eutectic microstructures, the relationships between λ, d and v were given as: λv1/2=5.90 μm·μm1/2·s1/2 and dv1/2=2.18μm·μm1/2·s1/2, respectively. It was observed that the volume fraction of Mo phase could be adjusted in a certain range. The variation of phase volume fraction was attributed to undercooling increase and the growth characteristics of the individual constituent phases during the eutectic growth. 展开更多
关键词 nial-9mo directional solidification INTERMETALLICS crystal growth MICROSTRUCTURE
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Tensile Behavior of NiAL-9Mo Eutectic Alloy around Brittle to Ductile Transition Temperature
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作者 WeiliREN JiantingGUO +1 位作者 GusongLI JiyangZHOU 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第3期253-256,共4页
The influence of strain rate and temperature on the tensile behavior of as-cast and HIPed NiAI-9Mo eutectic alloy was investigated in the temperature range of 700-950℃ and over a strain rate range from 2.08×10-4... The influence of strain rate and temperature on the tensile behavior of as-cast and HIPed NiAI-9Mo eutectic alloy was investigated in the temperature range of 700-950℃ and over a strain rate range from 2.08×10-4 s-1 to 2.08×10-2 s-1. The results indicate that HIP process causes an enhancement in ductility and a decrease in ultimate tensile strength (UTS), yield strength (YS), average strain hardening rate as well as a drop in brittle to ductile transition temperature(BDTT) under the same condition. It is noticed that the BDTT of as-cast NiAI-9Mo is more dependent on strain rate than that of HIPed one. The brittle to ductile transition process of the alloy is related to a sharp drop in strain hardening rate. Regardless of strain rate, the fracture morphology changes from cleavage in NiAl phase and debonding along NiAI/Mo interface below the BDTT to microvoid coalescence above BDTT. The apparent activation energy of the BDT of HIPed and as-cast material are calculated to be 327 and 263 kJ/mol, respectively, suggesting that the mechanism is associated with lattice diffusion in NiAl phase. 展开更多
关键词 nial-9mo Eutectic alloy BDT Tensile behavior
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