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作 者:李海英[1] 李宁[1] 莫华强[1] 文玉华[1] 黄姝珂[1] 滕劲[1]
机构地区:[1]四川大学制造科学与工程学院,四川成都610065
出 处:《金属热处理》2008年第12期59-61,共3页Heat Treatment of Metals
基 金:国家自然基金项目(50501015)
摘 要:用示差扫描热分析(DSC)、XRD、光学显微镜等方法研究了850℃退火对Ti-50.84at%Ni合金紧箍环显微组织、相变特征和形状恢复率的影响。结果表明,Ti-50.84at%Ni合金锻造态和退火态组织都以Ni-Ti基体母相(B2)为主,而锻造后深冷处理则以Ni-Ti基体马氏体相(B19′)为主,3种状态都含有少量的Ni4Ti3相。850℃退火后,合金中Ni4Ti3相减少且细小弥散,产生了较大的反相变应力,并增加了基体中的Ni含量,使得合金的马氏体转变温度(Ms)明显降低,且与R相变分离。高温退火消除了合金中的位错等缺陷有利于马氏体逆相变的进行,从而提高了紧箍环的形状恢复率和恢复力。The effect of high temperature annealing treatment at 850 ℃ on microstructure, transformation and shape recovery rate of Ti-50. 84at% Ni shape memory alloy ring was studied by DSC, XRD and optics-microscope. The results show that microstructure of the forged and annealed Ti-50. 84at% Ni alloys is rich in Ni-Ti-parent-phases (B2) ,but the deep-cooled alloy is rich inNi-Ti-martensite( B19′), and all of them have a small quantity of Ni4Ti3. After annealing at 850 ℃, the NinTi3 precipitates become finer and less, which brings high anti-transformation stress and increases Ni content in the matrix. This leads that martensite transformation temperature (Ms)of the alloy is decreased and martensite transformation is separated from R transformation. The high temperature annealing eliminates the high-density dislocation defect in Ti-50. 84at% Ni alloy, which is propitious for martensite reverse-transformation, so it improves the shape recovery rate and restoring force of Ti-50. 84at% Ni alloy ring.
关 键 词:NI-TI合金 高温退火 马氏体相变 形状恢复率
分 类 号:TG139.6[一般工业技术—材料科学与工程] TG156.2[金属学及工艺—合金]
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