宋晓云, 李岩, 张菲. Ni/Ti原子数比值对NiTiAlHf合金微观组织和力学性能的影响[J]. 工程科学学报, 2012, 34(12): 1400-1404. DOI: 10.13374/j.issn1001-053x.2012.12.007
引用本文: 宋晓云, 李岩, 张菲. Ni/Ti原子数比值对NiTiAlHf合金微观组织和力学性能的影响[J]. 工程科学学报, 2012, 34(12): 1400-1404. DOI: 10.13374/j.issn1001-053x.2012.12.007
SONG Xiao-yun, LI Yan, ZHANG Fei. Effect of Ni/Ti atom number ratio on the microstructure and mechanical properties of NiTiAlHf alloys[J]. Chinese Journal of Engineering, 2012, 34(12): 1400-1404. DOI: 10.13374/j.issn1001-053x.2012.12.007
Citation: SONG Xiao-yun, LI Yan, ZHANG Fei. Effect of Ni/Ti atom number ratio on the microstructure and mechanical properties of NiTiAlHf alloys[J]. Chinese Journal of Engineering, 2012, 34(12): 1400-1404. DOI: 10.13374/j.issn1001-053x.2012.12.007

Ni/Ti原子数比值对NiTiAlHf合金微观组织和力学性能的影响

Effect of Ni/Ti atom number ratio on the microstructure and mechanical properties of NiTiAlHf alloys

  • 摘要: 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.

     

    Abstract: Scanning electron microscopy (SEM) and compressive tests at room temperature and elevated temperatures were used to investigate the effect of Ni/Ti atom number ratio on the microstructures and mechanical properties of Ni42+xTi50-xAl4Hf4 (x=0-7) alloys. It is found that Ni42+xTi50-xAl4Hf4 alloys are composed of NiTi and Ti2Ni phases. The size and volume fraction of Ti2Ni phase decrease rapidly and the precipitation strengthening effect weakens with increasing Ni/Ti values. At room temperature when the Ni/Ti ratio increases, the compressive yield strength (σ0.2) and Vickers hardness (Hv) of the alloys decrease, but the ductility increases. At elevated temperatures, for the alloys of Ni/Ti < 1, the precipitation strengthening of Ti2Ni phase plays the major role, resulting in a decrease of σ0.2 with increasing Ni/Ti values; but for the alloys of Ni/Ti > 1, the solid solution strengthening effect of Hf improves, and the uniform distribution of Ti2Ni is more favorable for the strength, leading to the increase of σ0.2 with increasing Ni/Ti values. The high-temperature yield strength is asymmetrical with a deviation from stoichiometry (Ni/Ti=1).

     

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