Lin Yan, Wei Ming, Yang Guangyu, Liu Haiyan, Ye Hui, Deng Chunming, Zhang Lijun
State Key Laboratory of Porous Metal Materials, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China.
Institute of New Materials, Guangdong Academy of Sciences, National Engineering Laboratory for Modern Materials Surface Engineering Technology, The Key Lab of Guangdong for Modern Surface Engineering Technology, Guangzhou 510651, China.
Materials (Basel). 2023 Oct 20;16(20):6777. doi: 10.3390/ma16206777.
In this study, nine as-cast Ni-Al-Cr-Os alloys were prepared, and their constituent phases and microstructure were examined using X-ray diffraction and electron probe microanalysis techniques. The solidification paths of all the alloys in a Ni-rich corner were revealed based on a detailed analysis of the as-cast microstructure. The liquidus cube of the quaternary Ni-Al-Cr-Os system in a Ni-rich corner was established accordingly. A eutectic-type invariant reaction on the liquidus surface was explicitly identified, and its reaction can be expressed as L → α + β + γ. No quaternary invariant reaction was found in the alloys following the addition of Os. The Ni-Al-Cr-Os alloy points were then vertically mapped onto the Ni-Al-Cr liquid phase projection to better observe the effect of Os addition on the solidification path of the Ni-Al-Cr system. It was found that the addition of a small amount of Os has no significant effect on the solidification path of the Ni-Al-Cr system. Furthermore, the microhardness of each alloy, which was determined to be in the range of 207 HV to 565 HV, was found to be closely related to the phase constitution and phase fraction of the alloy.
在本研究中,制备了9种铸态Ni-Al-Cr-Os合金,并使用X射线衍射和电子探针微分析技术对其组成相和微观结构进行了研究。基于对铸态微观结构的详细分析,揭示了所有合金在富镍角处的凝固路径。据此建立了富镍角处四元Ni-Al-Cr-Os系的液相面立方。明确识别出了液相面上的一种共晶型不变反应,其反应可表示为L→α+β+γ。添加Os后的合金中未发现四元不变反应。然后将Ni-Al-Cr-Os合金点垂直映射到Ni-Al-Cr液相投影图上,以更好地观察添加Os对Ni-Al-Cr系凝固路径的影响。发现添加少量Os对Ni-Al-Cr系的凝固路径没有显著影响。此外,测定的每种合金的显微硬度在207 HV至565 HV范围内,发现其与合金的相组成和相分数密切相关。