Liverić Lovro, Holjevac Grgurić Tamara, Mandić Vilko, Chulist Robert
Faculty of Engineering, University of Rijeka, Vukovarska 58, 51000 Rijeka, Croatia.
School of Medicine, Catholic University of Croatia, Ilica 242, 10000 Zagreb, Croatia.
Materials (Basel). 2023 Aug 24;16(17):5782. doi: 10.3390/ma16175782.
The influence of manganese content on the formation of martensite structure and the final properties of a quaternary Cu-Al-Mn-Ag shape memory alloy (SMA) was investigated. Two alloys with designed compositions, Cu- 9%wt. Al- 16%wt. Mn- 2%wt. Ag and Cu- 9%wt. Al- 7%wt. Mn- 2%wt. Ag, were prepared in an electric arc furnace by melting of high-purity metals. As-cast and quenched microstructures were determined by optical microscopy and scanning electron microscopy equipped with EDS. Phases were confirmed by high-energy synchrotron radiation and electron backscatter diffractions. Austenite and martensite transformations were followed by differential scanning calorimetry and hardness was determined using the Vickers hardness test. It was found that the addition of silver contributes to the formation of the martensite structure in the Cu-Al-Mn-SMA. In the alloy with 7%wt. of manganese, stable martensite is formed even in the as-cast state without additional heat treatment, while the alloy with 16%wt. of manganese martensite transforms only after thermal stabilization and quenching. Two types of martensite, β and γ', are confirmed in the Cu-9Al-7Mn-2Ag specimen. The as-cast SMA with 7%wt. Mn showed significantly lower martensite transformation temperatures, M and M, in relation to the quenched alloy. With increasing manganese content, the M and M temperatures are shifted to higher values and the microhardness is lower.
研究了锰含量对一种四元Cu-Al-Mn-Ag形状记忆合金(SMA)马氏体结构形成及最终性能的影响。通过熔炼高纯度金属,在电弧炉中制备了两种具有设计成分的合金,即Cu-9%wt.Al-16%wt.Mn-2%wt.Ag和Cu-9%wt.Al-7%wt.Mn-2%wt.Ag。通过光学显微镜和配备能谱仪的扫描电子显微镜确定铸态和淬火后的微观结构。通过高能同步辐射和电子背散射衍射确认相。用差示扫描量热法跟踪奥氏体和马氏体转变,并使用维氏硬度测试确定硬度。发现银的添加有助于在Cu-Al-Mn-SMA中形成马氏体结构。在含7%wt.锰的合金中,即使在铸态下无需额外热处理也能形成稳定的马氏体,而含16%wt.锰的合金马氏体仅在热稳定化和淬火后才转变。在Cu-9Al-7Mn-2Ag试样中确认了两种类型的马氏体,即β和γ'。与淬火合金相比,含7%wt.锰的铸态SMA显示出明显更低的马氏体转变温度M和M。随着锰含量的增加,M和M温度向更高值移动,且显微硬度更低。