An Haowei, Geng Jiwei, Bian Zeyu, Liu Gen, Wang Mingliang, Chen Dong, Wang Haowei
State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Materials Science & Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Materials (Basel). 2020 Nov 18;13(22):5212. doi: 10.3390/ma13225212.
The thermal stability of the Al-Si alloys during the thermal exposure process from 250 °C to 400 °C was systematically investigated. The relationships between the morphological evolution and the mechanical changes of the alloys were determined through the Vickers hardness test and materials characterization method. Initially, the alloys exhibited similar thermal degradation behavior. For example, the exposure process of the alloy at 300 °C can be divided into two stages according to the changes of the alloy hardness and the matrix micro-hardness. In detail, the first stage (0-2 h) exhibited a severe reduction of the alloy hardness while the second stage showed a more leveled hardness during the following 98 h. There are three identified morphological characteristics of Ni-rich phases in the alloy. Furthermore, the differences in both composition and the micro-hardness between these Ni-rich phases were confirmed. The underlying relationships between the morphological transformation of the Ni-rich phases and hardness fluctuation in the alloy were correlated and elucidated. The observed alloy hardness increase when the exposure temperature was 400 °C was unexpected. This behavior was explained from the perspectives of both Ni-rich phases evolution and dispersoid formation.
系统研究了Al-Si合金在250℃至400℃热暴露过程中的热稳定性。通过维氏硬度测试和材料表征方法确定了合金的形态演变与力学变化之间的关系。最初,合金表现出相似的热降解行为。例如,根据合金硬度和基体显微硬度的变化,合金在300℃下的暴露过程可分为两个阶段。具体而言,第一阶段(0-2小时)合金硬度急剧下降,而第二阶段在随后的98小时内硬度较为平稳。合金中富Ni相有三种已确定的形态特征。此外,还证实了这些富Ni相在成分和显微硬度上的差异。富Ni相的形态转变与合金硬度波动之间的潜在关系得到了关联和阐释。当暴露温度为400℃时观察到的合金硬度增加是出乎意料的。从富Ni相演变和弥散体形成两个角度对这种行为进行了解释。