Chen Guangyao, Liao Houjin, Deng Shaowen, Zhang Man, Cai Zheyu, Xu Hui, Wang Enhui, Hou Xinmei, Li Chonghe
State Key Laboratory of Advanced Special Steel & Shanghai Key Laboratory of Advanced Ferrometallurgy & School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China.
Shanghai Special Casting Engineering Technology Research Center, Shanghai 201605, China.
Materials (Basel). 2024 Sep 23;17(18):4674. doi: 10.3390/ma17184674.
In this study, wettability behavior and the interaction between the K492M alloy and an AlO shell were investigated at 1430 °C for 2~5 min. The microstructural characterization of the alloy-shell interface was carried out by optical microscopy (OM) and scanning electron microscopy (SEM). The results indicated that the interaction could cause a sand adhesion phenomenon affecting the alloy, and the attached products were AlO particles. In addition, the wetting angles of the alloys located on the shell were 125.2°, 109.4°, 97.0°, and 95.0°, respectively, as the contact time was increased from 2 to 5 min. Apparently, the wettability of the alloy in relation to the shell had a relationship with the contact time, where a longer contact time was beneficial to the permeation of the alloy into the shell and the interaction between the two components. No significant chemical products could be detected in the interaction layer, indicating that only the occurrence of the physical dissolution of the shell took place in the alloy melt.
在本研究中,于1430℃下对K492M合金与AlO壳之间的润湿性行为及相互作用进行了2至5分钟的研究。通过光学显微镜(OM)和扫描电子显微镜(SEM)对合金 - 壳界面进行了微观结构表征。结果表明,这种相互作用会导致影响合金的粘砂现象,附着产物为AlO颗粒。此外,随着接触时间从2分钟增加到5分钟,位于壳上的合金的润湿角分别为125.2°、109.4°、97.0°和95.0°。显然,合金与壳的润湿性与接触时间有关,接触时间越长有利于合金渗透到壳中以及两种组分之间的相互作用。在相互作用层中未检测到明显的化学产物,表明在合金熔体中仅发生了壳的物理溶解。