Li Yunbo, Zhang Huarui, Chen Jiulong, Xiang Ting, Cheng Ying, Zhang Hu
Ningbo Institute of Technology (NIT), Beihang University, Ningbo 315000, China.
School of Materials Science and Engineering, Beihang University, Beijing 100191, China.
Materials (Basel). 2024 Nov 22;17(23):5714. doi: 10.3390/ma17235714.
Inorganic sand cores involving sodium silicate binder and microsilica have environmental advantages during the casting process of aluminum alloy. Nevertheless, the bending strength of sodium silicate-bonded sand (SSBS) needs to be further improved. In this research, the effect of hydrophobic fumed silica on the bending strength of sand cores was studied. The experimental results revealed that hydrophobic fumed silica with the addition of 0.050 wt.% can be adopted as an optimal modifier to enhance the bending strength of SSBS. According to scanning electron microscope and spectroscopy techniques, dense bonding bridges and a complex Si-O-Si network containing specific silicon molecules with a silicon atom bonded to three other silicon atoms contribute to the excellent bending strength, with a 53.1% increase in cold strength (24 h) compared to a commercial sample of a modified sand core. Meanwhile, the newly formed Si-O-Al chemical bond plays a crucial role in increasing the bending strength of sand cores.
在铝合金铸造过程中,涉及硅酸钠粘结剂和微硅粉的无机砂芯具有环境优势。然而,硅酸钠粘结砂(SSBS)的抗弯强度仍需进一步提高。本研究探讨了疏水气相二氧化硅对砂芯抗弯强度的影响。实验结果表明,添加0.050 wt.%的疏水气相二氧化硅可作为最佳改性剂,以提高SSBS的抗弯强度。根据扫描电子显微镜和光谱技术,致密的粘结桥以及包含特定硅分子的复杂Si-O-Si网络(其中一个硅原子与其他三个硅原子键合)有助于获得优异的抗弯强度,与改性砂芯的商业样品相比,冷强度(24小时)提高了53.1%。同时,新形成的Si-O-Al化学键在提高砂芯抗弯强度方面起着关键作用。