Suppression of cracking in drying colloidal suspensions with chain-like particles.

Zhaoxia Niu, Yiping Zhao, Qiuting Zhang, Zhiyuan Zhao, Dengteng Ge, Jiajia Zhou, Ye Xu
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Abstract

The prevention of drying-induced cracking is crucial in maintaining the mechanical integrity and functionality of colloidal deposits and coatings. Despite exploring various approaches, controlling drying-induced cracking remains a subject of great scientific interest and practical importance. By introducing chain-like particles composed of the same material and with comparable size into commonly used colloidal suspensions of spherical silica nanoparticles, we can significantly reduce the cracks formed in dried particle deposits and achieve a fivefold increase in the critical cracking thickness of colloidal silica coatings. The mechanism underlying the crack suppression is attributed to the increased porosity and pore sizes in dried particle deposits containing chain-like particle, which essentially leads to reduction in internal stresses developed during the drying process. Meanwhile, the nanoindentation measurements reveal that colloidal deposits with chain-like particles exhibit a smaller reduction in hardness compared to those reported using other cracking suppression approaches. This work demonstrates a promising technique for preparing colloidal coatings with enhanced crack resistance while maintaining desirable mechanical properties.
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抑制带有链状颗粒的胶体悬浮液在干燥过程中产生裂纹。
防止干燥引起的开裂对于保持胶体沉积物和涂层的机械完整性和功能性至关重要。尽管探索了各种方法,但控制干燥引起的开裂仍然是一个具有重大科学意义和实际重要性的课题。通过在常用的球形二氧化硅纳米颗粒胶体悬浮液中引入由相同材料组成且大小相当的链状颗粒,我们可以显著减少干燥颗粒沉积物中形成的裂纹,并将胶体二氧化硅涂层的临界开裂厚度提高五倍。裂纹抑制的根本原因在于含有链状颗粒的干燥颗粒沉积物的孔隙率和孔径增大,这从根本上降低了干燥过程中产生的内应力。同时,纳米压痕测量结果表明,与其他开裂抑制方法相比,链状颗粒胶体沉积物的硬度降低幅度较小。这项工作展示了一种既能保持理想机械性能,又能增强抗裂性的胶体涂层制备技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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