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Nanoindentation of polymer-bound silica agglomerate layers

机译:聚合物结合的二氧化硅团聚体层的纳米压痕

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摘要

Experimental data are described for the indentation of highly porous particulate coatings on the submicron length scale using a Berkovich probe: they were composed of colloidal silica (20-24 nm in diameter) with a solvent-deposited isotactic poly(methyl methacrylate) as a binder. A wide variation in the data was observed at different Surface locations for aryl single coating owing to their heterogeneous nature; an approximate methodology is described to characterize these variations. The procedure is based on a power-law fitting of apparent hardness data and has been employed to provide closed-form expressions for the depth dependence of the mechanical response. The analyses show that the mechanical properties depend on the binder solvent used in the preparation of a coating and also indicate that the surfaces of the coatings may be harder than the bulk. This would be expected to arise from capillary-induced flow of the binder solution during the coating solidification process. [References: 11]
机译:描述了使用Berkovich探针在亚微米长度尺度上压痕高度多孔的颗粒涂层的实验数据:它们由胶体二氧化硅(直径20-24 nm)和溶剂沉积的全同立构聚(甲基丙烯酸甲酯)组成。由于芳基单涂层的异质性,在不同表面位置观察到的数据差异很大。描述了一种表征这些变化的近似方法。该过程基于表观硬度数据的幂律拟合,并已被用于提供机械响应的深度依赖性的封闭形式的表达式。分析表明,机械性能取决于涂料制备中使用的粘合剂溶剂,并且还表明涂料的表面可能比表面硬。预期这是由于在涂层固化过程中毛细管诱导的粘合剂溶液流动引起的。 [参考:11]

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