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Measurement of oil-mediated particle adhesion to a silica substrate by atomic force microscopy

机译:通过原子力显微镜测量油介导的颗粒与二氧化硅基质的粘附力

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摘要

Preventing particle segregation while maintaining flow is critical to enable processing in a variety of industries. Where segregation or dusting is particularly troublesome, oil may be added to the powder to increase cohesion between particles or to attach flow-aids to the particle surface. In this investigation, the role of the capillary force produced by an oil annulus between surfaces and its influence on adhesion are explored. The results of direct measurement by atomic force microscopy are compared with ensemble powder properties, as well as a simple theoretical expression that predicts the magnitude of the adhesion force as a function of the separation distance. Agreement is achieved between theory and experimental data using only the volume of the oil annulus and its surface tension as variables.
机译:在保持流动的同时防止颗粒偏析对于在多种行业中进行加工至关重要。在离析或粉尘特别麻烦的地方,可将油添加到粉末中,以增加颗粒之间的内聚力或将助流剂附着到颗粒表面。在这项研究中,探讨了由表面之间的油环产生的毛细作用力及其对附着力的影响。通过原子力显微镜直接测量的结果与整体粉末的性能以及简单的理论表达式进行了比较,该理论表达式预测了粘附力的大小随分离距离的变化。仅使用油环的体积及其表面张力作为变量,即可在理论和实验数据之间达成一致。

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