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Measurement of attractive forces between single aerogel powder particles and the correlation with powder flow

机译:测量单个气凝胶粉末颗粒之间的吸引力以及与粉末流动的关系

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摘要

An atomic force microscope (AFM), which allows the measurement of forces as low as one tenth of a nano-Newton, was used to determine the attractive forces between single silica aerogel powder particles (100 mum diameter) under two different atmospheric conditions. Forces on the order of 10 nN were found to depend mainly on the contact geometry and thus on the surface structure of the powder particles. In a second series of experiments. the surface structure of the silica aerogel powder particles was characterized using the AFM. Smooth surface areas, several micrometers in size, are separated by cliffs and cracks. For comparison, the same measurements were made with precipitated silica powder. Here larger forces and a different surface structure were found. The structure of precipitated silica particles is spheroidal with bumps on it, which are some hundred nanometers in size. In addition to the AFM measurements, powder flow rate from a hopper was measured. The flow of powders depends on the surface structure but also on the atmospheric conditions (e.g, moist atmosphere or vacuum). In contrast to precipitated silica powder, silica aerogel powder showed a significantly higher how rate under vacuum than in moist air. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 15]
机译:原子力显微镜(AFM)可以测量低至纳米牛顿的十分之一的力,用于确定两种不同大气条件下单个二氧化硅气凝胶粉末颗粒(直径为100微米)之间的吸引力。发现约10nN的力主要取决于接触几何形状,并因此取决于粉末颗粒的表面结构。在第二系列的实验中。使用原子力显微镜对二氧化硅气凝胶粉末颗粒的表面结构进行了表征。悬崖和裂缝隔开了数微米大小的光滑表面区域。为了比较,对沉淀的二氧化硅粉末进行了相同的测量。在这里发现更大的力和不同的表面结构。沉淀的二氧化硅颗粒的结构是球形的,上面有凸起,尺寸为几百纳米。除了进行AFM测量外,还测量了来自料斗的粉末流量。粉末的流动取决于表面结构,但也取决于大气条件(例如,潮湿的大气或真空)。与沉淀的二氧化硅粉末相反,二氧化硅气凝胶粉末在真空下比在潮湿空气中显示出更高的速率。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:15]

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