首页> 外文会议>Symposium on Mechanical Properties of Nanostructured Materials and Nanocomposites; 20031201-20031205; Boston,MA; US >Mechanical Properties and Filler Distribution as a Function of Filler Content in Silica Filled PDMS Samples
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Mechanical Properties and Filler Distribution as a Function of Filler Content in Silica Filled PDMS Samples

机译:二氧化硅填充的PDMS样品中的力学性能和填充物分布与填充物含量的关系

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Atomic force microscopy (AFM) phase imaging and tensile stress-strain measurements are used to study a series of model compression molded fumed silica filled polydimethysiloxane (PDMS) samples with filler content of zero, 20, 35, and 50 parts per hundred (phr) to determine the relationship between filler content and stress-strain properties. AFM phase imaging was used to determine filler size, degree of aggregation, and distribution within the soft PDMS matrix. A small tensile stage was used to measure mechanical properties. Samples were not pulled to break in order to study Mullins and aging effects. Several identical 35 phr samples were subjected to an initial stress, and then one each was reevaluated over intervals up to 26 weeks to determine the degree to which these samples recovered their initial stress-strain behavior as a function of time. One sample was tested before and after heat treatment to determine if heating accelerated recovery of the stress-strain behavior. The effect of filler surface treatment on mechanical properties was examined for two samples containing 35 phr filler treated or untreated with hexamethyldisilazane (HMDZ), respectively. Fiduciary marks were used on several samples to determine permanent set. 35 phr filler samples were found to give the optimum mechanical properties. A clear Mullins effect was seen. Within experimental error, no change was seen in mechanical behavior as a function of time or heat-treatment. The mechanical properties of the sample containing the HDMZ treated silica were adversely affected. AFM phase images revealed aggregation and nonuniform distribution of the filler for all samples. Finally, a permanent set of about 3 to 6 percent was observed for the 35 phr samples.
机译:原子力显微镜(AFM)相成像和拉伸应力应变测量用于研究一系列模型压铸的气相法二氧化硅填充的聚二甲基硅氧烷(PDMS)样品,其填充量为零,20、35和50百分率(phr)确定填料含量与应力应变性能之间的关系。 AFM相成像用于确定填料尺寸,聚集度和在软PDMS基质中的分布。使用小的拉伸台来测量机械性能。为了研究穆林斯和老化效应,没有拉样品断裂。几个相同的35 phr样品受到初始应力,然后在长达26周的间隔内重新评估每个样品,以确定这些样品恢复其初始应力-应变行为随时间变化的程度。在热处理之前和之后测试一个样品,以确定加热是否加速了应力应变行为的恢复。对于分别含六份二甲基二硅氮烷(HMDZ)处理或未处理的35 phr填料的两个样品,检查了填料表面处理对机械性能的影响。在几个样品上使用了基准标记来确定永久变形。发现35 phr填料样品具有最佳的机械性能。看到明显的穆林斯效应。在实验误差范围内,没有发现机械行为随时间或热处理而变化。含有HDMZ处理过的二氧化硅的样品的机械性能受到不利影响。 AFM相图揭示了所有样品的填料聚集和不均匀分布。最后,对于35份phr样品,观察到了约3%至6%的永久变形。

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