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Electron Probe Microanalyzer Evaluation of Fatigue Fracture Surface of Nanoclay-Epoxy Composite Materials

机译:电子探针显微分析仪评价纳米粘土-环氧树脂复合材料疲劳断裂表面

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摘要

The use of nano-size fillers for polymer and rubber has become a trend in composite manufacturing industries because the amount of the fillers needed to improve the bulk properties of the material can be reduced to less than the amount necessary for normal size fillers. It has been clarified, however, that the formation of small agglomerates of fillers that occurs during fabrication affects the mechanical properties of the material, such as crack initiation and propagation, and fatigue life. Therefore, fatigue tests of a nanoclay-epoxy composite material were conducted in this study. Results show that the composite fatigue life decreases with increased nanoclay contents. To investigate the effects of nanoclay agglomeration or clustering on the fatigue life, an elemental analysis of the fracture surface was conducted using an electron probe microanalyzer (EPMA). From EPMA images, several factors related with agglomerates causing the premature fatigue cracks were analyzed quantitatively and discussed further.
机译:在聚合物和橡胶中使用纳米级填料已成为复合材料制造行业的趋势,因为可以将改善材料的松散性能所需的填料量减少到小于常规尺寸填料所需的量。然而,已经澄清的是,在制造期间发生的填充剂的小团聚物的形成影响材料的机械性能,例如裂纹的产生和扩展以及疲劳寿命。因此,在这项研究中进行了纳米粘土-环氧树脂复合材料的疲劳测试。结果表明,复合疲劳寿命随着纳米粘土含量的增加而降低。为了研究纳米粘土团聚或聚集对疲劳寿命的影响,使用电子探针显微分析仪(EPMA)对断裂表面进行了元素分析。从EPMA图像中,定量分析了与团块有关的引起过早疲劳裂纹的因素,并进行了进一步讨论。

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