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Interlaminar shear strength of glass fiber reinforced dially phthalate laminates enhanced with nanoclays

机译:纳米粘土增强玻璃纤维增​​强邻苯二甲酸二邻苯二甲酸酯层压板的层间剪切强度

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To examine the role of nanoclays in the enhancement of interlaminar shear strength (ILSS) of glass fiber reinforced diallyl phthalate (GFR-DAP) composites, the GFR-DAP laminates were manufactured by hand lay-up techniques using two nanoclays, DK2 and MHAB-MMT, respectively. Χ-ray diffraction (XRD) were conducted to characterize the morphology of the dispersed clay particles in the DAP matrix. The mechanical performances were characterized by flexural strength and LISS measurements. XRD scans shows that the clays disperse uniformly in the DAP matrix and form an intercalated structure with a basal spacing of 3.86 nm and 3.98 nm for DK2 and MHAB-MMT, respectively. Short beam shear tests show that only 2.5 wt% clay loading in DAP matrix increased the ILSS of resulting GFR-DAP laminates by 7.64% and 14.80% for DK2 and MHAB-MMT, respectively, with respect to the neat DAP. The fractured surfaces of resulting laminates were observed by scanning electron microscope (SEM).
机译:为了检查纳米粘土在增强玻璃纤维增​​强邻苯二甲酸二烯丙基烯丙基酯(GFR-DAP)复合材料的层间剪切强度(ILSS)中的作用,通过手工铺层技术使用两种纳米粘土DK2和MHAB-制造了GFR-DAP层压板。 MMT,分别。进行X射线衍射(XRD)以表征DAP基质中分散的粘土颗粒的形态。通过弯曲强度和LISS测量来表征机械性能。 XRD扫描显示,粘土均匀分散在DAP基质中,并形成了DK2和MHAB-MMT的基间距分别为3.86 nm和3.98 nm的插层结构。短梁剪切试验表明,相对于纯净DAP,DAP基质中仅2.5 wt%的粘土负载可使DK2和MHAB-MMT的GFR-DAP层压板的ILSS分别提高7.64%和14.80%。通过扫描电子显微镜(SEM)观察所得层压体的断裂表面。

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