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Three-Body Abrasive Wear Behavior of Basalt and Glass Fabric Reinforced Epoxy Composites

机译:玄武岩和玻璃纤维增​​强环氧树脂复合材料的三体磨料磨损行为

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Three-body abrasive wear behavior of basalt-epoxy (B-E) and glass-epoxy (G-E) composites have been investigated using Dry sand rubber wheel abrasion resistance for various abrading distance,viz.,150,300,450 and 600m and different loads(22N and 32N) at 200 rpm.The weight loss and specific wear rate as a function of load and abrading distance were determined.The weight loss increases with increasing load and also with abrading distance while the specific wear rate decreases with increase in abrading distance and increases with the load.Better abrasion wear resistance was observed in B-E composite compared to G-E composite.Scanning Electron Microscope (SEM) is used to examine the abraded composite specimens and revealed that the more damage occur to glass fiber compared to basalt fiber.Also good interfacial adhesion was observed between epoxy and basalt fiber which leads to good abrasive wear resistance.
机译:利用干砂橡胶轮的耐磨性,研究了150、300、450和600m以及不同载荷(22N和32N)下玄武岩-环氧(BE)和玻璃-环氧(GE)复合材料的三体磨料磨损行为。在200 rpm转速下,确定了失重和比磨损率与载荷和磨蚀距离的关系。失重随载荷和磨削距离的增加而增加,而比磨损率随磨削距离的增加而减小,并随载荷的增加而增加在BE复合材料中观察到比GE复合材料更好的耐磨性。使用扫描电子显微镜(SEM)检查磨损的复合材料样品,发现与玄武岩纤维相比,玻璃纤维受到的损伤更大,并且观察到了良好的界面附着力在环氧树脂和玄武岩纤维之间形成良好的耐磨性。

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