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Strength Degradation of Mechanical Properties of Unidirectional E-Glass Fiber Epoxy Resin Nanoclay Composites under Hygrothermal Loading Conditions

机译:在湿热载荷条件下,强度降解单向E-玻璃纤维环氧树脂纳米粘土复合材料的机械性能

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Glass fiber reinforced polymer (GFRP) plays a vital role in many industries because of its high strength to weight ratio. Its strength properties are somewhat lower than carbon fibre and it is less stiff and brittle. Using glass fibre in industries because of its raw material is much less expensive with compare to other materials. In the present work, the epoxy resin was modified using natural montmorillonite Closite 30B (1 wt%, 3 wt%, 5 wt%) nanoclay is used with E-glass unidirectional fiber to manufacture fiber reinforced nanocomposite using hand layup method. Three different types of fiber reinforced nanocomposites are fabricated using lwt% nanoclay, 3wt% nanoclay and 5wt% nanoclay with 30% wt fiber, epoxy resin and hardener. The epoxy resin and hardener are mixed in 10:4 weight ratios. Three different test, tensile test, hardness test and flexural test were measured through using mechanical test instruments. The mechanical test shows that the tensile and flexural strength for 3wt% nanoclay composite is more compared to lwt% and 5wt% nanoclay composite. To improve the flexural and tensile properties are 57% and 8% respectively by adding 3wt% of nanoclay. Micro hardness test for 3wt% of nanoclay composite is higher compare to lwt% and 5wt% nanoclay composite and further increase beyond 3wt% nanoclay hardness start decreasing .Further check durability the specimen were immersed in water and NaOH baths under accelerated hygrothermal loading for 30 days. Due to accelerated hygrothermal loading it is observed that the mechanical properties degradation in NaOH environment was more severe as compared to simple water.
机译:玻璃纤维增​​强聚合物(GFRP)起着因为它的高的强度重量比许多行业至关重要的作用。其强度性能略低于碳纤维,它是硬而脆以下。由于其原料的产业用玻璃纤维是便宜得多与比较其它材料。在目前的工作中,环氧树脂用天然蒙脱石Closite 30B改性(1重量%,3重量%,5重量%)的纳米粘土一起使用E-玻璃纤维单向到制造纤维用手工铺叠方法增强纳米复合材料。三种不同类型的纤维增强的复合材料使用的是制造的1wt%的纳米粘土,3重量%的纳米粘土和5重量%的纳米粘土以重量纤维,环氧树脂和固化剂的30%。环氧树脂和固化剂混合在10:4分重量比。三种不同的试验,拉伸试验,硬度试验和弯曲试验是通过使用机械测试仪器来测量。机械测试表明,对于3重量%纳米粘土复合材料的拉伸强度和弯曲强度更相比1%重量和5重量%的纳米粘土复合材料。为了提高弯曲和拉伸性能分别为57%和8%通过加入纳米粘土的3重量%。对于纳米粘土复合材料的3重量%微硬度测试更高比较1%重量和5重量%的纳米粘土复合材料,并进一步增加超过3重量%的纳米粘土硬度开始下降。进一步检查耐久性试样浸入水中和NaOH浴下加速湿热载荷为30天。由于加速湿热装载可以观察到,在NaOH环境中的机械性能降解相比简单的水作为更加严重。

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