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Effect of pineapple leaf (PALF), napier, and hemp fibres as filler on the scratch resistance of epoxy composites

机译:菠萝叶(PALF),NaPier和HEMP纤维作为填料对环氧复合材料的耐刮擦性的影响

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This article presents the effects of pineapple leaf (PALF), napier, and hemp fibres as filler on the scratch resistance of epoxy composites. In particular, it explores the effect of these natural fillers on the horizontal load, coefficient of friction (COF), penetration depth, fracture toughness, scratch hardness, brittleness index and scratch observation. The mixing method using magnetic stirrer was used to produce the natural fibre-filled epoxy composites with different wt%, namely, 5, 7.5, and 10wt%. The test was performed using a CSM Revetest Xpress, which consisted of a cone of the half-apex angle of 60° ending with a sphere having a tip radius of 200μm. The indenter scratch distance and speed were 7mm and 1.5mm/min, respectively. The results show that the napier fibre-filled epoxy composites have the highest peak load and COF. It was also noted that the napier fibre-filled epoxy composites have the lowest penetration depth for each wt% of filler. Lastly, the fracture toughness (Kc) for the napier fibre-filled epoxy composites with 10wt% of filler yielded the highest value of 4.33MPa.m1/2. It can also be seen that using a scanning electron microscope (SEM), the amount of debris increased with higher of wt% of the natural fibre fillers in the composites. Hence it was demonstrated that the napier fibre-filled epoxy composites have higher scratch resistance compared to the PALF and hemp fibre-filled epoxy composites.
机译:本文介绍了菠萝叶(PALF),Napier和HEMP纤维的影响,作为环氧复合材料的耐刮擦性的填料。特别地,它探讨了这些天然填料对水平载荷,摩擦系数(COF),渗透深度,断裂韧性,划伤硬度,脆性指数和划痕观察的影响。使用磁力搅拌器的混合方法用于产生具有不同重量%,即5,7.5和10wt%的天然纤维填充的环氧树脂复合材料。使用CSM ReveTest Xpress进行该测试,该Xpress由半顶点角的锥体组成,其与尖端半径为200μm的球体。压痕划痕距离和速度分别为7mm和1.5mm / min。结果表明,纳米尔纤维填充的环氧复合材料具有最高的峰值负荷和COF。还注意到,纳皮尔纤维填充的环氧复合材料具有最低的填料渗透深度。最后,纳皮尔纤维填充的环氧复合材料的断裂韧性(KC),10wt%的填料产生的最高值为4.33mpa.m1 / 2。还可以看出,使用扫描电子显微镜(SEM),碎片量随高于复合材料中的天然纤维填料的wt%而增加。因此,有与PALF和HEMP纤维纤维纤维的环氧复合材料相比,纳皮尔纤维填充的环氧复合材料具有更高的耐刮擦性。

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