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A study on mechanical and thermal behavior of coir fiber reinforced epoxy composites

机译:椰壳纤维增强环氧复合材料的力学和热性能研究

摘要

The main focus of this study is to utilize the properties of natural fibers and make them compatible with polymer resins effectively. Coir fibres have been used as reinforcement in epoxy resin with various weight percentages of 5%, 10% and 15%. Surface treatment method like alkali treatment is done to improve the performance of coir fibre on epoxy resin. Cow dung powder is added as filler to the composite with a purpose of improving the insulation property of the composite. The mechanical properties like tensile strength, flexural strength, impact strength and the micro hardness showed an increment with respect to fibre loading as well as the alkali treatment. The maximum value is found with the composite having 15% treated coir fibre. Flexural strength showed maximum value at 10% treated fibre loading which decreases after 10% fibre loading. When fibre loading was increased, thermal conductivity reduces. By adding cow dung powder to the untreated fibre composite, thermal conductivity is further decreased. From Thermo Gravimetric Analysis (TGA) it is found that the surface treated fibre composites resist the thermal decomposition effectively up to 2600C after that there is a considerable increase in the thermal stability. Differential Scanning Calorimetry (DSC) showed that the specific heat capacity increases with increase in fibre loading. Untreated fibre composites showed better specific heat capacity than the treated ones. Cow dung powder added to the untreated composite showed that maximum specific heat and specific heat capacity increases further to higher values as the quantity of cow dung powder is increased. Glass transition temperature (Tg) showed an increment with surface treatment as well as fibre loading of up to 10% and after that it decreases
机译:这项研究的主要重点是利用天然纤维的特性并使它们与聚合物树脂有效地相容。椰壳纤维已被用作环氧树脂中的增强剂,其重量百分比为5%,10%和15%。进行了诸如碱处理的表面处理方法以改善椰壳纤维在环氧树脂上的性能。为了改善复合材料的绝缘性能,将牛粪粉作为填料添加到复合材料中。诸如拉伸强度,弯曲强度,冲击强度和显微硬度的机械性能相对于纤维负载以及碱处理显示出增加。对于具有15%处理过的椰壳纤维的复合材料,发现最大值。抗弯强度在10%的纤维载荷下显示最大值,在10%的纤维载荷下减小。当纤维负载增加时,热导率降低。通过将牛粪粉添加到未处理的纤维复合物中,热导率进一步降低。根据热重量分析法(TGA),发现表面处理的纤维复合材料在高达2600℃的温度下有效地抵抗了热分解,因为热稳定性有了显着提高。差示扫描量热法(DSC)显示,比热容随纤维负载的增加而增加。未处理的纤维复合材料比处理后的纤维具有更好的比热容。添加到未处理的复合物中的牛粪粉显示出最大比热和比热容随着牛粪粉量的增加而进一步增加到更高的值。玻璃化转变温度(Tg)随着表面处理的增加以及纤维负载的增加高达10%,然后下降

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    Haridas B;

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  • 年度 2014
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