首页> 外文期刊>Journal of Polymers and the Environment >Synthesis and Performance Evaluation of Unsaturated Polyester Blends of Resins and Its Application on Non-woven/Fabric Jute Fibers Reinforced Composites
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Synthesis and Performance Evaluation of Unsaturated Polyester Blends of Resins and Its Application on Non-woven/Fabric Jute Fibers Reinforced Composites

机译:树脂不饱和聚酯共混物的合成与性能评价及其在非织造/织物黄麻纤维增强复合材料中的应用

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The present study focuses on the generation of eco-friendly value added product by utilizing bio-based material as reinforced and matrix phase. Processing of soy and alkyd resin as matrix was carried out by utilization of soy flour and Ricinodendron heudelotii oil, followed essential modification in few inferior properties of soy flour resin by blending with alkyd resin. Separate sets of resin were prepared by maintaining 0%, 5% and 10% of alkyd resin in 100 g of soy flour resin respectively in each set to attain a comparative study on performance of prepared sets of resin blend. Subsequently, performance evaluation of polyester blends was evaluated by processing with non-woven/fabric jute fibers reinforced composites. The blend of R. heudelotii oil based alkyd and soy-flour resin in processing of composites was the noval approach of the study. The resins blend were characterized by FT-IR, viscosity and zeta potential measurements while thermo-mechanical analyses, water absorbancy and surface analyses were performed in composites. Significant increases noticed in the viscosity of blend, the blend containing 10% alkyd resin is two times more viscous compared to soy-flour resin. Furthermore, improvement in properties including water absorption, thermo-mechanical properties and better fiber-matrix interfacial adhesion of the composite could be observed. Higher glass transition temperature T-g value i.e. 126.8 degrees C obtained for composites with 10% blend as matrix might emphasizes on increase of the degree of cross linking provided by the alpha-eleostearic fatty acid chain moiety. The enhancements in properties indicate extending opportunities for fiber-reinforced composites in several industries including building material, furniture, aerospace, nano etc.
机译:本研究的重点是通过利用生物基材料作为增强相和基体相来生成环保增值产品。利用大豆粉和蓖麻蓖麻油进行大豆和醇酸树脂作为基质的加工,然后通过与醇酸树脂共混,对大豆粉树脂的一些劣等性能进行必要的改性。通过在每组大豆粉树脂100g中分别保持0%,5%和10%的醇酸树脂来制备单独的树脂组,以对所制备的树脂共混物的性能进行比较研究。随后,通过用非织造/织物黄麻纤维增强复合材料加工来评估聚酯共混物的性能。在合成材料的加工中,将罗氏罗汉果油基醇酸树脂和大豆粉树脂共混是该研究的主要方法。通过FT-IR,粘度和ζ电势测量来表征树脂共混物,同时在复合材料中进行热机械分析,吸水率和表面分析。共混物的粘度显着增加,与大豆粉树脂相比,含10%醇酸树脂的共混物的粘度是其两倍。此外,可以观察到复合材料的性能改善,包括吸水率,热机械性能和更好的纤维-基质界面粘合性。对于具有10%共混物作为基质的复合材料,较高的玻璃化转变温度T-g值,即126.8℃,可能强调α-硬脂酸脂肪酸链部分所提供的交联度的增加。性能的增强表明纤维增强复合材料在包括建筑材料,家具,航空航天,纳米等在内的多个行业中扩展了机会。

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