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Fly ash-based green composite as pipe, gear and blade

机译:粉煤灰基绿色复合材料,如管道,齿轮和叶片

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Purpose - This paper aims to perform an experimental investigation on the impact strength, compressive strength, tensile strength and flexural strength of fly ash-based green composites and to compare with these polyvinyl chloride (PVC), high density polyethylene (HDPE) and low density polyethylene (LDPE). Design/methodology/approach - Fly ash-based polymer matrix composites (FA-PMCs) were fabricated using hand layup method. Composites containing 100 g by weight fly ash particles, 100 g by weight brick dust particles and 50 g by weight chopped glass fiber particles were processed. Impact strength, compressive strength, tensile strength and flexural strength of composites have been measured and compared with PVC, HDPE and LDPE. Impact strength of the FA-PMC is higher than that of PVC, HDPE and LDPE. Structural analysis of pipes, gears and axial flow blade was verified using ANSYS. Barlou's condition for pipes, Lewis-Buckingham approach for gears and case-based analysis for axial flow blades were carried out and verified. Findings - Pipes, gears and axial flow blades made form fly ash-based composites were found to exhibit improved thermal resistance (i.e. better temperature independence for mechanical operations), higher impact strength and longer life compared to those made from PVC, HDPE and LDPE. Moreover, the eco-friendly nature of the raw materials used for fabricating the composite brings into its quiver a new dimension of appeal. Originality/value - Experimental investigation on the impact strength, compressive strength, tensile strength and flexural strength of fly ash-based green composites has not been attempted yet.
机译:目的-本文旨在对粉煤灰基绿色复合材料的冲击强度,抗压强度,拉伸强度和挠曲强度进行实验研究,并将其与聚氯乙烯(PVC),高密度聚乙烯(HDPE)和低密度聚乙烯进行比较聚乙烯(LDPE)。设计/方法/方法-使用手糊法制备粉煤灰基聚合物基复合材料(FA-PMC)。加工包含100 g重量的粉煤灰颗粒,100 g的砖粉尘颗粒和50 g的碎玻璃纤维颗粒的复合材料。测量了复合材料的冲击强度,抗压强度,拉伸强度和挠曲强度,并将其与PVC,HDPE和LDPE进行了比较。 FA-PMC的冲击强度高于PVC,HDPE和LDPE。使用ANSYS验证了管道,齿轮和轴流叶片的结构分析。对管道的Barlou条件,齿轮的Lewis-Buckingham方法以及轴流叶片的基于案例的分析进行了验证。发现-由粉煤灰基复合材料制成的管道,齿轮和轴流叶片与PVC,HDPE和LDPE相比,具有更高的耐热性(即机械操作具有更好的温度独立性),更高的冲击强度和更长的使用寿命。此外,用于制造复合材料的原材料的生态友好特性使其具有新的吸引力。原创性/价值-尚未尝试对粉煤灰基绿色复合材料的冲击强度,抗压强度,拉伸强度和弯曲强度进行实验研究。

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