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Physico-mechanical, thermal and activation energy studies of Jute-Mat/ polyvinylchloride sandwich composites

机译:黄麻垫/聚氯乙烯夹芯复合材料的物理力学,热能和活化能研究

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Polyvinylchloride sheets (PVCS) as well as sandwiched composites of untreated jute-mat (JM)/PVC (UJPC) and organic acid treated JM/PVC (TJPC) were prepared with various JM contents by compression molding method at 160oC. Mechanical, chemical textural, surface morphological, thermal and water intake (WI) properties of these samples were measured using a universal testing machine, a Fourier transform infrared (FTIR) spectrometer, a scanning electron microscope, a thermal analyzer and the gravimetric method, respectively. Young modulus (Y) and tangent modulus (G) of TJPC are found to increase from UJPC. FTIR spectra clearly exhibited distinct absorption peaks of UJPC and TJPC, indicating a modified texture of treated JM. The observed WI value was lower in TJPC than UJPC. Fiber-tearing of fractured surface micrographs observed for TJPC and fiber pull-out for UJPC suggested a good adhesion between JM and PVC in the former one. Most importantly, the activation energy (Ea) analysis by Ozawa’ method gives its value of 164 KJ/mol for TJPC and 135 KJ/mol for UJPC.Journal of Bangladesh Academy of Sciences, Vol. 39, No. 1, 13-23, 2015
机译:聚氯乙烯片材(PVCS)以及未经处理的黄麻毡(JM)/ PVC(UJPC)和有机酸处理过的JM / PVC(TJPC)的三明治复合材料是在160oC下通过压缩成型方法制备的。使用通用测试仪,傅立叶变换红外(FTIR)光谱仪,扫描电子显微镜,热分析仪和重量分析法分别测量了这些样品的机械,化学结构,表面形态,热和吸水(WI)性能。发现TJPC的杨氏模量(Y)和切线模量(G)比UJPC增加。 FTIR光谱清楚地显示了UJPC和TJPC的不同吸收峰,表明处理过的JM的质地有所改变。在TJPC中观察到的WI值低于UJPC。对于TJPC观察到的断裂表面显微照片的纤维撕裂和对于UJPC观察到的纤维拉出表明JM和PVC在前一幅中具有良好的粘合性。最重要的是,通过Ozawa方法进行的活化能(Ea)分析得出,TJPC的活化能为164 KJ / mol,UJPC的活化能为135 KJ / mol。 39,No.1,13-23,2015年

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