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Thermal, Rheological, Mechanical and Morphological Behavior of High Density Polyethylene and Carboxymethyl Cellulose Blend

机译:高密度聚乙烯和羧甲基纤维素共混物的热,流变,机械和形态学行为

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摘要

In this study water soluble sodium carboxymethyl cellulose (CMC) was blended with high density polyethylene (HDPE) by peroxide-initiated melt compounding technique. The compatibility of the blended polymers were carried out by silane crosslinking agent. A series of blends were prepared by varying the CMC contents up to a maximum of 50 phr. The physical properties of non-crosslinked and crosslinked blends were investigated in detail. FTIR analysis of crosslinked blend confirmed the presence of Si-O-Si and Si-O-C absorption peaks at 1050 and 1159 cm(-1). Thermal stability of crosslinked blends improved as compared to its non-crosslinked congener. Rheological study of crosslinked blends illustrated high complex viscosity and dynamic shear storage modulus. The tensile strength of virgin polyethylene was 8.1 MPa whereas the maximum tensile strength of 19.6 MPa was observed in crosslinked blend. Similarly lower deformation was observed in crosslinked blends under static load. Scanning electron microscopy of crosslinked formulations also showed strong adhesion between the polymers interface. The compatibility of HDPE and CMC is attributed to both free radical and condensation reactions.
机译:在这项研究中,通过过氧化物引发的熔融混合技术将水溶性羧甲基纤维素钠(CMC)与高密度聚乙烯(HDPE)混合。共混聚合物的相容性通过硅烷交联剂进行。通过改变CMC含量最大为50 phr,制备了一系列共混物。详细研究了非交联和交联共混物的物理性能。交联共混物的FTIR分析证实了在1050和1159 cm(-1)处存在Si-O-Si和Si-O-C吸收峰。与其非交联同类物相比,交联共混物的热稳定性得到改善。交联共混物的流变学研究表明高复数粘度和动态剪切储能模量。原始聚乙烯的拉伸强度为8.1 MPa,而在交联共混物中观察到的最大拉伸强度为19.6 MPa。类似地,在静载荷下在交联共混物中观察到较低的变形。交联制剂的扫描电子显微镜也显示出聚合物界面之间的强粘合性。 HDPE和CMC的相容性归因于自由基和缩合反应。

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