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Synthesis and properties of HDPE-g-MAH fibers

机译:HDPE-g-MAH纤维的合成及性能

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In the present work, maleic anhydride grafted high density polyethylene (HDPE-g-MAH) was synthesized in the way of free radical reaction. The graft polymer was spun into fibers by melting spinning at 260 °C. The chemical structure, thermodynamic properties of HDPE-g-MAH was characterized by Fourier transform infrared (FT-IR), Differential Scanning Calorimeter (DSC) and thermogravimetric analysis (TGA), respectively. The fracture and surface morphologies of HDPE-g-MAH fibers were measured by scanning electron microscopy (SEM). The results showed that maleic anhydride had successfully grafted onto the backbone of HDPE. Grafting ratio was mainly determined by initiator and the proportion of MAH/BPO. The melting temperature became lower after graft process while the crystallization temperature came up. The thermal stability was improved by the graft process, but the effect was not so obvious. The micropores and mastoids could be seen at the similar size in these fibers. The micropores might lead to better energy absorption when these composites were grafted to the backbone.
机译:在目前的工作中,以自由基反应的方式合成了马来酸酐接枝的高密度聚乙烯(HDPE-g-MAH)。通过在260℃下熔融纺丝将接枝聚合物纺成纤维。 HDPE-g-MAH的化学结构,热力学性质分别通过傅里叶变换红外(FT-IR),差示扫描量热仪(DSC)和热重分析(TGA)进行表征。 HDPE-g-MAH纤维的断裂和表面形貌通过扫描电子显微镜(SEM)进行测量。结果表明,马来酸酐已成功接枝到HDPE的骨架上。接枝率主要由引发剂和MAH / BPO的比例决定。接枝过程后熔融温度降低,而结晶温度升高。接枝过程改善了热稳定性,但效果不是很明显。在这些纤维中可以看到相似大小的微孔和乳突。当这些复合材料接枝到主链上时,微孔可能会导致更好的能量吸收。

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