首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF MOLECULAR WEIGHT AND CONCENTRATION ON GEL-SPUN UHMWPE FIBERS WITH POLYBUTENE AS A NEW SPIN SOLVENT
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EFFECT OF MOLECULAR WEIGHT AND CONCENTRATION ON GEL-SPUN UHMWPE FIBERS WITH POLYBUTENE AS A NEW SPIN SOLVENT

机译:分子量和浓度对以聚丁烯为新型纺丝溶剂的凝胶纺丝超高分子量聚乙烯纤维的影响

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Ultrahigh molecular weight polyethylene (UHMWPE) fibers have been investigated for years to improve performance with gel spinning process for wide applications in industry. Various spin solvents have been attempted including paraffin oil, decahydronaphthalene (decalin), kerosene etc. However, more work still needs to be done because of environmental issues or long extraction process of the aforementioned solvents. Recently, polybutene was found to be an effective spin solvent for UHMWPE fibers, which is environmentally friendly and widely available on the market. Besides producing high strength fibers, compared to paraffin oil, polybutene can form a gel with UHMWPE showing stronger phase separation behavior at room temperature. Because of this property, more extraction solvents can be saved. It was also demonstrated with experiments that the extraction efficiency is higher than that of the gel fiber formed with paraffin oil. Thus, polybutene has high potential to be used in large-scale production of UHMWPE fibers, which deserves further study. In this work, polybutene with different molecular weight was used to form spin dopes with UHMWPE. The dope concentration for each type of polybutene was also varied to check the effect of molecular weight and dope concentration on fiber properties. Viscoelastic properties of the spin dopes were obtained with parallel plate rheometry while thermodynamic properties of the dopes were characterized with differential scanning calorimetry (DSC) and thermal gravitational analysis (TGA). With optimized processing conditions, high strength fibers were collected and the crystalline structure was examined with wide angel X-ray diffraction (WAXD). DSC and TGA data also provided support for the effect of molecular weight and concentration of polybutene. It can be found that stronger fibers are obtained with lower concentration spin dopes. The viscosity of the dopes and corresponding spinning conditions are significantly affected by molecular weight of polybutene. Extraction efficiency is affected by both molecular weight and dope concentration. To obtain cost-effective superstrong UHMWPE fibers, an optimized design is needed based on the molecular weight of polybutene and the spin dope concentration.
机译:已经对超高分子量聚乙烯(UHMWPE)纤维进行了多年研究,以提高凝胶纺丝工艺的性能,从而在工业上得到广泛应用。已经尝试了各种旋转溶剂,包括石蜡油,十氢化萘(十氢化萘),煤油等。然而,由于环境问题或上述溶剂的提取过程长,仍然需要做更多的工作。最近,发现聚丁烯是UHMWPE纤维的有效纺丝溶剂,它对环境无害,并在市场上广泛使用。与石蜡油相比,除了生产高强度纤维外,聚丁烯还可以与UHMWPE形成凝胶,在室温下表现出更强的相分离行为。由于此特性,可以节省更多的萃取溶剂。实验还证明,萃取效率高于石蜡油形成的凝胶纤维。因此,聚丁烯在超高分子量聚乙烯纤维的大规模生产中具有很高的潜力,值得进一步研究。在这项工作中,使用具有不同分子量的聚丁烯与UHMWPE形成纺丝原液。还改变了每种类型的聚丁烯的浓液浓度,以检查分子量和浓液浓度对纤维性能的影响。通过平行板流变法获得了纺丝原液的粘弹性,同时通过差示扫描量热法(DSC)和热引力分析(TGA)表征了原液的热力学性质。在优化的加工条件下,收集了高强度纤维,并通过宽天使X射线衍射(WAXD)检查了晶体结构。 DSC和TGA数据也为分子量和聚丁烯浓度的影响提供了支持。可以发现,具有较低浓度的纺丝原液可获得更强的纤维。浓液的粘度和相应的纺丝条件受到聚丁烯分子量的显着影响。提取效率受分子量和浓液浓度的影响。为了获得具有成本效益的超强UHMWPE纤维,需要基于聚丁烯的分子量和纺丝原液浓度的优化设计。

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