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Multiple-stagedrawn ultrahigh molecular weight polyethylene/activated carbon fibers prepared with the assistance of supercriticalCO(2)

机译:用超秘密核心(2)的辅助制备多标尺的超高分子量聚乙烯/活性炭纤维

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摘要

Remarkable improved achievable draw ratios (DRs) and tensile strengths (sigma(t)s) of multiple-stage drawn ultrahigh molecular weight polyethylene (UHMWPE)/functionalized activated carbon (FAC) fibers prepared with the aid of supercritical carbon dioxide (scCO(2)) were first reported. The achievable DRs and sigma(t)s of single- and multiple-stage drawn scCO(2)UHMWPE/FAC fibers were considerably higher than those achievable DRs and sigma(t)s found for the corresponding single- and multiple-stage drawn UHMWPE/FAC fibers spun from gel solutions gelatinized in nitrogen atmosphere. It is worth noting that the largest achievable DR obtained for the most proper five-stage drawn scCO(2)UHMWPE/FAC fiber approached 688, which is approximately 40% larger than the achievable DR found for the single-stage drawn scCO(2)F(100)FAC(0.1)(13.5)fiber. The sigma(t)found for the most proper five-stage drawn scCO(2)UHMWPE/FAC fiber reached an extraordinarily high value of 13.4 GPa, which is similar to 4.6, similar to 1.6 and, similar to 1.4 times of those sigma(t)s found for the optimal single-stage drawn UHMWPE, UHMWPE/FAC and scCO(2)UHMWPE/FAC fibers, respectively. Considerably smaller lamellar thicknesses and dynamic transition temperatures were detected for scCO(2)UHMWPE and scCO(2)UHMWPE/FAC as-prepared fibers compared with the equivalent UHMWPE and UHMWPE/FAC as-prepared fibers, respectively. Specific surface area, morphological, and Fourier transform infrared analyses of the FAC particles and orientation factor analyses of the single- and multiple-stage drawn UHMWPE, UHMWPE/FAC, scCO(2)UHMWPE, and scCO(2)UHMWPE/FAC fibers were performed. Possible reasons accounting for the remarkable improved achievable DRs and sigma(t)s found for the proper single- or multiple-stage drawn scCO(2)UHMWPE/FAC fibers are proposed.
机译:首次报道了在超临界二氧化碳(scCO(2))辅助下制备的多级拉伸超高分子量聚乙烯(UHMWPE)/功能化活性炭(FAC)纤维的可实现拉伸比(DRs)和拉伸强度(sigma(t)s)的显著改善。单级和多级拉伸scCO(2)UHMWPE/FAC纤维的可实现DRs和sigma(t)s远高于从氮气气氛中糊化的凝胶溶液中纺制的相应单级和多级拉伸UHMWPE/FAC纤维的可实现DRs和sigma(t)s。值得注意的是,对于最合适的五段拉伸scCO(2)UHMWPE/FAC纤维,可实现的最大DR接近688,比单段拉伸scCO(2)F(100)FAC(0.1)(13.5)纤维可实现的DR大约大40%。最合适的五段拉伸scCO(2)UHMWPE/FAC纤维的西格玛(t)达到了非常高的值13.4 GPa,这与4.6相似,与1.6相似,与最佳单段拉伸UHMWPE、UHMWPE/FAC和scCO(2)UHMWPE/FAC纤维的西格玛(t)的1.4倍相似。与同等UHMWPE和UHMWPE/FAC纤维相比,scCO(2)UHMWPE和scCO(2)UHMWPE/FAC纤维的层状厚度和动态转变温度分别小得多。对FAC颗粒进行了比表面积、形态和傅里叶变换红外分析,并对单级和多级拉伸UHMWPE、UHMWPE/FAC、scCO(2)UHMWPE和scCO(2)UHMWPE/FAC纤维进行了取向因子分析。提出了单级或多级拉伸scCO(2)UHMWPE/FAC纤维可实现的DRs和sigma(t)s显著改善的可能原因。

著录项

  • 来源
    《Polymer Composites》 |2020年第12期|共12页
  • 作者单位

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Minis Hubei Key Lab Polymer Mat Fac Mat Sci &

    Engn Wuhan Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Minis Hubei Key Lab Polymer Mat Fac Mat Sci &

    Engn Wuhan Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Minis Hubei Key Lab Polymer Mat Fac Mat Sci &

    Engn Wuhan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

    activated carbon; multiple-stage drawing; supercritical carbon dioxide; UHMWPE; ultimate tensile tenacity;

    机译:活性炭;多级绘图;超临界二氧化碳;UHMWPE;最终拉伸韧性;

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