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Hierarchical constraint distribution of ultra-high molecular weight polyethylene fibers with different preparation methods

机译:不同制备方法对超高分子量聚乙烯纤维的分层约束分布

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摘要

The hierarchical constraint characteristics of ultra-high molecular weight polyethylene (UHMW-PE) fibers with different structures were evaluated by in situ wide-angle X-ray diffraction (WAXD) measurement during heating. Two UHMW-PE fibers were used in this study, an original gel-spun fiber and a processed fiber that was tensile-drawn from the original fiber above the static equilibrium melting temperature of PE. A difference in fiber processing induced change in constraint distribution attributed to morphological heterogeneity. The original gel-spun fiber, which had a heterogeneous structure, induced the constraint distribution because of the obvious existence of skin and core. In contrast, the tensile-drawn fiber, which had a homogeneous structure formed by the fusion adhesion between twisted single yarn surfaces, depressed the constraint distribution. These results demonstrate that a difference in fiber processing induces change in hierarchical characteristics with different structural dimensions.
机译:通过加热过程中的原位广角X射线衍射(WAXD)测量来评估具有不同结构的超高分子量聚乙烯(UHMW-PE)纤维的分层约束特性。在这项研究中使用了两种UHMW-PE纤维,一种是原始的凝胶纺丝纤维,另一种是在PE的静态平衡熔融温度以上从原始纤维拉伸拉伸而来的加工纤维。纤维加工过程中的差异会导致归因于形态异质性的约束分布变化。原始的具有不同结构的凝胶纺丝纤维由于表皮和核心的明显存在而诱导了约束分布。相比之下,拉伸的纤维具有通过加捻的单纱表面之间的熔融粘合而形成的均质结构,从而抑制了约束分布。这些结果表明,纤维加工的差异会导致具有不同结构尺寸的分层特性发生变化。

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