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首页> 外文期刊>The Journal of the Textile Institute >Stress-strain behavior of polyamide 6 staple fibers of punch-needled press felts under simulated wet-pressing conditions
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Stress-strain behavior of polyamide 6 staple fibers of punch-needled press felts under simulated wet-pressing conditions

机译:针刺压榨毛毡中聚酰胺6短纤维在模拟湿压条件下的应力应变行为

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摘要

This study evaluates the specific stress (tenacity) and strain (elongation) of polyamide 6 staple fibers, which were virgin, punch-needled on the press felt, and worn on the press felt under simulated wet-pressing conditions. The staple fibers were distinguished by molecular weights. The fiber deformation and defects were microscopically characterized after the felt preparation and aging. We discovered that the tensile breaking force and elongation of the polyamide 6 staple fibers decreased markedly during the felt preparation and aging. The mechanical reduction of staple fibers reflected their tenacity, work, and modulus values. Surprisingly, the linear density of staple fibers remained unchanged - although fibers strongly deformed and lost their mechanical properties after the felt aging. The results indicate that an increase in molecular weight improves the mechanical durability of staple fibers, the preparation of the press felt (punch-needling) decreases the tenacity and elongation of staple fibers, and humidity provokes their degradation.
机译:这项研究评估了聚酰胺6人造短纤维的原始应力(强度)和应变(伸长率),这些纤维在模拟湿压条件下是纯净的,在压榨毛毯上冲刺并在压榨毛毯上磨损。短纤维通过分子量区分。在毛毡制备和老化后,用显微镜表征纤维的变形和缺陷。我们发现,在毡的制备和老化过程中,聚酰胺6短纤维的拉伸断裂力和伸长率明显降低。短纤维的机械还原反映了它们的强度,功和模量值。出人意料的是,短纤维的线密度保持不变-尽管纤维在毡老化后会严重变形并失去机械性能。结果表明,分子量的增加改善了短纤维的机械耐久性,压榨毡的制备(冲刺针刺)降低了短纤维的韧性和伸长率,并且湿度引起其降解。

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