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Tensile deformation and morphology changes in segmented elastomer films and fibers including mechanical property modeling

机译:分段弹性体薄膜和纤维的拉伸变形和形态变化,包括机械性能造型

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摘要

Segmented polyether soft segment (SS) elastomers with different hard segments (HS) in film and fiber form were studied by birefringence, DSC, and tensile tests. To understand the morphological contributions to property differences, high resolution tapping AFM resolved ribbon-like highly anisotropic hard domain (HD) lamellae in low modulus Pebax (polyamide 12 HS) and polyetherester (PEE), films, while lower HS content high melting poly(urethane urea) (PUU) had much smaller less anisotropic but higher melting HDs, explaining its enhanced thermal and mechanical hysteresis properties. Stress-strain tensile data demonstrate the excellent strength and toughness of PUUs and some spun PEE fibers, and film and fiber birefringence data applied during strain cycling up to very high stresses provided the molecular basis for the varying properties. The parameters from non-Gaussian fits of tensile data provide insight into network properties for these systems exhibiting very high strengths and a large degree of strain hardening. Modeling of PEE and Pebax films also shows the effects of substantial plastic yielding of the HD networks. Tensile data were obtained as a function of strain rate and temperature to help understand the contributions of network restructuring and other factors. For fibers, strain rate data spanning seven decades show and unusual drop in strengths at very high strain rates. Temperature-dependent tensile data also show large differences between PUU materials versus lower melting PEEs.
机译:通过双折射,DSC和拉伸试验研究薄膜和纤维形式中具有不同硬链段(HS)的聚醚软链段(SS)弹性体。要了解对性质差异的形态贡献,高分辨率攻丝AFM在低模量PeBax(聚酰胺12Hs)和聚醚酯(PEE),薄膜中分离带状的高度各向异性硬结构域(HD)薄膜,而低HS含量高熔点(氨基甲酸酯尿素)(PUU)具有更小的各向异性但较高的熔点HDS,解释其增强的热和机械磁滞性能。应力 - 应变拉伸数据证明了Puus和一些纺丝纤维的优异强度和韧性,以及在应变期间施加的薄膜和纤维双折射数据循环到非常高的应力提供了不同性质的分子基础。来自张拉伸数据的非高斯拟合的参数提供了对具有非常高强度和大量应变硬化的系统的网络性质的洞察力。小便和PeBax薄膜的建模还显示了高清网络的实质塑性产量的影响。获得拉伸数据作为应变速率和温度的函数,以帮助了解网络重组和其他因素的贡献。对于纤维,跨越七十年的应变率数据显示出非常高的应变率的强度下降和不寻常。依赖于温度的拉伸数据也显示出脓疱材料与较低熔化的PEE之间的巨大差异。

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