首页> 外文期刊>Journal of Applied Physics >Optical characterization of urethane/urea elastomers undoped and doped with magnetic nanoparticles subjected to a uniaxial strain
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Optical characterization of urethane/urea elastomers undoped and doped with magnetic nanoparticles subjected to a uniaxial strain

机译:未掺杂和掺杂有承受单轴应变的磁性纳米粒子的氨基甲酸酯/脲弹性体的光学表征

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摘要

We report on the optical characterization of urethane/urea elastomers (PU/PBDO), based on polypropylene oxide and polybutadiene diol, pure and doped with ferrofluid. The ratios in wt % of PU and PBDO investigated are 40/60, 50/50, 60/40, and 80/20. The incorporation of nanoparticles in the elastomeric matrices strongly depends upon the ratio of PU/PBDO, which corresponds to different degrees of cross linking. The nanoparticles were also found to act as irnpurities in the elastomeric matrix by reducing the initial induced anisotropy promoted by film casting and preparation. Optical experiments show that the strain-induced optical birefringence is linear with the stress in both pure and doped elastomers.
机译:我们报告了基于聚环氧丙烷和聚丁二烯二醇的纯氨基甲酸酯/尿烷弹性体(PU / PBDO)的光学表征。研究的PU和PBDO的wt%比率是40 / 60、50 / 50、60 / 40和80/20。纳米颗粒在弹性体基质中的掺入强烈取决于PU / PBDO的比例,其对应于不同程度的交联。还发现纳米颗粒通过降低由薄膜流延和制备促进的初始诱导的各向异性而在弹性体基质中充当杂质。光学实验表明,在纯弹性体和掺杂弹性体中,应变引起的光学双折射与应力呈线性关系。

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