首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Nano-mechanical imaging reveals heterogeneous cross-link distribution in sulfur-vulcanized butadiene-styrene rubber comprising ZnO particles
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Nano-mechanical imaging reveals heterogeneous cross-link distribution in sulfur-vulcanized butadiene-styrene rubber comprising ZnO particles

机译:纳米机械成像揭示了含ZnO颗粒的硫磺硫化丁二烯-苯乙烯橡胶中的交联分布不均

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摘要

The addition of zinc oxide (ZnO) to sulfur (S-) vulcanized rubbers is known to accelerate the cross-linking kinetics and to increase the heterogeneity of the cross-link density. However, the spatial distribution of cross-links is hardly known and the mechanism of the activity of ZnO is disputed. We therefore investigated S-vulcanized butadiene-styrene rubber comprising ZnO particles. The samples were fractured and then investigated employing the nano-mechanical mapping mode (NM) of scanning force microscopy (SFM), supported by scanning electron microscopy (SEM). We find that rubber around the ZnO particles exhibits a higher Young's modulus in a shell with a width up to about 200 nm. Furthermore, the extension and retraction curves on these shells exhibit a smaller hysteresis than on the rubber further away from the ZnO particles. We attribute the higher Young's modulus and the smaller hysteresis to a higher cross-link density in rubber surrounding the ZnO particles and we discuss a mechanism of the activity of ZnO in rubbers which can explain this. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已知将氧化锌(ZnO)添加到硫(S-)硫化橡胶中可加速交联动力学并增加交联密度的不均匀性。然而,交联的空间分布几乎是未知的,并且ZnO的活性机理还存在争议。因此,我们研究了包含ZnO颗粒的S-硫化丁二烯-苯乙烯橡胶。将样品弄碎,然后使用扫描力显微镜(SFM)的纳米机械映射模式(NM),并由扫描电子显微镜(SEM)支持进行研究。我们发现,ZnO颗粒周围的橡胶在壳中显示出更高的杨氏模量,其宽度高达约200 nm。此外,这些外壳上的伸展和收缩曲线显示出比远离ZnO颗粒的橡胶更小的滞后现象。我们将较高的杨氏模量和较小的滞后归因于围绕ZnO颗粒的橡胶中较高的交联密度,并且我们讨论了ZnO在橡胶中的活性机理可以解释这一点。 (C)2016 Elsevier Ltd.保留所有权利。

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