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About thermo-oxidative ageing at moderate temperature of conventionally vulcanized natural rubber

机译:关于常规硫化天然橡胶在中等温度下的热氧化老化

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This article is dedicated to the understanding of the mechanisms involved in the evolution of the structure of a "conventionally" vulcanized rubber during thermo-oxidative (TO) aging. Based on swelling measurements, WAXS and DSC, a scenario of these mechanisms is proposed. Our results show that the crosslinking reactions are far from being complete at the end of the vulcanization process. During TO aging carried out at a moderate temperature 77 degrees C (350 K), the creation of long bridges first takes place via the consumption of residual sulfur; this mechanism is mainly responsible of the increase in the density of elastically active chains. The presence of residual antioxidants inhibits in the early stages of aging the chemical reactions involving oxygen. For longer aging time (here 7 days), these reactions can then occur and create "unidentified" bridges whose formation may also involves sulfur grafted onto the polymer chains. Finally, all these cross-linking reactions seem to enhance the heterogeneity of the spatial distribution of the crosslinks - already existing in the initial material - and to create highly crosslinked domains. (C) 2018 Published by Elsevier Ltd.
机译:本文致力于了解热氧化(TO)老化过程中“常规”硫化橡胶结构演变的机理。基于膨胀测量,WAXS和DSC,提出了这些机制的方案。我们的结果表明,在硫化过程结束时,交联反应远未完成。在温度为77摄氏度(350 K)的中温下进行的TO老化过程中,首先通过消耗残余硫来形成长桥。该机制主要负责增加弹性活性链的密度。残留抗氧化剂的存在会在老化的早期阶段抑制涉及氧的化学反应。对于较长的老化时间(此处为7天),然后会发生这些反应并形成“身份不明”的桥,桥的形成还可能涉及硫接枝到聚合物链上。最后,所有这些交联反应似乎都增强了交联空间分布的异质性(已存在于初始材料中)并创建了高度交联的结构域。 (C)2018由Elsevier Ltd.发布

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