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首页> 外文期刊>Rubber Chemistry and Technology >MECHANISTIC STUDIES INTO THE NEW CONCEPT OF CO-AGENTS FOR SCORCH DELAY AND PROPERTY IMPROVEMENT IN PEROXIDE VULCANIZATION
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MECHANISTIC STUDIES INTO THE NEW CONCEPT OF CO-AGENTS FOR SCORCH DELAY AND PROPERTY IMPROVEMENT IN PEROXIDE VULCANIZATION

机译:对过氧化物硫化中焦炭延迟和性能改善的助剂新概念的机理研究

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In previous studies a new concept of a peroxide cure system for rubber has been reported where scorch safety and mechanical properties are improved at the same time. [ This new system consists of the use of a combination of a peroxide, a bismaleimide type co-agent and a sulfur spender for the cure of saturated or low-unsaturated rubber. Several mechanical properties have been studied and were found to be improved by using this curing system, such as tensile strength, moduli, compression set and aging. The present paper deals with the understanding of the reported phenomena. Mechanistic studies have been performed with the aim of comprehending the chemistry that takes place during peroxide vulcanization in the presence of a maleimide co-agent and a sulfur spender. From Nuclear Magnetic Resonance and Infrared analysis the loss of the maleimide unsaturation from the co-agent was observed, due to reaction with the sulfur spender. This reaction already takes place at room temperature, thus previous to peroxide decomposition. Further, Model Compound Vulcanization studies were performed using 3-methylpentane as representative model for the saturated rubber backbone. The reaction products of the peroxide vulcanization of 3-methylpentane in the presence of a maleimide type co-agent and a sulfur donor have been analyzed by means of Liquid Chromatography-Mass Spectrometry. Several reaction products have been identified and a reaction mechanism that explains the scorch delay and the property improvement by the new cure system is proposed.
机译:在先前的研究中,已经报道了用于橡胶的过氧化物硫化系统的新概念,其中同时改善了焦烧安全性和机械性能。 [该新系统包括使用过氧化物,双马来酰亚胺型助剂和消硫剂的组合来硫化饱和或低不饱和橡胶。已经研究了一些机械性能,并发现通过使用该固化系统可以改善一些机械性能,例如拉伸强度,模量,压缩永久变形和老化。本文讨论了对所报道现象的理解。为了理解在马来酰亚胺助剂和硫磺消耗剂存在下的过氧化物硫化过程中发生的化学反应,已经进行了机理研究。从核磁共振和红外分析中,观察到由于与硫消耗剂的反应,共助剂中马来酰亚胺不饱和度的损失。该反应已经在室温下进行,因此在过氧化物分解之前。此外,使用3-甲基戊烷作为饱和橡胶骨架的代表性模型进行了模型化合物硫化研究。已经通过液相色谱-质谱法分析了在马来酰亚胺型共助剂和硫供体存在下3-甲基戊烷的过氧化物硫化的反应产物。已经确定了几种反应产物,并提出了一种解释机理,该机理解释了新固化系统的焦烧延迟和性能改善。

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