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Best Practice for the Devulcanization of Sulfur-cured SBR Rubber

机译:硫化sBR橡胶脱硫的最佳实践

摘要

In the present paper, special attention will be devoted to thermo-chemical devulcanization of sulfur-cured styrene butadiene rubber (SBR) using diphenyldisulfide (DPDS) as devulcanization aid. SBR is the main component in whole passenger car tire rubber and, at the same time, the most critical one in terms of devulcanization. This study is the first step to realize an effective devulcanization process for whole passenger car tire rubber.Diphenyldisulfide was found to be an effective agent for reclaiming of mainly natural rubber based sulfur-cured materials: DPDS acts as a radical scavenger and helps in preventing broken rubber chains to recombine. In this study, the effect of DPDS on the ratio of crosslink to polymer scission is investigated.The most important process parameter is the temperature, at which the polymer network is broken down. A reduction of the crosslink density of the devulcanizate is observed with increasing devulcanization temperature from 180C to 220C. However, above a temperature threshold of 220C, the crosslink density rises again. This is due to intra-molecular rearrangements of chain fragments of butadiene moieties from uncontrolled degradation and oxidation effects.Oxidation stabilizers are added during the devulcanization process in order to reduce the degradation and interrupt the oxidation cycles. Above a temperature threshold of 220C, a further decrease in crosslink density without creating more sol fraction can be achieved this way. The combination of DPDS and oxidation stabilizers significantly enhances the devulcanization efficiency of SBR versus the one obtained when DPDS is used alone.The results are interpreted in terms of mechanisms of main chain and sulfur bridge scissions and the degradative cycles triggered by the presence of oxygen
机译:在本文中,将特别关注使用二苯二硫(DPDS)作为脱硫助剂的硫磺硫化丁苯橡胶(SBR)的热化学脱硫。 SBR是整个乘用车轮胎橡胶的主要成分,同时,在脱硫方面也是最关键的一种。这项研究是实现整个乘用车轮胎橡胶的有效脱硫工艺的第一步。二苯二硫是有效回收主要以天然橡胶为基础的硫磺硫化材料的剂:DPDS可作为自由基清除剂并有助于防止断裂橡胶链进行重组。在这项研究中,研究了DPDS对交联与聚合物断裂的比率的影响。最重要的工艺参数是聚合物网络破裂的温度。随着脱硫温度从180°C升高到220°C,可以观察到脱硫硅酸盐的交联密度降低。但是,高于220°C的温度阈值时,交联密度再次上升。这是由于不受控制的降解和氧化作用导致的丁二烯部分链段的分子内重排。在脱硫过程中添加了氧化稳定剂,以减少降解并中断氧化循环。在220°C以上的温度阈值下,可以通过这种方式实现交联密度的进一步降低而不产生更多的溶胶分数。与单独使用DPDS时相比,DPDS与氧化稳定剂的结合显着提高了SBR的脱硫效率。结果可以通过主链和硫桥的断裂机理以及氧气的存在引发的降解循环来解释。

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