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首页> 外文期刊>Rubber Chemistry and Technology >STABLE FREE RADICAL-ASSISTED MECHANICAL DEVULCANIZATION OF CARBON BLACK-FILLED NATURAL RUBBER VULCANIZATES
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STABLE FREE RADICAL-ASSISTED MECHANICAL DEVULCANIZATION OF CARBON BLACK-FILLED NATURAL RUBBER VULCANIZATES

机译:稳定的自由基辅助机械透过炭黑填充天然橡胶硫化物

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The issue of recombining of the radicals formed from cross-link scission and the consequent reformation of once-cleaved cross-links during mechanical devulcanization of carbon black-filled NR vulcanizates was investigated in a two-roll mill by the addition of the stable free radical 4-hydroxy-TEMPO (4HT), formerly 4-hydroxy-2, 2, 6, 6-tetramethylpiperidine-N-oxyl free radical. The effect of concentration of 4HT (0-6 pounds per hundred of rubber [phr]) and the effect of cure system, that is, conventional, semi-efficient (EV), and EV, used for vulcanization of the original sample on the efficiency of devulcanization were determined from the residual cross-link density of the gel part of the devulcanized rubber and the percent devulcanization, and further from revulcanizate properties. Chemical probe analysis of the devulcanized sample disclosed that (i) mechanical shearing predominantly breaks the majority cross-link type that decides the associated percent devulcanization; (ii) shear-induced chain-shortening reactions of polysulfidic cross-links occur at ambient conditions, increasing the absolute value of monosulfidic links irrespective of the significant reduction in total cross-link density due to cross-link scission; (iii) re-cross-linking of once cleaved bonds is being arrested in the presence of 4HT, thereby increasing the percent devulcanization. Both the bond energy of the cross-link type to be cleaved and the recombining capacity of the broken cross-links seem to play a decisive role in percent devulcanization, and the probable mechanism involved is suggested.
机译:通过添加稳定的自由基,在双辊磨机中研究了由交联裂变(Cross-Beateaation)的一次切割的交联在二辊溶解期间重新组合的自由基的问题。通过添加稳定的自由基4-羟基 - 速度(4HT),以前4-羟基-2,2,6,6-四甲基哌啶-N-氧基自由基。 4HT浓度的影响(每百磅橡胶[PHR])和固化系统的效果,即常规,半效率(EV)和EV,用于原始样品的硫化从抗透明橡胶的凝胶部分的残余交联密度和偏升性的百分比,进一步从逆转升压性能确定促进效率。促进样品的化学探针分析公开了(i)机械剪切主要破坏决定相关百分比的偏移百分比的大多数交联型; (ii)在环境条件下发生剪切诱导的聚硫酸交联的链缩式反应,随着交联裂变引起的总交联密度的显着降低,增加了单硫化物环节的绝对值; (iii)重新交联一次在4HT的存在下被阻滞,从而增加偏移百分比。待切割的交联型的粘合能量和破碎的交叉链路的重组能力似乎在百分比下发挥着决定性的作用,并且提出了所涉及的可能机制。

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