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首页> 外文期刊>Polymer Degradation and Stability >Influence of solvent transport on physico-chemical properties of crosslinked butyl rubber filled with TiC ceramic
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Influence of solvent transport on physico-chemical properties of crosslinked butyl rubber filled with TiC ceramic

机译:溶剂输运对填充TiC陶瓷的交联丁基橡胶理化性能的影响

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Understanding the vulcanization and swelling behavior of polymers is potentially important for composite materials, since vul- canization and swelling may significantly influence the electrical and mechanical properties. This work investigates the effect of TiC content on vulcanization reaction and on network structures like the characteristic time constant of vulcanization, vulcanization factor, volume fraction of rubber, extent of filler and interparticle distance between conductive particles. The crosslinking density of the rubber was calculated by the Flory Rehner equation. The affine and phantom models for physical crosslinks were used to predict the nature of crosslinks. The experimental results were compared with the theoretical predictions. Sorption and diffusion of kerosene were investigated through butyl rubber (IIR) composites reinforced with different concentration of TiC ceramic. Effect of TiC concentration and temperature on solvent uptake and mechanism of diffusion were studied in detail and the experimental dif fusion data compared with theoretical predictions. Concentration profiles of the kerosene were calculated to predict the applic- ability of these composites under extreme service conditions. The apparent activation energy of diffusion and some useful thermodynamic parameters like enthalpy, entropy, Gibbs free energy and heat of sorption were calculated. An abrupt increase in electrical resistivity appears after a characteristic time of swelling. Mechanical properties increase with the addition of TiC rein- forcing filler, and decrease after swelling with kerosene (compared with that before swelling with kerosene). In conclusion, it was found that TiC improves the network structure and slows the diffusion of kerosene into the polymer by acting as a barrier.
机译:了解聚合物的硫化和溶胀行为对于复合材料可能具有重要意义,因为硫化和溶胀可能会严重影响电气和机械性能。这项工作研究了TiC含量对硫化反应和网络结构的影响,例如硫化的特征时间常数,硫化因子,橡胶的体积分数,填料的程度以及导电粒子之间的粒子间距离。橡胶的交联密度通过Flory Rehner方程计算。物理交联的仿射模型和幻影模型用于预测交联的性质。将实验结果与理论预测值进行了比较。通过用不同浓度的TiC陶瓷增强的丁基橡胶(IIR)复合材料研究了煤油的吸附和扩散。详细研究了TiC浓度和温度对溶剂吸收和扩散机理的影响,并将实验的dif融合数据与理论预测值进行了比较。计算了煤油的浓度曲线,以预测这些复合材料在极端使用条件下的适用性。计算了扩散的表观活化能和一些有用的热力学参数,如焓,熵,吉布斯自由能和吸附热。在溶胀的特征时间之后,电阻率突然增加。力学性能随TiC增强填料的添加而增加,而在煤油膨胀后(与在煤油膨胀前相比)降低。总之,发现TiC通过充当屏障改善了网络结构并减慢了煤油向聚合物中的扩散。

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