Marzocca Angel J, Mansilla Marcela A, Beccar Varela María Pía, Mariani María Cristina
Laboratorio de Polímeros y Materiales Compuestos, Departamento de Física, Universidad de Buenos Aires, Ciudad Universitaria, Buenos Aires C1428EHA, Argentina.
Dirección Técnica de Materiales Avanzados, INTI, CONICET, Av. General Paz 5445, San Martín B1650WAB, Argentina.
Polymers (Basel). 2025 May 11;17(10):1312. doi: 10.3390/polym17101312.
The motivation of this research was to analyze the dynamic properties, mainly the loss modulus, of vulcanized immiscible blends of natural rubber (NR) and styrene-butadiene rubber (SBR) in the glass transition zone, where the SBR phase is in a glassy state and the NR phase is in a rubbery state. The blends were cured at 433 and 443 K and studied around the glass transition using a dynamic mechanical analyzer. The dependence of the loss modulus on temperature was described by considering the phase separation, and the frequency dependence was also included to provide a deeper insight into the dynamic properties. This was achieved by integrating the mechanical model proposed by Zener, which considers a single relaxation time related to temperature using both the Arrhenius and Vogel-Fulcher-Tammann (VFT) relations. The best correlation with the data was obtained using the Arrhenius relationship. The activation energy of the NR phase increases with the NR content in the blend, while in the SBR phase, it varies slightly. The trends obtained are related to curative migration from the SBR to the NR phase, increasing the crosslink density at NR domain boundaries. These insights are valuable for optimizing the performance of these elastomeric blends in practical applications.
本研究的目的是分析天然橡胶(NR)和丁苯橡胶(SBR)的硫化不相容共混物在玻璃化转变区的动态性能,主要是损耗模量,其中SBR相处于玻璃态,NR相处于橡胶态。共混物在433 K和443 K下硫化,并使用动态力学分析仪在玻璃化转变附近进行研究。通过考虑相分离来描述损耗模量对温度的依赖性,还包括频率依赖性,以更深入地了解动态性能。这是通过整合齐纳提出的力学模型实现的,该模型使用阿伦尼乌斯和沃格尔-富尔彻-塔曼(VFT)关系考虑与温度相关的单一弛豫时间。使用阿伦尼乌斯关系获得了与数据的最佳相关性。NR相的活化能随共混物中NR含量的增加而增加,而在SBR相中,其变化较小。所获得的趋势与硫化剂从SBR向NR相的迁移有关,增加了NR域边界处的交联密度。这些见解对于优化这些弹性体共混物在实际应用中的性能具有重要价值。