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Effect of Mesogenic Organic Salts on Vulcanization and Physical Properties of Natural Rubber Compounds

机译:介晶有机盐对天然橡胶化合物硫化和物理性质的影响

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The effect of mesogenic organic salts as reinforcing fillers for natural rubber has been investigated. The influence of cation size (thallium and sodium) and organic chain length (thallium (I) pentanoate and dodecanoate) on the vulcanization parameters, physical and mechanical characteristics and rheological behavior has also been analyzed. In general, the maximum torque of the vulcanizates increases in the presence of the salts and is clearly manifested in a sensible increase in tensile modulus and strength of the composites. The reinforcing effect of these salts is noticeable in the natural rubber matrix. The thallium (I) salts are more effective reinforcements than the sodium salt, and the length of the organic chain hardly has any influence on the mechanical properties. The composites based on the thallium (I) dodecanoate salt show a very peculiar rheological behavior with a "plateau" in the G' and G" vs temperature graphics which is related with solid phase I, existing between 83.5 °C and 127 °C, characterized as a plastic condis phase. This issue is especially interesting for the fabrication of devices such as sensors to control, for instance, the security (resistance of a material) as a function of temperature.
机译:研究了介晶有机盐作为天然橡胶加固填料的影响。还分析了阳离子尺寸(铊和钠)和有机链长度(铊(I)戊烷和十二烷酸酯)对硫化参数,物理和机械特性和流变行为的影响。通常,硫化酸盐的最大扭矩在盐存在下增加,并且清楚地表现在显着的拉伸模量和复合材料强度的增加。这些盐的增强效果在天然橡胶基质中是显着的。铊(I)盐比钠盐更有效增强,有机链的长度几乎没有对机械性能产生任何影响。该复合材料基于所述铊(I)十二烷酸的盐表现出非常独特的流变学特性与在G”和G”一个“平台”与温度的图形,其与固相我相关,83.5℃,和127之间的现有℃,表征为塑料沟槽阶段。该问题特别有趣的是对诸如传感器的装置制造以控制,例如,作为温度的函数控制的装置。

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