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Influence of Modified Natural Rubber and Structure of Carbon Black on Properties of Natural Rubber Compounds

机译:改性天然橡胶和炭黑结构对天然胶料性能的影响

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Carbon black-filled natural rubber composites were prepared using various types of natural rubber: unmodified natural rubber, epoxidized natural rubber with two levels of epoxy groups at 25 and 50 mol % [epoxidized natural rubber (ENR)-25 and ENR-50], and maleated natural rubber. Two types of carbon black (HAF and ECF) with different structure and surface area were used. The functional groups present in natural rubber and carbon black were characterized by FTIR and ~1H-NMR. Furthermore, cure characteristics, mechanical, morphological, and electrical properties of composites and gum rubber compounds were investigated. It was found that the presence of polar functional groups in rubber molecules and the different structures of carbon black significantly affected the cure characteristics and mechanical properties. This is attributed to physical and chemical interactions between carbon black surfaces and rubber molecules. It was also found that natural rubber filled with ECF showed the highest Young's modulus and hardness, which is due to the high-surface area and structure of the ECF causing an increase in the degree of entanglement between rubber chains and carbon black particles. Frequency dependency of the dielectric constant, loss tangent, and AC conductivity was also investigated. An increase in dielectric constant, loss tangent, and AC conductivity was observed in the ENR/ECF composites. High-carbon black loading level caused network formation of these conductive particles, increasing the AC conductivity of the composites.
机译:使用各种类型的天然橡胶制备炭黑填充的天然橡胶复合材料:未改性的天然橡胶,在25和50 mol%时具有两个环氧基的环氧化的天然橡胶[环氧化的天然橡胶(ENR)-25和ENR-50],和马来酸天然橡胶。使用结构和表面积不同的两种类型的炭黑(HAF和ECF)。天然橡胶和炭黑中存在的官能团通过FTIR和〜1H-NMR表征。此外,还研究了复合材料和口香糖胶料的硫化特性,机械,形态和电学性能。发现橡胶分子中极性官能团的存在以及炭黑的不同结构显着影响了固化特性和机械性能。这归因于炭黑表面与橡胶分子之间的物理和化学相互作用。还发现填充ECF的天然橡胶显示出最高的杨氏模量和硬度,这是由于ECF的高表面积和结构导致橡胶链与炭黑颗粒之间的缠结度增加。还研究了介电常数,损耗角正切和交流电导率的频率依赖性。在ENR / ECF复合材料中观察到介电常数,损耗角正切和AC电导率增加。高炭黑负载水平导致这些导电颗粒的网络形成,从而增加了复合材料的交流电导率。

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