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首页> 外文期刊>Iranian polymer journal >Tensile, thermal, flammability and morphological properties of sepiolite filled ethylene propylene diene monomer (EDPM) rubber composites
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Tensile, thermal, flammability and morphological properties of sepiolite filled ethylene propylene diene monomer (EDPM) rubber composites

机译:海泡石填充的乙烯丙烯二烯单体(EDPM)橡胶复合材料的拉伸,热,易燃性和形态学性能

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The effect of sepiolite loading content on the curing characteristics, tensile mechanical, thermal, swelling, flammability and morphological properties of sepiolite-filled ethylene propylene diene monomer (EPDM) composites was investigated. The composites were prepared with sepiolite loadings of 0–70 part per hundred (phr) of rubber using a two-roll mill. The results highlighted the improvement in the tensile properties and cross-link density values peaked at 60 phr of sepiolite loading. The scorch time, curing time, swelling percentage, and linear burning rate of the composites decreased with an increase in sepiolite loading. Thermogravimetric analysis showed an increasing trend with increase in sepiolite loading. The temperatures corresponding to 5, 25 and 50% weight loss ( T ~(5wt%), T ~(25wt%)and T ~(50wt%)) and the percentage of char residue gradually increased with increase in sepiolite loading. The homogenous dispersion of the sepiolite particles in the EPDM matrix and the formation of zigzag structures, especially at 60 phr, were the main reasons of the improvement of mechanical properties which were confirmed by the morphological studies. The formation of a protective layer, which acted as a barrier against heat transfer into the deeper layers, enhanced the flammability resistance of the composites. Notably, the EPDM filled with 60 phr sepiolite exhibited excellent performance in the aspects of mechanical, thermal stability and flammability properties and resistance towards swelling.
机译:研究了海泡石负载量对海泡石填充的乙烯丙烯二烯单体(EPDM)复合材料的固化特性,拉伸力学,热力学,膨胀性,可燃性和形态学性能的影响。使用两辊研磨机,以海泡石负载量为每百(phr)橡胶0-70份的海泡石负载量制备复合材料。结果突出了在海泡石负载量达到60 phr时的拉伸性能和交联密度值达到峰值的改进。随着海泡石负载量的增加,复合材料的焦烧时间,固化时间,溶胀率和线性燃烧速率降低。热重分析显示随着海泡石负载量的增加而增加的趋势。随着海泡石负载量的增加,相应于5、25和50%重量损失的温度(T〜(5wt%),T〜(25wt%)和T〜(50wt%))和炭渣的百分比逐渐增加。海泡石颗粒在EPDM基质中的均匀分散和之字形结构的形成,尤其是在60 phr下,是机械性能改善的主要原因,这已得到形态学的证实。保护层的形成,可以防止热量传递到更深的层中,从而增强了复合材料的耐燃性。值得注意的是,填充有60 phr海泡石的EPDM在机械,热稳定性和可燃性以及抗溶胀性方面表现出优异的性能。

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