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环氧化硅橡胶/甲基硅橡胶增韧PA6/CF复合材料的制备与性能研究
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作者 张伟臻 张琦 +2 位作者 李源 卢咏来 张师军 《中国塑料》 北大核心 2025年第3期7-11,共5页
采用熔融共混法制备环氧化硅橡胶/甲基硅橡胶(ESR-5/PDMS)增韧聚酰胺6/碳纤维复合材料,研究了ESR-5/PDMS复配增韧体系中环氧基团含量对PA6基复合材料力学性能、冲击性能、耐热性能和微观结构的影响。结果表明,当增韧复配体系中ESR-5和P... 采用熔融共混法制备环氧化硅橡胶/甲基硅橡胶(ESR-5/PDMS)增韧聚酰胺6/碳纤维复合材料,研究了ESR-5/PDMS复配增韧体系中环氧基团含量对PA6基复合材料力学性能、冲击性能、耐热性能和微观结构的影响。结果表明,当增韧复配体系中ESR-5和PDMS各为10份时,通过原位接枝反应提高了硅橡胶与PA6的界面作用力,从而提高复合材料的抗冲击和抗损伤能力,23、-20、-60℃的缺口冲击强度相较于PA6/CF复合材料分别提高了73.6%、178.0%、196.8%,在低温环境下表现出优异的抗冲击性能,并且最大程度地降低弹性体的引入使体系力学性能下降的影响;同时改善了复合材料的热稳定性能,ESR-5/PDMS增韧体系为碳纤维增强聚酰胺6复合材料在低温环境下的应用提供了可行性方案。 展开更多
关键词 环氧化硅橡胶 聚酰胺6 碳纤维增强复合材料 增韧改性
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Improving the Abrasion Resistance of "Green" Tyre Compounds
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作者 Teku Zakwan Zaeimoedin Jane Clarke 《Journal of Energy and Power Engineering》 2017年第10期637-642,共6页
Since the introduction of"green tyres" in the early 90's, the use of silica as a reinforcing filler, along with a silane coupling agent, has spread and grown worldwide. The greatest advantage of using silica over c... Since the introduction of"green tyres" in the early 90's, the use of silica as a reinforcing filler, along with a silane coupling agent, has spread and grown worldwide. The greatest advantage of using silica over carbon black as reinforcing filler in a tyre tread compound is that a lower rolling resistance is achieved, while maintaining good wet traction. However, a previous study has shown that the wear resistance of a silica filled ENR (epoxidised natural rubber) compound was not as high as those of conventional OESBR (oil extended styrene butadiene rubber) and NR/BR compounds used in passenger car and truck tyre treads. In this work, with the aim of improving abrasion resistance, the effect of blending BR (butadiene rubber) into a silica filled ENR compound was studied. Blends with 0 to 30 phr BR were prepared in a Polylab Haake internal mixer. The rheological properties of the compounds were measured using a Mooney viscometer and oscillating-disc rheometer. The hardness, tensile strength and DIN abrasion resistance were also measured. The results showed that the ENR/silica compound properties such as tensile strength and hardness were as good as those of the conventional compounds. However, the most important finding was that abrasion resistance increased significantly with BR content, exceeding that of the conventional compound at BR: ENR ratios of greater than 20:80. 展开更多
关键词 ENR BR SILICA abrasion resistance tyre tread.
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