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Long-term Aging Properties of Bitumen With Expanded Vermiculite and Different Inorganic Nanoparticles

机译:膨胀Ver石和不同无机纳米粒子对沥青的长期老化性能

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摘要

The authors evaluate a novel bitumen modification by using the expanded vermiculite (EVMt) and three inorganic nanoparticles. The effect of EVMt and inorganic nanoparticles on physical and long-term aging properties of bitumen was investigated. The results show that the physical properties of bitumen are slightly influenced by with the introduction of nanomaterials. As a result of pressurized aging vessel, ultraviolet (UV) radiation aging, the viscosity aging index of bitumen is decreased obviously by adding the nanomaterials. It indicates that nanomaterials can improve the thermal and UV aging resistance of bitumen simultaneously. Furthermore, this improvement depends on the inorganic nanoparticle types. Compared with nano-silica and nano-titanium dioxide modified bitumens, bitumen with 1% EVMt and 3% nano-zinc oxide shows the lower viscosity aging index values, indicating its good long-term aging resistance.
机译:作者通过使用膨胀的ver石(EVMt)和三种无机纳米粒子来评估一种新型的沥青改性方法。研究了EVMt和无机纳米粒子对沥青物理和长期老化性能的影响。结果表明,纳米材料的引入对沥青的物理性能有轻微的影响。加压老化容器,紫外线辐射老化的结果是,通过添加纳米材料,沥青的粘度老化指数明显降低。这表明纳米材料可以同时提高沥青的耐热性和抗紫外线老化性。此外,这种改进取决于无机纳米颗粒的类型。与纳米二氧化硅和纳米二氧化钛改性的沥青相比,含1%EVMt和3%纳米氧化锌的沥青显示出较低的粘度老化指数值,表明其具有良好的长期耐老化性。

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