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首页> 外文期刊>Journal of materials in civil engineering >Physical and Antiaging Properties of Rodlike Nano-ZnO-Modified Asphalt
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Physical and Antiaging Properties of Rodlike Nano-ZnO-Modified Asphalt

机译:棒状纳米ZnO-改性沥青的物理和抗衰老特性

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Asphalt aging is the main cause of fatigue failure of asphalt pavement. The performance of rodlike nano-ZnO is better than that of nano-ZnO in all aspects, and rodlike nanomaterials can reduce the agglomeration phenomenon of powder like nanomaterials in asphalt. Therefore, in this paper, rodlike nano-ZnO particles were added to asphalt to improve its aging resistance. Asphalt was modified by adding different amounts of rodlike nano-ZnO particles. The penetration (25°C), softening point, and ductility (5°C) of rodlike nano-ZnO-modified asphalt were tested. The aging of rodlike nano-ZnO-modified asphalt was simulated by thin film oven test (TFOT) and ultraviolet (UV) aging. The dynamic shear rheological (DSR) properties of modified asphalt before and after aging were studied, and the mechanism was explained using UV-visible-infrared absorption test, Fourier transform infrared (FITR) spectroscopy, and scanning electron microscopy. Rodlike nano-ZnO particles can increase the softening point of asphalt and reduce the penetration (25°C), which has a positive effect on the ductility (5°C), but when the content is 3%, the ductility of asphalt will be affected. The complex shear modulus (G*) and phase angle (δ) of the composites can be improved using rodlike nano-ZnO. With the increase of the amount of rodlike nano-ZnO, the performance change rate of modified asphalt before and after aging decreases gradually. When the content of rodlike nano-ZnO is 3%, the modified asphalt has the best U V absorption capacity, does not affect other physical properties, and can significantly improve the drying and hardening of the microsurface after aging. Therefore, rodlike nano-ZnO can significantly improve the UV resistance of asphalt.
机译:沥青老化是沥青路面疲劳失效的主要原因。棒状纳米ZnO的性能优于所有方面的纳米ZnO的性能,棒状纳米材料可以减少沥青中纳米材料的粉末附聚现象。因此,在本文中,将棒状纳米ZnO颗粒加入沥青中以提高其老化抗性。通过添加不同量的棒状纳米ZnO颗粒来改变沥青。测试了抗杆状纳米ZnO-改性沥青的渗透(25℃),软化点和延性(5℃)。通过薄膜烘箱试验(TFOT)和紫外(UV)老化模拟棒状纳米ZnO-改性沥青的老化。研究了老化前后改性沥青的动态剪切流变学(DSR)性质,并使用UV可见红外吸收试验,傅里叶变换红外(FITR)光谱和扫描电子显微镜来解释该机制。棒状纳米ZnO颗粒可以增加沥青的软化点,减少渗透(25℃),对延展性(5℃)具有积极影响,但当含量为3%时,沥青的延展性将是做作的。可以使用棒状纳米ZnO改善复合材料的复合剪切模量(G *)和相角(δ)。随着棒状纳米ZnO的量的增加,老化前后改性沥青的性能变化率逐渐降低。当棒状纳米ZnO的含量为3%时,改性沥青具有最好的U V吸收能力,不影响其他物理性质,并且可以显着提高老化后微型表面的干燥和硬化。因此,棒状纳米ZnO可以显着提高沥青的紫外阻。

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