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Investigation of γ-(23-Epoxypropoxy)propyltrimethoxy Silane Surface Modified Layered Double Hydroxides Improving UV Ageing Resistance of Asphalt

机译:γ-(23-环氧丙氧基)丙基三甲氧基硅烷表面改性层状双氢氧化物提高沥青抗紫外线老化性能的研究

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摘要

γ-(2,3-Epoxypropoxy)propyltrimethoxy silane surface modified layered double hydroxides (KH560-LDHs) were prepared and used to improve the ultraviolet ageing resistance of asphalt. The results of X-ray photoelectron spectrometry (XPS) indicated that KH560 has been successfully grafted onto the surface of LDHs. The agglomeration of LDHs particles notably reduced after KH560 surface modification according to scanning electron microscopy (SEM), which implied that the KH560 surface modification was helpful to promote the dispersibility of LDHs in asphalt. Then, the influence of KH560-LDHs and LDHs on the physical and rheological properties of asphalt before and after UV ageing was thoroughly investigated. The storage stability test showed that the difference in softening point (ΔS) of LDHs modified asphalt decreased from 0.6 °C to 0.2 °C at an LDHs content of 1% after KH560 surface modification, and the tendency became more pronounced with the increase of LDH content, indicating that KH560 surface modification could improve the stability of LDHs in asphalt. After UV ageing, the viscous modulus (G’’) of asphalt significantly reduced, and correspondingly, the elastic modulus (G’) and rutting factor (G*/sin δ) rapidly increased. Moreover, the asphaltene increased and the amount of “bee-like” structures of the asphalt decreased. Compared with LDHs, KH560-LDHs obviously restrained performance deterioration of the asphalt, and helped to relieve the variation of the chemical compositions and morphology of asphalt, which suggested that the improvement of KH560-LDHs on UV ageing resistance of asphalt was superior to LDHs.
机译:制备了γ-(2,3-环氧丙氧基)丙基三甲氧基硅烷表面改性层状双氢氧化物(KH560-LDHs),并用于提高沥青的耐紫外线老化性。 X射线光电子能谱(XPS)的结果表明,KH560已成功地接枝到LDHs的表面。根据扫描电子显微镜(SEM),KH560表面改性后,LDHs颗粒的团聚明显减少,这表明KH560表面改性有助于促进LDHs在沥青中的分散性。然后,彻底研究了KH560-LDHs和LDHs对UV老化前后沥青物理和流变性能的影响。贮存稳定性试验表明,KH560表面改性后,LDHs含量为1%时,LDHs改性沥青的软化点(ΔS)差异从0.6°C降低至0.2°C,并且随着LDH的增加,这种趋势变得更加明显。含量表明KH560表面改性可以提高LDH在沥青中的稳定性。紫外线老化后,沥青的粘性模量(G’)显着降低,相应地,弹性模量(G’)和车辙系数(G * / sinδ)迅速增加。此外,沥青质增加,沥青的“蜂状”结构减少。与LDHs相比,KH560-LDHs明显抑制了沥青的性能劣化,有助于缓解沥青的化学组成和形貌变化,表明KH560-LDHs对沥青抗紫外线老化性能的改善优于LDHs。

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