Canlin Zhang
Wuhan University of Technology
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Featured researches published by Canlin Zhang.
Materials | 2017
Canlin Zhang; Jianying Yu; Lihui Xue; Yubin Sun
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.
Petroleum Science and Technology | 2017
Canlin Zhang; Jianying Yu; Xiong Xu; Yubin Sun
ABSTRACT Layered double hydroxide (LDH) was surface organic modified by γ-(2,3-epoxypropoxy) propyltrimethoxysilane (KH560) and applied to improve UV ageing resistance of bitumen. KH560 has been successfully grafted to the surface of LDH according to Fourier Transform Infrared Spectroscopy. Then, the effect of KH560 surface modified LDH (KH560-LDH) and LDH on physical and rheological properties of bitumen were thoroughly investigated. The results showed that KH560-LDH existed more stably in bitumen and KH560-LDH-modified bitumen possessed better high-temperature performance compared with LDH. After UV ageing, the properties of bitumen became worse obviously. Compared with LDH, KH560-LDH exhibited better improvement on UV ageing resistance of bitumen.
Materials | 2017
Xiong Xu; Jianying Yu; Lihui Xue; Canlin Zhang; Yagang Zha; Yi Gu
Tri-block copolymer styrene–butadiene (SBS) is extensively applied in bituminous highway construction due to its high elasticity and excellent weather resistance. With the extension of time, tri-block structural SBS automatically degrades into bi-block structural SB- with some terminal oxygen-containing groups under the comprehensive effects of light, heat, oxygen, etc. In this paper, the effects of aging temperature, aging time and oxygen concentration on the molecular structure of thermo-oxidative aged SBS were mainly investigated using Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS), and the correlation between oxygen-containing groups and thermal properties (TG–DTG) was further discussed. The FTIR and XPS results show that rapid decomposition of SBS will occur with increments of aging temperature, aging time and oxygen concentration, and a large number of oxygen-containing groups such as –OH, C=O, –COOH, etc. will be formed during thermo-oxidative aging. In short-term aging, changes in aging temperature and oxygen concentration have a significant impact on the structural damage of SBS. However, in long-term aging, it has no further effect on the molecular structure of SBS or on increasing oxygen concentration. The TG and DTG results indicate that the concentration of substances with low molecular weight gradually increases with the improvement of the degree of aging of the SBS, while the initial decomposition rate increases at the beginning of thermal weightlessness and the decomposition rate slows down in comparison with neat SBS. From the relation between the XPS and TG results, it can be seen that the initial thermal stability of SBS rapidly reduces as the relative concentration of the oxygen-containing groups accumulates around 3%, while the maximum decomposition temperature slowly decreases when the relative concentration of the oxygen-containing groups is more than 3%, due to the difficult damage to strong bonds on the molecular structure of aged SBS.
Construction and Building Materials | 2015
Song Xu; Jianying Yu; Canlin Zhang; Yubin Sun
Applied Clay Science | 2016
Canlin Zhang; Jianying Yu; Kai Feng; Lihui Xue; Dong Xie
Construction and Building Materials | 2016
Canlin Zhang; Jianying Yu; Song Xu; Lihui Xue; Zhilong Cao
Construction and Building Materials | 2015
Song Xu; Lian Li; Jianying Yu; Canlin Zhang; Ji Zhou; Yubin Sun
Construction and Building Materials | 2017
Xiong Xu; Jianying Yu; Lihui Xue; Canlin Zhang; Bianyang He; Min Wu
Polymer-korea | 2016
Xiong Xu; Jianying Yu; Canlin Zhang; Song Xu; Lihui Xue; Dong Xie
Construction and Building Materials | 2017
Xiong Xu; Jianying Yu; Canlin Zhang; Zhilong Cao; Yi Gu; Lihui Xue