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The Frost-resisting Durability of High Strength Self-Compacting Pervious Concrete in Deicing Salt Environment 被引量:10
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作者 封金财 ZONG Ningwen +3 位作者 ZHU Pinghua 刘惠 YAO Lan GENG Jiang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第1期167-175,共9页
A high strength self-compacting pervious concrete(SCPC) with top-bottom interconnected pores was prepared in this paper. The frost-resisting durability of such SCPC in different deicing salt concentrations(0%, 3%, 5%,... A high strength self-compacting pervious concrete(SCPC) with top-bottom interconnected pores was prepared in this paper. The frost-resisting durability of such SCPC in different deicing salt concentrations(0%, 3%, 5%, 10%, and 20%) was investigated. The mass-loss rate, relative dynamic modulus of elasticity, compressive strength, flexural strength and hydraulic conductivity of SCPC after 300 freeze-thaw cycles were measured to evaluate the frost-resisting durability. In addition, the microstructures of SCPC near the top-bottom interconnected pores after 300 freeze-thaw cycles were observed by SEM. The results show that the high strength SCPC possesses much better frost-resisting durability than traditional pervious concrete(TPC) after 300 freeze-thaw cycles, which can be used in heavy loading roads. The most serious freeze-thaw damage emerges in the SCPC immersed in the 3% of Na Cl solution, while there is no obvious damage in 20% of Na Cl solution. Furthermore, it can be deduced that the high strength SCPC can be used for 100 years in a cold environment. 展开更多
关键词 high strength SELF-COMPACTING pervious concrete top-bottom interconnected pores heavy loading road frost-resisting DURABILITY DEICING salt ENVIRONMENT
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GPU-based discrete element simulation on flow stability of flat-bottomed hopper 被引量:1
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作者 Li Peng Zheng Zou +2 位作者 Libo Zhang Qingshan Zhu Hongzhong Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第1期43-52,共10页
In this study, the flow stability of the flat-bottomed hopper was investigated via GPU-based discrete element method(DEM) simulation. With the material height inside the hopper reducing, the fluctuation of the flow ra... In this study, the flow stability of the flat-bottomed hopper was investigated via GPU-based discrete element method(DEM) simulation. With the material height inside the hopper reducing, the fluctuation of the flow rate indicates an unstable discharge. The flow regions of the unstable discharge were compared with that of the stable discharge, a key transformation zone, where the voidage showed the largest difference between unstable and stable discharge, was revealed. To identify the relevance of the key transformation zone and the hopper flow stability, the voidage variation of the key transformation zone with material height reducing was studied.A sharp increase in the voidage in the key transformation zone was considered to be the standard for judging the unstable hopper flow, and the ‘Top–Bottom effect' of the hopper was defined, which indicated the hopper flow was unstable when the hopper only had the top area and the bottom area, because the voidage of particles in the top area and the bottom area were both variables. 展开更多
关键词 Stability Discrete element method(DEM) Granular flow top-bottom effect Flow regions
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