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FRP筋增强UHPC模壳型混凝土组合梁受弯性能 被引量:1
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作者 严卫华 张瑞 +4 位作者 王仪 付世虎 邱林锋 ashraf ashour 葛文杰 《扬州大学学报(自然科学版)》 CAS 2024年第3期20-28,共9页
为研究纤维复合材料(fiber-reinforced polymer,FRP)筋增强超高性能混凝土(ultra-high performance concrete,UHPC)模壳型混凝土组合梁的受弯性能,基于已验证模型,对U型UHPC模壳型混凝土组合梁进行有限元模拟,分析不同配筋率下截面构造... 为研究纤维复合材料(fiber-reinforced polymer,FRP)筋增强超高性能混凝土(ultra-high performance concrete,UHPC)模壳型混凝土组合梁的受弯性能,基于已验证模型,对U型UHPC模壳型混凝土组合梁进行有限元模拟,分析不同配筋率下截面构造形式和UHPC厚度、混凝土和筋材力学性能对构件的开裂、屈服、极限荷载,及其对应挠度、破坏模式、能量耗散和延性等的影响.研究表明:UHPC模壳可有效延缓组合梁开裂;增加UHPC面个数可有效提高极限荷载;适当提高UHPC强度、FRP筋弹性模量和UHPC厚度均可以有效提高极限荷载;混合配筋组合梁比钢筋组合梁有更好的能耗和延性;盲目提高FRP筋抗拉强度并不能提高组合梁受弯性能,但混合配筋模式下,提高FRP配筋率可以提高极限荷载和极限挠度.该研究结果可为UHPC模壳型混凝土组合梁结构设计与分析提供参考. 展开更多
关键词 FRP筋 UHPC模壳 组合梁 受弯性能 参数分析
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Modifying effects and mechanisms of superfine stainless wires on microstructures and mechanical properties of ultra-high performance seawater sea-sand concrete
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作者 YU Feng DONG SuFen +2 位作者 ashour ashraf DING SiQi HAN BaoGuo 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第10期3205-3220,共16页
Ultra-high-performance seawater sea-sand concrete(UHPSSC)presents a prospective solution to address the natural resource shortage in marine infrastructure construction.To eliminate the corrosion risk of steel fibers a... Ultra-high-performance seawater sea-sand concrete(UHPSSC)presents a prospective solution to address the natural resource shortage in marine infrastructure construction.To eliminate the corrosion risk of steel fibers and broaden the applicability of UHPSSC,this study investigates the mechanical properties and free chloride ion content as well as microstructures of UHPSSC reinforced with superfine stainless wires(SSWs)under natural curing.The results indicate that 1.5%SSWs can remarkably improve the flexural strength and toughness of UHPSSC by 127%and 1724%,respectively,and mitigate the long-term strength degradation of UHPSSC.The strong interfacial bond between SSW and UHPSSC improves the compactness of UHPSSC,thus reducing the growth space for Ca(OH)_(2) crystals and swelling hydration products generated by sulfate and magnesium ions.This can be supported by the observed reduction in the Ca/Si ratio of C–S–H gels,CH crystal orientation index,and porosity.Moreover,through mechanisms such as pull-out,rupture,overlapping network,and internal anchor interface,SSWs effectively prevent microcrack growth and propagation,transforming single long-connected microcracks into multiple-emission microcracks centered on SSW.Additionally,the free chloride ion content of the composites at 28 and 180 d meets the ACI 318-19 standard requirements for concrete exposed to seawater.This compliance is attributed to the chloride immobilization facilitated by Friedel’s salt and C–S–H gels within the interfaces around SSWs and sea-sand.Consequently,SSWs-reinforced UHPSSC exhibits considerable potential for applications in sustainable marine infrastructures,demanding long-term mechanical properties and high durability. 展开更多
关键词 ultra-high performance seawater sea-sand concrete superfine stainless wire mechanical properties chloride ion content microstructure
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