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玻纤增强混凝土耐久性的试验研究 被引量:2
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作者 蔡景荣 程育仁 《铁道标准设计》 北大核心 2000年第1期29-31,共3页
玻纤增强混凝土的耐久性是玻纤增强混凝土应用的首要问题。为了选择一个切实可行的应用方案,利用国内外公认的技术路线对各种组合下国产玻纤和法国玻纤的耐久性进行了加速老化试验。
关键词 玻纤增强混凝土 耐久性 老化试验 复合材料
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玻纤增强混凝土板前景看好
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作者 史进 《墙材与建筑装饰》 2002年第2期42-42,共1页
关键词 玻纤增强混凝土 轻质高强混凝土 节能 绿色建材
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北美玻纤增强轻质混凝土墙板
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作者 陈璧来 《建材产品与应用》 2000年第4期33-34,共2页
关键词 玻纤增强轻质混凝土 墙板 混凝土板材
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磷石膏低碱水泥的试制及在玻纤轻集料混凝土中的应用
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作者 王先进 姜延杰 《北京建材》 1997年第4期14-18,共5页
利用磷石膏、业状高炉矿渣、水泥熟料等原料试制成磷石膏低碱水泥,以代替硫铝酸盐水泥,高铝水泥用于生产玻纤增强轻集料混凝土空心板。研究涉及磷石膏低碱水泥的试制、材性、成本分析,以及配制玻纤增强混凝土空心板的工艺、工艺。
关键词 磷石膏 低碱水泥 玻纤增强混凝土 空心板
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HF永久性复合保温模板在结构一体化墙体保温系统中的应用研究 被引量:7
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作者 王洪镇 马亮亮 +1 位作者 田彦智 苏明明 《新型建筑材料》 2021年第4期135-139,共5页
介绍了HF复合保温模板墙体保温系统的构造、物理力学性能,给出了评价其防火耐高温性能和热工计算方法,验算了混凝土侧压力影响和模板与主体混凝土间连接强度等主要指标。详述了其安装施工方法,阐明了其在框架和剪力墙现浇混凝墙体保温... 介绍了HF复合保温模板墙体保温系统的构造、物理力学性能,给出了评价其防火耐高温性能和热工计算方法,验算了混凝土侧压力影响和模板与主体混凝土间连接强度等主要指标。详述了其安装施工方法,阐明了其在框架和剪力墙现浇混凝墙体保温系统中的应用关键技术。 展开更多
关键词 玻纤增强微孔混凝土 HF复合保温模板 一体化墙体
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LSP板内嵌轻钢龙骨墙体系统在钢结构装配式建筑中的应用研究 被引量:3
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作者 王洪镇 马亮亮 田彦智 《墙材革新与建筑节能》 2019年第5期58-62,共5页
本文介绍了LSP板内嵌轻钢龙骨墙体系统构造、主要性能、安装施工方法,阐述了其在钢结构装配式建筑外墙和内墙系统中的应用构造做法。
关键词 玻纤增强微孔混凝土 LSP 水平拼装板 装配式钢结构建筑 保温与结构一体化墙体
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Strengthening reinforced concrete beams using prestressed glass fiber-reinforced polymer-Part II:Analytical study 被引量:2
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作者 HUNG Chien-hsing YEN Tsong WU Jong-hwei 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第8期844-852,共9页
Strengthening reinforced concrete (R. C.) beams using prestressed glass fiber-reinforced polymer (PGFRP) was studied experimentally as described in Part I of this paper (Huang et al., 2005). In that paper, R. C. beams... Strengthening reinforced concrete (R. C.) beams using prestressed glass fiber-reinforced polymer (PGFRP) was studied experimentally as described in Part I of this paper (Huang et al., 2005). In that paper, R. C. beams, R. C. beams with GFRP (glass fiber-reinforced polymer) sheets, and R. C. beams with PGFRP sheets were tested in both under-strengthened and over-strengthened cases. The test results showed that the load-carrying capacities (ultimate loads) of the beams with GFRP sheets were greater than those of the beams without polymer sheets. The load-carrying capacities of beams with PGFRP sheets were greater than those of beams with GFRP sheets. The objective of this work is to develop an analytical method to compute all of these load-carrying capacities. This analytical method is independent of the experiments and based only on the traditional R. C. and P. C. (prestressed concrete) theory. The analytical results accorded with the test results. It is suggested that this analytical method be used for analyzing and designing R. C. beams strengthened using GFRP or PGFRP sheets. 展开更多
关键词 Analytical analysis Glass fiber-reinforced polymer Prestressed glass fiber-reinforced polymer R. C. beams
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Bond strength improvement of GFRP rebars with different rib geometries 被引量:12
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作者 HAO Qing-duo WANG Yan-lei +1 位作者 ZHANG Zhi-chun OU Jin-ping 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第9期1356-1365,共10页
Based on the Canadian Standards Association (CSA) criteria,105 pullout specimens were tested to investigate the effect of different rib geometries on bond strength of glass fiber reinforced polymer (GFRP) rebars embed... Based on the Canadian Standards Association (CSA) criteria,105 pullout specimens were tested to investigate the effect of different rib geometries on bond strength of glass fiber reinforced polymer (GFRP) rebars embedded in concrete. Two kinds of conventional reinforcing rebars were also studied for comparison. Each rebar was embedded in a 150 mm concrete cube,with the embedded length being four times the rebar diameter. The experimental parameters were the rebar type,rebar component,rebar diameter,rebar surface texture,rib height,rib spacing and rib width. Theoretical analysis was also carried out to explain the experimental phenomena and results. The experimental and theoretical results indicated that the bond strength of GFRP rebars was about 13%~35% lower than that of steel rebars. The bond strength and bond-slip behavior of the specially machined rebars varied with the rebar type,rebar diameter,rebar surface texture,rib height,rib spacing and rib width. Using the results,design recom-mendations were made concerning optimum rib geometries of GFRP ribbed rebars with superior bond-slip characteristics,which concluded that the optimal rib spacing of ribbed rebars is the same as the rebar diameter,and that the optimal rib height is 6% of the rebar diameter. 展开更多
关键词 GFRP rebars CONCRETE Pullout test Bond strength Rib geometries Optimal surface configuration
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Strengthening reinforced concrete beams using prestressed glass fiber-reinforced polymer-Part I: Experimental study 被引量:11
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作者 WU Jong-hwei YEN Tsong +1 位作者 HUNG Chien-hsing LIN Yiching 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第3期166-174,共9页
This work is aimed at studying the strengthening of reinforced concrete (R. C.) beams using prestressed glass fi- ber-reinforced polymer (PGFRP). Carbon fiber-reinforced polymer (CFRP) has recently become popular for ... This work is aimed at studying the strengthening of reinforced concrete (R. C.) beams using prestressed glass fi- ber-reinforced polymer (PGFRP). Carbon fiber-reinforced polymer (CFRP) has recently become popular for use as repair or rehabilitation material for deteriorated R. C. structures, but because CFRP material is very stiff, the difference in CFRP sheet and concrete material properties is not favorable for transferring the prestress from CFRP sheets to R. C. members. Glass fi- ber-reinforced polymer (GFRP) sheets with Modulus of Elasticity quite close to that of concrete was chosen in this study. The load-carrying capacities (ultimate loads) and the deflections of strengthened R. C. beams using GFRP and PGFRP sheets were tested and compared. T- and ⊥-shaped beams were used as the under-strengthened and over-strengthened beams. The GFRP sheets were prestressed to one-half their tensile capacities before being bonded to the T- and ⊥-shaped R. C. beams. The prestressed tension in the PGFRP sheets caused cambers in the R. C. beams without cracks on the tensile faces. The PGFRP sheets also enhanced the load-carrying capacity. The test results indicated that T-shaped beams with GFRP sheets increased in load-carrying capacity by 55% while the same beams with PGFRP sheets could increase load-carrying capacity by 100%. The ⊥-shaped beams with GFRP sheets could increase load-carrying capacity by 97% while the same beams with PGFRP sheets could increase the loading-carrying capacity by 117%. Under the same external loads, beams with GFRP sheets underwent larger deflections than beams with PGFRP sheets. While GFRP sheets strengthen R. C. beams, PGFRP sheets decrease the beams’ ductility, especially for the over-strengthened beams (⊥-shaped beams). 展开更多
关键词 Strengthening Prestressed glass fiber reinforcement polymer Modulus of Elasticity R. C. beams
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Axial compressive behavior of GFRP-timber-reinforced concrete composite columns
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作者 Fubin Zhang Hu Luo +3 位作者 Jianzhuang Xiao Amardeep Singh Jing Xu Hai Fang 《Low-carbon Materials and Green Construction》 2023年第1期48-64,共17页
This paper investigated the compressive behavior of a novel glass fiber reinforced polymer(GFRP)-timber-reinforced concrete composite column(GTRC column),which consisted of reinforced concrete with an outer GFRP lamin... This paper investigated the compressive behavior of a novel glass fiber reinforced polymer(GFRP)-timber-reinforced concrete composite column(GTRC column),which consisted of reinforced concrete with an outer GFRP laminate and a paulownia timber core.The axial compression tests were performed on 13 specimens to validate the effects of various timber core diameters,slenderness ratios,and GFRP laminate layers/angles on the mechanical behaviors.Test results indicated that with the increase in the timber core diameter,the ductility and energy dissipation ability of the composite column increased by 52.6%and 21.6%,respectively,whereas the ultimate load-bearing capacity and initial stiffness showed a slight decrease.In addition,the GFRP laminate considerably improved the ultimate load-bearing capacity,stiffness,ductility and energy dissipation capability by 212.1%,26.6%,64.3%and 3820%,accordingly.Moreover,considering the influence of timber core diameter,an ultimate load-bearing capacity adjustment coefficient was proposed.Finally,a formula was established based on the force equilibrium and superposition for predicting the axial bearing capacity of the GTRC columns. 展开更多
关键词 Glass fiber reinforced polymer(GFRP) Timber core Reinforced concrete Composite column Axial compression
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