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玻纤增强聚合物(GRP)型材混凝土防护门抗爆性能试验研究 被引量:1
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作者 黄魁 汪剑辉 赵强 《防护工程》 2018年第2期7-11,共5页
研制了一种大跨度的GRP型材混凝土防护门。为了检测该防护门的抗爆性能,利用爆炸波模拟装置产生4种强度的冲击波荷载,对防护门进行8次重复加载试验。冲击波的峰值超压平均值分别为91. 2 k Pa、140. 1 k Pa、342. 4 k Pa、663. 6 k Pa,... 研制了一种大跨度的GRP型材混凝土防护门。为了检测该防护门的抗爆性能,利用爆炸波模拟装置产生4种强度的冲击波荷载,对防护门进行8次重复加载试验。冲击波的峰值超压平均值分别为91. 2 k Pa、140. 1 k Pa、342. 4 k Pa、663. 6 k Pa,正压作用时间均在600 ms以上。结果表明:在所加荷载下,GRP型材只发生弹性变形,防护门没有出现裂缝、变形等破坏,满足所要求的抗力等级,可以作为传统防护门的升级换代产品。 展开更多
关键词 玻纤增强聚合物 防护门 抗爆性能 动力响应
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短玻纤增强聚丙烯水辅助注射成型纤维取向数值模拟 被引量:4
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作者 张伟 柳和生 +3 位作者 黄兴元 余忠 章凯 陈忠仕 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2019年第8期105-111,117,共8页
基于Folgar-Tucker纤维取向模型,利用Moldex3D对三维长直管件进行溢流法水辅助注射成型可视化研究。结果表明,在制品初始段位置的水道层区域纤维取向倾向于无序状态,而在制品的中间段及末尾段位置的纤维倾向于沿流动方向形成取向;通过... 基于Folgar-Tucker纤维取向模型,利用Moldex3D对三维长直管件进行溢流法水辅助注射成型可视化研究。结果表明,在制品初始段位置的水道层区域纤维取向倾向于无序状态,而在制品的中间段及末尾段位置的纤维倾向于沿流动方向形成取向;通过适当的增加注水延迟时间可以有效地改善制品初始段位置的纤维沿流动方向的取向。另外,还发现沿流动方向的纤维取向最有序的位置是靠近壳层位置的芯层区域;在制品的末端位置,注水压力、熔体温度显著影响纤维沿流动方向的取向。 展开更多
关键词 玻纤增强聚合物复合材料 水辅助注射成型 纤维取向 数值模拟
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玻纤增强尼龙66隔热条的制备与应用 被引量:2
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作者 高玉平 《广东建材》 2004年第7期22-22,共1页
介绍了玻纤增强尼龙66隔热条的制备工艺及应用领域,讨论了玻纤含量对体系性能的影响。
关键词 尼龙66 拉伸强度 弯曲强度 金属门窗 玻纤增强聚合物
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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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