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氯盐环境下UHPC-NC界面黏结性能试验研究 被引量:1
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作者 谢剑 杨云涛 +1 位作者 陈玉洁 杨荣伟 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2024年第1期11-20,共10页
氯盐环境作为一种较为常见的化学侵蚀环境,研究其对超高性能混凝土(ultra-high performance concrete,UHPC)和普通混凝土(normal concrete,NC)界面耐久性能的影响对于UHPC加固混凝土结构和UHPC-NC组合结构的工程应用均具有重大的现实意... 氯盐环境作为一种较为常见的化学侵蚀环境,研究其对超高性能混凝土(ultra-high performance concrete,UHPC)和普通混凝土(normal concrete,NC)界面耐久性能的影响对于UHPC加固混凝土结构和UHPC-NC组合结构的工程应用均具有重大的现实意义.基于此,通过在常规环境以及氯盐环境下的推出试验,获得了干湿循环次数(0次、25次、50次)、氯盐浸泡天数(0 d、50 d、100 d)及界面处理方式(钢丝刷刷毛、高压水射流冲毛、表面缓凝处理)对UHPC-NC界面黏结强度、界面黏结刚度及界面黏结滑移曲线的影响.结果表明:在100 d试验周期内,干湿循环及氯盐浸泡作用造成的界面黏结强度损失率不超过20%;氯盐环境作用时长的增加会导致界面黏结刚度的降低;随着界面粗糙度的增加,UHPC-NC试件的界面黏结强度以及界面黏结刚度均会增加;界面粗糙度的提高有助于界面抗氯盐侵蚀能力的提升.受到界面处理方法的影响,UHPC-NC试件经历干湿循环及氯盐浸泡后,荷载滑移曲线呈现2种不同的形式,分别对应光滑界面(钢丝刷刷毛界面)和其他界面(高压水射流冲毛界面和缓凝剂处理界面).各组试件的黏结滑移曲线在荷载到达峰值前趋于一致;荷载到达峰值后,前者存在荷载骤降段及持荷段,后者则随着滑移量的增加荷载不断降低.根据UHPC-NC黏结滑移曲线特征,提出了黏结滑移建议模型. 展开更多
关键词 界面黏结性能 超高性能混凝土 普通混凝土 氯盐环境 界面处理 黏结滑移模型
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拼接成型UHPC免拆模板钢筋混凝土柱的抗震性能
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作者 王朋 尤学辉 +3 位作者 黄杰 史庆轩 陶毅 王秋维 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2024年第1期103-116,共14页
为研究超高性能混凝土(UHPC)免拆模板钢筋混凝土(URC)柱的抗震性能,选取UHPC免拆模板拼接方式和表面处理方式为试验设计参数,制作并完成了9个URC柱和1个钢筋混凝土(RC)柱的拟静力加载试验。模板拼接方式为螺栓加角钢连接、螺栓连接和环... 为研究超高性能混凝土(UHPC)免拆模板钢筋混凝土(URC)柱的抗震性能,选取UHPC免拆模板拼接方式和表面处理方式为试验设计参数,制作并完成了9个URC柱和1个钢筋混凝土(RC)柱的拟静力加载试验。模板拼接方式为螺栓加角钢连接、螺栓连接和环氧树脂砂浆连接;表面处理方式为光面处理、气泡膜印花处理和设肋处理,通过拟静力试验研究了模板拼接方式及表面处理方式对该类柱抗震性能的影响。此外,基于平截面假定,提出了URC柱的正截面偏压承载力计算式。结果表明:峰值荷载前,UHPC模板与核心混凝土黏结面无明显破坏,URC柱表现出良好的整体性,尤其是采用螺栓加角钢连接的URC柱,即使加载至极限位移时,也没有发生界面黏结失效破坏;与普通RC柱相比,URC柱的承载力提高了6.4%~43.3%,延性提高了11.4%~48.7%,耗能能力提高了27.7%~85.3%;三种连接方式中,采用螺栓加角钢连接的URC柱承载力最高,连接最可靠。最后,基于平截面假定提出的公式计算值与试验值吻合较好,可为工程应用提供参考。 展开更多
关键词 超高性能混凝土 免拆模板 钢筋混凝土柱 抗震性能 承载力计算
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钢-UHPC组合桥面板横向负弯矩区受弯性能研究 被引量:1
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作者 方志 武霄楠 +3 位作者 谭星宇 廖原 阳晏 唐守峰 《工程力学》 EI CSCD 北大核心 2024年第2期112-124,共13页
为明确横向负弯矩作用下,剪力键形式、接缝设置情形、配筋率和钢混界面黏结状态等参数对钢-超高性能混凝土(ultra-high-performance concrete,UHPC)组合板受力性能的影响,完成了8块组合板局部足尺模型静力弯曲试验及有限元参数分析。试... 为明确横向负弯矩作用下,剪力键形式、接缝设置情形、配筋率和钢混界面黏结状态等参数对钢-超高性能混凝土(ultra-high-performance concrete,UHPC)组合板受力性能的影响,完成了8块组合板局部足尺模型静力弯曲试验及有限元参数分析。试验结果表明:开孔板(perfobond leiste,PBL)试件的名义开裂强度(对应最大裂缝宽度为0.05 mm)较栓钉试件提高16.8%;矩形齿缝试件的名义开裂强度较整浇试件降低16%~23%;UHPC层钢筋配筋率从1.96%增加到2.82%时,名义开裂强度提高16.2%;钢板-UHPC界面涂油除黏PBL试件的初裂强度和名义开裂强度较界面黏结试件分别降低10.1%和5.8%。数值分析结果表明:PBL贯穿钢筋的存在、PBL和栓钉间距的减小能有效提高组合板的开裂后刚度;PBL开孔钢板上的孔径和孔间距对组合板的受力性能影响较小。 展开更多
关键词 桥梁工程 超高性能混凝土(Uhpc) 组合板 剪力键 受弯性能
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简支变结构连续小箱梁桥负弯矩区UHPC-NC组合桥面板抗裂性研究 被引量:1
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作者 李俊 《铁道标准设计》 北大核心 2024年第5期75-81,96,共8页
针对当前简支变结构连续小箱梁桥负弯矩区钢束易堵孔、运营中桥面开裂病害等问题,提出一种无负弯矩钢束的UHPC-NC组合桥面板结构。以一座3×30 m简支变结构连续小箱梁桥为研究对象,以正常使用极限状态梁体不开裂为控制准则确定UHPC... 针对当前简支变结构连续小箱梁桥负弯矩区钢束易堵孔、运营中桥面开裂病害等问题,提出一种无负弯矩钢束的UHPC-NC组合桥面板结构。以一座3×30 m简支变结构连续小箱梁桥为研究对象,以正常使用极限状态梁体不开裂为控制准则确定UHPC合理构造尺寸,对所提出的负弯矩组合桥面板结构进行1∶2的缩尺模型试验。试验显示:裂缝首先出现于UHPC-NC交界面处的普通混凝土部分,随后逐渐向UHPC层沿伸,且C50混凝土开裂、梁体破坏对应的截面弯矩分别为3 520,9 152 kN·m(考虑1∶8弯矩缩尺比),大于正常使用极限状态、承载能力极限状态梁体截面弯矩3 300,5 838 kN·m,即该组合桥面板结构满足小箱梁的抗裂与承载能力要求。基于试验结果建立精细化有限元模型,采用参数分析法研究UHPC厚度对梁体开裂荷载、极限承载力等方面的影响。结果表明:梁体开裂弯矩主要由UHPC上覆层厚度决定,相较于普通钢筋混凝土梁,5 cm厚的UHPC上覆层可将梁体开裂弯矩提高28.9%,7.5 cm厚的UHPC上覆层可将梁体开裂弯矩提高41.6%;在配筋率不变的情况下,增大UHPC层厚度对梁体承载力无显著提升。综合考虑梁体受力性能以及施工便利性,建议背景工程UHPC厚度取10 cm。 展开更多
关键词 预应力混凝土桥 箱梁桥 模型试验 负弯矩区 超高性能混凝土 抗裂构造 数值模拟
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HPC端部加强双钢板组合剪力墙的抗震性能
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作者 袁朝庆 李国洋 +2 位作者 代晓辉 房宽光 计静 《黑龙江科技大学学报》 CAS 2024年第1期61-68,共8页
为研究高性能混凝土端部加强双钢板组合剪力墙受力机理及破坏形态,以轴压比、腹部普通混凝土强度等级为关键参数,设计了4片普通试件,7片HPC端部加强试件,运用ABAQUS构建其有限元模型,研究其抗震性能。结果表明:同轴压比下,HPC端部加强... 为研究高性能混凝土端部加强双钢板组合剪力墙受力机理及破坏形态,以轴压比、腹部普通混凝土强度等级为关键参数,设计了4片普通试件,7片HPC端部加强试件,运用ABAQUS构建其有限元模型,研究其抗震性能。结果表明:同轴压比下,HPC端部加强试件相比普通试件屈服荷载提高16.30%,峰值荷载提升13.40%;随着轴压比提高,HPC端部加强试件峰值荷载和屈服荷载分别提高7.22%和2.72%,随着轴压比减小,HPC端部加强试件延性提升22.26%;提高腹部腔体混凝土强度等级,HPC端部加强试件的屈服荷载和峰值荷载分别提高13.01%和11.14%,延性提升16.91%。 展开更多
关键词 hpc端部加强 双钢板组合剪力墙 抗震性能
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UHPC在T梁桥错孔拼宽湿接缝中的设计研究
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作者 张志文 胡承泽 +2 位作者 高洪波 杨运平 曹鸿猷 《施工技术(中英文)》 CAS 2024年第4期103-108,共6页
装配式桥梁拼宽改造会出现错孔拼宽的情况,由于新旧桥错孔布置导致活荷载作用下新旧桥竖向变形在横向不协调,常规的普通混凝土拼接湿接缝方案难以满足车辆荷载产生的横向拉应力。以某高速公路改扩建项目中3×30m预应力混凝土T梁错... 装配式桥梁拼宽改造会出现错孔拼宽的情况,由于新旧桥错孔布置导致活荷载作用下新旧桥竖向变形在横向不协调,常规的普通混凝土拼接湿接缝方案难以满足车辆荷载产生的横向拉应力。以某高速公路改扩建项目中3×30m预应力混凝土T梁错孔拼宽改造为背景,在常规对孔拼接缝方案的基础上,结合超高性能混凝土(UHPC)抗拉性能,研究了一种不等宽柔性拼接方案,并采用有限元软件建立在最不利错孔15m情况下T梁实体模型,分析温度、车辆荷载、沉降对T梁拼接缝处的受力性能。结果表明:该结构在单项运营荷载及运营荷载组合作用下,结构受力满足材料性能要求,方案可行。 展开更多
关键词 桥梁工程 装配式 超高性能混凝土 有限元分析 设计
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预应力UHPC槽形节段与整体式混凝土板组合梁受剪性能
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作者 陈宝春 陈逸聪 +1 位作者 周家亮 刘永健 《建筑科学与工程学报》 CAS 北大核心 2024年第3期54-64,共11页
将预制的UHPC槽形节段通过干缝连接和预应力张拉形成槽形梁,再与整体现浇的混凝土板组合成的组合梁,称为预应力UHPC槽形节段与整体式混凝土板组合梁(PUCS-MCS组合梁)。它是一种能充分发挥不同材料的性能、施工方便且整体性能好的新型桥... 将预制的UHPC槽形节段通过干缝连接和预应力张拉形成槽形梁,再与整体现浇的混凝土板组合成的组合梁,称为预应力UHPC槽形节段与整体式混凝土板组合梁(PUCS-MCS组合梁)。它是一种能充分发挥不同材料的性能、施工方便且整体性能好的新型桥梁结构。为探究其抗剪性能,开展了9根模型梁的试验。分析了接缝数、接缝处剪力键数、剪跨比、UHPC钢纤维体积率、配箍率和纵筋率等参数对试件变形、破坏模式、抗剪承载力的影响;基于试验研究结果,提出了PUCS-MCS组合梁抗剪承载力计算方法。结果表明:PUCS-MCS组合梁均为剪压破坏,所有梁在开裂前的荷载-挠度曲线差异不大,在开裂后刚度不断下降;PUCS-MCS组合梁的抗剪承载力随接缝处剪力键数、UHPC钢纤维掺量、配箍率和纵筋率的增大而增大,随干接缝数量增加和剪跨比的增大而减小,其中影响最显著的是干接缝和剪力键,影响最小的是钢纤维掺量和配箍率,因此PUCS-MCS组合梁可不配箍筋,并可采用较低钢纤维掺量的UHPC。 展开更多
关键词 超高性能混凝土 预应力槽形节段梁 整体式混凝土板 组合梁 受剪性能
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不同类型钢纤维UHPC无腹筋梁受剪性能试验
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作者 曹霞 任义成 +3 位作者 廉德铭 金凌志 李丽 何达波 《桂林理工大学学报》 CAS 北大核心 2024年第1期67-74,共8页
基于单点加载下4根超高性能混凝土无腹筋梁构件受剪破坏试验结果,研究其受剪性能,以钢纤维类型为主要研究参数,分析钢纤维类型对无腹筋梁的受剪承载力、裂缝发展形态、挠度和韧性等发展规律。结果表明:端钩型钢纤维对提高超高性能混凝... 基于单点加载下4根超高性能混凝土无腹筋梁构件受剪破坏试验结果,研究其受剪性能,以钢纤维类型为主要研究参数,分析钢纤维类型对无腹筋梁的受剪承载力、裂缝发展形态、挠度和韧性等发展规律。结果表明:端钩型钢纤维对提高超高性能混凝土无腹筋梁的受剪承载力、阻滞裂缝发展及控制试件变形能力作用优于光滑平直型和波浪型钢纤维,而端钩型Ⅱ钢纤维优于端钩型Ⅰ钢纤维;端钩型Ⅰ和光滑平直型钢纤维增韧效果较好,但分担纵筋拉力较少;波浪型钢纤维分担纵筋拉力较多,提高超高性能混凝土无腹筋梁抗裂性的效果较好,但增韧效果较差。经对比分析,陈璇公式计算值精确度较高,离散程度小。 展开更多
关键词 超高性能混凝土梁 钢纤维类型 受剪承载力 裂缝 韧性
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体外预应力UHPC无腹筋梁抗剪性能试验研究
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作者 李立峰 房宇超 +1 位作者 叶萌 金未萌 《铁道建筑》 北大核心 2024年第2期67-74,共8页
为研究体外预应力超高性能混凝土(Ultra-high Performance Concrete,UHPC)无腹筋梁的抗剪性能,设计了3片体外预应力UHPC无腹筋梁,剪跨比分别为1.44、2.56、3.67,采用四点加载的方式进行抗剪性能试验,获得了试验梁的荷载-位移关系、荷载... 为研究体外预应力超高性能混凝土(Ultra-high Performance Concrete,UHPC)无腹筋梁的抗剪性能,设计了3片体外预应力UHPC无腹筋梁,剪跨比分别为1.44、2.56、3.67,采用四点加载的方式进行抗剪性能试验,获得了试验梁的荷载-位移关系、荷载-应变关系、破坏形态以及极限抗剪承载力。试验结果表明:体外预应力UHPC无腹筋梁的抗剪破坏方式均表现为脆性破坏,随着剪跨比的增大,试验梁破坏形态依次表现为斜压破坏、剪压破坏、剪拉破坏;剪跨比越大,斜裂缝的数量越少、倾角越小,试验梁的极限抗剪承载力越小,且减小趋势变缓。基于极限平衡法推导了体外预应力UHPC无腹筋梁的抗剪承载力计算公式,验算了14片无黏结预应力UHPC梁的抗剪承载力,该公式适用性良好。 展开更多
关键词 桥梁 抗剪性能 试验研究 超高性能混凝土 体外预应力 抗剪承载力
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钢-UHPC轻型组合结构短栓钉抗剪性能试验研究
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作者 邓宗才 黄松 薛会青 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2024年第1期42-52,共11页
通过6个钢-超高性能混凝土(ultra-high performance concrete,UHPC)轻型组合结构短栓钉推出试验,对其抗剪承载力、破坏形态、栓钉应变及荷载-滑移曲线进行了研究,探讨了栓钉直径、长度、数量以及界面黏结对短栓钉抗剪性能的影响规律.结... 通过6个钢-超高性能混凝土(ultra-high performance concrete,UHPC)轻型组合结构短栓钉推出试验,对其抗剪承载力、破坏形态、栓钉应变及荷载-滑移曲线进行了研究,探讨了栓钉直径、长度、数量以及界面黏结对短栓钉抗剪性能的影响规律.结果表明:所有试件均为栓钉根部剪切破坏,UHPC板除栓钉根部沿承压方向部分UHPC压碎外,其余部分保持完好,UHPC可以抵抗栓钉传递的高压应力;栓钉根部截面屈服后应力强化阶段明显,栓钉发生剪切破坏时,栓钉根部上侧应变超过3500με;长径比为2.0的短栓钉在UHPC中也能发挥全部强度;所有试件的荷载-滑移曲线分为弹性、弹塑性和塑性3个阶段,所有短栓钉的最大滑移量均小于4 mm,工程应用时应按照弹性剪力连接件进行设计;栓钉直径对栓钉抗剪性能提高最显著,直径16 mm的栓钉比直径13 mm的栓钉的抗剪承载力和极限滑移分别提高了46.4%和11%,弹性刚度和塑性刚度分别提高了35.8%和59.1%,增加栓钉长度和界面黏结能有效提高栓钉的剪切刚度,长径比为3.0的栓钉比长径比为2.5的栓钉的弹性刚度提高了12.3%,界面有黏结试件比界面无黏结试件的弹性刚度提高了17.4%;相同间距内,合理增加更多栓钉有利于提高整体抗剪强度,但会降低延性变形能力.最后,结合实验数据和国内外UHPC中栓钉推出试验结果,建立了UHPC中栓钉荷载-滑移曲线和抗剪承载力预测表达式,计算值与试验值吻合良好. 展开更多
关键词 超高性能混凝土 短栓钉 推出试验 抗剪性能 荷载-滑移曲线 抗剪承载力
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UHPC加固RC柱的轴压性能试验及有限元模拟分析
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作者 王勃 郭明胜 +1 位作者 周家宇 王子诚 《吉林建筑大学学报》 CAS 2024年第1期1-8,共8页
超高性能混凝土(UHPC)因其优异的力学性能和耐久性能,广泛应用于钢筋混凝土结构的加固中。对UHPC加固钢筋混凝土短柱轴心受压进行试验研究,利用ABAQUS有限元分析软件建立UHPC加固钢筋混凝土短柱轴心受压的有限元模型,峰值荷载模拟值与... 超高性能混凝土(UHPC)因其优异的力学性能和耐久性能,广泛应用于钢筋混凝土结构的加固中。对UHPC加固钢筋混凝土短柱轴心受压进行试验研究,利用ABAQUS有限元分析软件建立UHPC加固钢筋混凝土短柱轴心受压的有限元模型,峰值荷载模拟值与试验值吻合良好。分析长细比对加固柱荷载及塑性变形性能的影响,每组5个试件长细比分别为2,4,6,8和10,共6组30个试件。结果表明:相同长细比下UHPC加固钢筋混凝土柱能较大提升柱的承载力和延性;随着长细比L 0/d增大,加固柱的承载力降低,破坏时试件的极限位移明显增大;当长细比进一步增大,试件极限承载力降低趋势开始变缓,峰值荷载对应的位移增大,抵抗塑性变形能力变差,该研究为UHPC加固钢筋混凝土柱工程应用提供参考。 展开更多
关键词 超高性能混凝土(Uhpc) 加固 长细比 有限元模拟
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预制UHPC永久模板钢筋混凝土组合梁抗剪性能有限元分析
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作者 赵柏冬 张一鹏 +1 位作者 刘慈军 刘亚钊 《黑龙江交通科技》 2024年第4期100-104,共5页
为了研究预制超高性能混凝土永久模板钢筋混凝土组合梁抗剪性能,选取合适的U型UHPC预制单元本构关系,建立了钢筋混凝土梁的有限元永久模型,并与已有的试验数据进行比较,验证了模型的可靠性,并分析配箍率、剪跨比等参数对超高性能混凝土... 为了研究预制超高性能混凝土永久模板钢筋混凝土组合梁抗剪性能,选取合适的U型UHPC预制单元本构关系,建立了钢筋混凝土梁的有限元永久模型,并与已有的试验数据进行比较,验证了模型的可靠性,并分析配箍率、剪跨比等参数对超高性能混凝土组合梁抗剪性能的影响。结果显示:超高性能混凝土预制单元可显著提高斜向开裂荷载和极限荷载;预制单元会限制箍筋的作用,所以配箍率对组合梁影响小;剪跨比对组合梁抗剪性能影响大,但是和配箍率一样都会影响其延性。 展开更多
关键词 超高性能混凝土 组合梁 预制单元 配箍率 剪跨比
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Effect of SAP on Properties of High Performance Concrete under Marine Wetting and Drying Cycles 被引量:4
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作者 Ouattara Coumoin Cherel WANG Fazhou +1 位作者 YANG Jin 刘志超 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第5期1136-1142,共7页
The internal curing effect of superabsorbent polymer(SAP) on the properties of high performance concrete(HPC) under marine wetting and drying cycles(WD cycles) was investigated. Compressive strength, hydration and chl... The internal curing effect of superabsorbent polymer(SAP) on the properties of high performance concrete(HPC) under marine wetting and drying cycles(WD cycles) was investigated. Compressive strength, hydration and chloride migration were experimentally investigated and the results were evaluated by compasison with those under fresh water curing(FW). Water absorption and porosity were also evaluated only under WD cycles. The results showed the important influence of wetting and drying cycles on the properties of SAP modified HPC properties. Carefully designed, SAP minimized the long-term compressive strength of HPC under marine WD cycles. The hydration rate was faster in the initial curing, but became lower as compared with that cured in FW. In addition, SAP improved the long-term water absorption resistance and chloride migration resistance of HPC under marine WD cycles. The examination of the porosity showed a lower increase of the volume of capillary pores in SAP modified HPC under long term WD cycles compared with that without SAP. Therefore, internal curing by SAP could improve the durability properties of HPC under marine WD cycles. 展开更多
关键词 SUPERABSORBENT polymer(SAP) high performance concrete WETTING and DRYING cycles internal CURING
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Carbonation Resistance of Sulphoaluminate Cement-based High Performance Concrete 被引量:3
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作者 张德成 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第4期663-666,共4页
The influences of water/cement ratio and admixtures on carbonation resistance of sulphoaluminate cement-based high performance concrete (HPC) were investigated. The experimental results show that with the decreasing... The influences of water/cement ratio and admixtures on carbonation resistance of sulphoaluminate cement-based high performance concrete (HPC) were investigated. The experimental results show that with the decreasing water/cement ratio, the carbonation depth of sulphoaluminate cement-based HPC is decreased remarkably, and the carbonation resistance capability is also improved with the adding admixtures. The morphologies and structure characteristics of sulphoaluminate cement hydration products before and after carbonation were analyzed using SEM and XRD. The analysis results reveal that the main hydration product of sulphoaluminate cement, that is ettringite (AFt), decomposes after carbonation. 展开更多
关键词 sulphoaluminate cement CARBONATION high performance concrete hpc ADMIXTURE ETTRINGITE
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Pore Size Distribution of High Performance Metakaolin Concrete 被引量:4
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作者 C.S.Poon S.C.Kou L.Lam 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2002年第1期42-46,共5页
The Compressive strength, porosity and pore size distribution of high performance metakaolin (MK) concrete were investigated. Concretes containing 0,5% , 10% and 20% metakaolin were prepared at a water / cementitious ... The Compressive strength, porosity and pore size distribution of high performance metakaolin (MK) concrete were investigated. Concretes containing 0,5% , 10% and 20% metakaolin were prepared at a water / cementitious material ratio ( W/C) of 0. 30. In parallel, concrete mixtures with the replacement of cement by 20% fly ash or 5 and 10% silica fume were prepared for comparison. The specimens were cured in water at 27℃ for 3 to 90 days. The results show that at the early age of curing (3 days and 7 days), metakaolin replacements increase the compressive strength, but silica fume replacement slightly reduces the compressive strength. At the age of and after 28 days , the compressive strength of the concrete with metakaolin and silica fume replacement increases. A strong reduction in the total porosity and average pore diameter were observed in the concrete with MK 20% and 10% in the first 7 days. 展开更多
关键词 high performance concrete METAKAOLIN pore size distribution
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High Performance Concrete and Its Typical Mixes 被引量:3
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作者 Cai Yuebo , Kwan Kwokhung , Cheung Yaukai Chan Honchuen Senior Engineer, Material and Structure Department, Nanjing Hydraulic Research Institute, Nanjing 210024 P. H. Doctor, Department of Civil and Structural Engineering, University of Hong Kong Professor, Department of Civil and Structural Engineering, University of Hong Kong 《China Ocean Engineering》 SCIE EI 1995年第3期335-344,共10页
With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durabi... With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durability, lower risk of thermal cracking and higher dimensional stability etc. The three most effective admixtures for producing high performance concrete are superplastieizer, pulverized fuel ash and condensed silica fume. This paper outlines the properties of these materials and presents some practical guidelines for their usage. 展开更多
关键词 high performance concrete SUPERPLASTICIZER pulverized fuel ash condensed silica fume typical mixes
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Characterization of Surface Hardness and Microstructure of High Performance Concrete 被引量:3
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作者 杨永敢 张云升 SHE Wei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第1期124-132,共9页
The relationship between compressive strength obtained by universal testing machine and rebound value obtained by the hammer of high performance concrete was systematically investigated at the macro level. And a model... The relationship between compressive strength obtained by universal testing machine and rebound value obtained by the hammer of high performance concrete was systematically investigated at the macro level. And a model of high performance concrete strength curve was established from them. At the micro level, the microstructure, hydration products and pore structure of concrete surface were analyzed by scanning electron microscopy(SEM), comprehensive thermal analysis(TG-DSC) and mercury intrusion porosimetry(MIP), respectively. The effect of carbonation on surface strength was also investigated. The results showed that the concrete surface hardness layer grew rapidly at early stage and then stabilized at last with ongoing curing age; the rebound value and compressive strength of concrete with slag were higher than those of concrete with the same content of fly ash. In addition, the strength curve obtained by the least square method can satisfy the local standard requirements with an average relative error of 8.9% and a relative standard deviation of 11.3%. When the carbonation depth was 6 mm, the compressive strength calculated by national uniform strength curve was 25 PMa higher than that by high performance concrete. 展开更多
关键词 high performance concrete rebound test parameter analysis strength curve
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Shrinkage Behavior of High Performance Concrete at Different Elevated Temperatures under Different Sealing Conditions 被引量:2
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作者 潘志华 NAKAMURA Hidemi WEE Tionghuan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第3期138-141,共4页
The shrinkage behavior of high performance cement concrete made from Portland cement, ultra fine granulated blast furnace slag and pulverized fly ash with addition of superplasticizer at different temperatures from am... The shrinkage behavior of high performance cement concrete made from Portland cement, ultra fine granulated blast furnace slag and pulverized fly ash with addition of superplasticizer at different temperatures from ambient temperature to 120 ℃ under different seuliug conditions was investigated by means of length change measurement on cylindrical concrete specimens along with curing age. Results show that drying shrinkage deformations of titled concrete specimens increased rapidly as the curing temperature rose. The development of dryiing shrinkage deformatian can be efficiently controlled with the aid of aluminum tape sealing as compared with the unsealed specimens, especially when the curing temperature is below 60℃ , although it will increase dramatically when the curing temperature is elevated to above 90%" . Polymer coating on concrete specimens showed a similar effect on the control of drying shrinkage as the sealing operation with aluminum tape. 展开更多
关键词 high performance concrete SHRINKAGE granulated blast-furnace slag fly ash elevated temperature sealing condition
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Evaluation of the Shear Strength of Perfobond Rib Connectors in Ultra High Performance Concrete 被引量:4
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作者 Jae Yoon Kang Jong Sup Park +1 位作者 Woo Tai Jung Moon Seoung Keum 《Engineering(科研)》 2014年第13期989-999,共11页
Since the previous strength prediction models for the perfobond rib connector were proposed based upon the results of push-out tests conducted on concretes with compressive strength below 50 MPa, push-out test is perf... Since the previous strength prediction models for the perfobond rib connector were proposed based upon the results of push-out tests conducted on concretes with compressive strength below 50 MPa, push-out test is performed on perfobond shear connectors applying ultra high performance concretes with compressive strength higher than 80 MPa to evaluate their shear resistance. The test variables are chosen to be the diameter and number of dowel holes and, the change in the shear strength of the perfobond rib connector is examined with respect to the strength of two types of UHPC: steel fiber-reinforced concrete with compressive strength of 180 MPa and concrete without steel fiber with compressive strength of 80 MPa. The test results reveal that higher concrete strength and larger number of holes increased the shear strength, and that higher increase rate in the shear strength was achieved by the dowel action. The comparison with the predictions obtained by the previous models shows that the experimental results are close to the values given by the model proposed by Oguejiofor and Hosain [1]. 展开更多
关键词 Perfobond RIB CONNECTOR Ultra high performance concrete Push-Out Test SHEAR Strength
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The Corrosion Fatigue Properties of High Performance Concrete 被引量:1
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作者 陈拴发 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2005年第2期119-122,共4页
With the loading test equipment of corrosion fatigue specially designed, the corrosion fatigue characteristics of high performance concrete (HPC) withstanding the interaction of third point fatigue loading and Na_2SO_... With the loading test equipment of corrosion fatigue specially designed, the corrosion fatigue characteristics of high performance concrete (HPC) withstanding the interaction of third point fatigue loading and Na_2SO_4 solution were investigated and analyzed. The experimental results indicate that water-binder ratio evidently influences the corrosion fatigue characteristics of HPC, and a moderate quantitative fine mineral admixture enhances the corrosion fatigue resistance of HPC. The effect is more significant when fly ash and silica fume are added. 展开更多
关键词 high performance concrete corrosion fatigue water-binder ratio fine mineral admixture
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