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A Simple Mix Proportion Design Method Based on Frost Durability for Recycled High Performance Concrete Using Fully Coarse Recycled Aggregate 被引量:3
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作者 王新杰 LIU Wenying +2 位作者 WEI Da 朱平华 胡坤 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第5期1119-1124,共6页
Durability design of recycled high performance concrete(RHPC) is fundamental for improving the use rate and level of concrete waste as coarse recycled aggregate(CRA). We discussed a frostdurability-based mix propo... Durability design of recycled high performance concrete(RHPC) is fundamental for improving the use rate and level of concrete waste as coarse recycled aggregate(CRA). We discussed a frostdurability-based mix proportion design method for RHPC using 100 % CRA and natural sand. Five groups of RHPC mixes with five strength grades(40, 50, 60, 70 and 80 MPa) were produced using CRA with four quality classes, and their workability, 28 d compressive strengths and frost resistances(measured by the compressive strength loss ratio and the relative dynamic modulus of elasticity) were tested. Relationships between the 28 d compressive strength, the frost resistance and the CRA quality characteristic parameter, water absorption, were then developed. The criterion of a CRA maximum water absorption limit value for RHPC was suggested, independent of its source and quality class. The results show that all RHPC mixes achieve the expected target workability, strength, and frost durability. The research results demonstrate that the application of the proposed method does not require trial testing prior to use. 展开更多
关键词 recycled high performance concrete mix proportion design frost durability compressive strength water absorption
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INFLUENCE OF AIRCRAFT DEICER ON FREEZE-THAW DURABILITY OF HIGH PERFORMANCE CONCRETE
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作者 麻海燕 曹文涛 +2 位作者 白康 周鹏 韩丽娟 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2010年第4期306-312,共7页
The influence of glycol,the main composition of the most frequently used aircraft dicer,on the freeze-thaw durability of high performance concrete(HPC)is investigated.Freeze-thaw durability of HPC is tested by accel... The influence of glycol,the main composition of the most frequently used aircraft dicer,on the freeze-thaw durability of high performance concrete(HPC)is investigated.Freeze-thaw durability of HPC is tested by accelerated freeze-thaw test.Four kinds of the solution,i.e.,tap water,3.5% NaCl solution,glycol solutions,and a LBR-A type commercial aircraft deicer are employed.Results show that freeze-thaw durability of HPC exposed to glycol solutions is closely related to the solution concentrations.The failure of HPC exposed to 3.5% glycol solution is similar to that of those exposed to 3.5% NaCl solution,i.e.,serious surface scaling.While the damage of HPC exposed to 12.5%—25% glycol solutions is postponed.Compared with glycol solution,the commercial aircraft deicer has much more negative effects on HPC freeze-thaw durability compared with 3.5% NaCl solution.In the presence of commercial aircraft deicer for HPC subjected to freeze-thaw cycles,the deterioration is mainly due to scaling and spalling. 展开更多
关键词 concrete pavements durability aircraft deicer freeze-thaw cycles high performance concrete
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Assessment of early-age cracking of high-performance concrete in restrained ring specimens 被引量:2
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作者 Quang-phu NGUYEN Lin-hua JIANG Qiao ZHU 《Water Science and Engineering》 EI CAS 2010年第1期113-120,共8页
High-performance concrete (HPC) is stronger and more durable than conventional concrete. However, shrinkage and shrinkage cracking are common phenomena in HPC, especially early-age cracking. This study assessed earl... High-performance concrete (HPC) is stronger and more durable than conventional concrete. However, shrinkage and shrinkage cracking are common phenomena in HPC, especially early-age cracking. This study assessed early-age cracking of HPC for two mixtures using restrained ring tests. The two mixtures were produced with water/binder mass ratio (mw/mB) of 0.22 and 0.40, respectively. The results show that, with greater steel thickness, the higher degree of restraint resulted in a higher interface pressure and earlier cracking. With steel thickness of 6 mm, 19 mm, and 30 mm, the age of cracking were, respectively, 12 days, 8 days, and 5.4 days with the mw/mB = 0.22 mixture; and 22.5 days, 12.6 days, and 7.1 days with the mw/mB= 0.40 mixture. Cases of the same steel thickness show that the ring specimens with a thicker concrete wall crack later. With the mw/mB = 0.22 mixture, concrete walls with thicknesses of 37.5 mm, 75 mm, and 112.5 mm cracked at 3.4 days, 8.0 days, and 9.8 days, respectively; with the mw/mB = 0.40 mixture, the ages of cracking were 7.1 days, 12.6 days, and 16.0 days, respectively. 展开更多
关键词 high-performance concrete SHRINKAGE early-age cracking restrained ring test
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Characteristics of Crack Growth in High Performance Concrete Subjected to Fire
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作者 GaifeiPENG SammyYinNinCHAN +2 位作者 JianhuaYAN YefengLIU QuanxinYI 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第1期118-122,共5页
An experimental investigation was conducted to identify the characteristics of crack growth in high performance concrete (HPC) subjected to fire, including two parts of work, i.e. crack growth resistance determination... An experimental investigation was conducted to identify the characteristics of crack growth in high performance concrete (HPC) subjected to fire, including two parts of work, i.e. crack growth resistance determinations and cracking observations, using concrete of three strength grades 40 MPa, 70 MPa, and 110 MPa. The crack growth resistance curves (R-curves ) of HPC subjected to high temperatures were determined using notched three-point bend beam specimens of 100 mm×100 mm×300mm. The R-curve (crack growth resistance curve) flattening shows that the crack growth resistance has been significantly reduced by elevated temperature. Concrete with a higher strength grade has a steeper R-curve, with a higher fracture toughness but a shorter critical crack growth. The shorter critical crack growth means that concrete of a higher strength grade has a more brittle behavior. The concrete cracking observations reveal that the consequences of rapid heating are quite different from those of slow heating. For slow heating at a rate of 0.5℃/min, HPC suffered no obvious cracking below 600℃ even if it had a high moisture content. Explosive spalling is an extreme case of the internal cracking driven mainly by vapor pressure. All these results confirmed the vapor pressure mechanism for spading behavior which should be more significant for denser concrete. The crack growth ranges obtained from the R-curve determination results are in good agreement with those measured in the concrete cracking observations. 展开更多
关键词 high performance concrete Fire resistance Explosive spoiling crack growth Vapor pressure
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Wedge Splitting Test and Inverse Analysis on Fracture Behaviour of Fiber Reinforced and Regular High Performance Concretes 被引量:2
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作者 Kamil Hodicky Thomas Hulin Jacob W. Schmidt Henrik Stang 《Journal of Civil Engineering and Architecture》 2014年第5期595-603,共9页
The fracture behaviour of three fiber reinforced and regular HPC (high performance concretes) is presented in this paper. Two mixes are based on optimization of HPC whereas the third mix was a commercial mix develop... The fracture behaviour of three fiber reinforced and regular HPC (high performance concretes) is presented in this paper. Two mixes are based on optimization of HPC whereas the third mix was a commercial mix developed by CONTEC ApS (Denmark). The wedge splitting test setup with 48 cubical specimens was used experimentally and the cracked non-linear hinge model based on the fictitious crack model was applied for the interpretation of the results. The stress-crack opening relationships were extracted by using inverse analysis algorithm for various multi-linear softening curves. This showed that the refinement of the softening curves reflects in improved accuracy of the WST (wedge splitting test) simulation in comparison with bi-linear softening curves with acceptable increase of computational time. Furthermore, the fracture mechanics parameters such as COD (crack opening displacement), fracture energy and characteristic length were experimentally determined. Experiments were performed at 1, 3, 7 and 28 days. Fracture energy, Gf, was found to increase with age, while the characteristic length, Lch, was found to decrease. 展开更多
关键词 high performance concrete wedge splitting test inverse analysis fictitious crack model.
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Development of Optimal Structural System for Hybrid Cable-Stayed Bridges Using Ultra High Performance Concrete 被引量:1
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作者 Hee Seok Kim Young Jin Kim +1 位作者 Won Jong Chin Hyejin Yoon 《Engineering(科研)》 2013年第9期720-728,共9页
This study developed an optimal structural system for the hybrid cable-stayed bridge expected to have a durable lifetime of 200 years and of which major structural members are made of ultra high performance concrete (... This study developed an optimal structural system for the hybrid cable-stayed bridge expected to have a durable lifetime of 200 years and of which major structural members are made of ultra high performance concrete (UHPC) with 200 MPa-class compressive strength. This innovative cable-stayed bridge system makes it possible to reduce each of the construction and maintenance costs by 20% compared to the conventional concrete cable-stayed bridge by improving significantly the weight and durability of the bridge. Therefore, detail design is carried out considering a real 800 m cable-stayed bridge and the optimal structure of the hybrid cable-stayed bridge is proposed and verified. 展开更多
关键词 HYBRID CABLE-STAYED Bridge Ultra high performance concrete (UHPC) OPTIMAL Structural System durability
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Multi-powder dam concrete with high performance and low adiabatic temperature rise
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作者 李新宇 陈文耀 陈炜旻 《中国有色金属学会会刊:英文版》 CSCD 2009年第S3期727-733,共7页
Based on the fluidity, strength, heat of hydration and loop crack resistance experiment of multi-powder paste, the components and proportion of multi-powder were optimized and the concrete properties were studied. The... Based on the fluidity, strength, heat of hydration and loop crack resistance experiment of multi-powder paste, the components and proportion of multi-powder were optimized and the concrete properties were studied. The multi-powder consists of limestone powder, slag, fly ash and moderate heat Portland cement (PMH cement). The results show that the compressive strength of the multi-powder paste and mortar is close to those of PMH cement, fly ash paste and mortar currently used in dam concrete, yet the flexural strength is relatively higher. The multi-powder paste is featured by larger fluidity, lower heat of hydration and delayed cracking time. In comparison, less unit water consumption and cement is used in multi-powder concrete, and under premise of equal mechanical performance, deformation, thermal performance and durability, the adiabatic temperature rise at 28 d is reduced by 2 ℃. In this way, the crack resistance is improved and it is feasible both technically and economically to produce HPC for dam concrete. 展开更多
关键词 multi-powder PASTE dam concrete high performance concrete crack resistance ADIABATIC temperature RISE
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High-Performance and Multifunctional Cement-Based Composite Material 被引量:12
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作者 Victor C. Li 《Engineering》 SCIE EI 2019年第2期250-260,共11页
Concrete is a continuously evolving material, and even the definition of high-performance concrete has changed over time. In this paper, high-performance characteristics of concrete material are considered to be those... Concrete is a continuously evolving material, and even the definition of high-performance concrete has changed over time. In this paper, high-performance characteristics of concrete material are considered to be those that support the desirable durability, resilience, and sustainability of civil infrastructure that directly impact our quality of life. It is proposed that high-performance material characteristics include tensile ductility, autogenous crack-width control, and material “greenness.” Furthermore, smart functionalities should be aimed at enhancing infrastructure durability, resilience, and sustainability by responding to changes in the surrounding environment of the structure in order to perform desirable functions, thus causing the material to behave in a manner more akin to certain biological materials. Based on recent advances in engineered cementitious composites (ECCs), this paper suggests that concrete embodying such high-performance characteristics and smart multifunctionalities can be designed, and holds the potential to fulfill the expected civil infrastructure needs of the 21st century. Highlights of relevant properties of ECCs are provided, and directions for necessary future research are indicated. 展开更多
关键词 high-performance concrete MULTIFUNCTION Smart CEMENT-BASED composite durability RESILIENCE Sustainability Infrastructure
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海砂超高性能混凝土试验 被引量:2
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作者 韦建刚 陈荣 +2 位作者 黄伟 卞学海 麻秀星 《重庆大学学报》 CAS CSCD 北大核心 2024年第2期14-21,共8页
采用未淡化的海砂制备超高性能混凝土(UHPC)和普通混凝土,研究了不同氯离子含量的海砂对UHPC抗压强度、孔结构、快速氯离子渗透性以及内置钢筋耐久性的影响,并与普通混凝土进行分析比较。结果表明,海砂中的氯离子含量对UHPC抗压强度并... 采用未淡化的海砂制备超高性能混凝土(UHPC)和普通混凝土,研究了不同氯离子含量的海砂对UHPC抗压强度、孔结构、快速氯离子渗透性以及内置钢筋耐久性的影响,并与普通混凝土进行分析比较。结果表明,海砂中的氯离子含量对UHPC抗压强度并不会产生较大的消极影响;海砂UHPC的临界孔半径约为2 nm,与海砂普通混凝土不同,孔隙率随海砂中氯含量的增加而增加;即使海砂氯离子含量高达0.636%,海砂UHPC的氯离子渗透性仍可忽略不计;海砂UHPC中钢筋在28 d后处于钝化状态并趋于稳定。 展开更多
关键词 海砂 超高性能混凝土 抗压强度 孔结构 耐久性
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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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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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部分充填式窄幅钢箱-UHPC组合梁抗裂性能
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作者 莫时旭 方威 +1 位作者 郑艳 房洋洋 《混凝土》 CAS 北大核心 2024年第7期89-93,98,共6页
为研究部分充填式窄幅钢箱-UHPC组合梁的抗裂性能,开展了4根不同钢纤维掺量的部分充填式窄幅钢箱-UHPC组合梁与1根部分充填式窄幅钢箱-NC组合梁静力加载试验。试验表明:在负弯矩作用下,部分充填式窄幅钢箱-UHPC组合梁裂缝呈现数量多、... 为研究部分充填式窄幅钢箱-UHPC组合梁的抗裂性能,开展了4根不同钢纤维掺量的部分充填式窄幅钢箱-UHPC组合梁与1根部分充填式窄幅钢箱-NC组合梁静力加载试验。试验表明:在负弯矩作用下,部分充填式窄幅钢箱-UHPC组合梁裂缝呈现数量多、短小且密集的特点;同等配筋率的条件下,不同钢纤维掺量(0、1%、2%和3%)部分充填式窄幅钢箱-UHPC组合梁与部分充填式窄幅钢箱-NC组合梁相比,在弹性阶段其刚度明显提高,最大裂缝宽度随钢纤维掺量的增加而减少,开裂强度分别提高了36.0%、48.8%、82.0%和112.0%,UHPC显著提高了组合梁的抗裂性能;可以参考按照JTG 3362—2018中裂缝宽度式乘以0.8的修正系数来计算部分充填式窄幅钢箱-UHPC组合梁裂缝宽度。 展开更多
关键词 组合梁 超高性能混凝土 钢纤维 裂缝宽度
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乳化沥青对超高性能混凝土工程特性及增韧效果的影响
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作者 邹桂莲 杨素愫 +2 位作者 虞将苗 吴坤宝 张园 《工程科学学报》 EI CSCD 北大核心 2024年第12期2229-2237,共9页
开裂是目前超高性能混凝土(UHPC)的主要破坏形式,增加弯曲韧性是解决UHPC开裂破坏的主要技术途径.为探究乳化沥青在水泥基材中的增韧效果,研究了不同类型及掺量的乳化沥青对UHPC工作性能、力学强度和弯曲韧性的影响.结果表明阴离子乳化... 开裂是目前超高性能混凝土(UHPC)的主要破坏形式,增加弯曲韧性是解决UHPC开裂破坏的主要技术途径.为探究乳化沥青在水泥基材中的增韧效果,研究了不同类型及掺量的乳化沥青对UHPC工作性能、力学强度和弯曲韧性的影响.结果表明阴离子乳化沥青和阳离子乳化沥青均会小幅度降低UHPC的工作性能与力学强度,但能有效提升UHPC的弯曲韧性.相较于阳离子乳化沥青,阴离子乳化沥青UHPC的工作性能与力学强度优于阳离子乳化沥青UHPC,增韧效果更显著;综合考虑力学性能及工作性能,推荐使用阴离子乳化沥青,且优选掺量为3%.通过扫描电子显微镜观察掺入乳化沥青后的UHPC微观结构,发现乳化沥青可有效优化混凝土内部结构、填充微裂缝;乳化沥青的黏弹特性能够有效抑制微裂缝的形成与发展. 展开更多
关键词 超高性能混凝土 开裂 乳化沥青 增韧 作用机理
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组合梁栓钉对高性能混凝土约束收缩效应研究
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作者 占玉林 王吉坤 +3 位作者 邵俊虎 沈东 荆国强 贾银钧 《建筑科学与工程学报》 CAS 北大核心 2024年第2期49-57,共9页
为探究高性能混凝土在栓钉约束作用下的收缩特征及开裂行为,制作了钢-混凝土组合构件,通过试验研究了不同栓钉因素对高性能混凝土约束收缩应变、约束度及开裂风险的影响规律,运用正交试验方法研究了栓钉直径、间距、高度对高性能混凝土... 为探究高性能混凝土在栓钉约束作用下的收缩特征及开裂行为,制作了钢-混凝土组合构件,通过试验研究了不同栓钉因素对高性能混凝土约束收缩应变、约束度及开裂风险的影响规律,运用正交试验方法研究了栓钉直径、间距、高度对高性能混凝土约束收缩的影响,得到了主要敏感因素。结果表明:高性能混凝土较普通混凝土的约束收缩应变发展趋势更为平滑;各栓钉因素对约束收缩的敏感性影响的主次顺序依次为直径、间距、高度;混凝土收缩在组合梁高度方向上呈现出一定的收缩梯度,混凝土约束收缩应变随高度增加而增大,但栓钉高度在30 mm处、间距在75 mm处、直径在150 mm处对高性能混凝土约束收缩几乎没有影响;栓钉对混凝土的约束作用可定义为3个阶段,即约束增强阶段、约束下降阶段和约束稳定阶段;组合梁构件最大开裂风险发生在栓钉的根部,当栓钉间距由150 mm减少到75 mm,直径由13 mm增加到22 mm时,最大开裂风险分别增加了20.03%和36.05%,栓钉高度的改变对最大开裂风险没有影响;采用高性能混凝土以及直径小、高度高的栓钉布置方式可以有效减小混凝土的收缩及开裂风险。 展开更多
关键词 钢-混组合梁 栓钉 高性能混凝土 正交试验 约束收缩 开裂风险
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UHPC-窄幅钢箱组合梁裂缝宽度计算方法
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作者 黄荆 莫时旭 +1 位作者 刘晓贝 郑艳 《混凝土》 CAS 北大核心 2024年第8期63-66,89,共5页
针对钢-混凝土组合梁负弯矩区易开裂的情况,提出了UHPC-窄幅钢箱组合梁结构,通过UHPC抵抗组合梁负弯矩区的拉力。通过对5根试验梁进行负弯矩下的静力加载试验,得到不同钢纤维掺量对翼板中裂缝分布的影响,分析了各试验梁的裂缝分布特点,... 针对钢-混凝土组合梁负弯矩区易开裂的情况,提出了UHPC-窄幅钢箱组合梁结构,通过UHPC抵抗组合梁负弯矩区的拉力。通过对5根试验梁进行负弯矩下的静力加载试验,得到不同钢纤维掺量对翼板中裂缝分布的影响,分析了各试验梁的裂缝分布特点,并推导了裂缝宽度的计算方法,得到理论值与试验值吻合良好。 展开更多
关键词 组合梁 负弯矩 超高性能混凝土 裂纹扩展
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带波形钢板的UHPC免模板湿接缝抗弯模型试验研究
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作者 黄心仪 李立峰 +2 位作者 王连华 王哲宇 蒋德松 《铁道建筑》 北大核心 2024年第1期7-13,共7页
针对预制装配式桥梁中桥面板湿接缝处的受力特点和现有接缝构造形式,提出一种以预埋波形钢板为底模的超高性能混凝土(Ultra-High Performance Concrete,UHPC)免模板湿接缝构造形式,解决接缝现场支模问题。为研究新型接缝的力学性能,设计... 针对预制装配式桥梁中桥面板湿接缝处的受力特点和现有接缝构造形式,提出一种以预埋波形钢板为底模的超高性能混凝土(Ultra-High Performance Concrete,UHPC)免模板湿接缝构造形式,解决接缝现场支模问题。为研究新型接缝的力学性能,设计了5片试验梁,以钢纤维含量为试验参数,开展四点弯曲全过程抗弯性能试验。结果表明:各试验梁主裂缝均位于预制段,发生弯曲破坏,接缝段未产生较大破坏;提高钢纤维含量可以增强UHPC-NC(Normal Concrete)界面黏结,提升接缝的抗裂性能,但对结构的抗弯承载力影响较小;钢纤维含量为1.0%的免模板接缝梁抗裂性能仅次于UHPC整体梁,同时具有结构简单、施工简化、造价经济等优点,说明该接缝构造形式运用于实际工程中是可行和可靠的;UHPC钢纤维含量建议取1.0%。 展开更多
关键词 公铁两用桥梁 超高性能混凝土 弯曲性能试验 预制桥面板 湿接缝 抗裂性能
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火成岩质矿物材料对混凝土性能的影响
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作者 王浩 谭盐宾 +4 位作者 刘星 杨鲁 元强 谢斌福 刘博 《硅酸盐通报》 CAS 北大核心 2024年第9期3244-3251,共8页
我国西南地区粉煤灰混凝土矿物掺合料资源匮乏,亟待开发替代材料。本文研究了四种火成岩质矿物材料对混凝土工作性能、力学性能以及耐久性能的影响,评估了混凝土的开裂风险。结果表明:火成岩质矿物材料等质量替代粉煤灰后,硬化混凝土的... 我国西南地区粉煤灰混凝土矿物掺合料资源匮乏,亟待开发替代材料。本文研究了四种火成岩质矿物材料对混凝土工作性能、力学性能以及耐久性能的影响,评估了混凝土的开裂风险。结果表明:火成岩质矿物材料等质量替代粉煤灰后,硬化混凝土的抗压强度和抗氯离子渗透性能均满足标准要求,减水剂用量、早期抗压强度、电通量以及收缩率均高于粉煤灰混凝土;掺加凝灰岩微粉的硬化混凝土与粉煤灰混凝土性能基本相当,玄武岩微粉混凝土对减水剂的需求量最大、抗压强度最低。掺加火成岩质矿物材料的混凝土抗裂性能有所降低,掺加凝灰岩微粉和粉煤灰的混凝土开裂风险为“低”级,掺加安山岩微粉、玄武岩微粉以及流纹岩微粉混凝土的开裂风险为“中低”级。四种火成岩质矿物材料混凝土中凝灰岩微粉混凝土性能最优,凝灰岩微粉可替代粉煤灰掺入混凝土。 展开更多
关键词 混凝土 火成岩质矿物材料 工作性能 力学性能 耐久性能 开裂风险
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采用纳米氧化铝制备高弹性模量超高性能混凝土的可行性研究 被引量:1
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作者 褚洪岩 汤金辉 +2 位作者 王群 高李 赵志豪 《材料导报》 EI CAS CSCD 北大核心 2024年第5期172-177,共6页
纳米材料具有粒径小、比表面积大、化学活性高等独特性能,能够提升水泥基材料的力学性能和在恶劣环境下的耐久性,在水泥基材料领域具有广阔的应用前景。弹性模量是超高性能混凝土(UHPC)的重要力学参数之一。虽然目前UHPC的抗压强度得到... 纳米材料具有粒径小、比表面积大、化学活性高等独特性能,能够提升水泥基材料的力学性能和在恶劣环境下的耐久性,在水泥基材料领域具有广阔的应用前景。弹性模量是超高性能混凝土(UHPC)的重要力学参数之一。虽然目前UHPC的抗压强度得到了大幅提升,但是其弹性模量并未随抗压强度同幅度增长。为了探究采用纳米氧化铝(NA)制备高弹性模量UHPC的可行性,本工作利用MAA (Modified Andreasen and Andersen)模型设计UHPC初始配合比,研究不同掺量的NA对UHPC工作性能、力学性能和耐久性能的影响。此外,本工作还探究了NA对UHPC微观孔结构和微观力学性能的影响。研究表明:(1)NA能使UHPC的28 d抗折强度、抗压强度、弹性模量分别提高8.23%~16.31%、8.04%~26.39%、9.44%~16.55%;(2)NA能使UHPC的干缩、氯离子迁移系数分别降低2.54%~13.01%、8.21%~17.28%;(3)NA能够优化UHPC的孔结构,提高其浆体弹性模量;(4)综合考虑NA对UHPC工作性能、力学性能和耐久性能的影响,NA在UHPC中的优选掺量为1.0%。本工作的研究结果对利用NA制备高弹性模量的UHPC具有指导意义。 展开更多
关键词 纳米氧化铝 超高性能混凝土 力学性能 弹性模量 干燥收缩 耐久性
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轻型组合桥梁负弯矩区接缝抗弯性能试验
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作者 邓舒文 邵旭东 +1 位作者 晏班夫 邱明红 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2024年第2期399-412,共14页
对适用于轻型组合桥梁负弯矩区的T形横向接缝抗弯性能进行试验研究,对负弯矩加载接缝的全过程进行理论分析,对接缝设计参数进行讨论.研究结果表明,随着荷载的增大,试件的主裂缝出现在连续浇筑的UHPC接缝界面和加载点下方的面板表面,试... 对适用于轻型组合桥梁负弯矩区的T形横向接缝抗弯性能进行试验研究,对负弯矩加载接缝的全过程进行理论分析,对接缝设计参数进行讨论.研究结果表明,随着荷载的增大,试件的主裂缝出现在连续浇筑的UHPC接缝界面和加载点下方的面板表面,试件中部未发现明显裂纹,UHPC接缝界面的可视初裂强度可以满足实桥设计荷载.对试验梁进行分析,提出接缝最大裂缝宽度、考虑UHPC拉伸刚度效应的设计弯矩和挠度计算公式,获得每阶段承载力的计算式,预测结果与试验结果吻合良好.通过参数讨论和计算可知,跨度L=20~50 m的轻型组合桥梁T形接缝上部加长长度可以设置为0.1L. 展开更多
关键词 超高性能混凝土(UHPC) UHPC接缝 抗弯性能试验 裂缝宽度计算式 挠度计算式 极限承载力计算式
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采用DIC技术的超高性能混凝土的断裂性能研究
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作者 樊春林 丁小明 +2 位作者 刘恒波 陈红鸟 许应杰 《混凝土》 CAS 北大核心 2024年第6期220-225,共6页
为研究超高性能混凝土(UHPC)的Ⅱ型断裂性能,对不同初始缝高比(a/W)的UHPC双缺口立方体(DNC)试件进行了抗压试验。基于数字图像相关(DIC)技术分析了UHPC的DNC试件的失效特征和裂缝扩展过程,得到了UHPC的Ⅱ型断裂参数,并评估了不同a/W下U... 为研究超高性能混凝土(UHPC)的Ⅱ型断裂性能,对不同初始缝高比(a/W)的UHPC双缺口立方体(DNC)试件进行了抗压试验。基于数字图像相关(DIC)技术分析了UHPC的DNC试件的失效特征和裂缝扩展过程,得到了UHPC的Ⅱ型断裂参数,并评估了不同a/W下UHPC的断裂性能。试验表明:试件的破坏模式为沿缺口尖端发生局部偏剪切破坏,其主裂缝包括斜裂缝和左、右垂直裂缝,试件的荷载-位移曲线呈现出双峰值现象,两个峰值荷载分别对应斜裂缝和垂直裂缝充分扩展的时刻;斜裂缝和垂直裂缝的张开位移(COD)和滑移位移(CSD)与韧带高度近似呈线性关系;随着a/W的增大,起裂荷载减小,断裂韧度和断裂能先增大后减小,斜裂缝的长度和起始角减小,斜裂缝缺口尖端处的COD减小,CSD基本不变。 展开更多
关键词 超高性能混凝土 双缺口立方体 数字图像相关 裂缝张开位移 裂缝滑移位移 断裂性能
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