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Different Curing Systems on Mechanical Properties of Ultra-High Performance Concrete with Coarse Aggregate
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作者 赵秋 杨明 +1 位作者 庄一舟 聂宇 《Journal of Donghua University(English Edition)》 EI CAS 2017年第4期492-497,共6页
High durability and high tensile strength makes ultra-high performance concrete( UHPC) an ideal material for bridges,while its early shrinkage in the construction of cast-in-situ mass concrete leads structure crack-ea... High durability and high tensile strength makes ultra-high performance concrete( UHPC) an ideal material for bridges,while its early shrinkage in the construction of cast-in-situ mass concrete leads structure crack-easily,which restricts the application of UHPC in deck system. Whether reasonable amount of coarse aggregate can influence the strength of UHPC and improve the shrinkage performance or reduce the cost is still in doubt. Besides,in order to improve its constructability and workability, whether autoclaved curing system of UHPC can be changed remains to be further researched. In response to these circumstances, a systematic experimental study on the strength of UHPC mixed with coarse aggregate in different ratios has been presented in this paper. The three curing systems,namely standard curing,180-200 ℃/1. 1 MPa autoclaved curing,and hot water curing were tested to reveal the relationship between UHPC's properties and curing systems,and the UHPC ' s microstructure was also preliminarily studied by scanning electron microscope( SEM). The experimental research can draw the following conclusions. Under the condition of the same mix ratio, autoclaved curing guarantees the highest compressive strength,followed by hot water curing and standard curing. The compressive strength of concrete increases with the temperature in the range of 25 to 90 ℃ hot water curing,and high temperature in precuring period can speed up the strength development of UHPC,but the sequence of precuring period does not obviously affect the results. In 90 ℃ hot water and autoclaved curing,the strength is over 150 MPa,and it has little relation with gravel ratio. While the value increases first and then decreases in a lower temperature curing with the increasing of gravel amount,even only about 80 MPa at room temperature. The strength increases moderately along with the increase of the curing age by standard curing,especially in the initial stage. 展开更多
关键词 ultra-high performance concrete(uhpc) coarse aggregate curing system STRENGTH MICROSTRUCTURE
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Influence Mechanism of Curing Regimes on Interfacial Transition Zone of Lightweight Ultra-High Performance Concrete
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作者 李洋 张高展 +3 位作者 YANG Jun ZHANG Jian DING Qingjun ZHAO Mingyu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第3期591-603,共13页
This study aims to clarify the effects of curing regimes and lightweight aggregate(LWA)on the morphology, width and mechanical properties of the interfacial transition zone(ITZ) of ultra-high performance concrete(UHPC... This study aims to clarify the effects of curing regimes and lightweight aggregate(LWA)on the morphology, width and mechanical properties of the interfacial transition zone(ITZ) of ultra-high performance concrete(UHPC), and provide reference for the selection of lightweight ultra-high performance concrete(L-UHPC) curing regimes and the pre-wetting degree LWA. The results show that, under the three curing regimes(standard curing, steam curing and autoclaved curing), LWA is tightly bound to the matrix without obvious boundaries. ITZ width increases with the water absorption of LWA and decreases with increasing curing temperature. The ITZ microhardness is the highest when water absorption is 3%, and the microhardness value is more stable with the distance from LWA. Steam and autoclaved curing increase ITZ microhardness compared to standard curing. As LWA pre-wetting and curing temperatures increase, the degree of hydration at the ITZ increases, generating high-density CSH(HD CSH) and ultra-high-density CSH(UHD CSH), and reducing unhydrated particles in ITZ. ITZ micro-mechanical properties are optimized due to hydration products being denser. 展开更多
关键词 curing regime ultra-high performance concrete lightweight aggregate interfacial transition zone meso-mechanical properties micro-mechanical properties
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Preparation of Heavyweight Ultra-high Performance Concrete Using Barite Sand and Titanium-rich Heavy Slag Sand 被引量:2
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作者 DING Qingjun DENG Chao +2 位作者 YANG Jun ZHANG Gaozhan HOU Dongshuai 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2021年第5期644-652,共9页
The heavyweight ultra-high performance concrete(HUHPC)was prepared with barite sand partially replaced by titanium-rich heavy slag sand(THS)at replacement proportion of 0%,30%,50%,70%and 100%in this work.The results s... The heavyweight ultra-high performance concrete(HUHPC)was prepared with barite sand partially replaced by titanium-rich heavy slag sand(THS)at replacement proportion of 0%,30%,50%,70%and 100%in this work.The results show that THS incorporation can effectively improve the mechanical properties and reduce the volume shrinkage of HUHPC.The HUHPC with 50%THS replacement reaches an apparent density of 2890 kg/m^(3)(for fresh HUHPC),28 d compressive strength of 129 MPa,28 d flexural strength of 23 MPa,28 d flexural toughness of 28.4,56 d volume shrinkage of 359×10^(-4) and,as expected,excellent durability.Microstructural investigation demonstrates that the internal curing of pre-wetted THS promotes the hydration of the surrounding cement paste thereby strengthening the interfacial transition zone,resulting in the“hard shell”formation around aggregate to“protect”the aggregate.Additionally,the“pin structure”significantly improves the cement paste-aggregate interfacial connection.The combination of“hard shell protection”and“pin structure”remarkably improve the mechanical properties of HUHPC produced with porous THS aggregate. 展开更多
关键词 heavyweight ultra-high performance concrete titanium-rich heavy slag sand mechanical properties durability internal curing
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Experimental testing of RC shear wall seismic retrofit using selective weakening,self-centering and Ultra High performance concrete
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作者 Sumedh S.harma Sriram Aaleti Pinar Okumus 《Resilient Cities and Structures》 2023年第1期76-90,共15页
Traditional retrofit methods often focus on increasing the structure’s strength,stiffness,or both.This may in-crease seismic demand on the structure and could lead to irreparable damage during a seismic event.This pa... Traditional retrofit methods often focus on increasing the structure’s strength,stiffness,or both.This may in-crease seismic demand on the structure and could lead to irreparable damage during a seismic event.This paper presents a retrofit method,integrating concepts of selective weakening and self-centering(rocking)to achieve low seismic damage for non-code compliant reinforced concrete shear walls.The proposed method involves con-verting traditional cast-in-place concrete shear walls into rocking walls,which helps to lower the shear demand,while allowing re-centering.Two large-scale lateral load tests were performed to validate the retrofit concept on a concrete shear wall designed according to pre-1970s standards.The design parameters investigated were amount of energy dissipating reinforcements and confinement enhancement.Two different methods using Ultra High Performance Concrete(UHPC)were investigated to provide additional confinement to boundary elements of older shear walls.Observations from the tests showed minimized damage and enhanced recentering in the retrofitted wall specimens.Use of UHPC in the boundary elements of the retrofitted walls provided additional confinement and reduced damage in the rocking corners. 展开更多
关键词 Seismic retrofit Reinforced concrete shear walls Selective weakening SELF-CENTERING ultra-high performance concrete(uhpc) CONFINEMENT
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低收缩免蒸养UHPC桥面铺装材料性能及构造设计
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作者 顾松 魏道新 +2 位作者 马磊 杨碧宇 郭为强 《交通运输研究》 2024年第2期97-109,共13页
为减少超高性能混凝土(UHPC)的收缩变形并降低养护成本,以多孔烧结铝矾石(CB)骨料作为内养护剂,研发了一种低收缩免蒸养的UHPC。通过室内试验,对自研UHPC的力学和变形性能进行了测试与评估。通过有限元数值模拟,分析了UHPC桥面铺装层的... 为减少超高性能混凝土(UHPC)的收缩变形并降低养护成本,以多孔烧结铝矾石(CB)骨料作为内养护剂,研发了一种低收缩免蒸养的UHPC。通过室内试验,对自研UHPC的力学和变形性能进行了测试与评估。通过有限元数值模拟,分析了UHPC桥面铺装层的早期温湿度应力演化规律。结果表明,自研UHPC在免蒸养条件下仍然具有超高强度,28 d抗压强度达154 MPa,28 d劈裂抗拉强度达19.3 MPa;含CB骨料UHPC的28 d自收缩变形仅为160μm/m,可有效降低UHPC铺装层发生翘曲、与下层混凝土发生脱粘的风险;UHPC的耐磨耗和抗冲击性能远优于普通混凝土,可延长桥面铺装层的使用寿命。数值计算结果表明,UHPC铺装层的最大拉应力受铺装层厚度和长度影响不大,因此不需要切缝。为增强UHPC铺装层与基层之间的黏结性能,基层混凝土表面应做粗糙化处理(露石表面),基层与UHPC铺装层之间按设计进行植筋。通过上述研究,验证了采用自研UHPC作为混凝土桥面铺装层的可行性。 展开更多
关键词 超高性能混凝土 桥面铺装 低收缩 免蒸养 早龄期应力
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Analysis and Prediction Model Reinforced UHPC Shrinkage Property
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作者 Shuwen Deng Zhiming Huang +1 位作者 Hao Chen Jia Hu 《Journal of Architectural Research and Development》 2024年第2期99-107,共9页
This paper explores the shrinkage of reinforced UHPC under high-temperature steam curing and natural curing conditions.The results are compared with the existing shrinkage prediction models.The results show that the m... This paper explores the shrinkage of reinforced UHPC under high-temperature steam curing and natural curing conditions.The results are compared with the existing shrinkage prediction models.The results show that the maximum shrinkage strain of reinforced UHPC after steam curing is 164μεand gradually becomes zero.As for natural curing,the maximum shrinkage strain is 173μεand the value stabilizes on the 10th day after pouring.This indicated that steam curing can significantly reduce shrinkage time.Compared with the plain UHPC tested in the previous literature,the structural reinforcement can significantly inhibit the UHPC shrinkage and greatly reduce the risk of cracking due to shrinkage.By comparing the results in this paper with the existing models for predicting the shrinkage strain development,it is found that the formula recommended in the French UHPC structural and technical specification is suitable for the shrinkage curve in the present paper. 展开更多
关键词 ultra-high performance concrete(uhpc) uhpc shrinkage Reinforced uhpc slab Shrinkage prediction
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Conceptual Design of Hybrid Cable-Stayed Bridge with Central Span of 1000 m Using UHPC 被引量:4
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作者 Hyejin Yoon Won Jong Chin +2 位作者 Hee Seok Kim Moon Seoung Keum Young Jin Kim 《Engineering(科研)》 2013年第9期744-750,共7页
Ultra-high performance concrete (UHPC) is featured by a compressive strength 5 times higher than that of ordinary concrete and by a high durability owing to the control of the chloride penetration speed by its dense s... Ultra-high performance concrete (UHPC) is featured by a compressive strength 5 times higher than that of ordinary concrete and by a high durability owing to the control of the chloride penetration speed by its dense structure. The high strength characteristics of UHPC offer numerous advantages like the reduction of the quantities of cables and foundations by the design of a lightweight superstructure in the case of the long-span bridge preserving its structural performance through axial forces and structures governed by compression. This study conducted the conceptual design of a hybrid cable-stayed bridge with central span of 1000 m and exploiting 200 MPa-class UHPC. The economic efficiency of the conceptual design results of the hybrid cable-stayed bridge with central span of 1000 m and of Sutong Bridge, the longest cable-stayed bridge in the world, was analyzed. 展开更多
关键词 ultra-high performance concrete uhpc CABLE-STAYED BRIDGE 200 MPa-Class Sutong BRIDGE
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基于NC-UHPC的空心板梁铰缝快速加固修复技术的应用与实践 被引量:4
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作者 刘经熠 《城市道桥与防洪》 2019年第11期164-167,188,m0017,m0018,共7页
结合超高性能混凝土(UHPC)的材料抗裂性能及变形韧性强的特点,采用常温养护型超高性能混凝土(NC-UHPC)作为铰接空心板梁铰缝病害的快速修复技术材料,设计了铰缝修复方案;并以上海S19高速公路江家浜桥为示范工程开展了该技术的工程应用... 结合超高性能混凝土(UHPC)的材料抗裂性能及变形韧性强的特点,采用常温养护型超高性能混凝土(NC-UHPC)作为铰接空心板梁铰缝病害的快速修复技术材料,设计了铰缝修复方案;并以上海S19高速公路江家浜桥为示范工程开展了该技术的工程应用及实桥荷载试验。工程应用及荷载试验结果表明,该技术方案相比常规早强混凝土铰缝修复技术大幅减轻上部结构恒载负担,施工方便快捷;实桥荷载试验表明,该技术方案加固的结构刚度和整体性优于预期,在铰缝快速修复工程中有广阔的应用前景。 展开更多
关键词 超高性能混凝土 维修加固 常温养护 铰缝 快速施工
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陶粒内养护超高性能混凝土(UHPC)的制备与性能研究 被引量:1
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作者 黄展魏 王安辉 +2 位作者 张艳芳 倪娇娇 陈晓君 《混凝土与水泥制品》 2023年第10期1-5,共5页
针对超高性能混凝土(UHPC)因胶凝材料用量大、水胶比小导致的体积稳定性问题,采用0、5%、10%、15%、20%陶粒等体积取代细骨料,制备了一种陶粒内养护UHPC,研究了陶粒取代率对UHPC工作性、力学性能、体积稳定性的影响,并运用压汞法、XPS、... 针对超高性能混凝土(UHPC)因胶凝材料用量大、水胶比小导致的体积稳定性问题,采用0、5%、10%、15%、20%陶粒等体积取代细骨料,制备了一种陶粒内养护UHPC,研究了陶粒取代率对UHPC工作性、力学性能、体积稳定性的影响,并运用压汞法、XPS、SEM微观测试方法分析了陶粒对UHPC微观结构的影响。结果表明:陶粒在胶凝材料水化过程中因内部相对湿度差释放水分,促进了水化反应,提高了水化产物的数量,增加了结构的致密性,改善了UHPC的力学性能、体积稳定性和孔结构;但当陶粒超过一定掺量时,也会带来不利影响。 展开更多
关键词 超高性能混凝土 内养护 体积稳定性 孔结构 陶粒
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集中配筋连接预制剪力墙抗震性能试验研究 被引量:1
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作者 肖扬 卢谦 +3 位作者 罗小勇 陈林松 程俊峰 张璧玮 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期201-218,共18页
针对现有预制混凝土剪力墙接缝施工容错率低、混凝土现场浇筑作业量大和钢筋锚固过长等不足,提出一种使用超高性能混凝土(UHPC)的集中配筋连接预制剪力墙。通过对比1片现浇剪力墙试件、3片不同接缝形式的集中配筋连接预制剪力墙试件的... 针对现有预制混凝土剪力墙接缝施工容错率低、混凝土现场浇筑作业量大和钢筋锚固过长等不足,提出一种使用超高性能混凝土(UHPC)的集中配筋连接预制剪力墙。通过对比1片现浇剪力墙试件、3片不同接缝形式的集中配筋连接预制剪力墙试件的拟静力试验结果,揭示该类预制剪力墙的破坏规律和抗震性能、竖缝对墙体抗震性能的影响和连接钢筋的受力特点。采用ABAQUS软件对试件进行有限元模拟,分析轴压比和集中配筋率对试件抗震性能的影响。研究结果表明:预制试件与现浇试件具有相同的破坏规律,均为弯剪破坏;这2类试件的滞回曲线均较饱满,骨架曲线走势基本一致,耗能能力接近,且预制试件的最小承载力仅比现浇试件低5.6%,表明预制试件的抗震性能与现浇试件的抗震性能基本相同;竖缝对剪力墙承载力的影响较小,使剪力墙的延性和耗能能力有一定的削弱;不同竖缝形式预制墙的抗震性能相近但各有特点,竖缝形式预制墙采用UHPC出筋搭接具有更好的整体性,采用U形键槽的预制墙具有更大的刚度和更强的耗能能力;连接钢筋的应力分布具有典型受弯构件的特征;随着轴压比增加,模型的刚度和承载力不断增加,在轴压比从0.05增加到0.30时,最大的峰值荷载增幅发生在轴压比从0.05到0.10时,从承载力的提高、刚度、耗能和墙角抬高等方面考虑,试件的集中配筋率保持在90%~110%为宜。 展开更多
关键词 预制剪力墙 集中配筋 拟静力试验 uhpc(ultra-high performance concrete) 抗震性能
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钢纤维形状和养护制度对超高性能混凝土强度及韧性的影响 被引量:2
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作者 陈聪聪 吴泽媚 +1 位作者 胡翔 史才军 《材料导报》 EI CAS CSCD 北大核心 2024年第15期135-145,共11页
热养护和掺加异形钢纤维是提高超高性能混凝土(UHPC)强度并改善韧性的有效技术手段。研究了养护制度(标准养护28 d、90℃蒸汽养护2 d、90℃热水养护2 d)和钢纤维形状(平直形、波纹形、端钩形)对UHPC立方体抗压强度、单轴抗压强度、抗折... 热养护和掺加异形钢纤维是提高超高性能混凝土(UHPC)强度并改善韧性的有效技术手段。研究了养护制度(标准养护28 d、90℃蒸汽养护2 d、90℃热水养护2 d)和钢纤维形状(平直形、波纹形、端钩形)对UHPC立方体抗压强度、单轴抗压强度、抗折性能的影响,采用ASTM C1018、JSCE-SF4、修正的Post-Crack Energy Ratio(PCER)三种韧性表征方法对UHPC弯曲韧性进行评价,并借助三维光学扫描仪定量表征了掺加不同形状钢纤维的UHPC断裂面粗糙度。结果表明,相较于28 d标准养护,2 d热水养护和2 d蒸汽养护均能在一定程度上提高UHPC力学性能,且对UHPC抗折性能的提升较为显著。与掺平直形钢纤维的UHPC相比,掺端钩形钢纤维的UHPC的抗折强度和PCER韧性指标分别提升46.26%~58.82%和32.77%~39.81%,断裂面粗糙度提高41.67%;粗糙度参数与弯曲韧性具有良好的指数关系,可用于UHPC韧性的表征。此外,单轴抗压强度与立方体抗压强度存在线性关系,相关系数为0.83~0.93。采用ASTM C1018和PCER方法计算出的韧性结果与采用4 mm挠度处荷载-位移曲线包围的面积和抗折性能指标结果基本一致,提出的PCER方法引入初始弯曲韧度比来表征UHPC达到峰值挠度前的弯曲韧性,使得计算结果更为准确。 展开更多
关键词 超高性能混凝土(uhpc) 养护制度 钢纤维形状 强度 韧性
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温度-复合盐耦合条件下纤维混凝土井壁冲击倾向性试验研究 被引量:4
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作者 周昱程 刘娟红 +2 位作者 纪洪广 付士峰 谷峪 《材料导报》 EI CAS CSCD 北大核心 2019年第16期2671-2676,共6页
本工作从混凝土的冲击倾向性出发,通过试验比较不同等级和种类纤维混凝土的脆性系数、冲击能量指数及动态破坏时间等相关冲击倾向性指标,并提出混凝土的冲击倾向性评价标准。根据滨海金属矿地下水主要离子浓度及井下温度的现实情况,设... 本工作从混凝土的冲击倾向性出发,通过试验比较不同等级和种类纤维混凝土的脆性系数、冲击能量指数及动态破坏时间等相关冲击倾向性指标,并提出混凝土的冲击倾向性评价标准。根据滨海金属矿地下水主要离子浓度及井下温度的现实情况,设计混凝土服役环境。结果表明:纤维能够阻滞裂纹的发展,改善混凝土的冲击倾向性;在复合盐溶液中,混凝土抗压强度不断增加,各种混凝土均朝着强冲击倾向性方向发展,且高温可以加快腐蚀速率。非蒸养型超高性能混凝土(NSC-UHPC)各方面性能皆较优异,复合盐溶液对其影响很小,腐蚀前后皆无冲击倾向性,是一种能应用于深地井壁及应力集中部位的混凝土材料。 展开更多
关键词 冲击倾向性 纤维 非蒸养型超高性能混凝土(NSC-uhpc) 复合盐
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蒸汽养护制度对超高性能混凝土早期力学性能及微观结构的影响 被引量:17
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作者 吴建东 郭丽萍 +1 位作者 曹园章 秦姚毅 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第4期744-752,共9页
为了探究蒸汽养护制度对超高性能混凝土(UHPC,>200 MPa)性能的影响,研究了5种不同养护制度(标准养护7 d、60℃蒸汽养护3和7 d、90℃蒸汽养护3和7 d)对UHPC早期力学性能、水化产物和微观结构的影响.结果表明:UHPC的抗压强度和初始开... 为了探究蒸汽养护制度对超高性能混凝土(UHPC,>200 MPa)性能的影响,研究了5种不同养护制度(标准养护7 d、60℃蒸汽养护3和7 d、90℃蒸汽养护3和7 d)对UHPC早期力学性能、水化产物和微观结构的影响.结果表明:UHPC的抗压强度和初始开裂拉伸应力与蒸汽养护温度和时间呈正相关;但抗折强度、极限拉伸应力和极限拉伸应变表现出先提高后降低的趋势.物相分析和同步热分析表明,蒸汽养护加速了UHPC中水泥熟料的水化反应,氢氧化钙含量明显降低,生成更多的C-S-H凝胶,使UHPC早期的微观结构更加密实.此外,蒸汽养护增强了水泥浆体与骨料和纤维的界面过渡区,从而提高了UHPC的早期力学性能. 展开更多
关键词 超高性能混凝土 蒸汽养护 早期力学性能 微观结构
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蒸汽养护对沙漠砂超高性能混凝土强度、抗渗性和孔结构的影响 被引量:4
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作者 赵华 刘超群 +1 位作者 黄煌煌 高小建 《混凝土》 CAS 北大核心 2022年第12期38-43,共6页
研究了蒸汽养护对沙漠砂超高性能混凝土(UHPC)力学性能、抗渗性和孔结构的影响,其中沙漠砂按0~100%等质量取代石英砂。试验结果表明,随着沙漠砂掺量增加,UHPC抗压、抗折强度降低,同时毛细吸水率增大。蒸汽养护可以提高沙漠砂UHPC力学性... 研究了蒸汽养护对沙漠砂超高性能混凝土(UHPC)力学性能、抗渗性和孔结构的影响,其中沙漠砂按0~100%等质量取代石英砂。试验结果表明,随着沙漠砂掺量增加,UHPC抗压、抗折强度降低,同时毛细吸水率增大。蒸汽养护可以提高沙漠砂UHPC力学性能和抗渗性,且蒸养温度越高、时间越长,对UHPC力学性能和抗渗性的改善效果越好。同时,蒸汽养护使UHPC最可几孔径向左偏移,孔隙率降低。通过90℃蒸汽养护3 d,可提高沙漠砂在UHPC中的使用量至80%,并同时保证UHPC抗压强度和抗渗性无衰减。 展开更多
关键词 超高性能混凝土 蒸汽养护 沙漠砂 力学性能 毛细吸水率 孔结构
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利用未淡化海砂配制超高性能混凝土的研究 被引量:12
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作者 王晶 倪博文 +3 位作者 周永祥 宋普涛 王祖琦 冷发光 《混凝土与水泥制品》 北大核心 2019年第5期1-4,共4页
利用未经淡化处理的海砂配制了超高性能混凝土(UHPC),并研究了不同水胶比、砂胶比、胶凝材料体系、钢纤维掺量、养护制度对海砂UHPC的流动度、抗压强度、抗折强度的影响。试验结果表明:海砂UHPC的最优水胶比、砂胶比和纤维体积掺量分别... 利用未经淡化处理的海砂配制了超高性能混凝土(UHPC),并研究了不同水胶比、砂胶比、胶凝材料体系、钢纤维掺量、养护制度对海砂UHPC的流动度、抗压强度、抗折强度的影响。试验结果表明:海砂UHPC的最优水胶比、砂胶比和纤维体积掺量分别为0.16、1.0和1.5%,最佳的胶凝材料体系组成是水泥、降黏剂和硅灰分别70%、15%和15%,最合适的热养护制度是70℃蒸汽养护;按照上述参数配制的海砂UHPC力学性能完全符合相关标准的要求。 展开更多
关键词 海砂 超高性能混凝土 钢纤维 养护制度 降黏剂
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免蒸养超高性能混凝土-既有混凝土界面粘结性能试验研究 被引量:1
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作者 吴琛 储福玮 +1 位作者 龚明子 曾志攀 《材料导报》 CSCD 北大核心 2023年第24期159-166,共8页
免蒸养超高性能混凝土(Ultra-high performance concrete,UHPC)在常温养护下具有超高强、超耐久等优异性能,其与普通混凝土(Normal concrete,NC)界面的粘结性能是保证免蒸养UHPC加固NC结构获得良好性能的重要因素。为研究免蒸养UHPC-NC... 免蒸养超高性能混凝土(Ultra-high performance concrete,UHPC)在常温养护下具有超高强、超耐久等优异性能,其与普通混凝土(Normal concrete,NC)界面的粘结性能是保证免蒸养UHPC加固NC结构获得良好性能的重要因素。为研究免蒸养UHPC-NC界面粘结性能,设计直剪试验,分析免蒸养UHPC龄期、NC强度、NC表面处理方式和界面粘结剂对界面粘结性能的影响,提出了免蒸养UHPC-NC界面粘结-滑移本构模型,并给出相关刚度系数建议值。结果表明:免蒸养UHPC-NC试件界面破坏模式主要分为粘结界面破坏、粘结界面和NC破坏、NC破坏及NC和UHPC破坏;刻槽组较凿毛组试件具有明显的开裂阶段,表现出一定的延性且具有更高的粘结强度,最大提高量为183.7%;界面使用SiKa 32LP结构胶时,其粘结强度为4.91 MPa,是其他界面粘结剂试件粘结强度的两倍以上。因此,当采用免蒸养UHPC加固NC构件时建议NC表面刻槽和采用SiKa 32LP结构胶。 展开更多
关键词 免蒸养超高性能混凝土(免蒸养uhpc) 粘结性能 直剪试验 荷载-滑移曲线 粘结-滑移本构模型
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超高性能混凝土配制影响因素分析
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作者 王传林 钟思锐 +2 位作者 高润权 区钰妍 黄钟琼 《四川建材》 2020年第10期1-3,共3页
超高性能混凝土具有强度高、韧性好及耐久性优等特点,是当今水泥基材料的研究热点。UHPC配制方式特殊,在配制过程中对技术要求极高。本文通过分析影响超高性能混凝土性能的因素,主要包括:减水剂、水胶比、钢纤维、石英粉、硅灰、搅拌方... 超高性能混凝土具有强度高、韧性好及耐久性优等特点,是当今水泥基材料的研究热点。UHPC配制方式特殊,在配制过程中对技术要求极高。本文通过分析影响超高性能混凝土性能的因素,主要包括:减水剂、水胶比、钢纤维、石英粉、硅灰、搅拌方式和养护制度等,整理和总结各因素的工作原理,从而探究其最佳配制方式并促进其应用。 展开更多
关键词 超高性能混凝土 性能 材料配比 搅拌方式 养护制度
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Effects of fibers on the mechanical properties of UHPC:A review 被引量:12
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作者 Jian Yang Baochun Chen +3 位作者 Jiazhan Su Gang Xu Dong Zhang Jialiang Zhou 《Journal of Traffic and Transportation Engineering(English Edition)》 EI CSCD 2022年第3期363-387,共25页
Ultra-high performance concrete(UHPC) developed rapidly in research and commercial use during the recent decade. Significant progress has been achieved in its material science and technology, including why and how to ... Ultra-high performance concrete(UHPC) developed rapidly in research and commercial use during the recent decade. Significant progress has been achieved in its material science and technology, including why and how to add discontinuous fiber reinforcement in it.This paper reviews the researches on understanding the effects of various fibers on the mechanical properties of UHPC, focus on the straight steel fibers but involving also deformed steel fibers, non-steel fibers as well as hybrid fibers. It also discusses the research methodology, prediction of mechanical properties by fiber factors, and the classification of UHPC mechanical properties related to this topic. It shows that(1) the experimental research is the main methodology for investigating the effect of the fibers on the mechanical properties of UHPC;the tensile performance of UHPC should be studied by uniaxial tensile tests and its representative indicators should include tensile strength, initial cracking strength, and peak tensile strain;(2) fiber plays an essential role in the reinforcement of the tensile strength, compressive strength, modulus of elasticity, and other material properties of UHPC, but in weakening the flowability of fresh UHPC. The positive and negative effects of fibers on the mechanical properties of UHPC should be considered,and the technology should be developed to maintain the flowability when high volume fraction of fibers is added in the UHPC;(3) the parameters of steel fibers affecting the mechanical properties of UHPC include volume fraction, size, shape, orientation and distribution, average bonding strength and minimum tensile strength, etc., which are mainly studied independently in the existing research. The studies on the combined effect of these parameters are limited but worthy of further investigation;(4) hybrid fibers could efficiently produce reinforcement effects for UHPC. It has great practical and research significance to conduct in-depth studies though the theoretical analysis and quantitative prediction are complex. 展开更多
关键词 ultra-high performance concrete(uhpc) Fiber reinforcement Effect factor Hybrid fiber Quantitative analysis Mechanical properties
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