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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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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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灌浆料对预制承插式桩芯与钢管桩黏结性能影响试验研究
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作者 林红星 刘聪聪 +1 位作者 冯先导 何聪 《水运工程》 2024年第11期176-181,共6页
高桩码头的桩芯、桩帽为桩顶连接关键结构,而传统水上现浇施工通常面临作业难、施工质量影响因素多等问题。预制承插式桩芯桩帽结构由水上现浇转变为工厂预制,通过超高性能混凝土灌浆料与钢管桩形成桩顶结构,避免了水文条件对其施工的... 高桩码头的桩芯、桩帽为桩顶连接关键结构,而传统水上现浇施工通常面临作业难、施工质量影响因素多等问题。预制承插式桩芯桩帽结构由水上现浇转变为工厂预制,通过超高性能混凝土灌浆料与钢管桩形成桩顶结构,避免了水文条件对其施工的影响。通过物模试验开展预制桩芯-桩帽结构的破坏模式及灌浆料配比研究,结果表明:竖向荷载下桩顶结构的灌浆料与预制桩芯界面黏结不动,仅灌浆料与钢管之间产生相对滑移,灌浆料与钢管内壁的界面黏结性能相对薄弱;灌浆料与钢管的黏结强度随钢纤维掺入而减小,随膨胀剂掺入而增大;塑性膨胀剂掺量0.08%、中后期国标Ⅱ型膨胀剂掺量12%组合为最优配比,其界面黏结强度在28 d内呈增长趋势,28 d后趋于稳定。 展开更多
关键词 预制桩芯-桩帽结构 破坏模式 超高性能混凝土灌浆料 黏结性能
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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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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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预制NC墩柱灌浆波纹管+UHPC榫组合连接的弯压性能有限元分析
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作者 陈泉宏 张阳 《公路工程》 2021年第4期91-97,117,共8页
在预制桥墩连接节点处采用UHPC可以延缓试件的开裂,提高塑性铰的转动能力。提出了一种用于预制混凝土柱的灌浆波纹管+现浇UHPC榫组合连接方式,能解决目前依靠传统的单一灌浆波纹管连接构件所存在的一些问题,并通过有限元分析软件ABAQUS... 在预制桥墩连接节点处采用UHPC可以延缓试件的开裂,提高塑性铰的转动能力。提出了一种用于预制混凝土柱的灌浆波纹管+现浇UHPC榫组合连接方式,能解决目前依靠传统的单一灌浆波纹管连接构件所存在的一些问题,并通过有限元分析软件ABAQUS分析不同接缝组合的受力特点,与试验结果进行比较和验证。结果表明:传统的灌浆波纹管连接柱接缝处容易出现开口,钢筋应力集中在接缝附近处,承载能力和延性均很差。灌浆波纹管+UHPC榫连接柱,得益于UHPC超高力学性能,改善了钢筋在接缝处的应力集中,提高了试件的承载能力和延性,且通过在灌浆波纹管+UHPC榫连接柱内部植筋,改善了界面粘接性能,加强了整体抗弯强度,得到承载能力要大于完整现浇柱,但延性会略微降低。 展开更多
关键词 灌浆波纹管连接 节段拼装桥墩 uhpc 超高性能混凝土接缝 有限元分析 延性系数
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全预制装配式桥梁方案研究 被引量:20
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作者 王继全 《城市道桥与防洪》 2018年第4期75-77,98,共4页
传统的桥梁建造技术在当代中国的社会环境下,体现出越来越多的弊端,亟待找到一种更加高效、低碳、环保的桥梁建造方案。全预制装配式技术的出现,将会对传统技术进行一次极大的革新。简要介绍了预制装配式技术在国内外的发展概况,整理和... 传统的桥梁建造技术在当代中国的社会环境下,体现出越来越多的弊端,亟待找到一种更加高效、低碳、环保的桥梁建造方案。全预制装配式技术的出现,将会对传统技术进行一次极大的革新。简要介绍了预制装配式技术在国内外的发展概况,整理和归纳了桥梁上部结构预制类型、下部结构预制类型、附属预制类型及预制构件连接方式。列举相关施工案例,提出目前比较适合我国发展的装配式技术方案。 展开更多
关键词 全预制 装配式 灌浆套筒 灌浆波纹管 uhpc
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Effects of fibers on the mechanical properties of UHPC:A review 被引量:11
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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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