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Tensile Strain Capacity Prediction of Engineered Cementitious Composites (ECC) Using Soft Computing Techniques
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作者 Rabar H.Faraj Hemn Unis Ahmed +2 位作者 Hardi Saadullah Fathullah Alan Saeed Abdulrahman Farid Abed 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第3期2925-2954,共30页
Plain concrete is strong in compression but brittle in tension,having a low tensile strain capacity that can significantly degrade the long-term performance of concrete structures,even when steel reinforcing is presen... Plain concrete is strong in compression but brittle in tension,having a low tensile strain capacity that can significantly degrade the long-term performance of concrete structures,even when steel reinforcing is present.In order to address these challenges,short polymer fibers are randomly dispersed in a cement-based matrix to forma highly ductile engineered cementitious composite(ECC).Thismaterial exhibits high ductility under tensile forces,with its tensile strain being several hundred times greater than conventional concrete.Since concrete is inherently weak in tension,the tensile strain capacity(TSC)has become one of the most extensively researched properties.As a result,developing a model to predict the TSC of the ECC and to optimize the mixture proportions becomes challenging.Meanwhile,the effort required for laboratory trial batches to determine the TSC is reduced.To achieve the research objectives,five distinct models,artificial neural network(ANN),nonlinear model(NLR),linear relationship model(LR),multi-logistic model(MLR),and M5P-tree model(M5P),are investigated and employed to predict the TSCof ECCmixtures containing fly ash.Data from115 mixtures are gathered and analyzed to develop a new model.The input variables include mixture proportions,fiber length and diameter,and the time required for curing the various mixtures.The model’s effectiveness is evaluated and verified based on statistical parameters such as R2,mean absolute error(MAE),scatter index(SI),root mean squared error(RMSE),and objective function(OBJ)value.Consequently,the ANN model outperforms the others in predicting the TSC of the ECC,with RMSE,MAE,OBJ,SI,and R2 values of 0.42%,0.3%,0.33%,0.135%,and 0.98,respectively. 展开更多
关键词 engineered cementitious composites fly ash curing time tensile strain capacity MODELING
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High Temperature Flexural Deformation Properties of Engineered Cementitious Composites (ECC) with Hybrid Fiber Reinforcement 被引量:3
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作者 Zhihui YU Zhen YUAN +1 位作者 Chaofan XIA Cong ZHANG 《Research and Application of Materials Science》 2020年第2期17-26,共10页
Engineered Cementitious Composites(ECC)is a class of high-performance fiber reinforced composites with ultra-ductility designed based on micromechanics,and it has been developed for increasing application in the const... Engineered Cementitious Composites(ECC)is a class of high-performance fiber reinforced composites with ultra-ductility designed based on micromechanics,and it has been developed for increasing application in the construction industry during recent decades.The properties of ECC at room temperature have been tested and studied in depth,however,few studies focus on its performance after high temperature that is one of the worst conditions to ECC.To investigate the change tendency and mechanism for the high temperature flexural properties of hybrid fiber reinforced ECC and the feasibility of calcium carbonate whisker to reduce the cost of ECC materials,polyvinyl alcohol fiber(PVA)reinforced strain hardening cementitious composites(PVA-ECC),steel fiber+PVA fiber reinforced ECC(defined as HyFRECC-A)and steel fiber+PVA fiber+CaCO3 whisker reinforced ECC(defined as HyFRECC-B)subject to room temperature and 200℃,400℃,600℃,800℃elevated temperature exposure were experimentally compared.The results indicate that equally replacing PVA fibers by steel fibers degraded the flexural hardening ability of PVA-ECC at room temperature,while the addition of appropriate amount of CaCO3 whisker improved the flexural strength,toughness and flexural hardening behavior.The elevated temperature posed a significant effect on the flexural strength and toughness of the three types of ECCs.Flexural deflection hardening behavior of the three types of ECCs was eliminated after high temperature exposure.Flexural strength and toughness of PVA-ECC presented an exponential decay along with the increase of temperature.The addition of steel fiber slowed down the decay rate.Although the use of CaCO3 whisker increased the post-temperature flexural strength and toughness of HyFRECC-B,the decay rate was not further decreased. 展开更多
关键词 engineered cementitious composites hybrid fiber high temperature flexural behavior
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盐冻耦合环境下再生砖粉ECC的耐久性研究
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作者 楚留声 张鹏 +2 位作者 赫约西 元成方 程站起 《硅酸盐通报》 CAS 北大核心 2024年第3期1012-1020,共9页
利用再生砖粉取代工程水泥基复合材料(ECC)中的石英砂,制备再生砖粉ECC,采用混凝土快速冻融试验,研究了氯盐、硫酸盐及复合盐(氯盐+硫酸盐)溶液侵蚀作用下再生砖粉ECC的质量损失率和相对动弹性模量变化规律,建立了ECC在盐冻侵蚀环境下... 利用再生砖粉取代工程水泥基复合材料(ECC)中的石英砂,制备再生砖粉ECC,采用混凝土快速冻融试验,研究了氯盐、硫酸盐及复合盐(氯盐+硫酸盐)溶液侵蚀作用下再生砖粉ECC的质量损失率和相对动弹性模量变化规律,建立了ECC在盐冻侵蚀环境下的损伤模型,并对其耐久性进行评价。结果表明:冻融循环300次后,再生砖粉ECC在清水、氯盐、硫酸盐及复合盐四种介质中的质量损失率分别为2.884%、4.984%、1.955%和6.891%,相对动弹性模量分别下降了6.468%、16.300%、24.303%和39.861%;再生砖粉ECC在单一盐冻情况下的抗冻等级大于F300,在复合盐冻情况下的抗冻等级大于F250,具有良好的抗盐冻性能;建立的冻融损伤模型可较好地反映ECC在不同冻融介质下的损伤度Dn与冻融循环次数的关系,可以为严寒地区的结构耐久性设计提供有效参考。 展开更多
关键词 再生砖粉 工程水泥基复合材料 盐类侵蚀 冻融循环 质量损失率 相对动弹性模量 冻融损伤模型
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ECC疲劳损伤规律及微观结构研究
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作者 蔡靖 刘汉磊 +2 位作者 霍海峰 支雁飞 任彦龙 《中国民航大学学报》 CAS 2024年第1期59-64,共6页
为研究工程水泥基复合材料(ECC,engineered cementitious composites)的疲劳规律并探究其损伤原因,利用疲劳试验机对ECC试件进行单轴拉伸循环加载试验,分析其疲劳规律及损伤界面微观形态。研究结果表明:ECC试件破坏规律与其累积轴向应... 为研究工程水泥基复合材料(ECC,engineered cementitious composites)的疲劳规律并探究其损伤原因,利用疲劳试验机对ECC试件进行单轴拉伸循环加载试验,分析其疲劳规律及损伤界面微观形态。研究结果表明:ECC试件破坏规律与其累积轴向应变速率有关,在加载初始阶段,累积轴向应变会随着循环荷载作用次数增加而明显增大,随后进入稳定变形阶段;进一步加载将导致累积轴向应变快速增长,并最终导致试件断裂破坏;ECC的裂纹宽度发展呈现出中间低、两端高的趋势;ECC试件在循环荷载过程中初次开裂后,不会迅速进入破坏阶段,是因为纤维仍然具有抗拉能力,可继续承受循环荷载加载;通过对纤维-基体界面的微观分析发现,纤维与基体结合较好,可整体耗散能量,为ECC具有高疲劳性能的主要原因。 展开更多
关键词 水泥基复合材料 微观结构 轴向拉伸疲劳 数字成像技术
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ECC全包裹普通混凝土复合试件的力学性能 被引量:1
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作者 康迎杰 郭自利 +1 位作者 叶斌斌 潘鹏 《材料导报》 EI CAS CSCD 北大核心 2024年第3期104-109,共6页
为综合利用工程用水泥基复合材料(ECC)在力学性能上和普通混凝土在成本上的优势,本工作提出了一种制备ECC全包裹普通混凝土复合试件的方法,通过进行抗压、抗拉及抗弯等试验系统研究了其基本力学性能,并采用数值分析方法对配筋复合梁进... 为综合利用工程用水泥基复合材料(ECC)在力学性能上和普通混凝土在成本上的优势,本工作提出了一种制备ECC全包裹普通混凝土复合试件的方法,通过进行抗压、抗拉及抗弯等试验系统研究了其基本力学性能,并采用数值分析方法对配筋复合梁进行了正截面受弯性能研究。结果表明:在复合试件受力破坏时,ECC和混凝土界面未出现滑移,两种材料黏结可靠实现了协同受力;相对普通混凝土试件而言,复合试件的抗压强度、抗拉强度及抗弯强度均有所提升,尤其是抗弯强度的提升最为显著,对于截面尺寸为100 mm×100 mm的梁,当ECC厚度分别为10 mm和15 mm时,抗弯强度可提高27.4%和57.1%;复合试件具有良好的延性变形能力,破坏后可保持一定的完整性,整体具备高韧性特征;与普通钢筋混凝土梁相比,配筋复合梁有效利用了ECC材料的性能优势,显著提升了配筋梁的承载和变形能力。 展开更多
关键词 工程用水泥基复合材料 复合试件 力学性能 延性破坏 高韧性
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Impact Properties of Engineered Cementitious Composites with High Volume Fly Ash Using SHPB Test 被引量:8
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作者 陈智韬 杨英姿 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第3期590-596,共7页
The split Hopkinson pressure bar (SHPB) testing with diameter 40 mm was used to investigate the dynamic mechanical properties of engineered cementitious composites (ECCs) with different fly ash content. The basic ... The split Hopkinson pressure bar (SHPB) testing with diameter 40 mm was used to investigate the dynamic mechanical properties of engineered cementitious composites (ECCs) with different fly ash content. The basic properties including deformation, energy absorption capacity, strain-stress relationship and failure patterns were discussed. The ECCs showed strain-rate dependency and kept better plastic flow during impact process compared with reactive powder concrete (RPC) and concrete, but the critical compressive strength was lower than that of RPC and concrete. The bridging effect of PVA fiber and addition of fly ash can significantly improve the deformation and energy absorption capacities of ECCs. With the increase of fly ash content in ECCs, the static and dynamic compressive strength lowered and the dynamic increase factor enhanced. Therefore, to meet different engineering needs, the content of fly ash can be an important index to control the static and dynamic mechanical properties of ECCs. 展开更多
关键词 engineered cementitious composites high volume fly ash impact properties SHPB
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高应变率荷载作用下钢筋与ECC的黏结滑移关系研究
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作者 崔双双 孟瑶 +1 位作者 陈伟宏 孙浩 《振动与冲击》 EI CSCD 北大核心 2024年第1期71-82,共12页
采用水泥基复合材料(engineering cementitious composite,ECC)替代混凝土可以提高结构在偶然荷载作用下的抗连续倒塌性能,但在悬链线大变形阶段钢筋与ECC间可能会出现黏结滑移破坏。基于分离式霍普金森压杆(SHPB)试验装置,进行了钢筋与... 采用水泥基复合材料(engineering cementitious composite,ECC)替代混凝土可以提高结构在偶然荷载作用下的抗连续倒塌性能,但在悬链线大变形阶段钢筋与ECC间可能会出现黏结滑移破坏。基于分离式霍普金森压杆(SHPB)试验装置,进行了钢筋与ECC的动态黏结滑移性能试验,分析了ECC强度等级、应变率、钢筋直径对极限黏结强度、刚度和滑移量的影响规律,获得了高应变率下钢筋与ECC的平均黏结滑移曲线,得到其黏结滑移破坏模式。并与静态黏结滑移试验进行对比,得到了动态黏结强度增强因子。进一步,通过钢筋开槽内贴应变片法,获得不同锚固位置的黏结应力及相对滑移的分布规律,提出黏结位置函数。最后,根据试验结果得到钢筋与ECC平均黏结滑移本构,进而乘以黏结位置函数得到考虑锚固位置影响的动态黏结滑移本构,为ECC结构构件设计及有限元分析提供试验依据和理论参考。 展开更多
关键词 水泥基复合材料(engineering cementitious composite ecc) 高应变率荷载 钢筋-ecc黏结滑移 分离式霍普金森压杆(SHPB)试验 位置函数 黏结滑移本构关系
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Effects of Water/Binder Ratio on the Properties of Engineered Cementitious Composites 被引量:3
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作者 杨英姿 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第2期298-302,共5页
The effects of water/binder ratio (w/b) on the toughness behavior, compressive strength and flexural strength of engineered cementitious composites (ECC) were investigated. The w/b ratios of 0.25, 0.31, 0.33 and 0... The effects of water/binder ratio (w/b) on the toughness behavior, compressive strength and flexural strength of engineered cementitious composites (ECC) were investigated. The w/b ratios of 0.25, 0.31, 0.33 and 0.37 were selected and the specimens were tested at the ages of 7 d and 28 d. The experimental results showed that there was a corresponding increase in first cracking strength, modulus of rupture, compressive strength and flexural strength with the decrease of w/b. Within the w/b range of 0.25-0.37, higher w/b was found to have improved effects on deflection, strain hardening index and toughness index of ECC. In the permission of meeting the requirement of compressive strength grade, selecting higher w/b in mix design will help to obtain robust ECC. 展开更多
关键词 engineered cementitious composites ecc TOUGHNESS water/binder ratio compressive strength
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河砂粒径与纤维类型对ECC力学性能的影响
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作者 李彦宵 于本田 +2 位作者 张占旭 吴明星 谢超 《混凝土与水泥制品》 2024年第2期51-55,60,共6页
研究了河砂粒径(0~0.30、0~0.60、0~1.18、0~2.36 mm)与纤维类型(PVA、PE、PP、BF纤维)对工程水泥基复合材料(ECC)力学性能的影响,并进行了SEM分析。结果表明:随着河砂粒径的增大,试件的28 d极限拉应变、峰值应力和抗折强度基本均降低,... 研究了河砂粒径(0~0.30、0~0.60、0~1.18、0~2.36 mm)与纤维类型(PVA、PE、PP、BF纤维)对工程水泥基复合材料(ECC)力学性能的影响,并进行了SEM分析。结果表明:随着河砂粒径的增大,试件的28 d极限拉应变、峰值应力和抗折强度基本均降低,多缝开裂特征逐渐减弱;4种纤维中,PVA纤维对ECC单轴拉伸性能和抗折性能的提高效果最好;PVA纤维与各粒级的河砂均具有良好的匹配性,在基体中分散较均匀。 展开更多
关键词 工程水泥基复合材料 河砂粒径 纤维类型 力学性能 微观结构 机理分析
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Influence of Thickeners on Cement Paste Structure and Performance of Engineered Cementitious Composites
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作者 陈拴发 何锐 +2 位作者 LI Yongpeng XING Mingliang CONG Peiliang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第2期285-290,共6页
Hydroxypropyl methylcellulose (HPMC) and amphoteric polyacrylamide (ACPAM) were respectively used to prepare engineered cementitious composite (ECC) which exhibits strain-hardening behavior under uniaxial tensio... Hydroxypropyl methylcellulose (HPMC) and amphoteric polyacrylamide (ACPAM) were respectively used to prepare engineered cementitious composite (ECC) which exhibits strain-hardening behavior under uniaxial tension. The connections between cement paste structure and the performance of the composite in fresh and hardened state were investigated, aiming at achieving the desirable workability at a given solids concentration. The experimental results of viscosity and miCrostructure of cement pastes show that the intimate connections between flocculation groups lead to the growing increase in viscosity. The results of deformability and fiber dispersion demonstrate that fiber dispersion coefficient is a comprehensive index which can reflect the performance of deformability as well as uniformity. And the desirable fresh mixture can be achieved by optimizing the viscosity of cement paste. At last, the ductile strain-hardening performance of the ECC prepared with HPMC or ACPAM was investigated through uniaxial tensile test. 展开更多
关键词 engineered cementitious composites THICKENER MICROSTRUCTURE fiber dispersion
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ECC-既有混凝土界面黏结性能研究
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作者 杨少伟 刘孜睿 +1 位作者 杜义 赵爱宁 《混凝土与水泥制品》 2024年第6期64-67,共4页
利用工程水泥基复合材料(ECC)对混凝土结构进行维修和加固时,新旧材料的界面黏结强度至关重要。研究了不同养护条件(标准养护、20℃水养、-10℃自然养护、40℃自然养护)下,涂刷界面剂[乙酸乙烯酯(VA)、乙酸乙烯酯-乙烯(VAE)、乙酸乙烯酯... 利用工程水泥基复合材料(ECC)对混凝土结构进行维修和加固时,新旧材料的界面黏结强度至关重要。研究了不同养护条件(标准养护、20℃水养、-10℃自然养护、40℃自然养护)下,涂刷界面剂[乙酸乙烯酯(VA)、乙酸乙烯酯-乙烯(VAE)、乙酸乙烯酯-叔碳酸乙烯酯(VA/VeoVa)]对ECC-既有混凝土界面黏结性能的影响,并在标准养护条件下,对比分析了涂刷VA/VeoVa、凿毛、凿毛+涂刷VA/VeoVa对ECC-既有混凝土界面黏结性能的影响。结果表明:与VA、EVA相比,VA/VeoVa在各养护条件下均能有效提高试件的拉伸黏结强度;标准养护条件下,凿毛+涂刷VA/VeoVa对试件拉伸黏结强度的提高效果最好,其次是凿毛,最后是涂刷VA/VeoVa。 展开更多
关键词 工程水泥基复合材料(ecc) 拉伸黏结强度 界面剂 凿毛 模型
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机制砂高延性工程水泥基复合材料(ECC)的性能研究
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作者 曹鑫铖 李龙梓 +3 位作者 张立力 蒋涛 叶国林 宋秋磊 《混凝土与水泥制品》 2024年第4期48-52,共5页
采用双因素方差分析法,研究了水胶比(0.30、0.35、0.40)和砂胶比(0.35、0.45、0.55)对工程水泥基复合材料(ECC)抗压和抗折强度的影响,优选出了最佳水胶比和砂胶比。在此基础上,研究了PVA纤维体积掺量(1.0%、1.5%、2.0%)和机制砂掺量(0、... 采用双因素方差分析法,研究了水胶比(0.30、0.35、0.40)和砂胶比(0.35、0.45、0.55)对工程水泥基复合材料(ECC)抗压和抗折强度的影响,优选出了最佳水胶比和砂胶比。在此基础上,研究了PVA纤维体积掺量(1.0%、1.5%、2.0%)和机制砂掺量(0、50%、100%)对ECC弯曲韧性的影响,并采用非线性回归法建立了预测模型。结果表明:ECC的最佳水胶比和砂胶比分别为0.30和0.55;掺入适量机制砂能在一定程度上提高ECC的峰值挠度,改善ECC的弯曲韧性;当PVA纤维体积掺量为2.0%、机制砂掺量为50%时,ECC的各项弯曲韧性指标相对最优;建立的机制砂高延性ECC峰值抗弯强度和峰值挠度预测模型的拟合精度较高,具有一定的适用性。 展开更多
关键词 工程水泥基复合材料(ecc) 机制砂 PVA纤维 弯曲韧性 预测模型
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Experimental Study on Improved Engineered Cementitious Composite Using Local Material
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作者 Fariborz Nateghi-A Mohammad Hossein Ahmadi Ayoub Dehghani 《Materials Sciences and Applications》 2018年第3期315-329,共15页
Engineered Cementitious Composite (ECC) is a cement based material with ultra-high ductility and strength in tension. This material is a kind of highperformance fiber-reinforced cementitious composite materials (HPFRC... Engineered Cementitious Composite (ECC) is a cement based material with ultra-high ductility and strength in tension. This material is a kind of highperformance fiber-reinforced cementitious composite materials (HPFRCCs) reinforced with short fibers and characterized by tight multiple cracking. These characteristics of ECC make it applicable to increase the capacity and the ductility of structural elements so that structural design is economic and sustainable. This paper presents an extended evaluation of Improved Engineered Cementitious Composites (IECC) for the use in the strengthening of masonry in filled reinforced concrete frames. IECC is a mixture of cement, fly ash, water, sand, quartz powder and poly-vinyl alcohol fibers with a better quality of tensile strain rather than common ECC. Two types of fine sand and quartz powder used in this study as filler to improve ECC behavior. Also, to show the effect of fly ash on IECC properties, five different mixtures were considered with various fly ash ratios. Different mixtures of IECC using fine aggregates produced in Iran were selected to find out how the aggregates and fly ash would affect IECC performance. The results show that the optimized mixture has the best characteristics including tensile strength and strain. Also, three-dimensional diagrams were used to compare the properties of different mixtures of IECC more effectively and to represent the influence of the range of fly ash ratios so that it can be opted based on design objectives such as ECC properties, costs and structural parameters and demands. These diagrams show the behavior of IECC which its fly ash content ratio in the binder is 50% to 67%. 展开更多
关键词 IMPROVED engineered cementitious compositeS Optimization EXPERIMENTAL Study LOCAL MATERIAL
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纤维编织网增强ECC夹心保温复合墙板抗弯性能 被引量:1
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作者 尹世平 李雨珊 +3 位作者 徐世烺 侯向明 王宇清 丰琳莉 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第5期123-135,共13页
目前,夹心保温墙板已经被广泛使用在建筑保温结构中,但是墙板的饰面层通常采用普通混凝土,使得内部保温材料极易因外饰面开裂脱落而受到腐蚀.因此,选用纤维编织网增强工程水泥基复合材料(Engineered Cementitious Composites,ECC)作为... 目前,夹心保温墙板已经被广泛使用在建筑保温结构中,但是墙板的饰面层通常采用普通混凝土,使得内部保温材料极易因外饰面开裂脱落而受到腐蚀.因此,选用纤维编织网增强工程水泥基复合材料(Engineered Cementitious Composites,ECC)作为饰面层,通过四点弯曲试验研究夹心保温复合墙板的抗弯性能,影响因素包括保温材料类型、保温层厚度、面层厚度、纤维编织网处理方式、有无连接件和连接件角度.结果表明:增大保温层厚度对墙板抗弯承载力和延性的影响不大,但能够提高墙板的组合程度;发泡聚苯乙烯(Expanded Polysty⁃rene,EPS)保温板与ECC基体的黏结性能更好,墙板的组合程度也更高,但EPS自身的受力性能和刚度较差,使得墙板的承载能力较低;纤维编织网经过浸渍和浸胶黏砂处理会降低墙板的承载能力,但浸胶黏砂处理能提高ECC基体与纤维编织网的黏结从而改善墙板的延性;连接件的存在能够提高墙板的组合性能,并且减小连接件角度或者增大面板厚度有助于提升墙板的抗弯刚度、承载能力和组合性能,但会导致墙板的延性下降.最后,推导了纤维编织网增强ECC(Textile Reinforced ECC,TRE)夹心保温墙板抗弯承载力计算公式,并将计算结果与试验结果进行对比,结果表明提出的计算方法具有一定的可行性. 展开更多
关键词 夹层结构 纤维增强材料 工程水泥基复合材料 抗弯强度 理论计算
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功能自恢复SMA/ECC墩柱抗震性能试验研究 被引量:1
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作者 钱辉 邱培凡 +2 位作者 金光耀 郜新军 冯大阔 《工程力学》 EI CSCD 北大核心 2023年第4期172-183,共12页
墩柱作为主要承重构件,其抗震能力对整个桥梁结构的安全至关重要。为了提高墩柱的变形能力、耗能能力及损伤自修复能力,减小墩柱震后的残余变形和损伤,实现震后不修复或者稍作修复就可恢复正常功能,提出了一种基于形状记忆合金(Shape me... 墩柱作为主要承重构件,其抗震能力对整个桥梁结构的安全至关重要。为了提高墩柱的变形能力、耗能能力及损伤自修复能力,减小墩柱震后的残余变形和损伤,实现震后不修复或者稍作修复就可恢复正常功能,提出了一种基于形状记忆合金(Shape memory alloy,SMA)和工程水泥基复合材料(Engineered cementitious composites,ECC)的新型自复位墩柱。利用SMA的超弹恢复性能,在墩柱的塑性铰区用SMA筋来替代普通纵向钢筋,来实现墩柱的自复位功能;利用ECC的应变硬化特性,ECC替代墩柱的塑性铰区普通混凝土,提高墩柱耗能能力并减少损伤。设计制作了5个试验试件,分别为普通钢筋混凝土墩柱、普通钢筋ECC墩柱、钢绞线普通混凝土墩柱、钢绞线ECC墩柱和形状记忆合金筋ECC墩柱,并进行低周反复加载试验,对比分析了不同墩柱的破坏模式、承载力、延性和耗能能力等抗震性能。研究结果表明:SMA材料能够增强结构的变形能力,提高结构的延性,减小结构残余变形;ECC材料能够提高结构延性,减缓裂缝的开展速度,提高结构的耗能能力。与普通钢筋混凝土墩柱相比,SMA/ECC墩柱不仅表现出较好的延性,且构件复位效果良好,显著减小了结构损伤,展现出更好的抗震性能。 展开更多
关键词 桥梁工程 形状记忆合金 工程水泥基复合材料 抗震性能 自复位
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自修复SMA/ECC复合材料加固RC梁受弯性能试验研究 被引量:1
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作者 钱辉 陈程 +2 位作者 张庆元 康莉萍 赵军 《工程力学》 EI CSCD 北大核心 2023年第6期73-84,共12页
为了提高既有RC构件的承载能力、损伤自修复能力,提升其安全与使用性能,该文提出采用超弹性形状记忆合金(Shape memory alloy,简称SMA)和工程水泥基复合材料(Engineered cementitious composites,简称ECC)复合加固钢筋混凝土梁的方法。... 为了提高既有RC构件的承载能力、损伤自修复能力,提升其安全与使用性能,该文提出采用超弹性形状记忆合金(Shape memory alloy,简称SMA)和工程水泥基复合材料(Engineered cementitious composites,简称ECC)复合加固钢筋混凝土梁的方法。设计并制作了4种试验梁以对比不同增强材料加固效果,通过低周单向循环加载试验,分析了不同材料加固试验梁的破坏形态、承载力、耗能性能和自修复能力等性能的影响。研究结果表明:SMA/ECC复合加固梁不仅提高了承载能力,且具有较好的延性和变形能力,同时具有优越的自修复性能。考虑ECC拉伸应变硬化特性,建立了ECC加固梁的受弯承载力计算方法,且计算值与试验值吻合较好。 展开更多
关键词 形状记忆合金 工程水泥基复合材料 增大截面法 抗震加固 受弯性能
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PVA-ECC与BFRP筋黏结性能试验分析 被引量:2
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作者 武芳文 段钧淇 +5 位作者 何岚清 梅韵歌 卞正容 张智举 刘来君 杨飞 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2023年第7期70-79,共10页
为研究聚乙烯醇纤维增强工程水泥基复合材料(polyvinyl alcohol fiber reinforced engineered cementitious composites,PVA-ECC)与玄武岩纤维增强复材筋(basalt fiber reinforced polymer bars,BFRP筋)的黏结性能,以BFRP筋表面形式(缠... 为研究聚乙烯醇纤维增强工程水泥基复合材料(polyvinyl alcohol fiber reinforced engineered cementitious composites,PVA-ECC)与玄武岩纤维增强复材筋(basalt fiber reinforced polymer bars,BFRP筋)的黏结性能,以BFRP筋表面形式(缠绕带肋、喷砂缠绕带肋)、锚固长度(5 d、7 d、9 d)、直径(8、10、12 mm)、PVA-ECC保护层厚度(70、25、15、5 mm)和PVA-ECC强度(C50、C80)为参数,设计制作28个PVA-ECC与BFRP筋黏结锚固试件进行拔出试验。通过观察和分析各试件的破坏形态、黏结强度和黏结滑移曲线,探究了各因素对PVA-ECC和BFRP筋的黏结性能的影响规律。最后,通过分析已有本构模型的适用性,根据试验结果建立了BFRP筋与PVA-ECC的黏结滑移本构模型。研究结果表明:较小保护层厚度(5 mm)的试件容易发生劈裂破坏,且黏结强度仅为正常试件的39.59%;BFRP筋表面喷砂可提高最大平均黏结应力;随着锚固长度的降低,BFRP筋与PVA-ECC黏结强度逐渐提高;增大筋材直径的同时保证相对肋高不变可以避免BFRP筋直径增大对黏结性能带来的不利影响;当PVA-ECC强度从50.5 MPa提高至81.3 MPa时,黏结强度提高了45.53%。避免BFRP筋较小的保护层厚度,或增加BFRP筋直径的同时保证相对肋高不变可以保证PVA-ECC与BFRP筋有足够的黏结强度。 展开更多
关键词 聚乙烯醇纤维增强工程水泥基复合材料 玄武岩纤维增强复材筋 拔出试验 黏结性能 本构模型
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ECC嵌缝加固砖砌体的剪切性能试验研究 被引量:1
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作者 周长东 张晨 景杰婧 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第11期128-135,共8页
采用工程水泥基复合材料(Engineered Cementitious Composite,ECC)沿水平灰缝对砖砌墙体进行嵌缝加固,几乎不改变其外观,符合文物建筑修旧如旧原则.为研究ECC水平嵌缝加固砖砌体的剪切性能,以聚乙烯纤维(PE)、聚乙烯醇纤维(PVA)和混杂纤... 采用工程水泥基复合材料(Engineered Cementitious Composite,ECC)沿水平灰缝对砖砌墙体进行嵌缝加固,几乎不改变其外观,符合文物建筑修旧如旧原则.为研究ECC水平嵌缝加固砖砌体的剪切性能,以聚乙烯纤维(PE)、聚乙烯醇纤维(PVA)和混杂纤维(PVA与PE)等不同纤维类型、PE纤维掺量、嵌缝间距和单双面加固为变量,开展砖砌体在剪压作用下的对角剪切试验.对比分析ECC加固砖砌体墙的破坏模式、荷载-位移曲线、剪切强度和延性,探究ECC与砖砌体的协同工作性能.试验结果表明:ECC水平嵌缝加固减缓了砖砌体内部裂缝的开展,提升了试件的抗剪承载力和破坏时的整体性,加固试件的抗剪强度最大提升了44.5%,加固面的最大抗剪刚度约为未加固面的5倍. 展开更多
关键词 砖砌体结构 工程水泥基复合材料 嵌缝 对角剪切试验 古建砌体加固
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纤维对再生砖混ECC力学性能及微观结构的影响
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作者 王磊 尹梦环 +4 位作者 张继旺 周靖鸿 李佳 刘岩 李泉 《硅酸盐通报》 CAS 北大核心 2023年第10期3479-3488,共10页
为促进不同粒径再生砖混骨料的多元化利用,本试验采用再生砖混细骨料完全代替石英砂,采用不同掺量聚丙烯纤维制备再生砖混工程水泥基复合材料(ECC),研究其受力破坏特征、强度影响机理及微观结构对力学性能的影响。结果表明:未掺纤维的... 为促进不同粒径再生砖混骨料的多元化利用,本试验采用再生砖混细骨料完全代替石英砂,采用不同掺量聚丙烯纤维制备再生砖混工程水泥基复合材料(ECC),研究其受力破坏特征、强度影响机理及微观结构对力学性能的影响。结果表明:未掺纤维的再生砖混ECC的失效模式为脆性破坏,而掺纤维的再生砖混ECC受拉时具有明显的应变硬化特征,随着纤维掺量的增加,其抗折强度、极限抗拉强度和极限拉应变持续增大,抗压强度呈先增大后减小趋势,表现出良好的延性和韧性破坏特征;再生砖混ECC的孔隙率在11.28%~13.68%,通过SEM观察,发现纤维与再生砖混ECC黏结性能较好,纤维破坏模式主要为拔出和拉断破坏,开裂后应变硬化拉伸幅度和拉伸强度低于普通ECC混凝土;新旧浆体界面黏结性能相对薄弱,破坏时微裂缝容易在界面过渡区产生和发展。 展开更多
关键词 再生砖混细骨料 工程水泥基复合材料 应变硬化 聚丙烯纤维 纤维掺量 力学性能 微观结构
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Shrinkage Reducing Measures for Engineering Cementitious Composites 被引量:1
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作者 杨英姿 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2008年第6期907-911,共5页
Inhibition measurement of shrinkage of engineering cementitious composites (ECC) was investigated due to typical ECC with higher free drying shrinkage.The effects of expanded admixture (EA),shrinkage reducing admi... Inhibition measurement of shrinkage of engineering cementitious composites (ECC) was investigated due to typical ECC with higher free drying shrinkage.The effects of expanded admixture (EA),shrinkage reducing admixture (SRA),coarse sand+stone powder (CS+SP) and superabsorbent polymer (SAP) on drying shrinkage and mechanical properties were studied.The experimental results show that ECC incorporating EA,SRA and coarse sand can retain around 60% of the typical ECC's free drying shrinkage.Superabsorbent polymerl(SAP) can delay the development of free drying shrinkage of ECC at different ages,and the effect of SAP is not distinct like the actions of EA,superabsorbent polymer(SRA) and coarse sand.Significantly,SAP may act as artificial flaw to form a more homogeneous defect system that increases the potential of saturated multiple cracking,hence the ductility of ECC will be improved greatly. 展开更多
关键词 engineered cementitious composites ecc SHRINKAGE SAP
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