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Effect of Aggregate Gradation on the Properties of 3D Printed Recycled Coarse Aggregate Concrete
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作者 DING Yahong TONG Jiaqi +3 位作者 ZHANG Meixiang GUO Shuqi ZHANG Yaqi ZHAO Yu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第6期1541-1554,共14页
A simplex centroid design method was employed to design the gradation of recycled coarse aggregate.The bulk density was measured while the specific surface area and average excess paste thickness were calculated with ... A simplex centroid design method was employed to design the gradation of recycled coarse aggregate.The bulk density was measured while the specific surface area and average excess paste thickness were calculated with different gradations.The fluidity,dynamic yield stress,static yield stress,printed width,printed inclination,compressive strength and ultrasonic wave velocity of 3D printed recycled aggregate concrete(3DPRAC)were further studied.The experimental results demonstrate that,with the increase of small-sized aggregate(4.75-7 mm)content,the bulk density initially increases and then decreases,and the specific surface area gradually increases.The average excess paste thickness fluctuates with both bulk density and specific surface area.The workability of 3DPRAC is closely related to the average excess paste thickness.With an increase in average paste thickness,there is a gradual decrease in dynamic yield stress,static yield stress and printed inclination,accompanied by an increase in fluidity and printed width.The mechanical performance of 3DPRAC closely correlates with the bulk density.With an increase in the bulk density,there is an increase in the ultrasonic wave velocity,accompanied by a slight increase in the compressive strength and a significant decrease in the anisotropic coefficient.Furthermore,an index for buildability failure of 3DPRAC based on the average excess paste thickness is proposed. 展开更多
关键词 3D printed recycled coarse aggregate concrete aggregate gradation excess paste WORKABILITY mechanical performance
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Effect of High Temperature Curing on the Frost Resistance of Recycled Aggregate Concrete and the Physical Properties of Second-Generation Recycled Coarse Aggregate under Freeze-Thaw Cycles 被引量:1
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作者 Xintong Chen Pinghua Zhu +2 位作者 Xiancui Yan Lei Yang Huayu Wang 《Journal of Renewable Materials》 SCIE EI 2023年第6期2953-2967,共15页
With the emphasis on environmental issues,the recycling of waste concrete,even recycled concrete,has become a hot spot in the field of architecture.But the repeated recycling of waste concrete used in harsh environmen... With the emphasis on environmental issues,the recycling of waste concrete,even recycled concrete,has become a hot spot in the field of architecture.But the repeated recycling of waste concrete used in harsh environments is still a complex problem.This paper discusses the durability and recyclability of recycled aggregate concrete(RAC)as a prefabricated material in the harsh environment,the effect of high-temperature curing(60℃,80℃,and 100℃)on the frost resistance of RAC and physical properties of the second generation recycled coarse aggregate(RCA_(2))of RAC after 300 freeze-thaw cycles were studied.The frost resistance of RAC was characterized by compressive strength,relative dynamic elastic modulus,and mass loss.As the physical properties of RCA_(2),the apparent density,water absorption,and crushing value were measured.And the SEM images of RAC after 300 freeze-thaw cycles were shown.The results indicated that the frost resistance of RAC cured at 80℃ for 7 days was comparable to that cured in the standard condition(cured for 28 days at 20℃±2℃ and 95%humidity),and the RAC cured at 100℃ was slightly worse.However,the frost resistance of RAC cured at 60℃ deteriorated seriously.The RAC cured at 80℃ for 7 days is the best.Whether after the freeze-thaw cycle or not,the RCA that curd at 60℃,80℃,and 100℃ for 7 days can also meet the requirements of Grade III RCA and be used as the aggregate of non-bearing part of prefabricated concrete components.RCA_(2) which is cured at 80℃ for 7 days had the best physical properties. 展开更多
关键词 Freeze-thaw cycles curing condition recycled aggregate concrete second-generation recycled coarse aggregate
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Effect of Lateritic Stone Aggregate and Coconut Husk Fiber on the Properties of Concrete
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作者 Edmund Borbi Humphrey Danso Emmanuel Appiah-Kubi 《Open Journal of Civil Engineering》 2024年第2期240-257,共18页
Natural stone aggregate forms the bulk volume of concrete and has contributed to the increased cost of concrete production. This has led to the search for alternate aggregates such as lateritic stone for concrete prod... Natural stone aggregate forms the bulk volume of concrete and has contributed to the increased cost of concrete production. This has led to the search for alternate aggregates such as lateritic stone for concrete production. This paper investigates the engineering properties of concrete produced with lateritic aggregate (LA) as the coarse aggregate replacement and coconut husk fibre (CHF) as reinforcement. Natural stone aggregate was replaced by LA at 0%, 10%, 20%, 30%, 40%, and 50%, with 0.25% constant CHF by weight. A mix proportion of 1:1.5:3 with a water-cement ratio of 0.6 was used for producing concrete. A total of 162 specimens (90 cubes and 72 beams) were prepared and tested at the 7, 14, 21, and 28 days of curing. The highest compressive strength was 43.36 N/mm2 (10% LA replacement) as compared to the control of 41.51 N/mm2. The 10% LA replacement obtained the highest flexural strength of 5.35 N/mm2 as compared with the 5.29 N/mm2 for the control. The water absorption of the concrete increased from 2.8% (control) to 3.57% (50% replacement LA). Scanning electron microscopy (SEM) revealed micro gaps between CHF and LA concrete. The study, therefore, concludes that the use of LA and CHF positively influenced the strength properties of concrete. 10% LA replacement of coarse aggregate and 0.25% CHF is recommended to practitioners for use. 展开更多
关键词 concrete coarse aggregate Compressive Strength Flexural Strength Natural Stone aggregate SEM
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Effect of Recycled Coarse Aggregate on Concrete Compressive Strength 被引量:7
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作者 汪振双 王立久 +1 位作者 崔正龙 周梅 《Transactions of Tianjin University》 EI CAS 2011年第3期229-234,共6页
The effect of recycled coarse aggregate on concrete compressive strength was investigated based on the concrete skeleton theory. For this purpose, 30 mix proportions of concrete with target cube compressive strength r... The effect of recycled coarse aggregate on concrete compressive strength was investigated based on the concrete skeleton theory. For this purpose, 30 mix proportions of concrete with target cube compressive strength ranging from 20 to 60 MPa were cast with normal coarse aggregate and recycled coarse aggregate from different strength parent concretes. Results of 28-d test show that the strength of different types of recycled aggregate affects the concrete strength obviously. The coarse aggregate added to mortar matrix plays a skeleton role and improves its compressive strength. The skeleton effect of coarse aggregate increases with the increasing strength of coarse aggregate, and normal coarse aggregate plays the highest, whereas the lowest concrete strength occurs when using the weak recycled coarse aggregate. There is a linear relationship between the concrete strength and the corresponding mortar matrix strength. Coarse aggregate skeleton formula is established, and values from experimental tests match the derived expressions. 展开更多
关键词 recycled coarse aggregate compressive strength concrete skeleton model skeleton formula crushing index
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Performance Degradation of the Repeated Recycled Aggregate Concrete with 70% Replacement of Three-generation Recycled Coarse Aggregate 被引量:3
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作者 朱平华 ZHANG Xinxin +1 位作者 伍君勇 王新杰 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第5期989-995,共7页
The feasibility of using different generations recycled coarse aggregate(RCA) on structural concrete was fully evaluated by studying the performance of the recycled coarse aggregates and their corresponding concrete... The feasibility of using different generations recycled coarse aggregate(RCA) on structural concrete was fully evaluated by studying the performance of the recycled coarse aggregates and their corresponding concretes, the different generations of RCA were recycled by following the repeated mode of ‘concrete-waste concrete-coarse aggregate-concrete'. Moreover, the focus was on ‘three generations' of repeated RCAs, the RCA was produced by crushing and regenerating the artificial accelerated degraded concrete, the process was designed to follow the nature degradation of the concrete with a coupling action of accelerated carbonation and bending load. The properties of x-generation(x=1, 2 or 3) of repeated RCA were systematically investigated and the compressive and splitting tensile strengths of relating structural concretes(with 70% replacement of x-generation of RCA) were studied accordingly. The results show a competent compressive and splitting tensile strength of 30 MPa at 28 th day of structural concretes with all generations of repeated RAC. And the gradual degraded performance of the repeated RCAs was observed with an increased numbers of repetition(1〉2〉3 generations), the overall performances of all repeated RCAs fulfill the Class Ⅲ according to Chinese Standards GB25177-2010. Our gained insight demonstrates a feasibility of using at least 3 generations of repeated RCA for the production of normal structural concrete. 展开更多
关键词 repeated recycled concrete repeated recycled coarse aggregate coupling action compressive strength ordinary atmosphere environment
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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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Finite Element Analysis on the Uniaxial Compressive Behavior of Concrete with Large-Size Recycled Coarse Aggregate
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作者 Tan Li Jianzhuang Xiao Amardeep Singh 《Journal of Renewable Materials》 SCIE EI 2022年第3期699-720,共22页
To model the concrete with complex internal structure of concrete with large sized aggregates the effect of internal structure on uniaxial compression behavior are studied.Large-sized recycled aggregates behave differ... To model the concrete with complex internal structure of concrete with large sized aggregates the effect of internal structure on uniaxial compression behavior are studied.Large-sized recycled aggregates behave differently in the concrete matrix.To understand the influence on concrete matrix,a finite element model was developed to model recycled aggregate concrete composed of multiple randomly distributed irregular aggregates and cement mortar.The model was used to calculate the effect of large-size recycled coarse aggregate(LRCA)on the strength of recycled aggregate concrete and simulate the compressive strength of cubes and prisms.The factors such as the strength of new concrete,the strength of old concrete,the defective element content,the shape of LRCA,the incorporation ratio of LRCA and the size of LRCA that can affect the strength of concrete are analyzed in this paper.Results showed that the influence of various factors on concrete strength are in the following desend-ing order:(i)strength of newly poured concrete;(ii)original strength of recycled aggregates;and(iii)defects.It can be seen that the cracking of the phase material elements starts along the bonding zones between gravel and mortar or the new and old mortar,then spreads to mortar and finally to LRCA.The cracking tendency is most significant in LRCA,which means that the fracturing is related to the fracture of the LRCA.After evaluating the variations in strength and quality of the recycled concrete,the influences on concrete strength and quality were studied.The results showed that the proposed concrete model with LRCA was successfully applied to studying the uniaxial compressive behavior of concrete with large-size recycled coarse aggregate. 展开更多
关键词 Recycled aggregate concrete(RAC) large-size recycled coarse aggregates(LRCA) finite element simulation STRENGTH CRACKING
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Effect of Partial Replacement of Coarse Aggregate with Electronic Waste Plastic in Light Weight Concrete
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作者 Derrick Nii-Laryea Botchway John Bentil Charles Yeboah Henaku 《Journal of Management Science & Engineering Research》 2022年第2期38-44,共7页
This study assessed the usefulness of the replacement of coarse aggregate partially with electronic waste(e-waste)plastic in lightweight concrete since developing countries have been challenged with management of e-wa... This study assessed the usefulness of the replacement of coarse aggregate partially with electronic waste(e-waste)plastic in lightweight concrete since developing countries have been challenged with management of e-waste as well as high cost of coarse aggregates for concrete production.Coarse aggregates were replaced with e-waste plastic in concrete at 5%,10%,15%,and 20% for a concrete class of C20.The particle size distribution of the e-waste plastic aggregates was determined as well as the slump,compressive strength,water absorption and bulk density of the concrete.Generally,the slump decreased as the e-waste increased.The compressive strengths decreased for the 5%and 10%replacement of coarse aggregates with e-waste but increased for the 15% and 20% replacement of coarse aggregate with e-waste.0% water absorption was obtained for the 15% and 20% e-waste content while the 10%e-waste concrete obtained 0.01% and the 5% e-waste obtaining of 0.013% after 28days of curing.The densities of 5%,10%,15% and 20% e-waste plastic content decreased as compared to the 0% e-waste plastic content.The values of compressive strength obtained showed that coarse aggregate replacements by e-waste plastic at 15% and 20% may be appropriate for lightweight concrete of class C20/25 since compressive strengths ranged between 16.09 Nmm^(-2) and 22.87 Nmm^(-2).This implies that partial replacement of coarse aggregate with e-waste plastic may be useful for lightweight concrete as well as helping in eradicating the environment of the menace of e-waste plastic. 展开更多
关键词 Electronic waste PLASTICS Compressive strength coarse aggregate concrete
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Punching shear behavior of steel fiber reinforced recycled coarse aggregate concrete two-way slab without shear reinforcement
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作者 Yongming YAN Danying GAO Feifei LUO 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2024年第10期1556-1575,共20页
In this paper,the punching shear performance of 8 steel fiber reinforced recycled coarse aggregate concrete(SFRCAC)two-way slabs with a size of 1800 mm×1800 mm×150 mm was studied under local concentric load.... In this paper,the punching shear performance of 8 steel fiber reinforced recycled coarse aggregate concrete(SFRCAC)two-way slabs with a size of 1800 mm×1800 mm×150 mm was studied under local concentric load.The effects of RCA replacement ratio(rg)and SF volume fraction(Vf)on the punching shear performance of SFRCAC two-way slabs were investigated.Digital Image Correlation(DIC)measurement and Acoustic Emission(AE)technique were introduced to collect pictures and relevant data during the punching shear test.The test results show that the SFRCAC two-way slab mainly exhibits punching shear failure and flexure failure under local concentric load.The punching shear failure space area of SFRCAC two-way slab has no obvious change with increasing rg,however,show a gradual increase trend with increasing Vf.Both of the punching shear ultimate bearing capacity(Pu)and its deflection of SFRCAC two-way slab decrease with increasing rg and increase with increasing Vf,respectively.Finally,through the regression analysis of the results from this study and the data collected from related literature,the influence of rg and Vf on the Pu of two-way slabs were obtained,and the equations in GB 50010-2010,ACI 318-19,and Eurocode 2 Codes were amended,respectively.Furthermore,the amended equations were all applicable to predicted the ultimate bearing capacity of the ordinary concrete two-way slab,RCAC two-way slab,SFRC two-way slab,and SFRCAC two-way slab. 展开更多
关键词 recycled coarse aggregate steel fiber reinforced recycled coarse aggregate concrete two-way slab punching shear punching shear ultimate bearing capacity
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Influence of Recycled Construction Materials Aggregate on Mechanical and Physical Properties of Concrete
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作者 Zainab Aamer Shamsulddin Rafaa Zair Jassim 《Journal of Civil Engineering and Architecture》 2016年第11期1244-1258,共15页
The main purpose of this research is to study the properties of re-use different types of construction materials such as PVC (polyvinylchloride) scraps, clay brick and recycled concrete as a partial replacement of c... The main purpose of this research is to study the properties of re-use different types of construction materials such as PVC (polyvinylchloride) scraps, clay brick and recycled concrete as a partial replacement of coarse aggregate. Different proportions (1%, 3%, 5% and 7%) by weight were used for PVC. scrap, (10%, 20%, 30%, and 40%) by weight were used for recycled concrete and (5%, 10%, 15%, and 20%) by weight were used for clay brick. Mechanical tests such as compressive and tensile strength tests and physical tests such as ultrasonic pulse velocity, bulk density, porosity, specific gravity and water absorption tests were done to the samples after curing in normal water for 28 days. Test results showed slightly degradation in mechanical and physical engineering properties of concrete specimens that used partial replacement of recycled concrete coarse aggregate, degradation increased with increasing of replacement but test results still closely to reference samples. Use of polyvinyl chloride in proportions not more than 5% as a partial replacement of coarse aggregates given acceptable results in comparison with reference samples but all test results degraded at 7% replacements. Test results of partial replacement of crushed brick coarse aggregates unacceptable and the range of degradation are wide because of increased (water: cement) ratio to improve the concrete workability. 展开更多
关键词 Recycled concrete PVC. chips clay brick environment benefits coarse aggregate replacements.
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Chloride diffusion in concrete with carbonated recycled coarse aggregates under biaxial compression
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作者 Jingwei YING Weibeng WANG Jianzhuang XIAO 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2023年第4期637-648,共12页
Chloride attack on concrete structures is affected by the complex stress state inside concrete,and the effect of recycled aggregates renders this process more complex.Enhancing the chloride resistance of recycled conc... Chloride attack on concrete structures is affected by the complex stress state inside concrete,and the effect of recycled aggregates renders this process more complex.Enhancing the chloride resistance of recycled concrete in a complex environment via carbonization facilitates the popularization and application of recycled concrete and alleviates the greenhouse effect.In this study,the chloride ion diffusion and deformation properties of recycled concrete after carbonization are investigated using a chloride salt load-coupling device.The results obtained demonstrate that the chloride ion diffusivity of recycled concrete first decreases and then increases as the compressive load increases,which is consistent with the behavior of concrete,in that it first undergoes compressive deformation,followed by crack propagation.Carbonation enhances the performance of the recycled aggregates and reduces their porosity,thereby reducing the chloride diffusion coefficient of the recycled concrete under different compressive load combinations.The variation in the chloride ion diffusivity of the carbonized recycled aggregate concrete with the load is consistent with a theoretical formula. 展开更多
关键词 recycled concrete carbonated recycled coarse aggregate biaxial compression chloride diffusion stress level
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Effects of coarse and fine aggregates on long-term mechanical properties of sea sand recycled aggregate concrete 被引量:3
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作者 Jingwei YlNG Yijie HUANG +2 位作者 Xu GAO Xibo QI Yuedong SUN 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2021年第3期754-772,共19页
Typical effects of coarse and fine aggregates on the long-term properties of sea sand recycled aggregate concrete(SSRAC)are analyzed by a series of axial compression tests.Two different types of fine(coarse)aggregates... Typical effects of coarse and fine aggregates on the long-term properties of sea sand recycled aggregate concrete(SSRAC)are analyzed by a series of axial compression tests.Two different types of fine(coarse)aggregates are considered:sea sand and river sand(natural and recycled coarse aggregates).Variations in SSRAC properties at different ages are investigated.A novel test system is developed via axial compression experiments and the digital image correlation method to obtain the deformation field and crack development of concrete.Supportive results show that the compressive strength of SSRAC increase with decreasing recycled coarse aggregate replacement percentage and increasing sea sand chloride ion content.The elastic modulus of SSRAC increases with age.However,the Poisson’s ratio reduces after 2 years.Typical axial stress-strain curves of SSRAC vary with age.Generally,the effect of coarse aggregates on the axial deformation of SSRAC is clear;however,the deformation differences between coarse aggregate and cement mortar reduce by adopting sea sand.The aggregate type changes the crack characteristics and propagation of SSRAC.Finally,an analytical expression is suggested to construct the long-term stress-strain curve of SSRAC. 展开更多
关键词 sea sand recycled aggregate concrete recycled coarse aggregate replacement percentage sea sand chloride ion content long-term mechanical properties stress-strain curve
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再生粗骨料混凝土应力-应变关系 被引量:4
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作者 肖建庄 唐宇翔 +1 位作者 张凯建 杨海峰 《工程力学》 EI CSCD 北大核心 2024年第2期43-55,共13页
再生粗骨料混凝土应力-应变关系是实现其材料到结构力学分析的桥梁纽带,成为再生粗骨料混凝土结构基础理论的基石。介绍了作者团队多年来在再生粗骨料混凝土应力-应变关系方面取得的研究进展:采用模型化再生粗骨料方法,研究了复杂界面... 再生粗骨料混凝土应力-应变关系是实现其材料到结构力学分析的桥梁纽带,成为再生粗骨料混凝土结构基础理论的基石。介绍了作者团队多年来在再生粗骨料混凝土应力-应变关系方面取得的研究进展:采用模型化再生粗骨料方法,研究了复杂界面过渡区对再生粗骨料混凝土破坏行为的影响,揭示了再生粗骨料混凝土细观损伤本质与演化机理;从静力作用到动力作用,系统地开展了不同工况下再生粗骨料混凝土应力-应变行为试验研究,探明了载荷条件对再生粗骨料混凝土应力与变形的影响规律并建立了相适应的力学与数学模型;进一步考虑再生粗骨料性能时空变异性,发现了再生粗骨料混凝土力学响应的概率分布特征,提出了再生粗骨料混凝土随机损伤本构关系;基于获得的本构模型,完成了再生粗骨料混凝土构件时变可靠度分析和结构动力非线性分析,为再生粗骨料混凝土在实际工程中的安全应用提供了理论支撑;提炼了相关研究结论并对未来研究工作进行了展望。 展开更多
关键词 再生粗骨料混凝土 应力-应变关系 多工况受力 随机性 时变可靠度 非线性分析
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MMA强化再生粗骨料混凝土力学性能试验研究 被引量:1
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作者 范玉辉 王宁 《河南理工大学学报(自然科学版)》 CAS 北大核心 2024年第1期189-195,共7页
目的为了提高再生粗骨料混凝土的性能,扩大再生粗骨料混凝土在工程中的使用范围。方法采用聚合物-甲基丙烯酸甲酯(MMA)单体浸渍,然后聚合的方法对再生粗骨料进行了强化研究。对聚合温度、聚合时间、再生粗骨料含水率等因素对MMA强化再... 目的为了提高再生粗骨料混凝土的性能,扩大再生粗骨料混凝土在工程中的使用范围。方法采用聚合物-甲基丙烯酸甲酯(MMA)单体浸渍,然后聚合的方法对再生粗骨料进行了强化研究。对聚合温度、聚合时间、再生粗骨料含水率等因素对MMA强化再生粗骨料效果的影响及强化后的再生粗骨料对再生粗骨料混凝土力学性能的影响进行了分析。结果研究结果表明:MMA强化再生粗骨料时的最佳聚合温度为60℃,最佳聚合时间为24 h,MMA强化可以有效改善再生粗骨料的吸水率和压碎指标等物理性能,对再生粗骨料进行预干燥处理可以使再生粗骨料的吸水率和压碎指标等物理性能得到进一步提升;MMA强化处理后的再生粗骨料混凝土3d、7d、14d和28d立方体抗压强度分别比普通再生粗骨料混凝土提高了26.9%,20.3%,21.4%,23.9%,轴心抗压强度、劈裂抗拉强度、抗折强度和弹性模量等力学性能分别比普通再生粗骨料混凝土提高了20.9%、14.7%、12.2%和8.3%,同时再生粗骨料混凝土的延性也得到了显著改善。结论MMA单体浸渍,然后进行聚合的方法可以有效改善再生粗骨料性能,从而提高再生粗骨料混凝土的力学性能。 展开更多
关键词 MMA强化 再生粗骨料混凝土 力学性能
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粗骨料超高性能混凝土应用研究 被引量:1
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作者 邓友生 李文杰 +3 位作者 孟丽青 张克钦 宋虔 马二立 《混凝土》 CAS 北大核心 2024年第7期160-163,共4页
为满足桥梁工程中桥面板材料轻质高强的市场需求,在活性粉末混凝土中掺入粒径不大于8 mm的粗骨料,制成含粗骨料超高性能混凝土。这种混凝土具有力学性能佳、材料自重轻、早期收缩小和造价较低等特点。首先阐述含粗骨料超高性能混凝土的... 为满足桥梁工程中桥面板材料轻质高强的市场需求,在活性粉末混凝土中掺入粒径不大于8 mm的粗骨料,制成含粗骨料超高性能混凝土。这种混凝土具有力学性能佳、材料自重轻、早期收缩小和造价较低等特点。首先阐述含粗骨料超高性能混凝土的配制原理及各掺合料对其性能的影响,其次分析其力学性能、疲劳性能和高温性能,最后展示了其在南京江心洲长江大桥的工程应用状态,并提出了其尚待深入研究的问题和发展方向。 展开更多
关键词 粗骨料 超高性能混凝土 力学性能 工程应用
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机制砂再生粗骨料混凝土抗压强度试验研究
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作者 王鑫 管民生 +1 位作者 杭熙茹 郭静 《混凝土》 CAS 北大核心 2024年第9期89-93,共5页
为探究机制砂原料种类和机制砂级配对机制砂再生混凝土抗压强度的影响,以细骨料类型(天然砂、石灰石机制砂、卵石机制砂)细骨料级配、水灰比为变量制作了30组机制砂再生混凝土立方体试块和15组天然砂再生混凝土立方体试块。结果表明:在... 为探究机制砂原料种类和机制砂级配对机制砂再生混凝土抗压强度的影响,以细骨料类型(天然砂、石灰石机制砂、卵石机制砂)细骨料级配、水灰比为变量制作了30组机制砂再生混凝土立方体试块和15组天然砂再生混凝土立方体试块。结果表明:在石粉掺量10%时,机制砂再生混凝土抗压强度高于天然砂再生混凝土,且机制砂原料为石灰石的抗压强度高于卵石;机制砂各筛孔量占比分别为5%、7%、18%、25%、26%和14%时,机制砂再生粗骨料混凝土的抗压强度最高。研究表明:严格控制水灰比、颗粒级配可使机制砂再生混凝土达到设计强度、满足生产应用要求,采用机制砂替代天然砂制备再生骨料混凝土更有优势,是缓解天然砂资源短缺的可行途径之一。 展开更多
关键词 机制砂 再生粗骨料混凝土 级配 抗压强度
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粗集料对超高强混凝土徐变的影响
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作者 徐怡 茅俊涛 +3 位作者 康璇 童松如 陈阳杰 蒋林华 《混凝土》 CAS 北大核心 2024年第4期52-57,共6页
徐变是混凝土固有的时变特性,对混凝土结构和构件的受力及长期服役性能有着重大影响。以粗集料为切入点,研究粗集料的掺量、粗集料最大粒径以及粗集料与基体性质协调性等因素对超高强混凝土的力学性能和徐变性能的影响。结果表明:掺粗... 徐变是混凝土固有的时变特性,对混凝土结构和构件的受力及长期服役性能有着重大影响。以粗集料为切入点,研究粗集料的掺量、粗集料最大粒径以及粗集料与基体性质协调性等因素对超高强混凝土的力学性能和徐变性能的影响。结果表明:掺粗集料的超高强混凝土徐变明显小于不掺粗集料的混凝土,掺粗集料可有效降低超高强混凝土的徐变,但减小粗集料的最大粒径对徐变无明显抑制效果。此外,超高强混凝土并非强度越高徐变越小,其徐变的大小主要受超高强混凝土强度与弹性模量的协同发展程度的影响。通过修正FIB MC2010模型,建立了适用于超高强混凝土的徐变预测模型。 展开更多
关键词 超高强混凝土 粗集料 徐变 预测模型
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预浸碳化再生骨料混凝土的动态力学性能研究
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作者 刘超 郝宏媛 +1 位作者 刘立熙 朱超 《振动与冲击》 EI CSCD 北大核心 2024年第19期117-125,193,共10页
为研究再生骨料的预浸碳化处理方式及碳化循环次数对再生混凝土动态力学性能的影响,将强化后的再生骨料100%取代天然骨料制备再生混凝土试件,分别开展静、动态压缩试验。研究结果表明,静态加载时,预浸碳化组的抗压强度随碳化循环次数的... 为研究再生骨料的预浸碳化处理方式及碳化循环次数对再生混凝土动态力学性能的影响,将强化后的再生骨料100%取代天然骨料制备再生混凝土试件,分别开展静、动态压缩试验。研究结果表明,静态加载时,预浸碳化组的抗压强度随碳化循环次数的增加而增大,而直接碳化组的抗压强度仅在第1次碳化循环后有所提升,继续进行碳化循环对再生混凝土强度的提升效果不明显。动态加载时,预浸碳化组再生混凝土呈现出明显的应变率强化效应,动态抗压强度与动态增加因子均随应变率的增大而提高,相较于普通再生混凝土,再生骨料预浸碳化循环3次后制备的再生混凝土试件动态抗压强度提升了23.8%,而直接碳化组仅提升了5.7%,且动态增加因子与应变率的对数存在良好的线性关系,随应变率的lg10线性增加;当应变率相同时,随着碳化循环次数的增加,动态抗压强度也增大。从能量的角度看,预浸碳化组在高应变率下的比能量吸收值大于低应变率下的比能量吸收值,再次说明了预浸碳化再生骨料混凝土仍具有应变率效应,相同应变率条件下,预浸碳化组的比能量吸收值大于直接碳化组,说明预浸碳化再生骨料提升了再生混凝土的抗冲击性能,且效果优于传统的直接碳化处理。上述研究也为预浸碳化强化再生骨料及再生混凝土在工程结构中的应用提供了可靠的试验结果和理论依据。 展开更多
关键词 再生粗骨料 预浸碳化 再生混凝土 动态力学性能
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3D打印粗骨料混凝土的研究进展及应用
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作者 肖力光 仲小康 《混凝土》 CAS 北大核心 2024年第6期169-172,179,共5页
混凝土3D打印近年来备受瞩目,3D打印混凝土也迅速发展,但目前大多数的3D打印的混合料中只有细集料,最大尺寸仅为4 mm。由于混合料中缺少粗骨料,水泥成分较多,导致混凝土成本增加,减少了固废利用,资源消耗多,造成了巨大的环境负担。3D打... 混凝土3D打印近年来备受瞩目,3D打印混凝土也迅速发展,但目前大多数的3D打印的混合料中只有细集料,最大尺寸仅为4 mm。由于混合料中缺少粗骨料,水泥成分较多,导致混凝土成本增加,减少了固废利用,资源消耗多,造成了巨大的环境负担。3D打印粗骨料混凝土不仅减少了水泥用量和碳排放、降低施工成本,还可以回收建筑固体废物。此外增加粗骨料的掺量还可以使混凝土的水化热收缩明显降低,体积稳定性提高。分析粗骨料掺入对其可打印性、流变性、可挤出性、可建造性、力学各向异性及耐久性的影响,介绍了3D打印粗骨料的建造应用。 展开更多
关键词 3D打印粗骨料混凝土 流变性 力学各向异性 耐久性 建造应用
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微波强化粗骨料再生混凝土性能试验研究
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作者 戴俊 蒋昊轩 +2 位作者 薛贵堂 杨清清 王林涛 《混凝土》 CAS 北大核心 2024年第4期63-66,110,共5页
借助微波辅助机械工艺对再生粗骨料进行强化,以取代率和龄期作为变量对制作的强化再生混凝土进行宏观、微观试验分析其力学性能。研究结果表明:强化再生混凝土与天然骨料混凝土的破坏形态相似,其抗压强度较未强化再生混凝土有所提升,试... 借助微波辅助机械工艺对再生粗骨料进行强化,以取代率和龄期作为变量对制作的强化再生混凝土进行宏观、微观试验分析其力学性能。研究结果表明:强化再生混凝土与天然骨料混凝土的破坏形态相似,其抗压强度较未强化再生混凝土有所提升,试件的峰值应变、极限应变、弹性模量虽有变化,但仍优于未强化再生混凝土;在微观方面,微波强化技术改善了再生粗骨料自身的缺陷,使其更接近天然骨料。这些结果验证了微波辅助机械强化再生粗骨料的优越性,在一定条件下强化再生粗骨料可替代天然骨料再次利用。 展开更多
关键词 微波 粗骨料强化 再生混凝土 破坏形态 力学性能 电镜扫描
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