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Analysis of a Composite Admixture Based on Ready-Mixed Concrete Waste Residuals
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作者 Jinfa Jiang Long Xiong +1 位作者 Ming Bao Zihan Zhou 《Fluid Dynamics & Materials Processing》 EI 2023年第8期1983-1995,共13页
Reasonable treatment and utilization of waste residuals discharged during the production of ready-mixed concrete is an important problem in the cement industry.In this study,a composite admixture was prepared by using... Reasonable treatment and utilization of waste residuals discharged during the production of ready-mixed concrete is an important problem in the cement industry.In this study,a composite admixture was prepared by using ready-mixed concrete waste residuals,furnace slag,and water granulated slag.The grinding characteristics of such material were investigated.Moreover,the effect of such admixture on cement hydration and pore structure was analyzed by X-ray diffraction,thermogravimetric-differential scanning calorimetry,scanning electron microcopy and mercury intrusion porosimetry.As shown by the results:The grinding characteristics of the waste residuals can be improved significantly by mixing them with furnace slag and water granulated slag.Furthermore,the composite admixture does not change the composition of hydration products;rather it contributes to refine the pore structure of the matrix,thus improving the mechanical properties of these cement-based materials. 展开更多
关键词 Waste residue of ready-mixed concrete station ready mixed concrete composite admixture ACTIVITY MICROSTRUCTURE
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Effect of Recycled Mixed Powder on the Mechanical Properties and Microstructure of Concrete
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作者 Chao Liu Huawei Liu Jian Wu 《Journal of Renewable Materials》 SCIE EI 2022年第5期1397-1414,共18页
In this paper,recycled bricks and recycled concrete were applied to prepare eco-friendly recycled mixed powder(RMP)cementitious material,as a supplementary to replace conventional cement for improve the recycling of c... In this paper,recycled bricks and recycled concrete were applied to prepare eco-friendly recycled mixed powder(RMP)cementitious material,as a supplementary to replace conventional cement for improve the recycling of construction and demolition waste.Based on the effect of cementitious materials on the hydration of silicate cement,the effects of RMP on the workability,mechanical properties and microstructure of recycled mixed powder concrete(RMPC)with the different replacement ratios and the 8:4 and 6:4 mixing ratio of recycled brick powder(RBP)and recycled concrete powder(RCP)were investigated.The results showed that the fluidity of the mix decreased with increasing of the replacement ratio and the mixing ratio of RBP and RCP,but the influence of the fluidity was smaller within 15%replacement ratio.As the replacement ratio increases,the internal pore structure of RMPC tends to be loose and porous,which exhibits a significant pore volume distribution characteristic.The number of large capillaries was considerably increased at replacement ratio of 45%.The 7 d compressive strength of RMPC was slightly lower than that of ordinary concrete.The compressive and splitting tensile strengths of RMPC at 28 d increased by 4.2%and 10.1%,respectively,with increasing curing age at 15%replacement ratio and 6:4 mixing ratio.The RMPC mechanical strengths with RBP and RCP at the mixing ratio of 6:4 was higher than those of 8:2.Finally,a basis for the recycling of RBP and RCP in the construction industry can be provided by the results of this study. 展开更多
关键词 Recycled concrete recycled mixed powder pore structure mechanical properties
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The Continuum Analytical Method of Steel Frame- Reinforced Concrete Shear Wall Mixed Structure
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作者 Jian Liu Xiangyun Huang +2 位作者 Guangen Zhou Jiping Hao Zenglin Xing 《Journal of Civil Engineering and Architecture》 2011年第4期368-374,共7页
关键词 钢筋混凝土剪力墙 钢框架梁柱 混合结构 二阶效应 水平荷载 层间位移 接头连接 结构设计
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High Performance Concrete and Its Typical Mixes 被引量:3
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作者 Cai Yuebo , Kwan Kwokhung , Cheung Yaukai Chan Honchuen Senior Engineer, Material and Structure Department, Nanjing Hydraulic Research Institute, Nanjing 210024 P. H. Doctor, Department of Civil and Structural Engineering, University of Hong Kong Professor, Department of Civil and Structural Engineering, University of Hong Kong 《China Ocean Engineering》 SCIE EI 1995年第3期335-344,共10页
With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durabi... With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durability, lower risk of thermal cracking and higher dimensional stability etc. The three most effective admixtures for producing high performance concrete are superplastieizer, pulverized fuel ash and condensed silica fume. This paper outlines the properties of these materials and presents some practical guidelines for their usage. 展开更多
关键词 high performance concrete SUPERPLASTICIZER pulverized fuel ash condensed silica fume typical mixes
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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:2
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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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Statistical modelling for effect of mix-parameters on properties of high-flowing sand-concrete 被引量:7
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作者 T.BOUZIANI A.BENMOUNAH M.BDRINA 《Journal of Central South University》 SCIE EI CAS 2012年第10期2966-2975,共10页
The high-flowing sand-concrete(HFSC) containing natural sands as aggregate was carried out.The high fluidity and stability of HFSC can be achieved by tailoring the mix design parameters,such as fine to coarse sand rat... The high-flowing sand-concrete(HFSC) containing natural sands as aggregate was carried out.The high fluidity and stability of HFSC can be achieved by tailoring the mix design parameters,such as fine to coarse sand ratio,dosage of additions,water to binder ratio and dosage of admixtures.Mini-cone slump test,v-funnel time test and viscosity model parameters were used to characterize the behaviour of HFSC in fresh state.The mechanical compressive strength in 28 d was also determined.A factorial design approach was used to establish models highlighting the effect of each mix-parameter on measured properties of HFSC.The derived models are valid for mixtures made with 0 to 0.3 of dune sand to total sand ratio,82 to 418 kg/m3 of marble powder,0.42 to 0.46 of water/binder ratio and 1.3% to 1.9% of superplasticizer high water-reducer.The results show that the derived models constitute very efficient means for understanding the influence of key mix-parameters on HFSC properties and are useful in selecting the optimum mix proportions,by simulating their impact on fluidity,stability and compressive strength. 展开更多
关键词 混合参数 混凝土 统计建模 流砂 性能 高效减水剂 模型参数 抗压强度
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Process-Functional Model of Transportation Mix Concrete
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作者 Andrey Vladimirovich Ostroukh Bashmakov Igor Aleksandrovich Polgun Mikhail Borisovich 《Journal of Transportation Technologies》 2014年第2期157-163,共7页
The paper proposes a process-functional model of transportation mix concrete, which is a structured description of a means of transportation technology mix concrete road at the level of the production process. Range o... The paper proposes a process-functional model of transportation mix concrete, which is a structured description of a means of transportation technology mix concrete road at the level of the production process. Range of activities related to the transportation of concrete mixtures is presented in the form of hierarchically nested processes that are coordinated on the basis of general systems theory. The model is described in a strict sequence: process chain→process step→process link, and all built technological chains consist of indivisible units. 展开更多
关键词 Road TRANSPORT PROCESS Chain The TRANSPORT PROCESS TRANSPORTATION of concrete mixes
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Durability of Performance Foamed Concrete Mix Design with Silica Fume for Housing Development 被引量:1
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作者 Fahrizal Zulkamain Mahyuddin Ramli 《材料科学与工程(中英文版)》 2011年第5期518-527,共10页
关键词 混凝土配合比设计 泡沫性能 普通硅酸盐水泥 硅粉 混凝土抗压强度 耐久性 泡沫混凝土 房屋
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Local Aggregate in Production of Concrete Mix in Jordan
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作者 Mohmd Sarireh Hamadallah Al-Baijat 《Open Journal of Civil Engineering》 2019年第2期81-94,共14页
Concrete properties such as unit weight and compressive strength are highly dependable on the properties of aggregate. Current research aims to study the effect of aggregate properties on concrete considering the reso... Concrete properties such as unit weight and compressive strength are highly dependable on the properties of aggregate. Current research aims to study the effect of aggregate properties on concrete considering the resource of aggregate. The properties of aggregate and fine sand were studied (specific gravity, density, absorption, and abrasion). Also, the properties of concrete were studied (density, unit weight, and compressive strength). Samples of coarse and medium aggregates, and fine sand were collected from different areas in Jordan (Ajloun, Amman, Aqaba, Irbid, Jerash, Karak, Ma’an, Madaba, Salt, Zarqa, and Tafila) to be tested and used in concrete mix. Aggregate from South of Jordan has higher values in specific gravity and bulk density (Aqaba, Ma’an, and Karak aggregates). Also, the same aggregate samples have lower values in absorption and abrasion (Ma’an, Aqaba, Karak, and Tafila). For the properties of concrete that include density, unit weight, and compressive strength, all samples have achieved the design properties and strength in the current study. For density and unit weight, samples from South of Jordan have higher values (Ma’an and Aqaba). And for compressive strength, Ma’an, Irbid and Amman concrete samples have the highest values at 7-day, while the 28-day compressive strength comes highest for Zarqa, Ma’an, Irbid and Amman. From the results of the current study, the compressive strength at 7-day and 28-day is related to the density of coarse and medium aggregate, abrasion, and absorption. The higher the density, the higher the compressive strength. And the lower abrasion and absorption, the higher the compressive strength of concrete. Current research will be useful in selecting the source of aggregate to produce a considerable concrete strength. 展开更多
关键词 AGGREGATE concrete mix PRODUCTION COMPRESSIVE Strength concrete Age
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Equal Volumes of Sand and Gravel Concrete Mix Ratios in Cameroon and Its Effect on Concrete Compressive Strength
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作者 Patrick Bame Che Yamb Bell Emmanuel Ndigui Billong 《World Journal of Engineering and Technology》 2022年第3期539-549,共11页
In recent years, the rationalization of concrete mix ratios which batches equal volumes of sand and gravel in building projects has been gaining grounds in the Cameroon construction industry. The main objective of thi... In recent years, the rationalization of concrete mix ratios which batches equal volumes of sand and gravel in building projects has been gaining grounds in the Cameroon construction industry. The main objective of this study is therefore to investigate if the concrete produced with rationalized mix ratio can be adopted as conventional mix ratio in terms of minimum required compression strength of concrete for buildings. Specifically this work compared the conventional mix ratio of 350 kg of cement: 400 liters of sand: 800 liters of gravel for a cubic meter and the rationalized batch of 350 kg of cement: 600 liters of sand: 600 liters of 5/15 gravel, 15/25 gravel and a combination of 5/15 + 15/25 gravel. Average compressive tests’results for both the conventional and the rationalized mix ratios were found to meet the minimum compressive strength of 65% at 7 days, 90% at 14 days and 99% at 28 days for gravel size combination 5/15 + 15/25. Single size gravel of 5/15 and 15/25 did not meet the minimum required compressive strength of 20 N/mm<sup>2</sup> for the rationalized mix ratio at 28 days curing based on the minimum compressive strength required, this study arrives at the conclusion that the equal volumes of sand and gravel mix ratio of 350 kg/m<sup>3</sup> of cement: 600 liters of sand: 600 liters of gravel mix ratio can be adopted as a conventional concrete mix ratio for gravel size 5/15 + 15/25. 展开更多
关键词 Conventional concrete Rationalized concrete mix Ratio Compressive Strength Equal Volumes of Sand and Gravel
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Concrete Mix Design by IS,ACI and BS Methods:A Comparative Analysis
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作者 Ashish Chhachhia 《Journal of Building Material Science》 2020年第1期30-33,共4页
Concrete is one of the most consumable construction materials on the earth.The concrete constitutes cement,sand,gravel,water and/or additives in definite proportions.The proportions of raw materials of concrete are de... Concrete is one of the most consumable construction materials on the earth.The concrete constitutes cement,sand,gravel,water and/or additives in definite proportions.The proportions of raw materials of concrete are decided by the concrete mix design.The mix design depends on the various factors.For mix design,most of the countries have their own specifications.In the present study,standard guidelines of India,Britain and America for the concrete mix design have been discussed.The concrete grades of M25,M35 and M45 were designed and compared.Indian Standards were also compared.It was concluded that a new revised version of Indian Standard code has the lowest value of water/cement ratio and highest quantity of cement as compared to other standards. 展开更多
关键词 concrete mix design Indian standards ACI code BS code
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Preparation and Optimization of Mix ratio for C50T Girder Manufactured Sand and Concrete
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作者 Honghong Ye Delin Zeng +4 位作者 Yong Yang Xingbo Fan Wei Wang Pingbo Zao Zhusheng Yang 《Frontiers Research of Architecture and Engineering》 2021年第2期16-20,共5页
Considering actual construction conditions of Binchuan-Heqing Highway,this paper provides the C50 mix ratio conforming to engineering requirements by strictly controlling the quality of raw materials,optimizing the de... Considering actual construction conditions of Binchuan-Heqing Highway,this paper provides the C50 mix ratio conforming to engineering requirements by strictly controlling the quality of raw materials,optimizing the design of mix ratio scientifically,preparing superior C50 concrete 0 with manufactured sand,and optimizing the concrete mix ratio based on the adjustment of fly ash replacement,water-cement ratio,polycarboxylate-type water reducer mixing amount,sand ratio,etc.The result indicates that,the water-cement ratio has a great influence on the concrete strength,and if the ratio of coal ash is high in the binding material,the early compressive strength of the concrete will increase slowly. 展开更多
关键词 concrete mix ratio STRENGTH Water-cement ratio
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Comparative Analysis of PM10 Emission Rates from Controlled and Uncontrolled Cement Silos in Concrete Batching Facilities
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作者 Ahmed El-Said Rady Mokhtar S. Beheary +1 位作者 Mossad El-Metwally Ashraf A. Zahran 《Open Journal of Air Pollution》 2023年第2期67-77,共11页
This research study quantifies the PM<sub>10</sub> emission rates (g/s) from cement silos in 25 concrete batching facilities for both controlled and uncontrolled scenarios by applying the USEPA AP-42 guide... This research study quantifies the PM<sub>10</sub> emission rates (g/s) from cement silos in 25 concrete batching facilities for both controlled and uncontrolled scenarios by applying the USEPA AP-42 guidelines step-by-step approach. The study focuses on evaluating the potential environmental impact of cement dust fugitive emissions from 176 cement silos located in 25 concrete batching facilities in the M35 Mussafah industrial area of Abu Dhabi, UAE. Emission factors are crucial for quantifying the PM<sub>10</sub> emission rates (g/s) that support developing source-specific emission estimates for areawide inventories to identify major sources of pollution that provide screening sources for compliance monitoring and air dispersion modeling. This requires data to be collected involves information on production, raw material usage, energy consumption, and process-related details, this was obtained using various methods, including field visits, surveys, and interviews with facility representatives to calculate emission rates accurately. Statistical analysis was conducted on cement consumption and emission rates for controlled and uncontrolled sources of the targeted facilities. The data shows that the average cement consumption among the facilities is approximately 88,160 (MT/yr), with a wide range of variation depending on the facility size and production rate. The emission rates from controlled sources have an average of 4.752E<sup>-04</sup> (g/s), while the rates from uncontrolled sources average 0.6716 (g/s). The analysis shows a significant statistical relationship (p < 0.05) and perfect positive correlation (r = 1) between cement consumption and emission rates, indicating that as cement consumption increases, emission rates tend to increase as well. Furthermore, comparing the emission rates from controlled and uncontrolled scenarios. The data showed a significant difference between the two scenarios, highlighting the effectiveness of control measures in reducing PM<sub>10</sub> emissions. The study’s findings provide insights into the impact of cement silo emissions on air quality and the importance of implementing control measures in concrete batching facilities. The comparative analysis contributes to understanding emission sources and supports the development of pollution control strategies in the Ready-Mix industry. 展开更多
关键词 Emission Factors concrete Batching Cement Dust PM10 Fugitive Emissions SILOS Environmental Impact Air Quality Ready-mix Industrial Facilities
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Effect of Flaky Plastic Particle Size and Volume Used as Partial Replacement of Gravel on Compressive Strength and Density of Concrete Mix
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作者 Stanley O. Osubor Kamoru A. Salam Taiwo M. Audu 《Journal of Environmental Protection》 2019年第6期711-721,共11页
Common ways of disposing waste plastic such as incineration and landfilling have negative impacts on the environment. Partial replacement of natural aggregate in concrete with waste plastic including polyethylene tere... Common ways of disposing waste plastic such as incineration and landfilling have negative impacts on the environment. Partial replacement of natural aggregate in concrete with waste plastic including polyethylene terephthalate (PET) is more environmental friendly and sustainable. The effect of adding 5% to 20% waste plastic by volume of natural coarse aggregate (“gravel”) and plastic particle size (3 to 7 mm) on the density and compressive strength of plastic-concrete mix after 28 days of curing was studied. The results showed that density of the concrete decreased from 2406.7 to 2286.7 kg/m3 as waste plastic increased from 5% to 20% v/v compared with 2443.3 kg/m3 recorded by concrete without waste plastic. Change in particle size from 3 to 7 mm has no significant effect on the density of the plastic-concrete mix. The compressive strength decreased as the volume and particle size of waste plastic increased. When waste plastic volume changed from 5% to 20% v/v, the compressive strength decreased from 20.5 to 15 MPa, 18.6 to 14.3 MPa and 17.2 to 13.8 MPa for 3, 5 and 7 mm waste plastic particle size respectively while the concrete without plastic has 21.33 MPa. Therefore, the addition of 5% (v/v gravel) of flaky waste plastic in the concrete produces a lightweight concrete which could offer economic benefit without substantially reducing the compressive strength of the plastic-concrete mix. 展开更多
关键词 Flaky PLASTIC COMPRESSIVE Strength DENSITY GRAVEL Particle Size Plastic-concrete mix
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The Properties of Sulfur Rubber Concrete (SRC) 被引量:1
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作者 李悦 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第1期129-133,共5页
The mix designs and specimen preparation for the dry process and wet process of sulfur rubber conerete ( SRC ) were investigated. The compressive strength, corrosion-resistance and toughness were studied and discuss... The mix designs and specimen preparation for the dry process and wet process of sulfur rubber conerete ( SRC ) were investigated. The compressive strength, corrosion-resistance and toughness were studied and discussed. The results show that SRC is corrosion-resistanet. Although the compressive strength of SRC decreases with inereasing rubber content, the toughness increases instead . Adding micro-filler will improve the compressive strength of SRC . There is a threshold value for the sulfur content, at which the compressive strength and the workability of SRC reach an optimum balance . The bond between rubber particles and surrounding sulfur is strong due to the vulcanization process that generates cross-link through S-C bonds. 展开更多
关键词 sulfur rubber concrete mix design dry process wet process
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Effects of Recycled Aggregate Content on Pervious Concrete Performance 被引量:2
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作者 Lei Guo Zi Guan +4 位作者 Lixia Guo Weiping Shen Zhilong Xue Pingping Chen Mingru Li 《Journal of Renewable Materials》 SCIE EI 2020年第12期1711-1727,共17页
A recycled aggregate(RA)was prepared by crushing and sieving demolished discarded concrete pavements and was subsequently tested and analyzed to determine its various physical properties.On this basis,pervious concre... A recycled aggregate(RA)was prepared by crushing and sieving demolished discarded concrete pavements and was subsequently tested and analyzed to determine its various physical properties.On this basis,pervious concrete(PC)mix proportions were designed.Coarse RA particles with sizes of 5–10 and 10–20 mm were selected.Concrete specimens were prepared with a water–cement ratio of 0.3,an aggregate–cement ratio of 4.5,the substitute rates of RA with 0,25%,50%,75%and a single-/double-gap-graded RA mix(mass ratio of particles with sizes of 5–10 mm to particles with sizes of 10–20 mm:1:1,1:2,2:1,2:3 and 3:2).Various properties of the RA-containing PC(RPC)were determined by analyzing the compressive strength,splitting tensile strength,effective porosity,permeation coefficient and impact and abrasion resistance of the specimens.The results showed the following:The density of the RPC decreased with an increasing RA replacement ratio.The density of the RPC prepared with a double-gapgraded RA mix was lower than that prepared with a single-gap-graded RA(particle size:10–20 mm)mix.The permeation coefficient of the RPC increased with increasing porosity.The splitting tensile strength of the RPC was positively correlated with its compressive strength.The compressive strength of the RPC decreased with increasing porosity.The regression analysis showed that the impact and abrasion resistance of the RPC increased with increasing compressive strength.In addition,all of the RPC specimens met the strength and permeation requirements.This study can provide theoretical support for the application of RPC. 展开更多
关键词 Recycled aggregate recycled pervious concrete STRENGTH PERMEABILITY wear resistance mix proportion
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Mechanical Properties and ITZ Microstructure of Recycled Aggregate Concrete Using Carbonated Recycled Coarse Aggregate 被引量:6
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作者 伍君勇 张云升 +2 位作者 ZHU Pinghua FENG Jincai 胡坤 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第3期648-653,共6页
The effect of carbonation treatment and mixing method on the mechanical properties and interfacial transition zone(ITZ) properties of recycled aggregate concrete(RAC) was investigated. Properties of recycled concr... The effect of carbonation treatment and mixing method on the mechanical properties and interfacial transition zone(ITZ) properties of recycled aggregate concrete(RAC) was investigated. Properties of recycled concrete aggregate(RCA) were tested firstly. Then, five types of concretes were made and slump of fresh concrete was measured immediately after mixing. Compressive strength and splitting tensile strength of hardened concrete were measured at 28 d. Meanwhile, the microstructure of RAC was analyzed by backscattered electron(BSE) image. It was found that the water absorption ratio of carbonated recycled concrete aggregate(CRCA) was much lower when compared to the untreated RCA. Comparatively, the apparent density of CRCA was not significantly modified. The concrete strength results indicate that the mix CRAC-2 prepared with CRCA by adopting two-stage mixing approach shows the highest compressive strength value compared to the other mixes. The microstructural analysis demonstrate that the mix CRAC-2 has a much denser old ITZ than the untreated RAC because of the chemical reaction between CO2 and the hydration products of RCA. This study confirms that the ITZ microstructure of RAC can be efficiently modified by carbonation treatment of RCA and encourages broadening the application of construction and demolition wastes. 展开更多
关键词 recycled aggregate concrete compressive strength interfacial transition zone carbonation treatment two-stage mixing approach back scattered electron
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Effects of Curing Conditions on Strength Development of High Strength Concrete
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作者 Cai, YB Kwan, KH 《China Ocean Engineering》 SCIE EI 1997年第1期99-108,共10页
This paper presents the results of a series of studies on the influence of curing conditions on the strength development of high strength concrete. The 1-, 3-, 7-, 14- and 28-day strengths of four different mixes of G... This paper presents the results of a series of studies on the influence of curing conditions on the strength development of high strength concrete. The 1-, 3-, 7-, 14- and 28-day strengths of four different mixes of Grade 75 similar to 80 concrete, with or without pulverized fuel ash and/or condensed silica fume, under five different curing regimes were investigated. It is revealed that the curing conditions have significant influence on both the short term and long term strength development of the concrete and that concrete mixes of the same grade but containing different mineral admixtures show distinct favour for a curing regime. These results will be helpful for evaluating suitable curing methods for high strength concrete with different mix proportions. 展开更多
关键词 curing condition high strength concrete strength development mineral admixture mix proportion
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The Creep Feature Analysis of The High Performance Concrete
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作者 苏骏 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2005年第3期113-115,共3页
In order to seek the creep change rules of ased concrete with two different mix proportions, the test is carried out in the situation which is similar to that of the creation of concrete C60, and the creep test on the... In order to seek the creep change rules of ased concrete with two different mix proportions, the test is carried out in the situation which is similar to that of the creation of concrete C60, and the creep test on the concrete of two different mix proportions is done under standard lab. Based on creep test of the high performance concrete, the creep degree and the creep coefficient are obtained. By comparing with the wide-adopted models of AC1209 (1997) and CEB- FIP MC90, it is found that the test result is good at its regularity and the research results offer reference to the calculating analysis of the on-the-spot experimental data. 展开更多
关键词 high performance concrete mix proportion creep coefficient
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Perspective of E-Waste in Concrete: A Review
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作者 Kiran Devi Amit Kumar 《Journal of Building Material Science》 2020年第2期33-37,共5页
In this digital era,usage of electric and electronic devices has become the need of people.Evolution of technology triggers the adoption of new devices over old and discarded appliances turned into the electronic wast... In this digital era,usage of electric and electronic devices has become the need of people.Evolution of technology triggers the adoption of new devices over old and discarded appliances turned into the electronic wastes also termed as e-waste/s.E-waste from any source has become a major concern to the society.The disposal of these wastes into the landfills causes many hazardous impacts to the ecosystem.As a promising solution construction industry can utilize the e-wastes effectively.The wastes may be used either as fine filler or aggregates in concrete and bituminous based constructions efficiently.Usage of waste/s conserves the natural resources also.Present study magnifies the scenario of application of electronic wastes in different forms i.e.,plastic,metal etc.in bituminous and concrete based mixtures.A critical review has been carried the effects of electronic wastes in concrete and bituminous mixes and findings confirm the praxis of electronic wastes is possible within certain limits. 展开更多
关键词 E-WASTE Cement composites Bituminous mix Properties of concrete
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