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Deformation Properties of Used Mortar and Recycled Brick Aggregate
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作者 WANG Lei LIANG Zhuoran +3 位作者 YONG Yi CAO Feng TANG Wenlong HUANG Zhuqin 《Journal of Wuhan University of Technology(Materials Science)》 2025年第2期462-475,共14页
In order to study the effects of the contents of used mortar recycled aggregate(OMRA)and brick recycled aggregate(BRA)on the deformation properties of recycled aggregate concrete(RAC),under uniaxial compression condit... In order to study the effects of the contents of used mortar recycled aggregate(OMRA)and brick recycled aggregate(BRA)on the deformation properties of recycled aggregate concrete(RAC),under uniaxial compression conditions,The RAC of OMRA(0%,5%,10%,and 15%)and BRA(0%,3%,6%,9%,12%,and 15%)were studied.The experimental results show that,under uniaxial compression,the interfacial relationships of RAC containing OMRA and BRA between different materials are more complex,and the failure mechanism is also more complex.The content of OMRA and BRA had significant influence on the deformation behavior of RAC.When the content of OMRA and BRA is high,it is difficult for existing formulas and models to accurately represent the actual value.In this study,the influence of OMRA and BRA content is taken into account,and the existing formulas for calculating concrete deformation are modified,so that these formulas can more accurately calculate the elastic modulus,peak strain and ultimate strain of recycled concrete.The stress-strain formula of Guo concrete fits the stress-strain curve of concrete very well.We modified the formula on the basis of Guo formula to make the formula more suitable for the stress-strain curve of recycled concrete containing old mortar and brick,and the theoretical model proposed has better fitting accuracy.The study provides a valuable reference for nonlinear analysis of recycled aggregate concrete structures under different proportions of OMRA and BRA. 展开更多
关键词 recycled aggregate concrete old mortar BRICK elastic modulus peak strain stress-strain curve
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Evolution of Biofilm and Its Effect on Microstructure of Mortar Surfaces in Simulated Seawater
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作者 荣辉 YU Chenglong 张颖 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期234-243,共10页
To explore the role of biofilm formation on the corrosion of marine concrete structures, we investigated the attachment of biofilm on mortar surfaces in simulated seawater and the influence of biofilm on the microstru... To explore the role of biofilm formation on the corrosion of marine concrete structures, we investigated the attachment of biofilm on mortar surfaces in simulated seawater and the influence of biofilm on the microstructure of mortar surfaces. The results show that the evolution of biofilm on mortar surfaces in simulated seawater is closely related to the corrosion suffered by the mortar, and the process of biofilm attachment and shedding is continuous and cyclical. It is found that the specimens in the absence of biofilm attachment are more severely eroded internally by the corrosive medium in simulated seawater than those in the presence of biofilm attachment. For the specimens without biofilm attachment, after 60 days, gypsum forms,and after 120 days, the number of pores in the mortar is reduced. In contrast, for the specimens in the presence of biofilm attachment, gypsum could only be detected after 90 days, and fewer pores are filled. Therefore, the formation of biofilm could delay the invasion of the corrosive medium into the interior of mortar during the evolution of biofilm on mortar surfaces, mitigating the corrosion of mortars in seawater. 展开更多
关键词 biofilm attachment mortar sulfur-oxidizing bacteria GYPSUM simulated seawater MICROSTRUCTURE
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Investigation of mortar corrosion by an acidophilic sulfur-oxidizing microorganism A.thiooxidans
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作者 WANG Dong-sheng FENG Chao +4 位作者 GUAN Fang SAND Wolfgang KRISHNAMURTHY Mathivanan WAN Fei ZHANG Rui-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3423-3434,共12页
The corrosion behavior of the acidophilic sulfur-oxidizing microorganism(ASOM)Acidithiobacillusthiooxidans(A.thiooxidans)on mortar was investigated for changes of medium and mortar,as well as for weight lossand surfac... The corrosion behavior of the acidophilic sulfur-oxidizing microorganism(ASOM)Acidithiobacillusthiooxidans(A.thiooxidans)on mortar was investigated for changes of medium and mortar,as well as for weight lossand surface morphology of mortar specimens.Weight loss analysis showed that mortar weight was reduced by(15.1±2.2)%after 56 d.Morphological surface analysis of mortar specimens showed weakly structured fibrous substances with2−100μm in size.The pH variations of the mortar surface and medium indicated that biogenic sulfuric acid had beenproduced by A.thiooxidans.The results prove that A.thiooxidans accelerated concrete corrosion and caused concretefailure. 展开更多
关键词 sulfur-oxidizing bacteria Acidithiobacillus thiooxidans mortar CORROSION biogenic sulfuric acid mass loss
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An Investigation into the Performances of Cement Mortar Incorporating Superabsorbent Polymer Synthesized with Kaolin
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作者 Xiao Huang Jin Yang 《Fluid Dynamics & Materials Processing》 EI 2024年第6期1393-1406,共14页
Cement-based materials are fundamental in the construction industry,and enhancing their properties is an ongoing challenge.The use of superabsorbent polymers(SAP)has gained significant attention as a possible way to i... Cement-based materials are fundamental in the construction industry,and enhancing their properties is an ongoing challenge.The use of superabsorbent polymers(SAP)has gained significant attention as a possible way to improve the performance of cement-based materials due to their unique water-absorption and retention properties.This study investigates the multifaceted impact of kaolin intercalation-modified superabsorbent polymers(K-SAP)on the properties of cement mortar.The results show that K-SAP significantly affects the cement mortar’s rheological behavior,with distinct phases of water absorption and release,leading to changes in workability over time.Furthermore,K-SAP alters the hydration kinetics,delaying the exothermic peak of hydration and subsequently modifying the heat release kinetics.Notably,K-SAP effectively maintains a higher internal relative humidity within the mortar,reducing the autogenous shrinkage behavior.Moreover,K-SAP can have a beneficial effect on pore structure and this can be ascribed to the internal curing effect of released water from K-SAP. 展开更多
关键词 Superabsorbent polymer KAOLIN cement mortar rheological behavior autogenous shrinkage
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Infuences of Different Admixtures on the Drying Shrinkage Characteristics of Metakaolin-based Geopolymer Mortar
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作者 ZHI Jing ZHANG Chengyang +2 位作者 WANG Yunwen WEI Libao ZHANG Pan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第6期1425-1433,共9页
To investigate the influences of different admixtures on the drying shrinkage of polymer mortar in a metakaolin base,the experiments of VAE(vinyl acetate ethylene copolymer),APAM(anionic polyacrylamide)and CPAM(cation... To investigate the influences of different admixtures on the drying shrinkage of polymer mortar in a metakaolin base,the experiments of VAE(vinyl acetate ethylene copolymer),APAM(anionic polyacrylamide)and CPAM(cationic polyacrylamide)on the drying shrinkage properties of geopolymer mortar were designed under normal temperature curing conditions.An SP-175 mortar shrinkage dilatometer was introduced to measure the dry shrinkage of geopolymer mortar.Meanwhile,the drying shrinkage properties of geopolymer mortar are exhibited by the parameters of water loss rate,drying shrinkage rate,drying shrinkage strain and drying shrinkage coefficient.The experimental data are further fitted to obtain the prediction model of dry shrinkage of geopolymer mortar,which can better reflect the relationship between dry shrinkage rate and time.Finally,the experimental results demonstrate that the dry shrinkage of geopolymer mortar can be significantly increased by adding 4%VAE admixture,meanwhile under the condition that the polymer film formed by VAE reaction can strengthen and toughen the mortar.2.5%APAM admixture and 1.5%CPAM admixture can enhance the dry shrinkage performance of geopolymer mortar in a certain range. 展开更多
关键词 metakaolin base polymer mortar dry shrinkage property ADMIXTURE dry shrinkage prediction model
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Failure Characteristics of Rock-like Mortar Specimens with Arc-shaped Flaws under Freezing-thaw Cycles and Uniaxial Compression
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作者 LI Yong LI Kunpeng +4 位作者 ZHANG Shaowang YIN Futong WANG Chen DAI Feng WANG Kai 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第6期1461-1473,共13页
To investigate the freeze-thaw(F-T)damages and failure characteristics of rock mass with arc-shaped joints in cold regions,three types of cement mortar specimens with different central angles and prefabricated arc-sha... To investigate the freeze-thaw(F-T)damages and failure characteristics of rock mass with arc-shaped joints in cold regions,three types of cement mortar specimens with different central angles and prefabricated arc-shaped flaws are subjected to uniaxial compressive tests under different F-T cycles.Experimental observations show that the uniaxial compressive strength of specimens are significantly influenced by F-T cycles and their failure modes are mainly affected by the central angleαof the prefabricated flaws.Unlike the specimens with a central angle of 60°,the specimens with a central angle of 120°and 180°have greater curvature of flaws,so tensile cracks occur in the arc-top area of their prefabricated flaws.According to experimental images observed by environmental scanning electron microscope(ESEM),as the number of F-T cycles increases,the deterioration effect of the specimen becomes more obvious,which is specifically reflected in the increase of the mass loss,peak stress loss,and damage variables as a power function,and the peak strain decreases as a quadratic polynomial.According to numerical results using two-dimensional particle flow code(PFC2D),it is found that F-T cycles cause more damage to the specimen in the early stages than in the later ones.The area of the concentrated compressive stress zone in the middle is decreased due to the increased number of F-T cycles,while the area of the surrounding tensile-shear stress zone is increased.The models appear different failure modes due to the release of concentrated stress in different tensile-shear zones. 展开更多
关键词 cement mortar material arc-shaped flaws freeze-thaw cycle failure pattern PFC2D
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Influence of Recycled Concrete Fine Powder on Durability of Cement Mortar
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作者 Yadong Bian Xuan Qiu +2 位作者 Jihui Zhao Zhong Li Jiana Ouyang 《Fluid Dynamics & Materials Processing》 EI 2024年第1期45-58,共14页
In this paper,the durability of cement mortar prepared with a recycled-concrete fine powder(RFP)was examined;including the analysis of a variety of aspects,such as the carbonization,sulfate attack and chloride ion ero... In this paper,the durability of cement mortar prepared with a recycled-concrete fine powder(RFP)was examined;including the analysis of a variety of aspects,such as the carbonization,sulfate attack and chloride ion erosion resistance.The results indicate that the influence of RFP on these three aspects is different.The carbonization depth after 30 days and the chloride diffusion coefficient of mortar containing 10%RFP decreased by 13.3%and 28.19%.With a further increase in the RFP content,interconnected pores formed between the RFP particles,leading to an acceleration of the penetration rate of CO_(2)and Cl^(−).When the RFP content was less than 50%,the corrosion resistance coefficient of the compressive strength of the mortar was 0.84-1.05 after 90 days of sulfate attack.But the expansion and cracking of the mortar was effectively alleviated due to decrease of the gypsum production.Scanning electron microscope(SEM)analysis has confirmed that 10%RFP contributes to the formation of a dense microstructure in the cement mortar. 展开更多
关键词 Recycled concrete fine powder cement mortar CARBONIZATION SULFATE chloride ion DURABILITY
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Effect of Partial Replacement of Fly Ash by Decoration Waste Powder on the Fresh and Mechanical Properties of Geopolymer Masonry Mortar
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作者 刘惠 ZHANG Ruidong +2 位作者 朱平华 WANG Xinjie CHEN Chunhong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第3期698-704,共7页
This study aims to investigate the feasibility of using decoration waste powder(DWP)as a partial replacement for fly ash(FA)in the preparation of geopolymer masonry mortar,and to examine the effect of different DWP re... This study aims to investigate the feasibility of using decoration waste powder(DWP)as a partial replacement for fly ash(FA)in the preparation of geopolymer masonry mortar,and to examine the effect of different DWP replacement rates(0%-40%)on the fresh and mechanical properties of the mortar.The results showed that each group of geopolymer masonry mortar exhibited excellent water retention performance,with a water retention rate of 100%,which was due to the unique geopolymer mortar system and high viscosity of the alkaline activator solution.Compared to the control group,the flowability of the mortar containing lower contents of DWP(10%and 20%)was higher.However,as the DWP replacement rate further increased,the flowability gradually decreased.The DWP could absorb the free water in the reaction system of geopolymer mortar,thereby limiting the occurrence of geopolymerization reaction.The incorporation of DWP in the mortar resulted in a decrease in compressive strength compared to the mortar without DWP.However,even at a replacement rate of 40%,the compressive strength of the mortar still exceeded 15 MPa,which met the requirements of the masonry mortar.It was feasible to use DWP in the geopolymer masonry mortar.Although the addition of DWP caused some performance loss,it did not affect its usability. 展开更多
关键词 fly ash-based geopolymer decoration waste powder masonry mortar WORKABILITY compressive strength
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Analysis of Calcined Red Mud Properties and Related Mortar Performances
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作者 Zhengfan Lyu Yulin Li +2 位作者 Mengmeng Fan Yan Huang Chenguang Li 《Fluid Dynamics & Materials Processing》 EI 2024年第5期901-913,共13页
Red mud(RM)is a low-activity industrial solid waste,and its utilization as a resource is currently a hot topic.In this study,the micro characteristics of red mud at different calcination temperatures were analyzed usi... Red mud(RM)is a low-activity industrial solid waste,and its utilization as a resource is currently a hot topic.In this study,the micro characteristics of red mud at different calcination temperatures were analyzed using X-ray diffraction and scanning electron microscopy.The performance of calcined red mud was determined through mortar strength tests.Results indicate that high-temperature calcination can change the mineral composition and microstructure of red mud,and increase the surface roughness and specific surface area.At the optimal temperature of 700°C,the addition of calcined red mud still leads to a decrease in mortar strength,but its activity index and flexural coefficient increase by 16.2%and 11.9%with respect to uncalcined red mud,reaching values of 0.826 and 0.974,respectively.Compared with the control group,the synergistic activation of calcined red mud with slag can increase the compressive and flexural strength of the mortar by 12.9%and 1.5%,reaching 8.7 and 62.4 MPa,respectively.Correspondingly,the activity index and flexural coefficient of the calcined RM and GGBS(Ground Granulated Blast furnace Slag)mixtures also increase to 1.015 and 1.130,respectively. 展开更多
关键词 Red mud SLAG thermal activation synergistic activation mortar test microscopic properties
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Study on physical and mechanical properties of cement asphalt emulsified mortar under track slab
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作者 Tao Wang Shaoliang Wu +5 位作者 Hengqiong Jia Shanqing Peng Haiyan Li Piyan Shao Zhao Wei Yi Shi 《Railway Sciences》 2024年第2期227-238,共12页
Purpose–During the construction process of the China Railway Track System(CRTS)I type filling layer,the nonwoven fabric bags have been used as grouting templates for cement asphalt(CA)emulsified mortar.The porous str... Purpose–During the construction process of the China Railway Track System(CRTS)I type filling layer,the nonwoven fabric bags have been used as grouting templates for cement asphalt(CA)emulsified mortar.The porous structure of nonwoven fabrics endowed the templates with breathability and water permeability.The standard requires that the volume expansion rate of CA mortar must be controlled within 1%–3%,which can generate expansion pressure to ensure that the cavities under track slabs are filled fully.However,the expansion pressure caused some of the water to seep out from the periphery of the filling bag,and it would affect the actual mix proportion of CA mortar.The differences in physical and mechanical properties between the CA mortar under track slabs and the CA mortar formed in the laboratory were studied in this paper.The relevant results could provide important methods for the research of filling layer materials for CRTS I type and other types of ballastless tracks in China.Design/methodology/approach–During the inspection of filling layer,the samples of CA mortar from different working conditions and raw materials were taken by uncovering the track slabs and drilling cores.The physical and mechanical properties of CA mortar under the filling layer of the slab were systematically analyzed by testing the electrical flux,compressive strength and density of mortar in different parts of the filling layer.Findings–In this paper,the electric flux,the physical properties and mechanical properties of different parts of CA mortar under the track slab were investigated.The results showed that the density,electric flux and compressive strength of CA mortar were affected by the composition of raw materials for dry powders and different parts of the filling layer.In addition,the electrical flux of CA mortar gradually decreased within 90 days’age.The electrical flux of samples with the thickness of 54 mm was lower than 500 C.Therefore,the impermeability and durability of CA mortar could be improved by increasing the thickness of filling layer.Besides,the results showed that the compressive strength of CA mortar increased,while the density and electric flux decreased gradually,with the prolongation of hardening time.Originality/value–During 90 days’age,the electrical flux of the CA mortar gradually decreased with the increase of specimen thickness and the electrical flux of the specimens with the thickness of 54 mm was lower than 500 C.The impermeability and durability of the CA mortar could be improved by increasing the thickness of filling layer.The proposed method can provide reference for the further development and improvement of CRTS I and CRTS II type ballastless track in China. 展开更多
关键词 CA mortar Electric flux Compressive strength DENSITY
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Influence of Ultra Fine Glass Powder on the Properties and Microstructure of Mortars
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作者 Wei Chen Dingdan Liu Yue Liang 《Fluid Dynamics & Materials Processing》 EI 2024年第5期915-938,共24页
This study focuses on the effect of ultrafine waste glass powder on cement strength,gas permeability and pore structure.Varying contents were considered,with particle sizes ranging from 2 to 20μm.Moreover,alkali acti... This study focuses on the effect of ultrafine waste glass powder on cement strength,gas permeability and pore structure.Varying contents were considered,with particle sizes ranging from 2 to 20μm.Moreover,alkali activation was considered to ameliorate the reactivity and cementitious properties,which were assessed by using scanning electron microscopy(SEM),energy-dispersive X-ray spectroscopy(EDS),and specific surface area pore size distribution analysis.According to the results,without the addition of alkali activators,the performance of glass powder mortar decreases as the amount of glass powder increases,affecting various aspects such as strength and resistance to gas permeability.Only 5%glass powder mortar demonstrated a compressive strength at 60 days higher than that of the control group.However,adding alkali activator(CaO)during hydration ameliorated the hydration environment,increased the alkalinity of the composite system,activated the reactivity of glass powder,and enhanced the interaction of glass powder and pozzolanic reaction.In general,compared to ordinary cement mortar,alkali-activated glass powder mortar produces more hydration products,showcases elevated density,and exhibits improved gas resistance.Furthermore,alkali-activated glass powder mortar demonstrates an improvement in performance across various aspects as the content increases.At a substitution rate of 15%,the glass powder mortar reaches its optimal levels of strength and resistance to gas permeability,with a compressive strength increase ranging from 28.4%to 34%,and a gas permeation rate reduction between 51.8%and 66.7%. 展开更多
关键词 mortar waste glass powder alkali activation compressive strength gas permeability pore structure
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Substitution of Aggregates in Concrete and Mortar with Coltan Mining Waste: Mechanical, Environmental, and Economic Impact Case Study
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作者 Alinabiwe Nyamuhanga Ally Élodie Ruffine Zang +5 位作者 Masika Muhiwa Grâce Manjia Marcelline Blanche Ursula Joyce Merveilles Pettang Nana Ngapgue François Bella Nabil Chrispin Pettang 《Journal of Minerals and Materials Characterization and Engineering》 2024年第2期139-163,共25页
The mining process involves drilling and excavation, resulting in the production of waste rock and tailings. The waste materials are then removed and stored in designated areas. This study aims to evaluate the mechani... The mining process involves drilling and excavation, resulting in the production of waste rock and tailings. The waste materials are then removed and stored in designated areas. This study aims to evaluate the mechanical strength and the environmental and economic impact of using Coltan Mining Waste (CMW) as a substitute for aggregates in concrete and mortar production. To achieve this, the CMW needs to be characterised. The Dreux Gorisse method was primarily used to produce concrete with a strength of 20 MPa at 28 days. The mortars, on the other hand, were formulated according to the NF P 18-452 standard. The environmental impact of using CMW as substitutes for natural aggregates in the production of concrete and mortar was analysed using SimaPro software. The results showed that mortars and concrete made with CMW have comparable compressive strengths to the reference mortar and concrete;reduce the negative impact on ecosystem quality, human health, resources, and climate change. It has also been shown that the substitution of aggregates by CMW reduces the cost of concrete and mortar as a function of the distance from the aggregate footprint. 展开更多
关键词 AGGREGATE Coltan Mining Waste CONCRETE mortar Mechanical Strength Life Cycle Analysis
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Research Analysis on the Microscopic Properties and Damping Performance of Carbon Nanomaterial-Modified Cement Mortar
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作者 Bin Liu Norhaiza Nordin +2 位作者 Jiyang Wang Jingwei Wu Xiuliang Liu 《Engineering(科研)》 2024年第9期275-283,共9页
The application of carbon nanomaterials, particularly graphene and carbon nanotubes, in cement-based composites is highly significant. These materials demonstrate the multifunctionality of carbon and offer extensive p... The application of carbon nanomaterials, particularly graphene and carbon nanotubes, in cement-based composites is highly significant. These materials demonstrate the multifunctionality of carbon and offer extensive possibilities for technological advancements. This research analyzes how the integration of graphene into cement-based composites enhances damping and mechanical properties, thereby contributing to the safety and durability of structures. Research on carbon nanomaterials is ongoing and is expected to continue driving innovation across various industrial sectors, promoting the sustainable development of building materials. 展开更多
关键词 Carbon Nanomaterials Cement-Based Composites Microscopic Properties Damping Properties Modified Cement mortar
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The Effect of Graphene Oxide on Mechanical Properties of Cement Mortar
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作者 Lei FAN Jinhao ZHENG 《Research and Application of Materials Science》 2024年第1期1-4,共4页
Cement is widely used in engineering applications,but it has both the characteristics of high brittleness and poor bending resistance.In this paper,the effects of different amounts ofgraphene oxide on the flexural str... Cement is widely used in engineering applications,but it has both the characteristics of high brittleness and poor bending resistance.In this paper,the effects of different amounts ofgraphene oxide on the flexural strength and compressive strength of cement mortar were studied by doping a certain amount of graphene oxide with cement mortar,and the strengthening mechanism of graphene oxide on cement mortar was obtained through microstructure detection.It is found that graphene oxide has a significant enhancement effect on the macroscopic mechanical properties of cement mortar,and graphene oxide provides nano-nucleation sites and growth templates for cement mortar,accelerates the hydration process,reduces the voids between hydration products,greatly increases the compactness,and improves the macroscopic properties of cement-based materials. 展开更多
关键词 Graphene oxide Cement mortar Mechanical properties Microscopic analysis
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桐油糯米复合灰浆强度试验及微观机理分析
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作者 唐晓武 向青青 +3 位作者 费敏亮 李柯毅 孙国平 俞悦 《浙江大学学报(工学版)》 北大核心 2025年第3期496-503,545,共9页
为了土遗址的夯土修复,采用正交设计制作不同质量分数比(水∶桐油∶糯米浆∶石灰)的复合灰浆试样.经1a遗址现场养护,以抗剪强度的2个力学指标(黏聚力、内摩擦角)评价桐油、糯米浆、石灰对粉土的加固效果,以获得最优质量分数比.结果表明... 为了土遗址的夯土修复,采用正交设计制作不同质量分数比(水∶桐油∶糯米浆∶石灰)的复合灰浆试样.经1a遗址现场养护,以抗剪强度的2个力学指标(黏聚力、内摩擦角)评价桐油、糯米浆、石灰对粉土的加固效果,以获得最优质量分数比.结果表明:当复合灰浆质量分数比为18∶5∶12∶10时,黏聚力最大;当质量分数比为9∶3∶5∶5时,内摩擦角最大.对2组最优质量分数比的桐油糯米复合灰浆开展28d内强度增长验证,利用扫描电子显微镜、傅里叶变换红外光谱、X射线衍射仪探究复合灰浆的协同改良机理.2组复合灰浆在28d龄期中,在黏聚力方面,最优质量分数比试样的黏聚力达到了正交试验最高组合1a龄期的98.6%;在内摩擦角方面,最优质量分数比试样的内摩擦角达到了正交试验最高组合1a龄期的97.8%.结果被应用于发生剥离病害的遗址土体,获得了良好的加固效果,能为潮湿环境土遗址现场修复和保护提供参考. 展开更多
关键词 复合灰浆 抗剪强度 正交试验 改良机理 微观机制分析
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高寒环境下橡胶粉掺入对水泥砂浆的抗冻性能影响
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作者 张静 张新宇 +1 位作者 李婷婷 朱楠 《空军工程大学学报》 北大核心 2025年第1期111-118,共8页
研究掺入橡胶粉的水泥砂浆作为高寒地区破损道面修复材料时,其抗冻性能否适配我国高寒地区机场对破损道面修补材料的要求。通过冻融循环试验研究橡胶粉水泥砂浆中橡胶粉目数和掺量对抗冻性能以及力学性能的影响,采用两因素方差分析和极... 研究掺入橡胶粉的水泥砂浆作为高寒地区破损道面修复材料时,其抗冻性能否适配我国高寒地区机场对破损道面修补材料的要求。通过冻融循环试验研究橡胶粉水泥砂浆中橡胶粉目数和掺量对抗冻性能以及力学性能的影响,采用两因素方差分析和极差分析确定其影响效果,通过SEM和XRD从微观角度揭示橡胶粉在水泥砂浆水化过程中对其微观结构及产物的影响。结果表明,橡胶粉水泥砂浆中目数和掺量均对抗冻性能及抗压强度有显著性影响,两者之间的交互影响不显著;确定当橡胶粉目数为30目,掺量为50%时其抗冻性能最优;SEM形貌像显示橡胶粉掺入可阻断微裂缝发展,XRD结果显示30目橡胶粉更能保证橡胶粉水泥砂浆的水化反应高效进行。 展开更多
关键词 高寒环境 橡胶粉水泥砂浆 抗冻性能 力学特性 微观结构
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聚脲气凝胶的制备及其对轻质复合砂浆的影响
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作者 罗玉梅 周昀 +1 位作者 周易 邵雅菲 《应用化学》 北大核心 2025年第2期238-248,共11页
通过六亚甲基二异氰酸酯型聚异氰酸酯(PHDI)分别与4,4'-二氨基二苯甲烷(MDA)和4,4'-二氨基二苯基醚(ODA)反应制备聚脲(PUA)气凝胶(MDA-PUA、ODA-PUA)。MDA-PUA气凝胶具有较低的线性收缩率和较高的孔隙率,压缩模量为11.4 MPa,导... 通过六亚甲基二异氰酸酯型聚异氰酸酯(PHDI)分别与4,4'-二氨基二苯甲烷(MDA)和4,4'-二氨基二苯基醚(ODA)反应制备聚脲(PUA)气凝胶(MDA-PUA、ODA-PUA)。MDA-PUA气凝胶具有较低的线性收缩率和较高的孔隙率,压缩模量为11.4 MPa,导热系数为0.020 W/(m·K)。MDA-PUA气凝胶的初始分解温度为321℃,残炭率为19.3%。优选MDA-PUA气凝胶等体积取代砂制成复合砂浆。当气凝胶的掺杂体积分数高于30%时,砂浆可以达到轻质标准,导热系数可降低至0.097 W/(m·K),比纯砂浆低94.2%,气凝胶使轻质砂浆具有优异的保温性能。砂浆的抗折强度和抗压强度随着气凝胶用量的增加而降低,但轻质砂浆的28 d抗压强度仍可以满足轻骨料混凝土CL5−CL40级的使用要求。 展开更多
关键词 聚脲气凝胶 轻质砂浆 导热系数 抗压强度
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传统复合灰浆在古建筑中的应用及性能研究综述
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作者 张磊 刘思佳 +1 位作者 姜治军 李胜才 《建筑技术》 2025年第3期379-384,共6页
基于我国传统复合灰浆的发展历史,对中国传统复合灰浆的应用、科学机理、性能及其提升的影响因素等方面的研究现状进行了研究。重点介绍了不同类别的有机物和无机物的掺入、材料配合比、养护龄期、糯米浆的温度及外界环境对传统灰浆的... 基于我国传统复合灰浆的发展历史,对中国传统复合灰浆的应用、科学机理、性能及其提升的影响因素等方面的研究现状进行了研究。重点介绍了不同类别的有机物和无机物的掺入、材料配合比、养护龄期、糯米浆的温度及外界环境对传统灰浆的力学性能和耐久性能等的影响,旨在厘清传统复合灰浆的应用及其性能研究中所取得的进展以及尚存在的问题,为研究制备仿古而高强、耐冻融盐侵的古建修复材料提供启示和参考。 展开更多
关键词 传统复合灰浆 科学机理 性能及其提升
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激发剂对陶瓷抛磨废料水泥砂浆力学性能影响研究
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作者 谌俊 叶跃浩 肖学军 《广东建材》 2025年第3期8-12,共5页
用陶瓷抛磨废料替代30%水泥,研究不同种类和不同成分激发剂对陶瓷抛磨废料水泥砂浆力学性能影响,进而分析确定最佳成分配比的激发剂。试验结果表明,单掺氯化钙、熟石灰、硫酸钠和三乙醇胺均有较好的激发效果,氢氧化纳未产生激发作用;复... 用陶瓷抛磨废料替代30%水泥,研究不同种类和不同成分激发剂对陶瓷抛磨废料水泥砂浆力学性能影响,进而分析确定最佳成分配比的激发剂。试验结果表明,单掺氯化钙、熟石灰、硫酸钠和三乙醇胺均有较好的激发效果,氢氧化纳未产生激发作用;复合激发剂激发效果一般,最佳激发剂配方为单掺2%氯化钙,水泥砂浆28d强度可达到43MPa。 展开更多
关键词 陶瓷抛磨废料 水泥砂浆 激发剂 强度
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CRTSⅡ型板式轨道砂浆充填层服役现状分析
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作者 元强 向功坤 +2 位作者 郑新国 张旭 王勇 《铁道学报》 北大核心 2025年第2期152-159,共8页
CRTSⅡ型CA砂浆服役十年后的性能是否满足服役要求对轨道系统的安全运营至关重要。对邯郸东站和松江南站的CA砂浆进行力学性能、物相组成及孔隙特征等测试,研究结果表明,两地的CA砂浆干燥抗压强度无显著下降;饱水后的抗压强度下降明显,... CRTSⅡ型CA砂浆服役十年后的性能是否满足服役要求对轨道系统的安全运营至关重要。对邯郸东站和松江南站的CA砂浆进行力学性能、物相组成及孔隙特征等测试,研究结果表明,两地的CA砂浆干燥抗压强度无显著下降;饱水后的抗压强度下降明显,但高于《CA砂浆暂行技术条件》的要求。两地区的CA砂浆均出现了浅表层维氏硬度下降和无机相损失的损伤,且松江地区的损伤程度相对较高。松江地区CA砂浆浅表层毛细孔孔隙率明显上升;邯郸地区CA砂浆凝胶孔体积明显增大,毛细孔孔隙率仅浅表层略微增大。因此,两地的CA砂浆服役十年后仍满足规范要求,但发生了且正持续发生物理和化学损伤,需要对在役CRTSⅡ型CA砂浆定期观测和维护。 展开更多
关键词 高速铁路 无砟轨道 CA砂浆 耐久性
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