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玻璃电极法测定混凝土用水的pH值方法研究 被引量:1
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作者 洪志勇 《黑龙江科技信息》 2012年第11期54-55,共2页
本文采用玻璃电极法对混凝土用水pH值的测定进行研究。着重对标准缓冲溶液配制、仪器标定校正、测定步骤和注意事项进行叙述。
关键词 玻璃电极法 混凝土用水 pH值:测定方法
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混凝土用水化学分析能力验证结果统计与分析
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作者 刘毅强 梁慧超 +4 位作者 于克孝 吴莎莎 张格 辛宇 赵媛 《中国水泥》 CAS 2022年第S01期62-64,共3页
能力验证作为一种有效的实验室外质量控制活动,其重要性越来越被广大实验室所重视。通过对我单位近5年开展的混凝土用水化学分析能力验证计划进行了总结分析,帮助实验室提升相应的技术水平,促进建工建材检测行业健康发展。
关键词 混凝土用水 能力验证 技术分析
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建设部关于发布行业标准《混凝土用水标准》的公告第461号
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《工程建设标准化》 2006年第5期17-17,共1页
现批准《混凝土用水标准》为行业标准,编号为JGJ63—2006,自2006年12月1日起实施。其中,第3.1.7条为强制性条文,必须严格执行。原行业标准《混凝土拌合用水标准》
关键词 混凝土用水 行业标准 部颁标准 建设部
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循环利用混凝土养护用水预制场的构建
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作者 李友林 《交通建设与管理》 2015年第12期93-96,共4页
结合高速公路桥梁标准化建设的实践,阐述了循环利用混凝土养护用淡水资源预制场的构建思路、具体做法和良好效果,可供同行参考、借鉴。
关键词 构建 循环利用 混凝土养护用水 预制场
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城市自备水管理现状与对策分析
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作者 潘茹 刘骏 朱颖 《治淮》 2019年第3期8-9,共2页
城市供水设施是城市首要基础设施,它对提高市民生活质量、改善投资环境和促进城市经济社会可持续发展具有重要保障作用。目前,城市供水包括自备水和公共供水,自备水存在水质保障程度差、过量开采更会导致地面沉降等问题。本文以常州市为... 城市供水设施是城市首要基础设施,它对提高市民生活质量、改善投资环境和促进城市经济社会可持续发展具有重要保障作用。目前,城市供水包括自备水和公共供水,自备水存在水质保障程度差、过量开采更会导致地面沉降等问题。本文以常州市为例,对其自备水现状、存在问题和管理对策进行探讨。 展开更多
关键词 自备 许可 浅层地下 总供 用水 混凝土用水 自备井 设施 自来 对策分析
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建筑工程中混凝土原材料的检测技术
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作者 王建贞 《新材料·新装饰》 2019年第5期22-22,共1页
为了进一步提升建筑工程的施工质量袁文章阐述了混凝土原材料对建筑工程整体质量的影响;分析了混凝土原材料的检测技术,包括对粉煤灰的检测、对水泥的检测、对石子的检测、对砂石的检测、对混凝土用水的检测、对添加剂的检测。
关键词 混凝土原材料 检测技术 混凝土用水 添加剂
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Influence of ultra-fine fly ash on hydration shrinkage of cement paste 被引量:15
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作者 高英力 周士琼 《Journal of Central South University of Technology》 EI 2005年第5期596-600,共5页
Hydration shrinkage generated by cement hydration is the cause of autogenous shrinkage of high strength concrete. It may result in the volume change and even cracking of mortar and concrete. According to the data anal... Hydration shrinkage generated by cement hydration is the cause of autogenous shrinkage of high strength concrete. It may result in the volume change and even cracking of mortar and concrete. According to the data analysis in a series of experimental studies, the influence of ultra-fine fly ash on the hydration shrinkage of composite cementitious materials was investigated. It is found that ultra-fine fly ash can reduce the hydration shrinkage of cement paste effectively, and the more the ultra-fine fly ash, the less the hydration shrinkage. Compared with cement paste without the ultra-fine fly ash, the shrinkage ratio of cement paste reduces from 23.4% to 39.7% when the ultra-fine fly ash replaces cement from 20% to 50%. Moreover, the microscopic mechanism of the ultra-fine fly ash restraining the hydration shrinkage was also studied by scanning electron microscopy, X-ray diffraction and hydrated equations. The results show that the hydration shrinkage can be restrained to a certain degree because the ultra-fine fly ash does not participate in the hydration at the early stage and the secondary hydration products are different at the later stage. 展开更多
关键词 ultra-fine fly ash cement paste hydration shrinkage MECHANISM
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Effect of Active Mineral on Load-Bearing Autoclaved Aerocrete
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作者 彭苏萍 王立刚 《Journal of China University of Mining and Technology》 2001年第2期104-107,共4页
Influence of ultrafine active mineral (DK mineral) on mechanical property of fly ash based load bearing aerocrete was analyzed. The result shows that the addition of DK mineral in a suitable amount can enhance obvious... Influence of ultrafine active mineral (DK mineral) on mechanical property of fly ash based load bearing aerocrete was analyzed. The result shows that the addition of DK mineral in a suitable amount can enhance obviously the compressive strength of aerocrete. According to the SEM EDS and X ray diffraction analyses, the crystal shapes of hydration products are well developed and interlocked for samples containing DK mineral. Its microstructure is denser than that of the samples without DK mineral. Having a good activation, the DK mineral makes both the type and the quantity of hydrated products be obviously superior to that of the contrast sample. 展开更多
关键词 fly ash cellular concrete active mineral hydration products
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Application of modified polypropylene (crude) fibers concrete to strengthen the support structures in deep mine roadway 被引量:1
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作者 BI Yuan-zhi ZHANG Da-lin HU Jin-hua 《Journal of Coal Science & Engineering(China)》 2012年第4期379-384,共6页
The an thors developed a new composite cement base material by mixing the high tenacity polypropylene (coarse) fiber in plain cement base for the cement-layer-spray technology. By studying the key parameters of the ... The an thors developed a new composite cement base material by mixing the high tenacity polypropylene (coarse) fiber in plain cement base for the cement-layer-spray technology. By studying the key parameters of the fiber dosage, the spray layer thickness, and the fiber reinforced concrete injection time, etc. It is found that the ideal volume ratio of polypropylene (crude) fiber is 0.8% (V/V), and the secondary lining fiber concrete spraying should start when the shrinkage rate is lower than 0.5 mm/d, and the optimal thickness of shotcrete is 120 mm. The supporting effects and the economic benefits were studied using a real project practice, and the result obtained can be a good reference for practical applications of this new supporting material in the future. 展开更多
关键词 deep mine roadway modified polypropylene (crude) fiber supporting structure mine stress
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Effective Utilization of Coal Fly Ash in Building Material Production
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作者 Jozef Junak Nadezda Stevulova 《Journal of Chemistry and Chemical Engineering》 2011年第8期724-728,共5页
This paper is aimed at verifying utilization possibilities of alkaline modified coal fly ash as cement replacement in the concrete. The influence of alkaline activated coal fly ash originating from Slovakian power pla... This paper is aimed at verifying utilization possibilities of alkaline modified coal fly ash as cement replacement in the concrete. The influence of alkaline activated coal fly ash originating from Slovakian power plant in Novsky (Si/Al = 3,1) as a partial cement replacement in concrete on compressive strength of hardened composites after 28 and 90 days was investigated. Alkaline activation of coal fly ash was realized in an autoclave at 130 ℃ and pressure of 160 kPa during 5 hours and in a reactor under normal conditions (equal temperature during 36 hours) at solid/liquid ratio of 0.5. Coal fly ash/cement mixtures were prepared with 25 % cement replacement by starting and modified coal fly ash and given in forms. Compressive strengths of composites after 28 and 90 days of hardening were compared to referential composite without coal fly ash and evaluated according to the standard of STN EN 450 by the value of relative strength KR (compressive strength of coal fly ash/cement composite to compressive strength of comparative concrete). The final compressive strengths of hardened composites based on alkaline activated coal fly ash reached values in the range of 6 up to 50 MPa. In the set of experimental composites based on alkaline activated coal fly ashes, the highest value of relative strength after 28- and 90- days of hardening reached composite with cement replacement by coal fly ash zeolitized in autoclave (105% of compressive strength of referential sample), what is connected with formation of zeolitic phases on surface of coal fly ash particles. The achieved results confirm that alkaline activation of coal fly ash in an autoclave under observed conditions can be successfully used as a partial cement replacement in concrete of C20/25 and C25/30 in accordance with requirements of standards (STN EN 450 and STN EN 206). 展开更多
关键词 coal fly ash chemical activation CONCRETE compressive strength ZEOLITE
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Properties prediction of fly ash blended concrete using hydration model 被引量:1
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作者 WANG XiaoYong 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2317-2325,共9页
Fly ash is an industrial by-product from coal combustion and has been widely used as mineral admixture in normal and high strength concretes. Owing to the pozzolanic reaction between calcium hydroxide and fly ash, com... Fly ash is an industrial by-product from coal combustion and has been widely used as mineral admixture in normal and high strength concretes. Owing to the pozzolanic reaction between calcium hydroxide and fly ash, compared with Portland cement, the hydration of concrete containing fly ash is much more complex. In this paper, by considering the production of calcium hydroxide in cement hydration and its consumption in the pozzolanic reaction, a numerical model is proposed to simulate the hydration of concrete containing fly ash. Similar to the hydration reaction of cement, fly ash activity is divided into three processes: an initial dormant period, a phase-boundary reaction process and a diffusion process. The mutual interactions between the cement hydration and fly ash reaction are considered through the available calcium hydroxide amount and available capillary water amount in the system. The properties of hardening fly ash blended concrete, such as the reaction degree of fly ash, chemically bound water, calcium hydroxide, and compressive strength, are determined from the contributions of cement hydration and fly ash pozzolanic reaction. The evaluated results show good accordance with the experimental results. 展开更多
关键词 CEMENT fly ash HYDRATION MODEL
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Optimization design of prestressed concrete wind-turbine tower 被引量:7
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作者 MA HongWang MENG Ran 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第2期414-422,共9页
Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years.Wind turbines are commonly supported on tubular steel towers.As the turbine size is growing and the towers are ris... Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years.Wind turbines are commonly supported on tubular steel towers.As the turbine size is growing and the towers are rising in height,steel towers are required to be sufficiently strong and stiff,consequently leading to high construction costs.To tackle this problem,a new type of prestressed concrete tower was designed employing a novel tower concept having a regular octagon cross section with interior ribs on each side,which was optimized by comparing the natural frequency and stress difference under the same lateral load in different directions of the tower.The designed tower features a tapered profile that reduces the area subjected to wind;the tapered profile reduces the total weight,applied moment and the capital cost.An optimization method was developed employing ABAQUS software and a genetic algorithm.A target function was defined on the basis of the minimum cost of the concrete and prestressed tendon used,and constraints were applied by accounting for the stress,displacements and natural frequency of the tower.Employing the method,a 100 m prestressed concrete tower system for a 5 MW turbine was optimized and designed under wind and earthquake loads.The paper also reports a systematic design procedure incorporating the finite element method and the optimization method for the prestressed concrete wind-turbine towers. 展开更多
关键词 prestressed concrete wind-turbine tower OPTIMIZATION finite element method genetic algorithm
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