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聚合物水泥混凝土(砂浆)及其在水利工程中的应用 被引量:4
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作者 李永庆 肖力光 《建筑技术开发》 2003年第10期43-45,100,共4页
本文论述了聚合物水泥混凝土(砂浆)的形成机理、性能及其在水利工程中的应用.
关键词 聚合物水泥混凝土(砂浆) 结构形成机理及性能 水利工程
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TK聚合物砂浆施工技术的若干思考 被引量:1
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作者 殷广军 王拓 《中国科技财富》 2010年第6期108-108,共1页
TK聚合物砂浆是一种新型的混凝土表面修补材料,是以少量水溶性聚合物改性剂,再掺入一定量的活性成分、膨胀成分而配制成的TK聚合物防渗、防碳化、防腐砂浆。由于聚合物及活性成分的掺入,改善了聚合物水泥砂浆的物理、力学及耐久性能... TK聚合物砂浆是一种新型的混凝土表面修补材料,是以少量水溶性聚合物改性剂,再掺入一定量的活性成分、膨胀成分而配制成的TK聚合物防渗、防碳化、防腐砂浆。由于聚合物及活性成分的掺入,改善了聚合物水泥砂浆的物理、力学及耐久性能。还具有一定的补偿收缩性能,同时价格比同类产品低。所以现在已被广泛应用于建筑施工中,本文结合一点实践经验,对TK聚合物砂浆在建筑施工中的施工工艺进行探讨。 展开更多
关键词 TK聚合物砂浆混凝土表面施 工质量控制
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灌浆材料与电光产品
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作者 徐汝霖 《上海建材》 2003年第5期21-22,共2页
生产电光牌产品的水利电力部华东勘测设计院三墩科研实验厂长期从事水利、水电、工业及民用建筑工程的防渗、堵漏、补强、加固及防腐等系列材料的开发和施工工艺设备的研究,多项科研成果曾荣获国家和省部级科技成果奖,拥有雄厚的技术实力.
关键词 灌浆材料 电光产品 化学灌浆材料 塑性止水材料 聚合物砂浆混凝土 混凝土 外加剂
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Utilization of Concrete Waste Aggregates Using Geopolymer Cement 被引量:1
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作者 Sotya Astutiningsih Henki Wibowo Ashadi +2 位作者 Hendra Widhatra Kresnadya Desha Rousstia Maria Elizabeth Suryatriyastuti 《Journal of Civil Engineering and Architecture》 2010年第6期11-15,共5页
Reuse of concrete waste, especially in large quantity, can save not only material but also cost for its disposal. This paper presents experiment results on the use of fine and coarse aggregates from concrete waste in ... Reuse of concrete waste, especially in large quantity, can save not only material but also cost for its disposal. This paper presents experiment results on the use of fine and coarse aggregates from concrete waste in geopolymer mortars and concretes. Geopolymeric cement is an inorganic compounds of aluminosilicates synthesized from precursors with high content of silica and alumina activated by alkali silicate solutions. Geopolymer in this experiment was synthesized from fly ash as the precursor and sodium silicate solution as the activator. Hardening of geopolymers was performed by heating the casted paste in an oven at -60~Cfor 3 to 36 hours. Compressive strength of geopolymer pastes and mortars using either fresh or waste fine aggregates were in the range of 19-26 MPa. Hardening time of 3 hours at 60~C followed by leaving the test pieces at room temperature for 7 day before testing results in similar strength to that of mortars cured for 36 hours at 60~C followed by leaving the samples at room temperature for 3 days. It suggests that optimum strength can be achieved by combination of heating time and rest period before testing, i.e the specimens age. Applying mix design with a target strength of 40 MPa, conventional Portland cement concretes using fresh aggregates reached 70% of its target strength at day-7. Compressive strength of geopolymer concretes with waste aggregates was -25 MPa at day-3 while geopolymer concretes with fresh aggregates achieved -39 MPa at day-3. It can be concluded that geopolymer concretes can achieve the target strength in only 3 days. However, the expected reinforcing effect of coarse aggregates in concrete was ineffective if waste coarse aggregates were used as the strength of the concretes did not increase significantly from that of the mortars. On the other hand, waste fine aggregates can be reused for making geopolymer mortars having the same strength as the geopolymer mortars using fresh aggregates. 展开更多
关键词 GEOPOLYMER concrete waste aggregates MORTAR CONCRETE compressive strength.
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