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新型涂料抗水剂碳酸铵锆的抗水机理及应用 被引量:9
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作者 林治宪 林跃梅 《造纸化学品》 CAS 1998年第2期28-30,共3页
碳酸铵锆适用范围广、能与含有-COOH、-OH基团的羧基变性丁苯胶乳、淀粉、干酪素、变性大豆蛋白、聚乙烯醇等涂布用的胶粘剂相结合,形成架桥结构,呈现出比三聚氰胺甲醛树脂等涂料用抗水剂的抗湿摩擦性更优良的性能。
关键词 涂料 抗水 碳酸铵锆 抗水机理
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纸张涂布抗水剂的应用及其研究进展 被引量:18
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作者 李燕 胡开堂 《造纸化学品》 CAS 2003年第2期5-7,15,共4页
系统介绍了国内外常用抗水剂的种类、抗水机理及其在涂布加工过程中对涂布性能的影响。另外 ,对新型抗水剂PAPU的市场应用前景作了介绍。
关键词 纸张涂布 抗水 抗水机理 涂布性能 PAPU 应用 聚酰胺聚脲树脂
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抗水树交联聚乙烯绝缘电力电缆的研究 被引量:7
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作者 赵海燕 《电线电缆》 2010年第4期4-7,共4页
分析了国内外交联聚乙烯(XLPE)绝缘电力电缆的使用情况,以及容易产生水树的原因机理。从如何避免水树的产生和发展,以提高电缆运行寿命,提出了抗水树的机理和抗水树XLPE电缆的设计理念,并对其试验流程和试验结果进行了统计分析。
关键词 抗水树交联聚乙烯电力电缆 水树枝 抗水机理 研究 试验
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粗橡胶粉SBS改性沥青透水混合料抗水损害性能 被引量:11
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作者 肖飞鹏 宗启迪 +2 位作者 王金刚 陈军 刘继 《西南交通大学学报》 EI CSCD 北大核心 2021年第4期839-846,共8页
排水沥青混凝土孔隙率大,具有良好的排水、降噪功能,但是易发生水损害.使用粗橡胶粉和SBS(styrene-butadiene-styrene block copolymer)改性剂对基质沥青进行复合改性.采用冻融劈裂强度比对透水沥青混合料的抗水损害性能进行评价.研究SB... 排水沥青混凝土孔隙率大,具有良好的排水、降噪功能,但是易发生水损害.使用粗橡胶粉和SBS(styrene-butadiene-styrene block copolymer)改性剂对基质沥青进行复合改性.采用冻融劈裂强度比对透水沥青混合料的抗水损害性能进行评价.研究SBS用量、最大公称粒径、粗橡胶粉用量、级配各筛孔通过率、消石灰用量和沥青用量6个影响因素对透水沥青混凝土抗水害损性能的影响,揭示粗橡胶粉SBS复配沥青混合料的抗水损害机理.研究结果表明:SBS用量的增加、集料最大公称粒径的增大、消石灰的加入均能提高透水混合料的冻融劈裂强度比;为了获得最佳的水稳定性和良好的经济性,建议SBS与粗橡胶粉的最佳掺量分别为6%和10%,并且通过灰关联分析得出了影响各规格混合料抗水损害性能的关键筛孔. 展开更多
关键词 水稳定性 冻融劈裂试验 透水沥青混凝土 粗橡胶粉SBS复配改性沥青 参数优化 抗水损害机理
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复合添加剂对磷酸镁骨粘结剂性能的影响 被引量:14
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作者 盖蔚 刘昌胜 王晓芝 《华东理工大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第4期393-396,共4页
研究了固化液中添加剂对磷酸镁骨粘结剂 (MPC)抗水性能的影响 ,对其抗水机理进行了重点分析。实验结果表明 :固化液中引入复合添加剂对 MPC固化体在体液环境中的稳定性有明显改进 ,与固化液中纤维素的浓度相比 ,硅溶胶的浓度对固化体的... 研究了固化液中添加剂对磷酸镁骨粘结剂 (MPC)抗水性能的影响 ,对其抗水机理进行了重点分析。实验结果表明 :固化液中引入复合添加剂对 MPC固化体在体液环境中的稳定性有明显改进 ,与固化液中纤维素的浓度相比 ,硅溶胶的浓度对固化体的质量损失和早期抗压强度有较明显的影响 。 展开更多
关键词 复合添加剂 磷酸镁骨粘结剂 抗水性能 抗压强度 固化液 磷酸镁水泥 抗水机理 生物材料
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松香胶的施胶理论
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作者 冯改灵 朱雁 +1 位作者 谢青 和世宝 《河南科学》 2002年第3期242-244,共3页
本文用界面动电势学说和配位理论两种理论来论述松香胶与纤维相互结合的过程 ,使纸张具有抗拒液体的渗透性能。
关键词 松香胶 施胶 硫酸铝 抗水机理
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水工用静态破裂剂研究通过鉴定
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《施工技术》 CAS 北大核心 2004年第3期61-61,共1页
关键词 静态破裂剂 三峡工程 压力测试 抗水机理 温度控制
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STUDIES ON THE PREPARATION OF ZINC-CONTAINING ACTIVATED CARBON FIBERS AND THEIR ANTIBACTERIAL ACTIVITY
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作者 CHEN Shuixia LIU Jinrong +1 位作者 ZHANG Xiaoping ZENG Hanmin 《Chinese Journal of Reactive Polymers》 2002年第2期113-117,共5页
Several kinds of activated carbon fibers, using sisal fiber as precursors, were prepared with steam activation or with ZnCl2 activation. Zinc or its compounds were dispersed in them. The antibacterial activities of th... Several kinds of activated carbon fibers, using sisal fiber as precursors, were prepared with steam activation or with ZnCl2 activation. Zinc or its compounds were dispersed in them. The antibacterial activities of these activated carbon fibers were determined and compared. The research results showed that these sisal based activated carbon fibers supporting zinc have stronger antibacterial activity against Escherichia coli and S. aureus. The antibacterial activity is related to the precursors, the pyrolysis temperature, and the zinc content. In addition, small quantity of silver supported on zinc-containing ACFs will greatly enhance the antibacterial activity of ACFs. 展开更多
关键词 Activated carbon fiber Zinc support Antibacterial activity
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Interaction between anti-shear galleries and surrounding rock in the right-bank slope of Dagangshan hydropower station 被引量:1
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作者 LI Lian-chong XING Ya-zi +3 位作者 LIU Xing-zong MA Ke XU Nu-wen ZHANG Fei 《Journal of Mountain Science》 SCIE CSCD 2017年第7期1428-1444,共17页
The fight-bank slope of the Dagangshan hydropower station located in Southwest China is a highly unloaded rock slope. Moreover, large-scale natural faults were detected in the slope body; some excavation-induced unloa... The fight-bank slope of the Dagangshan hydropower station located in Southwest China is a highly unloaded rock slope. Moreover, large-scale natural faults were detected in the slope body; some excavation-induced unloading fractures were discovered at elevations between lo75m and 1146m. Because of poor tectonic stability, the excavation work was suspended in September 2009, and six large- scale anti-shear galleries were employed to replace the weak zone in the slope body to reinforce the fight- bank slope. In this study, based on microseismic- monitoring technology and a numerical-simulation method, the stabilities of the slope with and without the reinforcement are analysed. An in-situ microseismic-monitofing system is used to obtain quantitative information about the damage location, extent, energy, and magnitude of the rocks. Thus, any potential sliding block in the fight-bank slope can be identified. By incorporating the numerical results along with the microseismic-monitoring data, the stress concentration is found to largely occur aroundthe anti-shear galleries, and the seismic deformation near the anti-shear galleries is apparent, particularly at elevations of 121o, 118o, 115o, and 112om. To understand the interaction mechanism between the anti-shear gallery and the surrounding rock, a 2D simulation of the potential damage process occurring in an anti-shear gallery is performed. The numerical simulation helps in obtaining additional information about the stress distribution and failure-induced stress re-distribution in the vicinity of the anti-shear galleries that cannot be directly observed in the field. Finally, the potential sliding surface of the right-bank slope is numerically obtained, which generally agrees with the spatial distribution of the in-situ monitored microseismic events. The safety factor of the slope reinforced with the anti-shear gallery increases by approximately 36.2%. Both the numerical results and microseismic data show that the anti-shear galleries have a good reinforcement effect. 展开更多
关键词 Slope stability Microseismic monitoring Numerical simulation Safety factor Anti-sheargallery
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