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水泥含量对固化土结构形成的影响研究 被引量:65
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作者 黄新 宁建国 +1 位作者 郭晔 朱宝林 《岩土工程学报》 EI CAS CSCD 北大核心 2006年第4期436-441,共6页
以粉砂土为研究对象,对水泥土抗压强度与水泥含量关系进行了试验研究,推导了水泥土结构形成过程中水泥浆包裹土颗粒和填充孔隙所分别对应水泥量的理论计算公式。在此基础上,对水泥含量不同时,水泥在固化土结构形成过程中所起不同作用及... 以粉砂土为研究对象,对水泥土抗压强度与水泥含量关系进行了试验研究,推导了水泥土结构形成过程中水泥浆包裹土颗粒和填充孔隙所分别对应水泥量的理论计算公式。在此基础上,对水泥含量不同时,水泥在固化土结构形成过程中所起不同作用及其与水泥土抗压强度增长规律相互关系进行了分析,提出固化土结构形成由固化剂胶结土颗粒与填充孔隙两部分构成。 展开更多
关键词 水泥含量 固化土结构 颗粒胶结 孔隙填充
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水泥-高分子聚合物固化土体掺量计算方法研究
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作者 晁军 《铁道建筑技术》 2022年第10期1-5,20,共6页
高分子固化剂可有效改善无机类固化土的抗拉裂能力低、易产生干缩和温缩裂缝等问题。为确定高分子改良土中有机和无机固化剂最优掺量,建立由土颗粒、孔隙、水化膜和有机膜组成的高分子改良土内部结构模型,计算水泥联合高分子聚合物临界... 高分子固化剂可有效改善无机类固化土的抗拉裂能力低、易产生干缩和温缩裂缝等问题。为确定高分子改良土中有机和无机固化剂最优掺量,建立由土颗粒、孔隙、水化膜和有机膜组成的高分子改良土内部结构模型,计算水泥联合高分子聚合物临界掺量值。结果发现,以4%水泥掺量为基础掺量,高分子固化剂理论完全包裹掺量为0.98%,与室内试验结果0.8%~1.2%的苯丙乳液(SAE)最优掺量接近,从而验证了该模型和计算方法的准确性;当有机固化剂掺量超过理论包裹掺量时,其抗压强度会随无机固化剂掺量增加而降低。本文结果可用于高分子聚合物联合无机固化剂使用时初始掺量拟定,也可供其他相似工程参照。 展开更多
关键词 高分子改良 固化土结构 固化剂掺量 无侧限抗压强度 计算方法 试验
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Damage and deterioration mechanism and curing technique of concrete structure in main coal cleaning plants 被引量:10
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作者 LV Heng-lin ZHAO Cheng-ming +2 位作者 SONG Lei MA Ying XU Chun-hua 《Mining Science and Technology》 EI CAS 2009年第6期750-755,共6页
Concrete structures in main coal cleaning plants have been rebuilt and reinforced in the coal mines of the Shanghai Datun Energy Sources Co. Ltd., the first colliery of the Pingdingshan Coal Co. Ltd. and the Sanhejian... Concrete structures in main coal cleaning plants have been rebuilt and reinforced in the coal mines of the Shanghai Datun Energy Sources Co. Ltd., the first colliery of the Pingdingshan Coal Co. Ltd. and the Sanhejian mine of the Xuzhou Mining Group Co. Ltd. In these projects, the operating environment and reliability of concrete structures in the main plants of the three companies were investigated and the safety of the structures inspected. Qualitative and quantitative analyses were made on the special natural, technological and mechanical environments around the structures. On the basis of these analyses, we discuss the long-term, combined actions of the harsh natural (corrosive gases, liquids and solids) and mechanical environments on concrete structures and further investigated the damage and deteriorating mechanisms and curing techniques of concrete structures in the main coal cleaning plants. Our study can provide a theoretical basis for ensuring the reliability of concrete structures in main coal cleaning plants. 展开更多
关键词 main coal cleaning plants concrete structure operating environment reliability detection and inspection damage anddeteriorating mechanisms curing technique
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Influence of subsequent curing on water sorptivity and pore structure of steam-cured concrete 被引量:5
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作者 贺智敏 龙广成 谢友均 《Journal of Central South University》 SCIE EI CAS 2012年第4期1155-1162,共8页
Steam-cured condition is found to cause larger porosity and worse properties of concrete compared with normal curing condition. For the sake of seeking effective measurements to eliminate this bad effect of steam-cure... Steam-cured condition is found to cause larger porosity and worse properties of concrete compared with normal curing condition. For the sake of seeking effective measurements to eliminate this bad effect of steam-cured condition on concrete, the water sorptivity and pore structure of steam-cured concretes exposed to different subsequent curing conditions were investigated after steam-curing treatment. The capillary absorption coefficient and porosity of the corresponding concretes were analyzed, and their mechanisms were also discussed. The results indicate that water sorptivity and pore structure of steam-cured concrete are greatly influenced by the curing condition used in subsequent ages. Exposure steam-cured concrete to air condition has an obviously bad effect on its properties and microstructures. Adopting subsequent curing of immersing steam-cured concrete into about 20℃ water after steam curing period can significantly decrease its capillary absorption coefficient and porosity. Steam-cured concrete with 7 d water curing has minimum capillary absorption coefficient and total porosity. Its water sorptivity is decreased by 23% compared with standard curing concrete and the porosity is 9.6% lower. Moreover, the corresponding gradient of water sorptivity and porosity of steam-cured concrete both decrease, thus mictostructure of concrete becomes more homogeneous. 展开更多
关键词 steam-cured concrete water sorptivity pore structure curing condition
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