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基于湿陷性和震陷性的黄土微结构

Microstructure of loess in collapsibility and seismic subsidence

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【作者】 张豫川羊群芳张兴元刘红玫

【Author】 ZHANG Yu-chuan 1,2,YANG Qun-fang 2,ZHANG Xing-yuan 2,LIU Hong-mei 3 1.Institute of Geotechnical Engineering,Xi’an University of Technology,Xi’an 710048,China 2.College of Civil Engineering and Mechanics,Lanzhou University,Lanzhou 730000,China 3.Lanzhou Institute of Seismology,China Earthquake Administration,Lanzhou 730000,China

【机构】 西安理工大学岩土工程研究所兰州大学土木工程与力学学院中国地震局兰州地震研究所

【摘要】 试验通过对原状及湿陷和震陷土样的微结构SEM图像的观测和分析,定量研究力和水两个外因作用下黄土的孔隙大小、数量及其分布规律的变化,通过不同外因的作用效果分析黄土结构特性.结果表明黄土震陷后孔隙较湿陷后大,认为胶结作用极易因浸水而软化破坏,胶结作用愈强,黄土发生湿陷的可能性愈大;但是胶结作用可以抵御外力作用,使黄土不容易因震陷而破坏.

【Abstract】 Observation and analysis of the SEM images of soil microstructure of samples were made after the collapsing or post-seismic subsidence,and a primary sampling were also done.The change of loess pore in size,number and distribution under force or water was quantitatively studied.The loess structural behavior was confirmed through the change of microstructure under different forces.It appeared that the pores of the sampled post-seismic subsidence were larger than pores of the sampling after collapsing.It was assumed that cementation was easily dissolved in water,and the stronger the cementation,the more possible it was for collapsing to occur.Cementation could prevent loess from being damaged by a force without water,such as an earthquake.

【关键词】 黄土湿陷性震陷性微结构孔隙胶结
【Key words】 loesscollapsibilityseismic subsidencemicrostructureporouscementation
【基金】 西部灾害与环境力学教育部重点实验室开放基金项目(200704)
  • 【文献出处】 兰州大学学报(自然科学版) ,Journal of Lanzhou University(Natural Sciences) , 编辑部邮箱 ,2011年02期
  • 【分类号】TU444
  • 【被引频次】16
  • 【下载频次】308
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