期刊文献+

柔性加筋土复合体力学性能试验 被引量:3

Experimental study of mechanical properties of flexible geosynthetic-reinforced soil complex
原文传递
导出
摘要 为了研究柔性加筋土复合体的基本力学特性,分别对无纺土工布加筋砂、土工格栅加筋砂、"土工布+纤维"综合加筋砂和"土工格栅+纤维"综合加筋砂制作的多组试样完成了一系列组合工况下的无侧限抗压试验.得到以下主要结论:1)土工布的强度和加筋层间距应与砂的密度相匹配,此时,两者协同工作性最好,加筋砂土极限强度高,破坏应变大;2)相同情况下,"土工布+纤维"综合加筋砂的强度比土工布加筋砂的高,但当砂的密度和加筋层间距都较小时,强度提高不显著;3)应变较大时,土工格栅加筋砂的强度明显低于土工布加筋砂的强度,这可能是格栅与砂土的刚度差异过大以致格栅-土界面产生了相对滑动所致;4)纤维的掺入既提高了"土工格栅+纤维"综合加筋砂的强度,又提高了其承受大变形的能力. In order to study the mechanical properties of flexible geosynthetic-reinforced soil complex,a series of unconfined compression tests were conducted in laboratory.The test samples were made up of sand reinforced respectively with nonwoven geotextile,geogrid,both geotextile and fiber,or both geogrid and fiber.Each sample varied in either the number of reinforcement inclusions or the density of sand.Based on the analysis of the test results,some conclusions are drawn as follows.1) There is an appropriate match among the geotextile strength,the reinforcement spacing and the sand density.The samples making according to such match have not only high compressive strengths but also large failure compressive strains.2) Sand reinforced with both geotextile and fiber has a higher compressive strength than that of one reinforced only by geotextile at the same conditions;but only a little difference between them while both the sand has a relatively low density and the reinforcement spacing is small.3) While the compressive strain is larger,the compressive strength of the geogrid-reinforced sand is much lower than that of geotextile-reinforced sand,which is perhaps due to the large difference between the geogrid and the sand in tensile stiffness resulting in sliding at the geogrid-soil interface.4) Compared with the geogrid-reinforced sand,the sample reinforced with both geogrid and fiber has a higher compressive strength at low compressive strain and a larger failure compressive strain due to the fiber inclusions.
出处 《武汉大学学报(工学版)》 CAS CSCD 北大核心 2012年第5期602-607,共6页 Engineering Journal of Wuhan University
基金 "十一五"国家科技支撑计划重点项目(编号:2008BAG10B00)
关键词 柔性加筋土复合体 无侧限压缩试验 土工布 土工格栅 纤维 flexible geosynthetic-reinforced soil complex unconfined compression tests geotextile geogrid fiber
  • 相关文献

参考文献12

  • 1HelwanySMB,WuJTH,latingthebehaviorofGRSJournalofGeotechnicalandneering,2007,133(10):1299’KitsabunnaratA.Simubridgeabutments[J].GeoenvironmentalEngi1240.
  • 2Adams M T, Schlatter W, Stabile T. Geosynthetic re- inforced soil integrated abutments at the Bowman Road Bridge in Defiance County, Ohio[C]// ASCE. Geo- synthetics in Reinforcement and Hydraulic Applica- tions (GSP 165), Denver, Colorado, USA.. ASCE, 2007;119-129.
  • 3Barrett R K, Ruckman A C. GRS--A new era in rein- forced soil technology[C]// ASCE. Geosynthetics in Reinforcement and Hydraulic Applications (GSP 165), Denver, Colorado, USA.. ASCE, 2007 :153-164.
  • 4Phanikumar B R, Prasad R, Singh A. Compressive load response of geogrid reinforced fine, medium and caarse sands[J]. Geotextiles and Geomembranes, 2009,27;183-186.
  • 5Wu J T H. Lateral earth pressure against the facing of segmental GRS walls [C]// ASCE. Geosynthetics in Reinforcement and Hydraulic Applications (GSP 165), Denver, Colorado, USA.. ASCE, 2007:165-175.
  • 6Hu Y C, Song H, Zhao Z J. Experimental study on behavior of geotextile-reinforced soil[C]//Wang Y H, Yi P, An S, et al. Critical Issues in Transportation Systems Planning, Development, and Management. Harbin, China: ASCE, 2009;2393-2402.
  • 7刘华北.水平与竖向地震作用下土工格栅加筋土挡墙动力分析[J].岩土工程学报,2006,28(5):594-599. 被引量:52
  • 8TatsuokaF,KosekiJ,TateyamaM,eta1.Seismicstabilityagainsthighseismicloadsofgeosyntheticre-inforcedsoilretainingstructures[c]//Proceedings0f6thInternationalConferenceonGeosynthetics,Atlan-ta,2007:103-142.
  • 9Adams M T, Ketehart K, Wu J T H. Mini pier exper- iments geosynthetic reinforcement spacing and strength as related to performance[C]// ASCE. Geosynthetics in Reinforcement and Hydraulic Applications (GSP 165), Denver, Colorado, USA: ASCE, 2007:98-106.
  • 10HuYC,SongH,ZhouJ,eta1.Compressiveper-formanceofgeogrid-reinforcedgranularsoil[c]//weiH,WangYH,RongJ,eta1.IntegratedTransporta-tionSystemsGreen·Intelligent·Reliable,Beijing,China:ASCE,2010:3126-3132.

二级参考文献33

  • 1程火焰,周亦唐,钟国强.加筋土挡土墙地震动力特性研究[J].公路交通科技,2004,21(9):16-20. 被引量:31
  • 2刘华北,Ling HI.土工格栅加筋土挡土墙设计参数的弹塑性有限元研究[J].岩土工程学报,2004,26(5):668-673. 被引量:58
  • 3马时冬.土工格栅加筋垫层的效果检验[J].岩石力学与工程学报,2005,24(3):490-495. 被引量:12
  • 4TATSUOKA E TATEYAMA M, KOSEKI J. Behavior of Geogrid-reinforced soil retaining walls during the Great Habshin-Awaji Earthquake [C]// Proceedings of 1st International Symposium on Geotechnical Earthquake Engineering. 1995:55 - 60.
  • 5LING H, LIU H, KALIAKIN V, LESHCHINSKY D.Analyzing dynamic behavior of geosynthetic -reinforced soil retaining walls [J]. Journal of Engineering Mechanics, ASCE,2004, 130(8): 911 - 920.
  • 6LING H, LIU H. Pressure dependancy and densification behavior of sand through a generalized plasticity model [J].Journal of Engineering Mechanics, ASCE, 2003, 129(8): 851 - 860.
  • 7LING H I, LIU H, MOHRI Y, KAWABATA T. A bounding surface model for geogrid reinforcements[J]. Journal of Engineering mechanics, ASCE, 2001, 127(9): 963 - 967.
  • 8CHAN A H C. User manual for DIANA SWANDYNE-Ⅱ[R]. Glasgow: University of Glasgow. 1989.
  • 9徐少曼.考虑加筋垫层综合影响的堤下软基稳定分析[A].见:第5届全国土工合成材料会议论文集[C].宜昌:[s.n.],2000.411-414.
  • 10王吉力,马时冬.加筋砂应力-应变关系的三轴试验研究[A].见:全国第三届土工合成材料学术会议论文选集[C].天津:天津大学出版社,1992.17-23.

共引文献151

同被引文献18

引证文献3

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部