›› 2012, Vol. ›› Issue (03): 645-650.

• 论文 • 上一篇    下一篇

以峰值轴向应变评价麦秸秆和石灰加筋固化盐渍土的抗变形性能

柴寿喜, 王沛, 魏丽   

  1. 天津城市建设学院 地质与测绘学院, 天津 300384
  • 收稿日期:2011-04-02 出版日期:2012-05-01
  • 基金资助:
    国家自然科学基金项目(41140024);天津市自然科学基金项目(12JCYBJC14500);天津市高等学校科技发展基金项目(20090901,SB20080083).

Evaluation on anti-deformation capability of saline soil reinforced by wheat straw and lime on the basis of axial strain at failure

CHAI Shou-xi, WANG Pei, WEI Li   

  1. School of Geology and Geomatics, Tianjin Institute of Urban Construction, Tianjin 300384, China
  • Received:2011-04-02 Online:2012-05-01

摘要: 为了解决滨海盐渍土的低强度和大变形问题,利用麦秸秆和石灰对盐渍土加筋及固化。完成了直径152 mm重型击实试样、直径102 mm轻型击实试样的无侧限抗压试验以及直径61.8 mm试样的三轴压缩试验,分析了加筋土峰值轴向应变的变化规律,并在此基础上评价了加筋土的抗变形能力。结果显示随着含水率增加,加筋土的抗变形能力减弱;随着加筋长度和质量加筋率增加,加筋土的抗变形能力逐渐增强,超过一定的加筋长度和质量加筋率,加筋土的抗变形能力又开始减弱。加筋土的最优抗变形性能与麦秸秆的加筋条件有关。重型击实试样的适宜加筋长度为50 mm,适宜质量加筋率为0.25%。轻型击实试样分别为30 mm和0.25%。上部均匀加筋、整体均匀加筋和下部均匀加筋的直径为61.8 mm的加筋石灰土试样则分别为20 mm和0.25%。麦秸秆和石灰共同加筋固化可以使滨海盐渍土的强度和抗变形能力增强。

关键词: 土木工程, 纤维加筋土, 抗变形性能, 峰值轴向应变, 盐渍土

Abstract: In order to increase the strength and anti-deformation capability of seaside saline soil, it can be reinforced by wheat straw or solidified by lime respectively or jointly. Unconfined compressive test for heavy compaction samples of 152 mm in diameter and lightly compaction samples of 102 mm in diameter, as well as triaxial shear test for samples of 61.8 mm in diameter have been carried out in succession of axial strain at failure of reinforced saline soil and reinforced lime-saline soil be calculated for analyzing its anti-deformation capability. The results indicated that anti-deformation capability of reinforced soil gradually weakens with the increase of water content of soil, but enhances gradually with the increase of reinforced length and reinforced ratio of wheat straw, and then decreasing after surpassing certain reinforced length and certain reinforced ratio. The optimal anti-deformation capability of the reinforced saline soil depends upon the reinforcement conditions by wheat straw. The suitable length is 50 mm for the heavy compaction sample, its suitable reinforced ratio is 0.25%. For the lightly compaction sample, they are 30 mm and 0.25% respectively. For the reinforced by lime soil sample of 61.8 mm in diameter with uniform reinforcement in the upper part, entirely, and in the lower part, they are 20 mm and 0.25% respectively. The joint reinforcement by wheat straw and line enhances the strength and anti-deformation capability of the seaside saline soil.

Key words: civil engineering, fiber sein forced soil, anti-deformation capability, axial strain at failure, saline soil

中图分类号: 

  • TU443
[1] 柴寿喜, 杨宝珠, 王晓燕, 等. 渤海湾西岸滨海盐渍土的盐渍化特征分析[J]. 岩土力学,2008,29(5):1217-1221. Chai Shou-xi, Yang Bao-zhu, Wang Xiao-yan, et al. Analysis of salinization of saline soil in west coast area of Bohai gulf[J]. Rock and Soil Mechanics,2008,29(5):1217-1221.
[2] 覃银辉,何玮,柴寿喜,等. 滨海盐渍土固化后物理力学性能试验研究[J]. 西安建筑科技大学学报:自然科学版,2007,39(3):408-413. Qin Yin-hui, He Wei, Chai Shou-xi, et al. Experimental study on the physical and mechanical capability of solidified inshore saline soil[J]. Journal of Xi'an University of Architecture & Technology,2007,39(3):408-413.
[3] 魏丽,柴寿喜,蔡宏洲,等. 麦秸秆的物理力学性能及加筋盐渍土的抗压强度[J]. 土木工程学报,2010,43(3):94-99. Wei Li,Chai Shou-xi,Cai Hong-zhou,et al. Physical and mechanical properties of wheat straw and unconfined compressive strength of reinforced saline soil in inshore with wheat straw[J]. China Civil Engineering Journal,2010,43(3):94-99.
[4] 刘寒冰,何岩,魏海斌,等. 聚丙烯纤维改良粉煤灰土的动力特性[J].吉林大学学报:工学版,2010,40(3):672-675. Liu Han-bing,He Yan,Wei Hai-bin, et al. Dynamic property of polypropylene fiber improved fly ash soil[J]. Journal o f Jilin University (Engineering and Technology Edition), 2010,40(3):672-675.
[5] 中华人民共和国行业标准编写组. JTG D30-2004公路路基设计规范[S]. 北京:人民交通出版社,2004.
[6] 中华人民共和国国家标准编写组. GB 50007-2002建筑地基基础设计规范[S]. 北京: 中国建筑工业出版社, 2002.
[7] 周琦, 韩文峰, 邓安, 等. 滨海盐渍土作公路路基填料试验研究[J]. 岩土工程学报,2006,28(9):1177-1180. Zhou Qi,Han Wen-feng,Deng An, et al. Influences on unconfined compressive strength of stabilized coastal saline soils[J]. Chinese Journal of Geotechnical Engineering,2006,28(9):1177-1180.
[8] 李绍才,孙海龙,杨志荣,等. 秸秆纤维、聚丙烯酰胺及高吸水树脂在岩石边坡植被护坡中的效应[J]. 岩石力学与工程学报,2006,25(2):257-267. Li Shao-cai, Sun Hai-long, Yang Zhi-rong, et al. Effect of straw fiber, polyacrylamide and super absorbent polymer eco-engineering on rock slope protection[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(2):257-267.
[9] 刘付华. 二灰和高分子材料固化滨海盐渍土作公路路堤填料试验研究. 天津: 天津城市建设学院,2005. Liu Fu-hua. Experimental research of solidified saline soil in inshore mixed fly-ash and polymer material for embankment filling. Tianjin: Tianjin Institute of Urban Construction,2005.
[10] 王常明,马栋和,林容,等. 辽西地区黄土的强度与本构特性[J]. 吉林大学学报:地球科学版,2010,40(5):1104-1109. Wang Chang-ming, Ma Dong-he, Lin Rong, et al. Shear strength and constitutive characteristics of loess in west liaoning[J]. Journal of Jilin University(Earth Science Edition),2010,40(5):1104-1109.
[11] 李敏. 麦秸秆加筋滨海盐渍土的击实性能和强度指标研究. 天津: 天津城市建设学院, 2009. Li Min. Compaction and strength of saline soil reinforced with wheat straw. Tianjin: Tianjin Institute of Urban Construction,2009.
[1] 郑一峰, 赵群, 暴伟, 李壮, 于笑非. 大跨径刚构连续梁桥悬臂施工阶段抗风性能[J]. 吉林大学学报(工学版), 2018, 48(2): 466-472.
[2] 王腾, 周茗如, 马连生, 乔宏霞. 基于断裂理论的湿陷性黄土劈裂注浆裂纹扩展[J]. 吉林大学学报(工学版), 2017, 47(5): 1472-1481.
[3] 郭楠, 张平阳, 左煜, 左宏亮. 竹板增强胶合木梁受弯性能[J]. 吉林大学学报(工学版), 2017, 47(3): 778-788.
[4] 张静, 刘向东. 混沌粒子群算法优化最小二乘支持向量机的混凝土强度预测[J]. 吉林大学学报(工学版), 2016, 46(4): 1097-1102.
[5] 郭学东, 马立军, 张云龙. 集中力作用下考虑剪切滑移效应的双层结合面组合梁解析解[J]. 吉林大学学报(工学版), 2016, 46(2): 432-438.
[6] 赵玉, 李衍赫, 张培, 赵科, 刘伟超. 粘土的动力特性试验[J]. 吉林大学学报(工学版), 2015, 45(6): 1791-1797.
[7] 侯忠明, 王元清, 夏禾, 张天申. 移动荷载作用下的钢-混简支结合梁动力响应[J]. 吉林大学学报(工学版), 2015, 45(5): 1420-1427.
[8] 王甲春, 阎培渝. 海洋环境下钢筋混凝土中钢筋锈蚀的概率[J]. 吉林大学学报(工学版), 2014, 44(2): 352-357.
[9] 张大山, 董毓利, 吴亚平. 混凝土单向板的受拉薄膜效应计算[J]. 吉林大学学报(工学版), 2013, 43(05): 1253-1257.
[10] 李春良, 王国强, 赵凯军, 朱春凤. 地面荷载作用盾构隧道纵向力学行为[J]. 吉林大学学报(工学版), 2011, 41(增刊2): 180-184.
[11] 潘明远, 姚继涛. 钢筋混凝土结构构件的可靠性[J]. 吉林大学学报(工学版), 2010, 40(增刊): 218-0221.
[12] 郑文忠, 万夫雄, 李时光. 用无机胶粘贴CFRP布加固混凝土板火灾后受力性能[J]. 吉林大学学报(工学版), 2010, 40(05): 1244-1249.
[13] 王刚,王清湘,刘士润. 钢筋混凝土板的压力膜效应承载力计算方法[J]. 吉林大学学报(工学版), 2010, 40(03): 699-0704.
[14] 高小建,阚雪峰,杨英姿. 单面干燥条件下掺硅灰混凝土的收缩变形分布[J]. 吉林大学学报(工学版), 2010, 40(03): 694-0698.
[15] 经建生1,侯晓萌2 ,郑文忠2. 高温后预应力钢筋和非预应力钢筋的力学性能[J]. 吉林大学学报(工学版), 2010, 40(02): 441-0446.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!