冻融循环下废旧轮胎颗粒改性膨胀土无侧限抗压强度试验

宗佳敏, 宋迎俊, 鲁洋, 许雷, 张雨灼

raybet体育在线 院报 ›› 2017, Vol. 34 ›› Issue (9) : 110-114.

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raybet体育在线 院报 ›› 2017, Vol. 34 ›› Issue (9) : 110-114. DOI: 10.11988/ckyyb.20160511
岩土工程

冻融循环下废旧轮胎颗粒改性膨胀土无侧限抗压强度试验

  • 宗佳敏, 宋迎俊, 鲁洋, 许雷, 张雨灼
作者信息 +

Unconfined Compressive Strength Test on Expansive Soil Improved byWaste Tire Rubber Particles under Freeze-thaw Cycles

  • ZONG Jia-min , SONG Ying-jun , LU Yang , XU Lei , ZHANG Yu-zhuo
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摘要

为了研究膨胀土的无侧限抗压强度与橡胶颗粒含量、冻融循环次数之间的关系,在控制含水率一定的条件下,对经历冻融循环的废旧轮胎颗粒改性膨胀土试样进行无侧限抗压强度试验。试验结果表明在膨胀土中加入橡胶颗粒可在一定程度上提高膨胀土的无侧限抗压强度,并能降低其刚性;在同一冻融循环次数下,改性膨胀土的无侧限抗压强度随着橡胶颗粒含量的增大呈现先增大后减小的趋势,当橡胶颗粒含量为3%时,橡胶颗粒改性膨胀土的无侧限抗压强度最大;在同一橡胶颗粒含量下,改性膨胀土的无侧限抗压强度以及单次冻融循环对试样强度削弱作用均随冻融循环次数的增加而减小;当含水率为20%时,冻融循环条件下,改性膨胀土试样的尺寸变化率随橡胶颗粒含量的增大总体呈增大趋势;橡胶颗粒含量较低情况下(≤7%),膨胀土尺寸变化规律为“冻缩融胀”;橡胶颗粒含量较高情况下(9%),膨胀土尺寸变化规律为“冻胀融缩”。

Abstract

In order to investigate the relationship among unconfined compressive strength of expansive soil improved by waste rubber particles, rubber particle ratio and freeze-thaw cycle times,we conducted unconfined compressive strength test on expansive soil samples improved by waste tire rubber particles at given water content. Results show that adding rubber particles could improve the unconfined compressive strength to some extent and reduce the stiffness. When the number of freeze-thaw cycle was the same, the unconfined compressive strength of the improved expansive soil increased and then decreased with the increasing of rubber particle ratio. In particular, unconfined compressive strength reached the maximum when rubber particle ratio was 3%.When rubber particle ratio was the same, unconfined compressive strength of the expansive soil and the influence of single freeze-thaw cycle on strength weakening both decreased with the increase of freeze-thaw cycle times. When water content was 20%,the rate of change in expansive soil size increased in general with the increase of rubber particle ratio in freeze-thaw cycles. Finally, when rubber particle ratio was low (≤7%), the size of the expansive soil shrank under freezing and expanded under thawing; while when rubber particle ratio was higher (=9%), the change was the opposite.

关键词

废旧轮胎颗粒 / 膨胀土 / 冻融循环 / 无侧限抗压强度 / 尺寸变化率

Key words

waste tire rubber particles / expansive soil / freeze-thaw cycle / unconfined compressive strength / rate of size change

引用本文

导出引用
宗佳敏, 宋迎俊, 鲁洋, 许雷, 张雨灼. 冻融循环下废旧轮胎颗粒改性膨胀土无侧限抗压强度试验[J]. raybet体育在线 院报. 2017, 34(9): 110-114 https://doi.org/10.11988/ckyyb.20160511
ZONG Jia-min , SONG Ying-jun , LU Yang , XU Lei , ZHANG Yu-zhuo. Unconfined Compressive Strength Test on Expansive Soil Improved byWaste Tire Rubber Particles under Freeze-thaw Cycles[J]. Journal of Changjiang River Scientific Research Institute. 2017, 34(9): 110-114 https://doi.org/10.11988/ckyyb.20160511
中图分类号: TU41   

参考文献

[1] 周幼吾,郭东信,邱国庆,等. 中国冻土[M] . 北京:科学出版社,2000.
[2] 杨建平,杨岁桥,李 曼,等.中国冻土对气候变化的脆弱性[J] .冰川冻土,2013,35(6):1436-1445.
[3] 杨 俊,刘世宜,张国栋.冻融循环对风化砂改良膨胀土收缩变形影响研究[J] .水力发电学报,2016,35(2):75-81.
[4] 胡 斌,王新刚,连宝琴.纤维类材料改善膨胀土工程性能的适用性探讨[J] .岩土工程学报,2010,32(增2):615-618.
[5] 杨 俊,童 磊,许 威,等.冻融循环影响风化砂改良膨胀土抗剪强度室内试验研究[J] .工程地质学报,2015,23(1):65-71.
[6] 杨 俊,雷俊安,张国栋.冻融循环对风化砂改良膨胀土无侧限抗压强度影响研究[J] .raybet体育在线 院报,2016,33(1):83-88.
[7] YANG J, LI X, ZHANG G, et al. Research on the Different Content of Weathered Sand Influence on Expansive Characteristic of a Highway Expansive Soil in Yichang[J] . Engineering Sciences,2013,(5):84-90.
[8] 阮锦楼,阮 波,阳军生,等.粉质粘土水泥土无侧限抗压强度试验研究[J] .铁道科学与工程学报,2009,6(3):56-60.
[9] 胡晓军,吴延枝.膨胀土改良技术研究综述[J] .合肥学院学报(自然科学版),2014,24(4):80-85.
[10] 孙树林,魏永耀,张 鑫.废弃轮胎胶粉改良膨胀土的抗剪强度研究[J] .岩石力学与工程学报,2009,28(增1):3070-3075.
[11] 魏永耀,孙树林,郑华章.膨胀土-胶粉(ESR)强度特性室内试验研究[J] .工程地质学报,2010,18(4):543-547.
[12] 邹维列,谢 鹏,马其天,等.废弃轮胎橡胶颗粒改性膨胀土的试验研究[J] .四川大学学报(工程科学版),2011,43(3):44-48.
[13] 李丽华,肖衡林,唐辉明,等.轮胎碎片-砂混合土抗剪性能优化试验研究[J] .岩土力学,2013,34(4):1075-1081.
[14] JTG E40—2007,公路土工试验规程[M] .北京:人民交通出版社,2007.
[15] 王柳江,刘斯宏,高军军,等.一种冻融冻胀模型试验装置及其试验方法:中国,CN201210425614.5[P] .2012.
[16] 李长雨.冻融循环下橡胶颗粒改良粉煤灰土力学效应试验研究[D] .长春:吉林大学,2012.
[17] YANG Lu, LIU Si-hong, WENG Li-ping, et al. Fractal Analysis of Cracking in a Clayey Soil under Freeze-thaw Cycles[J] . Engineering Geology,2016,208(24):93-99.
[18] 许 雷,鲁 洋,宗佳敏,等.冻融循环下南阳膨胀土直剪试验[J] .南水北调与水利科技,2015,(5):922-925.

基金

江苏省研究生科研与实践创新计划项目(SJCX17_0127)

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