返回列表 发布新帖

[工业技术] 湿陷性黄土–砾石集料流态固化土工程特性试验研究

2 0
admin 发表于 2024-1-16 08:26 | 查看全部 阅读模式

湿陷性黄土–砾石集料流态固化土工程特性试验研究
摘要:针对传统回填方法与回填材料存在的缺陷,结合湿陷性黄土地区特点,提出了一种基于湿陷性黄土–砾石集料的预拌流态固化土。通过开展流动性试验与无侧限抗压强度试验,对比分析了不同土石比、水固比和胶集比对该预拌流态固化土工作性和力学性能的影响;同时借助渗透性试验与黄土湿陷试验讨论了所提出材料固化后遇水的性能变化情况。主要得出以下结论:(1)胶凝材料用量固定时,拌合物为满足流动性要求所需用水量随着湿陷性黄土用量的增加而增大,但试样强度整体呈下降趋势;(2)胶凝材料用量的增大提高了试样强度,但降低了拌合物的流动性,且对土石比较大和水固比相对较低的配合比的流动性影响显著;(3)满足流动性和强度要求的湿陷性黄土–砾石集料预拌流态固化土,其抗渗性和湿陷性也均满足相关规范要求;(4)调整水固比满足基本流动性要求后,土石质量比取1.50~1.86,胶集质量比不小于0.06的湿陷性黄土–砾石集料流态固化土具有良好的工作性能和力学性能。

Abstract:To eliminate the defects of traditional backfilling methods and materials, combined with the characteristics of collapsible loess area, the premixed fluidized solidified soil with collapsible loess and gravel as aggregate was prepared. The influence of different loess-to-gravel (L/G), water-to-solid (W/S) and binder-to-aggregate (B/A) ratios on the workability and mechanical properties of the premixed fluid solidified soil was analyzed by carrying out flowability and unconfined compressive strength tests. The permeability test and collapsibility test were conducted to discuss the performance change of the proposed material after solidification and water exposure. The main conclusions are as follows: (1) For certain fixed cementitious material content, with the increase of collapsible loess content, the amount of water required to meet the flowability requirements of the mixture also increases, but the strength of the sample decreases as a whole. (2) The increase of the content of cementitious materials improves the strength of the sample, but reduces the flowability of the mixture, especially for the mixture with large L/G ratio and relatively low W/S ratio. (3) Premixed fluidized solidified soil made with collapsible loess and gravel which meets the requirements of flowability and minimum strength also meets the requirements of impermeability and collapsibility in the relevant specifications. (4) According to the test results, after W/S ratio is adjusted to meet the flowability requirement, the fluidized premixed solidified soil with L/G ratio between 1.50 and 1.86 and B/A ratio not less than 0.06 has good workability and mechanical properties.

中文标题:
湿陷性黄土–砾石集料流态固化土工程特性试验研究
Experimental Study on Engineering Characteristics of Fluidized Solidified Soil Containing Collapsible Loess and Gravel

作者:
张鑫1,,吉海峰1,杨作青1,朱彦鹏2,刘东瑞2
Zhang Xin1,,Ji Haifeng1,Yang Zuoqing1,Zhu Yanpeng2,Liu Dongrui2
作者简介:张 鑫,男,1986年生,汉族,甘肃会宁人,大学本科,高级工程师,主要从事地质灾害治理、地基基础等岩土工程专业技术研究管理工作。E-mail:2420354948@qq.com
通讯地址:
1.甘肃西部岩土工程有限责任公司,甘肃兰州 730050    2.兰州理工大学土木工程学院,甘肃兰州 730050
1.GansuWestGeotechnicalEngineeringCo.,Ltd.,Lanzhou730050,Gansu,China    2.SchoolofCivilEngineering,LanzhouUniversityofTechnology,Lanzhou730050,Gansu,China

中图分类号:TU411
doi:10.3969/j.issn.1007-2993.2024.05.017
出版物:岩土工程技术
收稿日期:2023-04-21
修回日期:2023-10-22
录用日期:2023-11-08
网络出版日期:2024-10-09
刊出日期:2024-10-09


关键词:预拌流态固化土,湿陷性黄土,砾石,工作性能,力学性能
Key words:premixed fluidized solidified soil,collapsible loess,gravel,workability,mechanical properties
文档包含图片数量:图片(6)张
文档包含表格数量:表格(4)个

参考文献:
[1]LING T C, KALIYAVARADHAN S K, POON C S. Global perspective on application of controlled low-strength material (CLSM) for trench backfilling - An overview[J]. Construction and Building Materials,2018,158:535-548. doi:  10.1016/j.conbuildmat.2017.10.050
[2]王英军, 黄昌乾. 肥槽回填土常见工程问题与处理方法[J]. 岩土工程技术,2019,33(2):84-88. doi:  10.3969/j.issn.1007-2993.2019.02.006
[3]American Concrete Institute. ACI 116 Cement and Concrete Terminology[S].
[4]American Concrete Institute. ACI 229 Controlled Low-Strength Materials(CLSM) [S].
[5]BAKER T. Frost penetration in flowable fill used in pipe trench backfill[C]// HOWARD A K, HITCH J L. eds. Proceedings of the Symposium on design and application of controlled low-strength materials (flowable fill). ASTM STP 1331: American Society for Testing and Materials, 1998.
[6]BENZAAZOUA M, FALL M, BELEM T. A contribution to understanding the hardening process of cemented pastefill[J]. Minerals Engineering,2004,17(2):141-152. doi:  10.1016/j.mineng.2003.10.022
[7]FALL M, BENZAAZOUA M. Modeling the effect of sulphate on strength development of paste backfill and binder mixture optimization[J]. Cement and Concrete Research,2005,35(2):301-314. doi:  10.1016/j.cemconres.2004.05.020
[8]GHATAORA G S, ALOBAIDI I M. Assessment of the performance of trial trenches backfilled with cementitious materials[J]. International Journal of Pavement Engineering,2000,1(4):297-316. doi:  10.1080/10298430008901712
[9]BOUZALAKOS S, DUDENEY A, CHEESEMAN C R. Controlled low-strength materials containing waste precipitates from mineral processing[J]. Minerals Engineering,2008,21(4):252-263. doi:  10.1016/j.mineng.2007.09.006
[10]CLAISSE P, GANJIAN E, TYRER M. The use of secondary gypsum to make a controlled low strength material[J]. The Open Construction and Building Technology Journal,2009,2(1):294-305. doi:  10.2174/1874836800802010294
[11]FUJITA R, HORIGUCHI T, KUDO T, et al. Applicability of CLSM with incinerated sewage sludge ash and crushed-stone powder[J]. Journal of materials in civil engineering,2011,23(6):767-771. doi:  10.1061/(ASCE)MT.1943-5533.0000201
[12]李 飞, 刘晨辉, 吴英彪, 等. 建筑垃圾再生材料对可控低强材料(CLSM)性能影响研究[J]. 混凝土,2018(8):71-73,78. doi:  10.3969/j.issn.1002-3550.2018.08.017
[13]ZHANG J, WANG J, LI X, et al. Rapid-hardening controlled low strength materials made of recycled fine aggregate from construction and demolition waste[J]. Construction and Building Materials,2018,173(10):81-89.
[14]QIAN J, SHU X, DONG Q, et al. Laboratory characterization of controlled low-strength materials[J]. Materials and Design,2015,65:806-813. doi:  10.1016/j.matdes.2014.10.012
[15]高文生, 梅国雄, 周同和, 等. 基础工程技术创新与发展[J]. 土木工程学报,2020,53(6):97-121.
[16]T/BGEA 001—2019 预拌流态固化土填筑工程技术标准[S].
[17]周永祥, 王继忠. 预拌固化土的原理及工程应用前景[J]. 新型建筑材料,2019,46(10):117-120. doi:  10.3969/j.issn.1001-702X.2019.10.027
[18]陈容华, 甄朋民. 基于粉质黏土的预拌流态固化土的影响因素分析[J]. 重庆建筑,2020,19(9):32-36. doi:  10.3969/j.issn.1671-9107.2020.09.32
[19]黄明利, 杨 泽, 谭忠盛, 等. 明挖法地下装配式结构接缝防水技术探讨[J]. 中国工程科学,2017,19(6):139-147.
[20]王丽筠, 孙伟东, 文劲博. 预拌流态固化土在深基坑回填工程中应用[J]. 建筑技术,2021,52(4):460-461. doi:  10.3969/j.issn.1000-4726.2021.04.020
[21]张旭光. 北京城市副中心长螺旋压灌预拌流态固化土复合地基研究[J]. 建筑技术开发,2018,45(2):59-62. doi:  10.3969/j.issn.1001-523X.2018.02.030
[22]刘成龙. 新型预拌流态固化土性能及回填施工工艺[J]. 山东交通学院学报,2021,29(4):91-98. doi:  10.3969/j.issn.1672-0032.2021.04.013
[23]JGJ/T 233—2011 水泥土配合比设计规程 [S].
[24]陈瑞敏, 简文彬, 张小芳, 等. CSFG-FR协同作用改良淤泥固化土性能试验研究[J]. 岩土力学,2022(4):1-11.
[25]SHEEN Y N, HUANG L J, WANG H Y, et al. Experimental study and strength formulation of soil-based controlled low-strength material containing stainless steel reducing slag[J]. Construction and Building Materials,2014,54(3):1-9.
[26]张伟锋, 刘清秉, 蔡松桃. 用HEC固化剂加固黄土的试验研究[J]. 人民长江,2009,40(3):56-59. doi:  10.3969/j.issn.1001-4179.2009.03.022

基金项目:
基金项目:国家自然科学基金面上项目(51978321);教育部长江学者和创新团队支持计划项目(IRT17R51)

2025-1-15 23:27 上传
文件大小:
911.71 KB
下载次数:
60
高速下载
【温馨提示】 您好!以下是下载说明,请您仔细阅读:
1、推荐使用360安全浏览器访问本站,选择您所需的PDF文档,点击页面下方“本地下载”按钮。
2、耐心等待两秒钟,系统将自动开始下载,本站文件均为高速下载。
3、下载完成后,请查看您浏览器的下载文件夹,找到对应的PDF文件。
4、使用PDF阅读器打开文档,开始阅读学习。
5、使用过程中遇到问题,请联系QQ客服。

本站提供的所有PDF文档、软件、资料等均为网友上传或网络收集,仅供学习和研究使用,不得用于任何商业用途。
本站尊重知识产权,若本站内容侵犯了您的权益,请及时通知我们,我们将尽快予以删除。
  • 手机访问
    微信扫一扫
  • 联系QQ客服
    QQ扫一扫
2022-2025 新资汇 - 参考资料免费下载网站 最近更新浙ICP备2024084428号
关灯 返回顶部
快速回复 返回顶部 返回列表