长江科学院院报 ›› 2025, Vol. 42 ›› Issue (3): 118-124.DOI: 10.11988/ckyyb.20231188

• 岩土工程 • 上一篇    下一篇

石灰改良分散性土拌和工艺与压实特性

何建新1,2(), 高鹏展1, 杨海华1, 杨伟3, 文军3, 耿旭1, 王宁远3   

  1. 1 新疆农业大学 水利与土木工程学院,乌鲁木齐 830052
    2 新疆生产建设兵团 堤坝工程安全及灾害防治兵团重点实验室,乌鲁木齐 830052
    3 中国水电建设集团十五工程局有限公司,西安 710016
  • 收稿日期:2023-10-30 修回日期:2024-01-11 出版日期:2025-03-01 发布日期:2025-03-01
  • 作者简介:

    何建新(1973-),男,河南周口人,教授,硕士,主要从事水利水电工程研究。E-mail:

  • 基金资助:
    新疆维吾尔自治区自然科学基金项目(2022D01A200); 兵团堤防工程安全与防灾重点实验室资助项目

Mixing Technique and Compaction Characteristics of Lime-improved Dispersive Soil

HE Jian-xin1,2(), GAO Peng-zhan1, YANG Hai-hua1, YANG Wei3, WEN Jun3, GENG Xu1, WANG Ning-yuan3   

  1. 1 School of Water Conservancy and Civil Engineering, Xinjiang Agricultural University, Urumqi 830052,China
    2 Key Laboratory of Dyke Safety and Disaster Prevention of Xinjiang Water Conservancy Engineering,Xinjiang Production and Construction Corps,Urumqi 830052, China
    3 Sinohydro Group 15th Engineering Bureau Co., Ltd., Xi’an 710016, China
  • Received:2023-10-30 Revised:2024-01-11 Published:2025-03-01 Online:2025-03-01

摘要:

新疆某水库心墙坝用土为分散性土,设计采用掺1%石灰进行处理。为确保使用石灰改良分散性土的心墙坝工程质量,实现拌和的均匀效果,在碾压试验的基础上,使用ZB05型冷再生路拌机对石灰分别进行1、2、4、6次的拌和,通过SG-6型多功能直读式测钙仪随机快速检测土料石灰含量,对石灰改良土的均匀性进行质量控制;探究陈化时间对改良土击实特性的影响,并结合室内压缩和直剪试验研究现场施工环境下龄期对改良土物理力学性能的影响规律。结果表明:当碾压8遍且摊铺厚度为30、35 cm时,沉降量已基本稳定,干密度可满足≥1.73 g/cm3、压实度可满足≥99%的条件;在搅拌遍数为6时,拌和石灰的均匀性趋于稳定,变异系数为0.28;石灰改良土的陈化时间越长越不利碾压,按99%的压实度时评价陈化时间应≤9 h;改良土的压缩性和强度受龄期影响明显,龄期增大,石灰改良土的压缩性减小、抗剪强度增大,与室内试验规律相一致。研究成果可为采用石灰改良分散性土的工程提供理论支撑及参考。

关键词: 分散性土, 碾压工艺, 拌和工艺, 陈化时间, 龄期

Abstract:

The soil used for the core dam of a reservoir in Xinjiang is dispersive soil. To treat this soil, 1% lime is added. To ensure project quality and achieve uniform mixing, a ZB05 cold recycling paver was employed, with mixing cycles set at 1, 2, 4, and 6, respectively. The SG-6 multifunctional direct-reading calcium meter was used for rapid and random detection of soil lime content to control the uniformity of the lime-treated soil. The influence of aging time on the compaction characteristics of the improved soil was also investigated. In the field construction environment, the impact of curing age on the physical and mechanical properties of the improved soil was evaluated through indoor compression and direct shear tests. Results show that, when rolled 8 times with a spread thickness of 30 and 35 cm, the settlement of the soil material stabilizes, and the dry density after rolling meets the requirement of ≥1.73 g/cm3, with a compaction degree of ≥99%. When the mixing cycle is 6, the uniformity of the lime mixing stabilizes, with a coefficient of variation ( Cv ) of 0.28. As the aging time increases, the lime-treated soil becomes less favorable for rolling. To maintain a compaction degree of 99%, the aging time should not exceed 9 hours. The compressibility and shear strength of the improved soil are significantly influenced by curing age. As curing age increases, the compressibility of the lime-treated soil decreases, whereas shear strength increases, consistent with laboratory test results.

Key words: dispersive soil, rolling process, mixing process, aging time, curing age

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