欢迎访问《硅酸盐通报》官方网站,今天是

硅酸盐通报 ›› 2026, Vol. 45 ›› Issue (2): 413-425.DOI: 10.16552/j.cnki.issn1001-1625.2025.0783

• 水泥混凝土 • 上一篇    下一篇

陶砂轻质砂浆的组分配合比优化及性能研究

孔昕1(), 吴佳明2(), 宋本腾1, 王振兴3, 叶正茂4()   

  1. 1.中建八局建筑科技(山东)有限公司,济南 251604
    2.济南大学材料科学与工程学院,济南 250022
    3.苏州混凝土水泥制品研究院有限公司,苏州 215021
    4.海南大学热带海洋工程材料及评价全国重点实验室,海口 570228
  • 收稿日期:2025-08-04 修订日期:2025-10-22 出版日期:2026-02-20 发布日期:2026-03-09
  • 通信作者: 吴佳明,博士,副教授。E-mail:mse_wujm@ujn.edu.cn
    叶正茂,博士,教授。E-mail:mse_yezm@ujn.edu.cn
  • 作者简介:孔 昕(1984—),女。主要从事建筑科技的研究。E-mail:112315118@qq.com
  • 基金资助:
    国家自然科学基金(52302021);山东省重点研发计划(2021CXGC010301)

Optimization of Component Mix Proportion and Performance Study of Ceramic Sand Lightweight Mortar

KONG Xin1(), WU Jiaming2(), SONG Benteng1, WANG Zhenxing3, YE Zhengmao4()   

  1. 1. China Construction Eighth Division Building Technology (Shandong) Co. ,Ltd. ,Jinan 251604,China
    2. School of Materials Science and Engineering,University of Jinan,Jinan 250022,China
    3. Suzhou Concrete and Cement Products Research Institute Co. ,Ltd. ,Suzhou 215021,China
    4. State Key Laboratory of Tropic Ocean Engineering Materials and Materials Evaluation,Hainan University,Haikou 570228,China
  • Received:2025-08-04 Revised:2025-10-22 Published:2026-02-20 Online:2026-03-09

摘要:

本研究针对陶砂轻质砂浆密度与强度之间的矛盾,系统探讨组分配合比对砂浆性能的影响规律及作用机理,重点揭示水胶比与矿粉掺量的协同优化效应。结果表明,随着水胶比增加,砂浆的干密度持续降低,干燥收缩值持续增加,抗氯离子侵蚀能力呈先降低后增加趋势。当水胶比为0.24时,砂浆的吸水率、开口气孔率最低,28 d抗压强度最高,水泥水化程度与孔隙率之间达到最优平衡,水化产物氢氧化钙(CH)与非晶相(C-S-H凝胶)含量的增加显著提高了基体密实度。在此基础上,当矿粉掺量增加至12%(质量分数)时,砂浆的力学性能与耐久性提升显著,干密度达1 465.44 kg/m3,28 d抗压强度为51.6 MPa,吸水率为6.66%,开口气孔率为9.76%,氯离子迁移系数最低,90 d干燥收缩率降低22.88%。矿粉通过二次水化反应与微集料效应填充孔隙,有效降低了孔隙率。本研究为陶砂轻质砂浆的配合比设计提供了参考。

关键词: 轻质砂浆, 陶砂, 水胶比, 矿粉, 力学性能, 耐久性

Abstract:

This study systematically investigated the influence pattern and underlying mechanism of component mix proportion on mortar properties, addressing the contradiction between density and strength in ceramic sand lightweight mortar. It focused on revealing the synergistic optimization effects of the water-to-binder ratio and mineral powder content. The results indicate that as the water-to-binder ratio increases, the dry density of the mortar continuously decreases, the drying shrinkage value continuously increases, and anti-chloride ion erosion ability of the mortar exhibit a trend of decreasing first and then increasing. When the water-to-binder ratio is 0.24, the water absorption and open porosity of mortar are the lowest, the 28 d compressive strength is the highest, and the degree of cement hydration degree and porosity achieve an optimal balance. The increased content of hydration product calcium hydroxide (CH) and amorphous phase (C-S-H gel) enhances the matrix compactness.Based on this, when the mineral powder content is increased to 12% (mass fraction), the mechanical and durability properties of the mortar are significantly improved. The dry density reaches 1 465.44 kg/m3, the 28 d compressive strength is 51.6 MPa, the water absorption rate is 6.66%, the open porosity is 9.76%, the chloride ion migration coefficient is the lowest, and the 90 d drying shrinkage rate decreases by 22.88%. Mineral powder fills the pores through secondary hydration reactions and the micro-aggregate effect, thereby reducing the porosity. This study provides a reference for the mix proportion design of ceramic sand lightweight mortar.

Key words: lightweight mortar, ceramic sand, water-to-binder ratio, mineral powder, mechanical property, durability

中图分类号: