煤炭工程 ›› 2025, Vol. 57 ›› Issue (3): 158-164.doi: 10. 11799/ ce202503021

• 研究探讨 • 上一篇    下一篇

胶结砂岩质类岩石材料强度特性及损伤破坏机理研究

孟武峰,任雨蒙,李佳   

  1. 1. 河南焦煤能源有限公司 中马村矿,河南 焦作 454000

    2. 河南理工大学 能源科学与工程学院,河南 焦作 454003

  • 收稿日期:2023-11-11 修回日期:2024-01-26 出版日期:2025-03-10 发布日期:2025-05-15
  • 通讯作者: 任雨蒙 E-mail:renyumeng0309@163.com

Strength characteristics and damage and failure mechanism of cemented sandstone-like rock materials

  • Received:2023-11-11 Revised:2024-01-26 Online:2025-03-10 Published:2025-05-15

摘要:

为探究不同因素对胶结砂岩质类岩石材料强度特性的影响,以水泥、砂岩骨料、石英砂等为原材料,经不同配比制成类岩质圆柱形试样,借助YAW-150B全自动液压试验机测试系统,探究各因素对类岩石材料强度的影响并阐明试件损伤破坏机理。研究结果表明:水灰比、砂岩骨料-水泥比及砂胶比均会对类岩石材料的强度产生一定影响,其中类岩石材料的抗压强度随水灰比的增大呈先增后减趋势,当水灰比为0.42时,材料强度达到最大值,随后缓慢下降;砂岩骨料-水泥比与类岩石材料强度的提升呈负相关关系;砂胶比会使类岩石材料抗压强度先增大后减小,当砂胶比在约为0.9时,材料强度达到峰值,之后快速下降,且最终强度值均低于初始强度值。类岩石材料试样在轴向荷载作用下会呈现拉伸破坏、剪切破坏及摩擦破坏三种破坏模式,且以拉伸破坏为主,剪切破坏和摩擦破坏为辅。

关键词:

相似材料配比试验 , 类岩石材料 , 单轴压缩 , 抗压强度特征 , 损伤破坏机理

Abstract:

To explore the influence of different factors on the strength characteristics of cemented sandstone-like rock materials. Using sandstone aggregate, cement and quartz sand as raw materials, the rock-like cylindrical samples were prepared by different proportions. By means of YAW-150B automatic hydraulic testing machine test system, the compressive strength of rock-like materials under different influencing factors was measured and the damage and failure mechanism of the specimen was elucidated. The results show that water-cement ratio, sand-cement ratio and sandstone aggregate cement ratio all have certain effects on the strength of rock-like materials. The compressive strength of rock-like materials increases first and then decreases with the increase of water-cement ratio. When the water-cement ratio is 0.42, the strength of the material reaches the maximum and then slowly decreases. The ratio of sand waste slag to cement is negatively correlated with the strength of rock-like materials. When the ratio of sand to cement is about 0.9, the compressive strength of the material reaches a peak, and then decreases rapidly, and the final strength is usually lower than the initial strength. There are three failure modes: tensile failure, shear failure and friction failure, and tensile failure is the main failure mode, while shear failure and friction failure are the auxiliary failure mode.

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