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粉煤灰-水泥双液注浆材料的配比优化

吴云雁 史沁彬 杜向阳 陈维新 关显华

陕西煤炭2024,Vol.43Issue(6):50-56,62,8.
陕西煤炭2024,Vol.43Issue(6):50-56,62,8.DOI:10.20120/j.cnki.issn.1671-749x.2024.0610

粉煤灰-水泥双液注浆材料的配比优化

Ratio optimization of fly ash-cement dual liquid grouting materials

吴云雁 1史沁彬 1杜向阳 1陈维新 2关显华2

作者信息

  • 1. 潞安化工集团环保能源开发股份有限公司常村煤矿,山西长治 046100
  • 2. 黑龙江科技大学矿业工程学院,黑龙江哈尔滨 150022
  • 折叠

摘要

Abstract

The application of dual fluid grouting materials in the treatment of fractured surrounding rocks in coal mines is quite extensive.In order to obtain dual liquid grouting materials with fast setting speed and low cost,this paper takes fly ash,cement,water glass,water reducing agent and early strength agent as raw materials.Based on the orthogonal experiment scheme,four factors such as powder to cement ratio,glass to slurry ratio,water reducing agent content and early strength a-gent content are studied to explore the influential law of grouting material viscosity,setting time and compressive strength,and a regression model is established using DPS software.Through Matlab genetic algorithm,15 groups of optimal ratio were obtained,and finally the industrial ratio was determined considering the cost.The results show that the properties of grouting materials are not only affected by a single factor,but also by the interaction between the two factors.The industrial ratios:powder to cement is 0.126,glass to pulp is 0.35,water reducing agent content of 1.35‰,early strength agent content of 1.85%,the viscosity of 518 mPa·s,setting time of 23 s,and 28 d compressive strength of 11.10 MPa,and the difference with the predicted value is small,the cost is low,and the performance requirements of grouting materials on site are met.

关键词

围岩治理/双液注浆材料/正交试验/粉煤灰/抗压强度/配比优化

Key words

surrounding rock treatment/dual liquid grouting material/orthogonal experiment/fly ash/compressive strength/ratio optimization

分类

矿业与冶金

引用本文复制引用

吴云雁,史沁彬,杜向阳,陈维新,关显华..粉煤灰-水泥双液注浆材料的配比优化[J].陕西煤炭,2024,43(6):50-56,62,8.

基金项目

黑龙江省省属高校基本科研业务费项目(2023-KYY-WF-0546) (2023-KYY-WF-0546)

陕西煤炭

1671-749X

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