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Shrinkage strain characterization of expansive soils using digital imaging technology.

机译:使用数字成像技术表征膨胀土的收缩应变。

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摘要

Poor characterizations of shrinkage potentials of soils eventually lead to heave distress problems in expansive soils. Manual measurements in laboratory environments often result in the poor shrinkage strain characterizations. In the present research, digital imaging technology was used to measure shrinkage strain potentials of expansive soils. An experimental program was designed to measure the linear shrinkage strain, areal shrinkage strain (digital measurements), and volumetric shrinkage strains (manual and digital measurements) of four control (two natural and two artificial clays) and four cement treated soils at different compaction moisture contents.; Shrinkage strain potentials measured using digital imaging technology were higher than conventional manual measurements. Measurements were repeatable and also reliable since they accounted for irregular cracking patterns on soil samples. Correlations were developed between digital and manual measurements of both linear and volumetric shrinkage tests for future conversions and characterizations. Also, natural clays exhibited higher shrinkage strains than artificial clayey soils due to the presence of Montmorillonite clay minerals. Digital measurements of strains showed significant variations with manual measurements for all soils including cement treated soils at all ranges of shrinkage strains.
机译:表征土壤收缩潜力的能力差,最终导致膨胀土壤的胀大困扰问题。在实验室环境中进行手动测量通常会导致收缩应变特性不佳。在本研究中,数字成像技术被用于测量膨胀土的收缩应变潜力。设计了一个实验程序来测量四种压实度(两种天然粘土和两种人造粘土)和四种水泥处理过的土壤在不同压实湿度下的线性收缩应变,面积收缩应变(数字测量)和体积收缩应变(手动和数字测量)内容。;使用数字成像技术测得的收缩应变电位高于传统的手动测量。测量结果可重复且可靠,因为它们可解释土壤样品上不规则的开裂模式。在线性和体积收缩率测试的数字和手动测量之间建立了相关性,以用于将来的转换和表征。而且,由于存在蒙脱土粘土矿物,天然粘土比人工粘土显示出更高的收缩应变。对于所有土壤,包括在所有收缩应变范围内的水泥处理过的土壤,应变的数字测量均显示出与人工测量相比的显着差异。

著录项

  • 作者

    Katha, Balakrishna Rao.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Civil.; Geotechnology.
  • 学位 M.S.C.E.
  • 年度 2002
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;地质学;
  • 关键词

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