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Potential applicability of stress wave velocity method on pavement base materials as a non-destructive testing technique.

机译:应力波速度法作为无损检测技术在路面基础材料上的潜在适用性。

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摘要

Aggregates derived from natural sources have been used traditionally as the pavement base materials. But in recent times, the extraction of these natural aggregates has become more labor intensive and costly due to resource depletion and environmental concerns. Thus, the uses of recycled aggregates as the supplementary of natural aggregates are increasing considerably in pavement construction. Use of recycled aggregates such as recycled crushed concrete (RCA) and recycled asphalt pavement (RAP) reduces the rate of natural resource depletion, construction debris and cost. Although recycled aggregates could be used as a viable alternative of conventional base materials, strength characteristics and product variability limit their utility to a great extent. Hence, their applicability is needed to be evaluated extensively based on strength, stiffness and cost factors. But for extensive evaluation, traditionally practiced test methods are proven to be unreasonable in terms of time, cost, reliability and applicability. On the other hand, rapid non-destructive methods have the potential to be less time consuming and inexpensive along with the low variability of test results; therefore improving the reliability of estimated performance of the pavement.;In this research work, the experimental program was designed to assess the potential application of stress wave velocity method as a non-destructive test in evaluating recycled base materials. Different combinations of cement treated recycled concrete aggregate (RAP) and recycled crushed concrete (RCA) were used to evaluate the applicability of stress wave velocity method. It was found that, stress wave velocity method is excellent in characterizing the strength and stiffness properties of cement treated base materials. Statistical models, based on P-wave velocity were derived for predicting the modulus of elasticity and compressive strength of different combinations of cement treated RAP, Grade-1 and Grade-2 materials. Two, three and four parameter modeling were also done for characterizing the resilient modulus response. It is anticipated that, derived correlations can be useful in estimating the strength and stiffness response of cement treated base materials with satisfactory level of confidence, if the P-wave velocity remains within the range of 500 ft/sec to 1500 ft/sec.
机译:传统上,将天然来源的骨料用作路面基础材料。但是近来,由于资源枯竭和环境问题,这些天然骨料的提取变得更加劳动密集且成本更高。因此,在路面施工中,将再生骨料用作天然骨料的补充已大大增加。使用再生骨料,例如再生碎混凝土(RCA)和再生沥青路面(RAP)可以减少自然资源的消耗速度,建筑垃圾和成本。尽管可以将回收的骨料用作常规基础材料的可行替代品,但强度特性和产品变异性在很大程度上限制了其用途。因此,需要根据强度,刚度和成本因素对它们的适用性进行广泛的评估。但是,为了进行广泛的评估,传统实践中的测试方法在时间,成本,可靠性和适用性方面被证明是不合理的。另一方面,快速的非破坏性方法具有耗时少,价格便宜以及测试结果变化少的潜力。在这项研究工作中,设计了该实验程序,以评估应力波速度法作为评估再生基础材料的无损检测的潜在应用。用水泥处理的再生混凝土骨料(RAP)和再生压碎混凝土(RCA)的不同组合来评估应力波速度法的适用性。已经发现,应力波速度法在表征水泥处理的基材的强度和刚度特性方面是极好的。得出了基于P波速度的统计模型,以预测水泥处理的RAP,1级和2级材料的不同组合的弹性模量和抗压强度。还进行了两个,三个和四个参数建模来表征弹性模量响应。可以预料,如果P波速度保持在500 ft / sec至1500 ft / sec的范围内,则导出的相关性可用于以令人满意的置信度评估水泥处理的基础材料的强度和刚度响应。

著录项

  • 作者

    Mahedi, Masrur.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Civil engineering.;Geophysical engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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