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Modeling of complex modulus of bituminous mixtures measured in tension/compression to estimate secant modulus in indirect tensile test

机译:在拉伸/压缩下测量沥青混合物的复数模量,以估算间接拉伸试验中的割线模量

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摘要

For mechanistic based pavement design, it is necessary to know the stiffness of materials used for road construction. In the European standard EN 12697-26, several experimental tests are proposed to measure the modulus of bituminous mixtures. However, bituminous materials exhibit strong viscoelastic behavior. Hence, the stiffness of this specific material depends not only on the sample geometry but also on the loading law (strain or stress curve versus time). As a consequence, comparison between these different tests, performed in time or frequency domain, is not straight forward. The present paper focuses on measurement of secant modulus using the Indirect tensile (IT) test and comparison with complex modulus. In the IT test, the loading law is not systematically controlled. So, it is important to investigate the influence of the loading waveform on the test result. For this study, the case of a High Modulus Bituminous Mixture for base course (French EME) has been considered. Its viscoelastic behavior has been firstly determined using complex modulus measurements and using Prony series model. An intermediate step, based on an original master curve construction method is used. Doing so, the viscoelastic model is validated on the time domain by simulating direct tensile tests. The case of IT test is then considered. The Prony series model is conformed against IT test results for which the force waveform is known. For this last test, the dependance of the Poisson ratio with temperature and loading time is highlighted. Assuming a purely elastic behavior in isotropic compression, a formula, able to derive the viscoelastic Poisson ratio from the complex modulus is presented. Finally, a theoretical parametric study considering the IT loading waveform is undertaken. It appears that the correction factor given in the standard EN 12697-26 cannot be applied at all temperatures. Actually, this correction factor should be material dependent. This study has been carried out in the framework of collaboration between LCPC and USIRF (Union des Syndicats de 1'Industrie Routiere franchise).
机译:对于基于机械的路面设计,有必要了解用于道路施工的材料的刚度。在欧洲标准EN 12697-26中,提出了一些实验测试来测量沥青混合物的模量。但是,沥青材料表现出很强的粘弹性行为。因此,这种特定材料的刚度不仅取决于样品的几何形状,而且取决于载荷定律(应变或应力曲线与时间的关系)。结果,在时域或频域中进行的这些不同测试之间的比较不是直接的。本文着重于使用间接拉伸(IT)测试测量正割模量,并与复模量进行比较。在IT测试中,没有系统地控制加载规律。因此,研究负载波形对测试结果的影响很重要。对于本研究,已经考虑了用于基础课程的高模量沥青混合料(法语EME)的情况。首先使用复数模量测量和Prony级数模型确定了其粘弹性行为。使用基于原始主曲线构造方法的中间步骤。这样做,通过模拟直接拉伸试验,在时域上验证了粘弹性模型。然后考虑IT测试的情况。 Prony系列模型符合已知力波形的IT测试结果。在最后的测试中,突出了泊松比与温度和加载时间的关系。假设在各向同性压缩中具有纯弹性行为,则给出了一个公式,该公式能够从复数模量得出粘弹性泊松比。最后,进行了考虑IT负载波形的理论参数研究。看来标准EN 12697-26中给出的校正系数不能在所有温度下使用。实际上,此校正因子应与材料有关。这项研究是在LCPC和USIRF(工业联盟1专营权联盟)之间的合作框架内进行的。

著录项

  • 来源
    《Materials and structures》 |2011年第3期|p.641-657|共17页
  • 作者单位

    Laboratoire Central des Ponts et Chaussees, Route de Bouaye, BP 4129, 44341 Bouguenais Cedex, France;

    Laboratoire Central des Ponts et Chaussees, Route de Bouaye, BP 4129, 44341 Bouguenais Cedex, France;

    Laboratoire Central des Ponts et Chaussees, Route de Bouaye, BP 4129, 44341 Bouguenais Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    complex modulus; indirect tensile; poisson ratio; bituminous materials;

    机译:复数模量间接拉伸泊松比沥青材料;

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