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Experimental study of pure bitumens in tension, compression, and shear

 

作者: C. Y. Cheung,   D. Cebon,  

 

期刊: Journal of Rheology  (AIP Available online 1997)
卷期: Volume 41, issue 1  

页码: 45-74

 

ISSN:0148-6055

 

年代: 1997

 

DOI:10.1122/1.550858

 

出版商: The Society of Rheology

 

关键词: Bitumens;Plasticity;Glass transition

 

数据来源: AIP

 

摘要:

Two nominally identical pure bitumens, commonly employed for pavement construction in the United Kingdom, were tested in uniaxial tension, compression, and shear, over a wide range of temperatures, stresses, and strain rates. The bitumens were found to exhibit linear viscous behavior at low stress levels, and power-law creeping behavior at higher stress levels. The temperature dependence was found to follow the Arrhenius relationship at temperatures immediately above the glass transition and the Williams, Landel, and Ferry (WLF) equation at higher temperatures. Below the glass transition temperature, the Eyring plasticity model was found to hold. Constitutive models that reflect the physical mechanisms of steady state and transient deformation are proposed. The fracture properties of the bitumens are also discussed.

 

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