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Interlaboratory Test to Characterize the Cyclic Behavior of Bituminous Interlayers: An Overview of Testing Equipment and Protocols

Abstract

The performance assessment of multi-layered pavements strongly depends on the mechanical behavior of the interface between bituminous layers. So far, comprehensive studies have been carried out mainly using quasi-static laboratory tests focusing on the interlayer shear strength at failure. However, it is generally recognized that cyclic shear testing will lead to the determination of parameters which are more closely linked to the performance of pavements under traffic loading than the quasi-static shear tests. This paper outlines the research work that has been carried out within the Task Group 3 “Pavement multilayer system” of the RILEM TC 272-PIM. The activities focused on cyclic shear testing of interfaces in bituminous pavements involve an interlaboratory test with nine participating laboratories. The interface behavior was investigated through both direct shear and torque tests on double-layered specimens extracted from lab compacted slabs prepared by one of the laboratories. The different testing equipment and protocols used by the participating laboratories are presented, highlighting the variety of geometries, loading modes, and testing parameters. © 2022, The Author(s), under exclusive license to Springer Nature Switzerland AG.

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Details

Category:
Monographic publication
Type:
rozdział, artykuł w książce - dziele zbiorowym /podręczniku w języku o zasięgu międzynarodowym
Language:
English
Publication year:
2022
Bibliographic description:
Jaskuła P., Ryś D., Canestrari F., Attia T., Di Benedetto H., Graziani A., Kim Y. R., Maliszewski M., Pais J. C., Petit C., Raab C., Ragni D., Sangiorgi C., Sauzéat C., Zofka A.: Interlaboratory Test to Characterize the Cyclic Behavior of Bituminous Interlayers: An Overview of Testing Equipment and Protocols// Proceedings of the RILEM International Symposium on Bituminous Materials/ : , 2023, s.29-36
DOI:
Digital Object Identifier (open in new tab) 10.1007/978-3-030-46455-4_4
Sources of funding:
  • Free publication
Verified by:
Gdańsk University of Technology

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