3.8 Proceedings Paper

Mechanical Properties of FRP Materials at Elevated Temperature. Definition of a Temperature Conversion Factor for Design in Service Conditions

出版社

SPRINGER-VERLAG SINGAPORE PTE LTD
DOI: 10.1007/978-3-030-88166-5_209

关键词

FRP materials; Mechanical properties; Temperature; Design; Conversion factor

资金

  1. FCT [PTDC/ECI-EGC/30611/2017]
  2. ANI [EasyFloor 2014/38967]
  3. Fundação para a Ciência e a Tecnologia [PTDC/ECI-EGC/30611/2017] Funding Source: FCT

向作者/读者索取更多资源

One of the main concerns in civil engineering structural applications of fibre reinforced polymer (FRP) materials is their potential reduction in stiffness and strength when exposed to elevated temperature. This paper assesses existing design guidelines for FRP structures and surveys test data available in the literature to propose a method for defining temperature conversion factors for design purposes, taking into account factors such as maximum service temperature, glass transition temperature, and mechanical property type.
One of the main concerns about the use of fibre reinforced polymer (FRP) materials in civil engineering structural applications is the potential reduction of their stiffness- and strength-related properties when exposed to elevated temperature. The first part of this paper presents an assessment of existing design guidelines for FRP structures, regarding the recommendations they provide about the reduction of FRP mechanical properties at elevated temperature. The second part of this paper presents a survey of test data available in the literature concerning mechanical tests at elevated temperature in FRP materials produced with different fibres, resins, shapes and manufacturing methods. The results of the survey show that the provisions available in existing design guidelines are not always accurate; moreover, in some cases, they are even non-conservative. Based on this assessment, the third part of the paper presents a method to define a temperature conversion factor for design purposes, consistent with the partial factor method of the Eurocodes, which was calibrated with the results included in the database. The method proposed takes into account not only the maximum service temperature experienced by the FRP material, but also its glass transition temperature; the method considers also the type of mechanical property, namely if it is either fibre- or matrix-dominated. The conversion factors obtained applying the method proposed presented a good agreement with the test data available in the literature.

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