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  4. Overview and Aspects of the European Technical Specification CEN/TS 19101:2022, "design of Fibre-Polymer Composite Structures"
 
review article

Overview and Aspects of the European Technical Specification CEN/TS 19101:2022, "design of Fibre-Polymer Composite Structures"

Correia, João R.
•
Ascione, Luigi
•
Keller, Thomas  
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December 19, 2024
Journal of Composites for Construction

In November 2022, the European Committee for Standardization (CEN) published the Technical Specification CEN/TS 19101:2022, "Design of Fibre-Polymer Composite Structures."These design provisions, which follow the philosophy and partial factor format of the Eurocodes, are a milestone toward the widespread application of composite materials in civil engineering structures. This paper presents an overview and highlights of CEN/TS 19101:2022. First, the paper provides a brief historical development of CEN/TS 19101:2022 and describes its scope and content. Next, the paper presents selected aspects of these new European design provisions, which required specific original contributions, describing the provided design guidance and explaining its rationale. In particular, the following aspects are highlighted: the basis of design and the definition of partial factors, the determination of material properties used in design verifications, the consideration of the effects of moisture and temperature, the consideration of the effects of creep and fatigue, and the design of adhesive connections and joints. The final part of the paper presents a few concluding remarks, including future developments planned by the Working Group 4 of CEN/TC250.

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Type
review article
DOI
10.1061/JCCOF2.CCENG-4833
Scopus ID

2-s2.0-85213361717

Author(s)
Correia, João R.
Ascione, Luigi
Keller, Thomas  

EPFL

Mottram, J. Toby
Sena-Cruz, José
Paulotto, Carlo
Knippers, Jan
Pacheco, João
Sørensen, John Dalsgaard
Garrido, Mário
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Date Issued

2024-12-19

Published in
Journal of Composites for Construction
Volume

29

Issue

2

Article Number

03124001

Subjects

Adhesive connections and joints

•

Basis of design

•

Creep

•

Fatigue

•

Fiber-polymer composite structures

•

Material properties

•

Moisture

•

Temperature

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CCLAB  
Available on Infoscience
January 13, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/242722
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