As-Received Physical and Mechanical Properties of the Spar Cap of a GE37 Decommissioned Glass FRP Wind Turbine Blade

Author:

Alshannaq Ammar A.1ORCID,Respert John A.2,Bank Lawrence C.3ORCID,Scott David W.4,Gentry T. Russell5

Affiliation:

1. Graduate Student, School of Civil and Environmental Engineering, Georgia Institute of Technology, 790 Atlantic Dr., Atlanta, GA 30332 (corresponding author). ORCID: .

2. Undergraduate Student, School of Mechanical Engineering, Georgia Institute of Technology, 801 Ferst Dr., Atlanta, GA 30332.

3. Research Faculty, School of Architecture, Georgia Institute of Technology, 245 4th St. NW, Atlanta, GA 30332. ORCID: .

4. Professor and Chair, Dept. of Civil Engineering and Construction, Georgia Southern Univ., P.O. Box 8077, Statesboro, GA 30460.

5. Associate Professor, School of Architecture, Georgia Institute of Technology, 245 4th St. NW, Atlanta, GA 30332.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference38 articles.

1. The Role of Orientation and Temperature on the Mechanical Properties of a 20 Years Old Wind Turbine Blade GFR Composite

2. A decommissioned wind blade as a second-life construction material for a transmission pole;Alshannaq A. A.;Constr. Mater.,2021

3. Structural Analysis of a Wind Turbine Blade Repurposed as an Electrical Transmission Pole

4. Re-use of wind turbine blade for construction and infrastructure applications

5. Anmet/GP Renewables. 2021. “Anmet installs first recycled wind turbine blade-based pedestrian bridge.” Accessed November 17 2021. https://www.compositesworld.com/news/anmet-installs-first-recycled-wind-turbine-blade-based-pedestrian-bridge.

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