Experimental investigation of long-term performance of fiber-reinforced epoxy and polyurethane polymer composites

被引:3
|
作者
Mourad, Abdel-Hamid I. [1 ,2 ]
Idrisi, Amir Hussain [3 ]
Zahoor, Asima [1 ]
Sherif, Muhammad M. [4 ]
Abdel-Magid, Beckry M. [5 ]
机构
[1] United Arab Emirates Univ, Dept Mech & Aerosp Engn, Al Ain 15551, U Arab Emirates
[2] United Arab Emirates Univ, Natl Water & Energy Ctr, Al Ain 15551, U Arab Emirates
[3] Michigan Technol Univ, Mech Engn Engn Mech, Houghton, MI 49931 USA
[4] Univ Alabama Birmingham, Sch Engn, Dept Civil Construct & Environm Engn, Birmingham, AL USA
[5] Winona State Univ, Dept Composite Mat Engn, Winona, MN 55987 USA
关键词
Glass fiber reinforced polymers; Long-term durability; Saline conditions; Mechanical properties; Microstructural analysis; BIBLIOMETRIC ANALYSIS; SEAWATER DURABILITY; CARBON-FIBER; GLASS; BEHAVIOR; CONCRETE; MOISTURE; RESIN; WATER;
D O I
10.1016/j.polymertesting.2024.108359
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The primary challenge encountered by polymers and their composites when exposed to saline water is their inadequate ability to withstand wear and tear over time. With a potential to replace conventional materials the long-term performance of FRP composites is still a novice area. This manuscript thus, reports an experimental investigation and prediction of the durability of fiber -reinforced polymer composites exposed to seawater at different temperatures. E-glass/epoxy and E-glass/polyurethane samples were exposed to 23(degrees)C , 45 C-degrees and 65(degrees)C seawater for up to 2700 days (90 months). Tensile tests evaluated the mechanical performance of the composite as a function of exposure time, and strength -based technique was used to assess the durability. The experimental results revealed that the tensile strength of E-glass/epoxy composite decreased by 6.3% and 48.9% after 90 months in seawater at 23 and 65(degrees)C , respectively, whereas it declined by 37.6% and 63.6% respectively for Eglass/Polyurethane composite. The prolonged immersion in seawater results in plasticization and swelling in the composite material, which accelerates the fiber/matrix debonding. SEM micrographs indicate fiber/matrix debonding, potholing, fiber pull-out, river line marks, and matrix cracking which showcases deterioration in the tensile properties of both composites.
引用
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页数:12
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