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- W2943922029 abstract "This study aims to introduce a new pipeline joining technique using fiber-reinforced (FRP) composites. To this end, a comprehensive experimental program has been carried out to evaluate the new technique. The experimental program consists of four phases. In phase 1, a fabrication process in which aluminum pipes were employed for both types of joining (i.e., welding and joining by FRP is presented and discussed. Two types of welding have been used to study their effect on the pipe’s mechanical behavior. These are V welding and standard faced butt-welding techniques. For FRP joining, there are three types of fibers used. These are Kevlar fiber/epoxy (KFRP), carbon fiber/epoxy (CFRP), and glass fibers/epoxy (GFRP). Effect of fiber orientation angles of the joining system under three-point bending has been taken place in phase 2. The results showed that 00/900 orientation recorded the highest flexural load. In phase 3, the evaluation of welding types and fiber types effects on the bending behavior of joined pipes have been carried out. For the impact of welding types, V-welded pipes showed higher mechanical performance than normal faced butt-welded pipes. In addition, CFRP and KFRP joining system showed a higher value of flexural load than welding techniques, while the GFRP showed similar flexural load to welding techniques. Phase 4 involves assessment of FRP hybridization systems on bending behavior of joined metallic pipes. The improvement in the mechanical performance of pipes joined with four layers of hybrid FRP were found to be insignificant compared to four layers of non-hybrid FRP type. However, increasing the number of hybrid FRP layers to eight resulted in significant improvement in flexural loads compared to four layers of single FRP type. The overall results revealed that using FRP composites in pipes joining showing a promising future for the pipeline." @default.
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- W2943922029 date "2019-11-01" @default.
- W2943922029 modified "2023-09-27" @default.
- W2943922029 title "New approach of pipelines joining using fiber reinforced plastics composites" @default.
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- W2943922029 doi "https://doi.org/10.1016/j.compstruct.2019.111341" @default.
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