Araştırma Makalesi

Tension Field Performance of GFRP Plate Shear Walls

Cilt: 18 Sayı: 2 30 Haziran 2021
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Tension Field Performance of GFRP Plate Shear Walls

Öz

Fiber Reinforced Polymer (FRP) composites are alternative to the conventional materials for many civil applications because of their prominent properties. The advanced production technology allows standardized quality structural FRP sections, which plays an important role in progress of structural engineering. Different fiber types can be rowed in these sections to improve the structural performance of these members. One of the most widely used FRP type is Glass Fiber Reinforced Polymers (GFRP) in the market for structural applications. The plate performance of GFRP plates as a lateral load resisting member within the moment frames was investigated in this study similar to the steel plate shear walls or timber shear walls. The post buckling performance of the GFRP plates including the experimental fracture values and different fiber orientations are studied. The tension field action is considered for the GFRP plates after the post buckling, and it was found that the gain for initial stiffness and story drifts is gradually reduces from flexible to rigid moment frames. The least lateral load capacity gain was about 16% when the fiber main direction is oriented 0o angle within the most rigid moment frame. As the fiber orientation aligned with the tension field angle, the load capacity and the initial stiffness increases. Finally, an analytical load capacity calculations are carried to verify the numerical results for the FRP plate shear walls employing the equivalent truss member approach, then plate thickness and panel aspect ratio effects are studied.

Anahtar Kelimeler

Destekleyen Kurum

Yok

Proje Numarası

Yok

Teşekkür

Donation of GFRP materials by Reinforced Plastics, Inc. and technical support of the Department of Civil and Environmental Engineering at Louisiana State University are acknowledged.

Kaynakça

  1. [1]. Frketic, J, Dickens, T, Ramakrishnan, S. 2017. Automated manufacturing and processing of fiber-reinforced polymer (FRP) composites: an additive review of contemporary and modern techniques for advanced materials manufacturing. Additive Manufacturing; 14: 69–86.
  2. [2]. Van Den Einde, L, Zhao, L, Seible, F. 2003. Use of FRP composites in civil structural applications. Construction and Building Materials; 17(6): 389–403.
  3. [3]. Sonnenschein, R, Gajdosova, K, Holly, I. 2016. FRP composites and their using in the construction of bridges. Procedia Engineering; 161: 477–482.
  4. [4]. Alshurafa, S, Alhayek, H, Polyzois, D. 2021. Static characteristics of multicells jointed FRP tower with mass on its top. Mechanics of Advanced Materials and Structures; 28(3): 229–236.
  5. [5]. Wang, Y, Chen, G, Wan, B, Han, B, Ran, J. 2021. Axial compressive behavior and confinement mechanism of circular FRP-steel tubed concrete stub columns. Composite Structures; 256: 113082.
  6. [6]. Salim, HA, Davalos, JE, Qiao, P, Kiger, SA. 1997. Analysis and design of fiber reinforced plastic composite deck-and-stringer bridges. Composite Structures; 38(1): 295–307.
  7. [7]. Cheng, L, Karbhari, VM. 2006. New bridge systems using FRP composites and concrete: a state-of-the-art review. Progress in Structural Engineering and Materials; 8(4): 143–154.
  8. [8]. Oludare, O, Elias, T. 2019. In-plane shear characterization of composite GFRP-foam sandwich panels. Journal of Composites for Construction; 23(5): 4019034.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Haziran 2021

Gönderilme Tarihi

27 Ekim 2021

Kabul Tarihi

1 Haziran 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 18 Sayı: 2

Kaynak Göster

APA
Ülger, T. (2021). Tension Field Performance of GFRP Plate Shear Walls. Celal Bayar University Journal of Science, 18(2), 149-160. https://doi.org/10.18466/cbayarfbe.1015437
AMA
1.Ülger T. Tension Field Performance of GFRP Plate Shear Walls. Celal Bayar University Journal of Science. 2021;18(2):149-160. doi:10.18466/cbayarfbe.1015437
Chicago
Ülger, Tuna. 2021. “Tension Field Performance of GFRP Plate Shear Walls”. Celal Bayar University Journal of Science 18 (2): 149-60. https://doi.org/10.18466/cbayarfbe.1015437.
EndNote
Ülger T (01 Haziran 2021) Tension Field Performance of GFRP Plate Shear Walls. Celal Bayar University Journal of Science 18 2 149–160.
IEEE
[1]T. Ülger, “Tension Field Performance of GFRP Plate Shear Walls”, Celal Bayar University Journal of Science, c. 18, sy 2, ss. 149–160, Haz. 2021, doi: 10.18466/cbayarfbe.1015437.
ISNAD
Ülger, Tuna. “Tension Field Performance of GFRP Plate Shear Walls”. Celal Bayar University Journal of Science 18/2 (01 Haziran 2021): 149-160. https://doi.org/10.18466/cbayarfbe.1015437.
JAMA
1.Ülger T. Tension Field Performance of GFRP Plate Shear Walls. Celal Bayar University Journal of Science. 2021;18:149–160.
MLA
Ülger, Tuna. “Tension Field Performance of GFRP Plate Shear Walls”. Celal Bayar University Journal of Science, c. 18, sy 2, Haziran 2021, ss. 149-60, doi:10.18466/cbayarfbe.1015437.
Vancouver
1.Tuna Ülger. Tension Field Performance of GFRP Plate Shear Walls. Celal Bayar University Journal of Science. 01 Haziran 2021;18(2):149-60. doi:10.18466/cbayarfbe.1015437