Current - Issue
Original Article
Parametric and Taguchi-Based Optimization of Composite- Strengthened Steel Lattice Trusses for Lightweight Beam Applications
Aditya A. Pawar1
Manik G. Deshmukh2
1 2 Department of Civil Engineering, SVERI’s College of Engineering, Pandharpur, Maharashtra, India.
Published Online: May-June 2026
Pages: 299-308
Cite this article
↗ https://www.doi.org/10.59256/ijire.20260703031References
1. Ren, H., Fu, Z., Ji, B., & Zhang, Z. (2023). Evaluation of stability behavior of the steel truss-arch composite structure. Structures, 57,
105240.
2. Xu, K.-Y., Xu, D., Wang, X.-T., Wang, T., Yan, J., & Yan, J.-B. (2022). Seismic behaviors of steel truss-embedded steel-concrete
composite shear walls. Journal of Building Engineering, 49, 104112.
3. Moradnezhad, B., Oghabi, M., TahamouliRoudsari, M., & Movahednia, M. (2022). Practical truss-based approach for nonlinear
behavior of steel plate shear walls. Structures, 40, 370-385.
4. Zhou, X., Zhou, Z., Zhou, Q., Huang, W., & Guo, W. (2023). Hysteretic behavior of staggered truss framing systems. Journal of
Building Engineering, 72, 106696.
5. Harle, S. M. (2024). Durability and long-term performance of FRP composites: A review. Structures, 60, 105881.
6. Ravichandran, B., & Balasubramanian, M. (2024). Joining methods for FRP composites: A critical review. Composites Part A, 186,
108394.
7. Han, S., Xiao, G., Tan, W., Mai, P., Zhou, A., Yu, J., & Ou, J. (2025). Strength and ductility of hybrid steel-FRP reinforced columns.
Engineering Structures, 322, 119051.
8. Hou, P., Yang, J., Pan, Y., Ma, C., Du, W., Yang, C., & Zhang, Y. (2022). Mechanical performance of concrete T-girder bridge
strengthened with K-brace composite trusses. Structures, 43, 479-492.
9. Li, S., Chen, W., Hu, J., Zhao, B., Zhao, H., Chen, L., & Huang, X. (2023). Ultra-lightweight CFRP truss structures. Composite
Structures, 313, 116909.
10. Xie, S., Kan, Y., Li, Y., Li, Y., Jiang, S., & Song, M. (2024). Structural optimization using Taguchi experiment method. Ocean
Engineering, 306, 118074.
11. Bureau of Indian Standards. (2007). IS 800:2007, General construction in steel: Code of practice. New Delhi: BIS.
105240.
2. Xu, K.-Y., Xu, D., Wang, X.-T., Wang, T., Yan, J., & Yan, J.-B. (2022). Seismic behaviors of steel truss-embedded steel-concrete
composite shear walls. Journal of Building Engineering, 49, 104112.
3. Moradnezhad, B., Oghabi, M., TahamouliRoudsari, M., & Movahednia, M. (2022). Practical truss-based approach for nonlinear
behavior of steel plate shear walls. Structures, 40, 370-385.
4. Zhou, X., Zhou, Z., Zhou, Q., Huang, W., & Guo, W. (2023). Hysteretic behavior of staggered truss framing systems. Journal of
Building Engineering, 72, 106696.
5. Harle, S. M. (2024). Durability and long-term performance of FRP composites: A review. Structures, 60, 105881.
6. Ravichandran, B., & Balasubramanian, M. (2024). Joining methods for FRP composites: A critical review. Composites Part A, 186,
108394.
7. Han, S., Xiao, G., Tan, W., Mai, P., Zhou, A., Yu, J., & Ou, J. (2025). Strength and ductility of hybrid steel-FRP reinforced columns.
Engineering Structures, 322, 119051.
8. Hou, P., Yang, J., Pan, Y., Ma, C., Du, W., Yang, C., & Zhang, Y. (2022). Mechanical performance of concrete T-girder bridge
strengthened with K-brace composite trusses. Structures, 43, 479-492.
9. Li, S., Chen, W., Hu, J., Zhao, B., Zhao, H., Chen, L., & Huang, X. (2023). Ultra-lightweight CFRP truss structures. Composite
Structures, 313, 116909.
10. Xie, S., Kan, Y., Li, Y., Li, Y., Jiang, S., & Song, M. (2024). Structural optimization using Taguchi experiment method. Ocean
Engineering, 306, 118074.
11. Bureau of Indian Standards. (2007). IS 800:2007, General construction in steel: Code of practice. New Delhi: BIS.
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