代表性研究成果
[1]Liu, T. Q., Feng, P.*, Tang, J., Liu, X. (2023). Pullwinding Technique for Realizing Hybrid Roving Architecture in Pultruded GFRP Composites. Composite Structures, 305, 116483.
[2]Zhang, D.,Liu, T. Q.*, Li, S., Luo, H., Ding, G., Su, Z., Xie, C., Zhang, S., Feng, P.* (2022). Three-dimensional laser scanning for large-scale as-built surveying of 2022 Beijing Winter Olympic Speed Skating Stadium: A case study. Journal of Building Engineering, 59, 105075.
[3]Zhang, J., Zhou, P., Guan, C.,Liu, T. Q.*, Kang, W. H., Feng, P., Gao, S. (2021). An ultra-lightweight CFRP beam-string structure. Composite Structures, 257, 113149.
[4]Liu, T. Q., Feng, P.*, Wu, Y., Liao, S., Meng, X. (2021). Developing an innovative curved-pultruded large-scale GFRP arch beam. Composite Structures, 256, 113111. (ESI-Top 1% Highly Cited Paper in 2021)
[5]Liu, T. Q., Feng, P.*, Lu, X., Yang, J. Q., Wu, Y. (2020). Flexural behavior of novel hybrid multicell GFRP-concrete beam. Composite Structures, 250, 112606.
[6]Yang, J. Q.,Liu, T. Q.*, Feng, P. (2020). Enhancing flange local buckling strength of pultruded GFRP open-section beams. Composite Structures, 244, 112313.
[7]Liu, T. Q., Liu, X., Feng, P.* (2020). A comprehensive review on mechanical properties of pultruded FRP composites subjected to long-term environmental effects. Composites Part B: Engineering, 191, 107958.
[8]Liu, T. Q.*, Vieira, J. D., Harries, K. A. (2020). Predicting flange local buckling capacity of pultruded GFRP I-sections subject to flexure. Journal of Composites for Construction, 24(4), 04020025.
[9]Liu, T. Q., Yang, J. Q., Feng, P., Harries, K. A.* (2020). Determining rotational stiffness of flange-web junction of pultruded GFRP I-sections. Composite Structures, 236, 111843.
[10]Liu, T. Q.*, Vieira, J. D., Harries, K. A. (2019). Lateral torsional buckling and section distortion of pultruded GFRP I-sections subject to flexure. Composite Structures, 225, 111151.