代表性论文与论著 |
[1]Yang J, Guo H, Yang C, et al. Experimental investigation and evaluation of shear performance of hollow slab beams strengthened by cavity grouting method. Case Studies in Construction Materials, 2024: e03184. (SCI, Q1) [2]Yang J, Hou P, Yang C, et al. Investigation on the moving load identification for bridges based on long-gauge strain sensing and skew-Laplace fitting. Smart Materials and Structures, 2023, 32(8): 085026. (SCI, Q2) [3]Yang J, Yang C, Zhang Y, et al. Safety Monitoring and Effect Evaluation of Variable Cross-Section Continuous Box-Girder Bridges Strengthened with External Prestressing. Journal of Performance of Constructed Facilities, 2023, 37(2): 04022082. (SCI, Q2) [4]Yang J, Hou P, Pan Y, et al. Shear behaviors of hollow slab beam bridges strengthened with high-performance self-consolidating cementitious composites. Engineering Structures, 2021, 242: 112613. (SCI, Q1) [5]Yang J, Hou P, Yang C.Q., et al. Damage Identification Method of Box Girder Bridges Based on Distributed Long-Gauge Strain Influence Line under Moving Load. Sensors, 2021, 21(3): 915. (SCI, Q2) [6]Yang J, Yang C.Q., et al. Study of a long-gauge FBG strain sensors with enhanced sensitivity and its application in structural monitoring. Sensors, 2021, 21(10): 3492. (SCI, Q2) [7]Hou P, Yang J, Pan Y, et al. Experimental and simulation studies on the mechanical performance of concrete T-Girder bridge strengthened with K-Brace composite trusses. Structures, 2022, 43: 479-492. (SCI, Q2) [8]Guo H, Yang J*, Yang C, et al. Experimental and numerical studies on prestressed concrete box girders strengthened with PVA-ECC and external prestressing[J]. Case Studies in Construction Materials, 2024, 21: e03771. (SCI, Q1) [9]Guo H, Yang J*, Tang R, et al. Monitoring and Analysis of Prestress Loss in Prestressed Box Girder Bridges Strengthened with External Prestressing[J]. Sensors, 2024, 24(14): 4549. (SCI, Q2) [10]Hou P, Yang C, Yang J, et al. Study on the Strengthening of Prestressed Concrete Box-Girder Bridges Using Concrete-Filled Steel Tube Truss[J]. Journal of Bridge Engineering, 2024, 29(11): 05024005. (SCI, Q1) [11]Yang Y, Xu C, Yang J, et al. Experimental study on flexural behavior of precast hybrid UHPC-NSC beams. Journal of Building Engineering, 2023, 70: 106354. (SCI, Q1) [12]Hou P, Yang C, Yang J, et al. Fatigue Life of Composite Truss Used to Strengthen the Prestressed Concrete Box Girder Bridge: A Case Study[J]. Journal of Performance of Constructed Facilities, 2024, 38(5): 04024032. (SCI, Q2) [13]Hou P, Yang C, Yang J, et al. Investigation on mechanical performance of prestressed concrete box-girder bridge strengthened using composite trusses with different shapes. Structural Concrete, 2024. (SCI, Q2) [14]Hou P, Yang C, Yang J, et al. Study on the Mechanical Performance of the xiuzhen River Bridge Strengthened Using K-brace Composite Trusses[J]. KSCE Journal of Civil Engineering, 2024, 28(2): 860-872. (SCI, Q3) [15]张红雷, 潘 勇, 袁微微, 杨 景*, 杨才千.空腔填充法加固预应力空心板梁桥抗剪性能研究. 世界桥梁, 2022, 50(6): 109-115.
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