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Junrun Xia
Junrun Xia
University of South Austrlia
Verifisert e-postadresse på mymail.unisa.edu.au
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Experimental study on the ultimate bearing capacity of damaged RC arches strengthened with ultra-high performance concrete
J Yang, R Chen, Z Zhang, Y Zou, J Zhou, J Xia
Engineering Structures 279, 115611, 2023
812023
Experimental and numerical investigations on the mechanical behavior of reinforced concrete arches strengthened with UHPC subjected to asymmetric load
J Yang, J Xia, Z Zhang, Y Zou, Z Wang, J Zhou
Structures 39, 1158-1175, 2022
282022
Research on the bonding performance of UHPC–NC interfaces with different sizes of grooves
J Yang, J Xia, C Cheng, J Wang, J Zhang, G Wang
Frontiers in Materials 9, 859717, 2022
122022
Mesoscopic shear behavior and strength characteristic of UHPC-NC interface considering the combined effect of mechanical interlocking and dowel action
J Yang, J Xia, Z Zhang, J Zhou, Y Zou, Y Wang, X Shen
Engineering Fracture Mechanics 307, 110306, 2024
82024
Damage evolution and residual shear resistance of toughness-improved UHPC-NSC interface under high-stress level of fatigue shear loading
J Xia, J Zhou, J Yang, Z Zhang, Y Zou
Construction and Building Materials 430, 136403, 2024
52024
Evaluating the performance of masonry arch strengthened with UHPC at extrados and intrados by experimental, numerical and analytical approaches
J Xia, J Yang, Z Zhang, Y Zou, J Zhou, Z Wang, X Shen, Y Kuang
Structures 65, 106687, 2024
12024
Dic and Mesoscale Based Analyses on Damage Evolution in Uhpc-Nc Interface Under Direct Shear Loading
J Xia, J Yang, Z Zhang, Y Zou, R Chen, Z Jiang
Available at SSRN 4370405, 2023
12023
Evaluation of the Damaged Stone Arch Bridge Strengthened with Uhpc Based on Limit Analysis Method
J Yang, J Zhou, J Leng, J Xia, R Chen, Z Wang, Y Zou, Z Zhang
RILEM Spring Convention and Conference, 507-514, 2024
2024
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