能源与动力学院
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传真:
(1)振动与噪声控制;
(2)先进复合材料与结构力学;
(3)结构强度、疲劳、断裂与损伤力学。
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Mechanical properties prediction of 2.5D woven composites via voxel-mesh full-cell model. Fibers and Polymers. 2021, 22(7): 1899-1914.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song, Haolong Liu. Investigation of mechanical properties for 2.5D woven composites with different weft-layer-numbers by a triple-cell model system. Journal of Industrial Textiles. 2020, 51(3S) : 5243S-5285S.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Influence of notch shape on the quasi-static tensile behavior of 2.5D woven composite structure. Thin-Walled Structures.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Representative cell modeling strategy of 2.5D woven composites considering the randomness of weft cross-section for mechanical properties prediction. Engineering Fracture Mechanics.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Warp-loaded mechanical performance of 3D orthogonal layer-to-layer woven composite perforated structures with different apertures. Composite Structures. 2021, 278: 114720.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. A mesoscale fatigue progressive damage model for 3D woven composites. International Journal of Fatigue. 2021, 152: 106455.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Mechanical properties prediction of 2.5D woven composites via voxel-mesh full-cell model. Fibers and Polymers. 2021, 22(7): 1899-1914.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song, Haolong Liu. Investigation of mechanical properties for 2.5D woven composites with different weft-layer-numbers by a triple-cell model system. Journal of Industrial Textiles. 2020, 51(3S) : 5243S-5285S.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Influence of notch shape on the quasi-static tensile behavior of 2.5D woven composite structure. Thin-Walled Structures.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Representative cell modeling strategy of 2.5D woven composites considering the randomness of weft cross-section for mechanical properties prediction. Engineering Fracture Mechanics.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Warp-loaded mechanical performance of 3D orthogonal layer-to-layer woven composite perforated structures with different apertures. Composite Structures. 2021, 278: 114720.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. A mesoscale fatigue progressive damage model for 3D woven composites. International Journal of Fatigue. 2021, 152: 106455.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Mechanical properties prediction of 2.5D woven composites via voxel-mesh full-cell model. Fibers and Polymers. 2021, 22(7): 1899-1914.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song, Haolong Liu. Investigation of mechanical properties for 2.5D woven composites with different weft-layer-numbers by a triple-cell model system. Journal of Industrial Textiles. 2020, 51(3S) : 5243S-5285S.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Influence of notch shape on the quasi-static tensile behavior of 2.5D woven composite structure. Thin-Walled Structures.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui, Jian Song. Representative cell modeling strategy of 2.5D woven composites considering the randomness of weft cross-section for mechanical properties prediction. Engineering Fracture Mechanics.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. Warp-loaded mechanical performance of 3D orthogonal layer-to-layer woven composite perforated structures with different apertures. Composite Structures. 2021, 278: 114720.
Junhua Guo, Weidong Wen, Hongjian Zhang, Haitao Cui. A mesoscale fatigue progressive damage model for 3D woven composites. International Journal of Fatigue. 2021, 152: 106455.