张依睿

发布时间:2024-12-25访问次数:29

发表论文:

[1].    Zhang YR, Wei Y*, Bai JW, Wu G, Dong ZQ. A novel seawater and sea sand concrete filled FRP-carbon steel composite tube column: Concept and behaviour. Composite Structures. 2020;246:112421. (ESI高被引)

[2].    Zhang YR, Wei Y*, Miao KT, Li B. A novel seawater and sea sand concrete-filled FRP-carbon steel composite tube column: Cyclic axial compression behavior and modelling. Engineering Structures. 2021;251:113531. (SCI)

[3].     Zhang YR, Wei Y*, Bai JW, Zhang YX. Stress-strain model of an FRP-confined concrete filled steel tube under axial compression. Thin-Walled Structures. 2019;142:149-159. (SCI)

[4].    Zhang YR, Wei Y*, Zhao K, Ding MM, Wang LB. Analytical model of concrete-filled FRP-steel composite tube columns under cyclic axial compression. Soil Dynamics and Earthquake Engineering. 2020;139:106414. (SCI)

[5].    Zhang YR, Wei Y*, Miao KT, Li B. A novel seawater and sea sand concrete-filled FRP-carbon steel composite tube column: Seismic behavior and Finite-Element Analysis. Engineering Structures. 2022;270:114872. (SCI)

[6].    Zhang YR, Wei Y*, Wang GF, Zhao Z, Huang Z, Wei X. Hysteretic model of seawater and sea sand concrete-filled FRP- steel composite tube columns considering the confinement effectiveness. Soil Dynamics and Earthquake Engineering. 2024;177:108363. (SCI)

[7].    张依睿,魏洋*,柏佳文,端茂军,王立彬.纤维增强聚合物复合材料-钢复合圆管约束混凝土轴压性能预测模型.复合材料学报,2019,36(10):2478-2485. (领跑者5000——中国精品科技期刊顶尖论文)

[8].    Zhang YR, Ren C, Yi JY, et al. Axial compression performance of concrete-filled steel tubular columns with damaged BFRP jackets[J]. Construction and Building Materials, 2024, 442: 137640. (SCI)

[9].    Zhang YR, Wei Y, Jin H, et al. Behavior of underwater concrete columns confined by non-dispersive mortar and stainless steel tube subjected to core axial compression[J]. Structures, 2024, 68: 107193. (SCI)

[10].Jin H P, Wei Y*, Zhang YR*, Huang Z, Liu L. Compressive performance of underwater concrete columns strengthened by nondispersive mortar and stainless steel tubes columns. Case Studies in Construction Materials. 2023;19:e02220. (SCI)

[11].Wei Y*, Zhang YR, Chai JL, Wu G, Dong ZQ. Experimental investigation of rectangular concrete-filled fiber reinforced polymer (FRP)-steel composite tube columns for various corner radii. Composite Structures. 2020;244:112311. (SCI)

[12].Wei Y*, Bai JW, Zhang YR, Miao KT, Zheng KQ. Compressive performance of high-strength seawater and sea sand concrete-filled circular FRP-steel composite tube columns. Engineering Structures. 2021;240:112357. (ESI高被引)

[13].Li HC, Wei Y*, Zhang YR, Wang GF, Huang Z. Compressive behavior of BFRP-confined ceramsite concrete: An experimental study and stress-strain model. Reviews on Advanced Materials Science. 2023, 62: 20230153.

[14].Wang GF, Wei Y*, Zhang YR, Liu L, Lin Y. Experimental behavior of concrete-filled double-skin tubular columns with outer galvanized corrugated steel tubes under axial compression. Engineering Structures, 2023: 116856.SCI

[15].Wei Y*, Xu PF, Zhang YR, Wang GF, Zheng KQ. Compressive behaviour of FRP-steel wire mesh composite tubes filled with seawater and sea sand concrete. Construction and building materials. 2022, 314: 125608. (SCI)

[16].Huang Z, Wei Y, Zhang YR, et al. Flexural performance of FRP-SWSSC-steel composite beams: Experimental and analytical investigation[J]. Engineering Structures, 2024, 306: 117842. (SCI)

[17].Shao LF, Wei Y*, Wang GF, Zhang YR, Lin Y, Li GF. Axial compression performance of SWSSC-filled FRP-galvanized corrugated steel tubes. Journal of Constructional Steel Research, 2024, 215: 108558. (SCI)

[18].Zhao Z, Wei Y*, Wang GF, Zhang YR, Lin Y. Axial compression performance of circular UHPC-filled stainless-steel tubular columns. Engineering Structures, 2024, 302: 117430. (SCI)

[19].Hu JH, Wei Y, Yi JY, Zhang YR, Zhao K. Axial compression performance of underwater columns reinforced with stainless steel tube-FRP grids[J]. Journal of Constructional Steel Research, 2024, 218: 108721. (SCI)

[20].Liu J, Wei Y, Zhao Q, Zhang YR, Zheng KQ. Fatigue-induced fracture assessment for FRP-steel bonding joints after seawater exposure[J]. Structures, 2024, 68: 107209. (SCI)

[21].Zhao Z, Wei Y*, Wang GF, Zhang YR, Lin Y. Axial compression performance of square UHPC-filled stainless-steel tubular columns. Construction and Building Materials, 2023, 408: 133622. (SCI)

[22].Miao KT, Pan ZC*, Chen AR, Wei Y*, Zhang YR. Machine learning-based model for the ultimate strength of circular concrete-filled fiber-reinforced polymer–steel composite tube columns. Construction and Building Materials, 2023;394:132134. (SCI)

[23].Huang ZZheng KQ*Wei Y*Wang GFZhang YR. Axial compressive behaviour of SWSSC-filled stainless steel tube columns with in-built CFRP or stainless steel tubes. Journal of Building Engineering, 2023 (72):106543. (SCI)

[24].Wei BX, Wei Y*, Lin Y, Wang GF, Zhang YR. Compressive performance of bamboo scrimber and concrete-filled steel tube columns. Engineering Structures, 2023: 117192.SCI/EI收录)

[25].Li HC, Wei Y*, Hu YF, Zhao LL, Wang GF, Zhang YR. Experimental and theoretical analysis of FRP-confined square lightweight aggregate concrete columns under axial compression. Case Studies in Construction Materials. 2024;20(3):e02982. (SCI)

[26].魏洋*,柏佳文,张依睿,丁明珉,李国芬.矩形开槽钢管混凝土柱的受压承载性能[J].东南大学学报(自然科学版),2020,50(02):237-243. (EI)

[27].柏佳文魏洋*, 张依睿,缪坤廷,郑开启新型碳纤维增强复合材料-钢复合管海水海砂混凝土圆柱轴压试验复合材料学报, 2021, 38(9):3084-3093. (EI)

[28].柏佳文,魏洋*,张依睿,丁明珉,李国芬圆形减压钢管约束混凝土柱的轴压性能江苏大学学报(自然科学版), 2020, v.41;No.215(06):123-129. (中文核心)

[29].邵凌峰,魏洋,王高飞张依睿李国芬.FRP-镀锌波纹钢管海水海砂混凝土柱轴压性能[J/OL].复合材料学报,1-15.



授权专利

实用新型:

[1].    魏洋张依睿王立彬.(2018) 一种FRP螺旋筋增强不锈钢管海水海砂混凝土柱. CN207469599U.

[2].    魏洋张依睿端茂军. (2019). 一种增强桥梁横向联系结构. CN208701522U.

[3].    魏洋张依睿王立彬. (2018). 一种箱梁悬挑翼缘加固结构. CN207597275U.

[4].    魏洋柏佳文张依睿王立彬. (2018). 一种预应力抗剪加固箱梁的结构构造. CN208183560U.

[5].    王立彬李昊张依睿王鹏展魏洋. (2019). 一种竹质眼杆链. CN209114326U.

[6].    魏洋翟志欣张依睿张永兴吴刚. (2019). 一种预应力U型筋快速抗剪加固箱梁结构. CN208857719U.

[7].    魏洋柏佳文张依睿王立彬. (2018). 一种预应力抗剪加固箱梁的方法. CN108301335A.

[8].    王立彬李昊张依睿王鹏展魏洋. (2018). 一种采用正交胶合木制作的预应力板构件. CN208934217U.

[9].    魏洋朱超钱昊张依睿董峰辉李国芬一种套管钢筋混凝土-海水海砂混凝土叠合结构.

[10].  魏洋王志远吴刚张依睿. (2019). 一种竹木-不锈钢模板. CN208858144U.

  

发明专利:

[1].    魏洋;张依睿;端茂军.一种增强桥梁横向联系的加固方法.ZL 201711061902.6

[2].    魏洋;张依睿;王立彬.一种增强箱梁悬挑翼缘结构刚度的方法. ZL201711075036.6

[3].    魏洋;张希;张依睿.一种预测FRP-钢复合约束混凝土圆柱受压全曲线的方法.ZL 201711075040.2

[4].    魏洋;柏佳文;张依睿;王立彬.一种预应力抗剪加固箱梁的方法.ZL 201810328411.1

[5].    魏洋;翟志欣;张依睿;张永兴;吴刚.一种预应力U型筋快速抗剪加固箱梁结构及方法. ZL201811048002.2

[6].    王立彬;李昊;张依睿;王鹏展;魏洋.一种采用正交胶合木制作的预应力板构件制作方法. ZL201810977696.1.

[7].    魏洋;王志远;吴刚;张依睿.一种竹木-不锈钢复合模板及其制造方法, ZL2018109775564