[1] WangZ.,Zhang Z., Dai G., et al.Seismic Displacement Analysis of Slope Reinforced by Frame Prestressed Anchor Rod Structure[J].Soil Dynamics and Earthquake Engineering, 2024, 181, 108666.(SCI收录) [2] Wang Z., Dai G., Li Z., et al. Research on H-3K Creep Coupling Calculation Model of Long-Term Prestress Loss of Anchor Cables[J]. International Journal of Geomechanics, 2024, 24(2): 04023282. (SCI收录) [3] Wang Z., Huang L., Dai G., et al. Experimental Study on Grouting Effect of Combined Post-Grouting Piles in Cohesive Soil[J]. Journal of Testing and Evaluation, 2024, 52(1): 330-343. (SCI收录) [4] 王正振,张振涛,戴国亮,等.基于拟动力法的框架预应力锚杆支护边坡的稳定性计算[J/OL].中国公路学报.https://link.cnki.net/urlid/61.1313.U.20240223.1114.006.(网络首发). [5] 王正振,戴康乐,苏天涛,等.大型沉井下沉过程拉应力影响因素分析[J].长安大学学报(自然科学版),2024,44(01):47-57. [6] 王正振,李明聪,张磊,等.花管土钉抗拔力学模型研究[J].地震工程学报,2023,45(03):681-688. [7] WangZ.,MaJ., ZhouY.Stability Analysis of Composite Soil Nailing Wall Based on Improved Energy Method[J].KSCE Journal of Civil Engineering, 2022: 1-8.(SCI收录) [8] Wang, Z., Kou, R. Zhou Y., Simplified Calculation Method for Seismic Active Earth Pressure of Translational Retaining Wall Considering Soil Arching Effect. Shock and Vibration, 2022,2022:1-11.(SCI收录) [9] Wang, Z., Gong, W., Dai, G., etal. Analysis of Bond Behavior of FRP-Confined Concrete Piles Based on Push-Out Test[J]. Advances in Materials Science and Engineering, 2020, 1-17.(SCI收录) [10] 王正振,龚维明,戴国亮,等.FRP管混凝土桩与钢管混凝土桩黏结性能对比分析[J].东南大学学报(自然科学版),2019,49(05):933-939.(EI收录) [11] 王正振,龚维明,戴国亮,等.考虑位移影响的土压力非线性计算[J].岩土工程学报,2019,41(s2):244-248.(EI收录) [12] 王正振,戴国亮,孙正华,等.装配式地下车站应用于内支撑支护结构的可行性分析[J].施工技术,2019,48(09):102-106. [13] 王正振,龚维明,戴国亮,等.厚垫层-砂桩复合地基现场试验研究[J].岩土力学,2018,39(10):3755-3762.(EI收录) [14] Wang, Z., Gong, W., Dai, G. The Application of Large-Scale Caisson in Anchorage Foundation for Suspension Bridge in China[J]. Springer SeriesinGeomechanics and Geoengineering, 2018,204379, 468-482.(EI收录) [15] 王正振,龚维明,戴国亮,等.冠梁标高对基坑周边环境的影响分析[J].岩土工程学报,2018,40(s1):205-211+64.(EI收录) [16] 王正振,龚维明,戴国亮.某南锚碇沉井基础数值模拟分析[J].南京工程学院学报(自然科学版),2017,15(1):16-22. [17] Su T., Zhou Y.;Wang Z.; et al. Influence of Construction Sequence on the Force Characteristics of Foundation Pit Support Structure[J].International Journal of Civil Engineering, 2023: 1-17.(SCI收录) [18] Su, T.; Zhou, Y.;Wang, Z.; Ye, S. Large Scale Model Test Study of Foundation Pit Supported by Pile Anchors[J]. Applied. Science. 2022, 12, 9792. (SCI收录) [19] 周钊,赵学亮,王正振,陶津.大型基坑群开挖对紧邻隧道的影响分析[C].2021年工业建筑学术交流会论文集(中册). 2021:311-318. [20] 周勇,王延凯,王正振,王宁.考虑局部超载下的桩锚支护结构变形分析[J].科学技术与工程,2021,21(14):5943-5950. [21] 周勇,王宁,王正振,王延凯.考虑时间影响的桩锚支护深基坑流固耦合分析[J].科学技术与工程,2021,21(13):5446-5452. [22] 郭洋洋,有智慧,王正振,等.明挖与盖挖结合法对地铁车站基坑支护结构变形影响研究[J].施工技术,2019,48(13):94-99. [23] 龚维明,王正振,戴国亮,等.长江大桥基础的应用与发展[J].桥梁建设,2019,49(06):13-23.(EI收录) [24] 周勇,王正振.土钉墙内部稳定性分析方法改进[J].岩土力学, 2016(s2):356-362.(EI收录) [25] 周勇,王正振.桩锚支护结构中两种管井降水方法的对比分析[J].betway必威学报, 2016, 42(4):115-120. 专利: [1] 王正振,张磊,苏天涛,赵天时,叶炜钠,陈旭伟.一种新型抗拔桩极限承载力的测试装置,2022.05,中国,专利授权号:ZL202122800133.5,实用新型专利. [2] 王正振,张磊,苏天涛.一种内含锥形钢丝网兜的碎石桩,2022.05,中国,专利授权号:ZL202122800114.2,实用新型专利. [3] 王正振,张磊,陈旭伟,苏天涛,叶炜钠,赵天时.一种桩底沉渣清理装置,2022.05,中国,专利授权号:ZL202122831661.7,实用新型专利. [4] 王金科,王正振,朱文涛,靳高明,苗春雨,孙洋,苏天涛,张鑫.一种混凝土浇筑隔断气囊装置,2024.04,中国,专利授权号:ZL 2023 2 2284870.3,实用新型专利. [5] 南作宾,靳高明,王正振,苏天涛,连娜,李明聪,章海刚,刘晓蕊.一种与轮扣式脚手架组合使用的斜撑构件,2022.08,中国,专利授权号:ZL2022 2 061773.3,实用新型专利. [6] 张恩祥,何腊平,龙照,王正振,苏天涛,赵天时.一种湿陷性黄土地区管道地基加固的新结构,2022.05,中国,专利授权号:ZL202123306915.X,实用新型专利. [7] 龚维明,王正振,戴国亮,刘晓光,赵欣欣,郭辉.测量沉井底部深层地基承载力的装置及其安装和测量方法,2021.06,中国,专利授权号:ZL201910279405.6,发明专利. [8] 竺明星,龚维明,张志彤,戴国亮,王博臣,王正振.顶推装置及其提升低承台水平承载性能的方法,2021.05,中国,专利授权号:ZL202010114538.0,发明专利. |