1、[1]. Wang Guosheng, Lu Dechun*, Du Xiuli*, Zhou Xin, Cao Shengtao. A true 3D frictional hardening
2、elastoplastic constitutive model of concrete based on a unified hardening/softening function[J]. Journal
3、of the Mechanics and Physics of Solids. 2018, 119: 250-273.
4、[2]. Wang Guosheng, Lu Dechun*, Li Meng, Zhou Xin, Wang Jinting, Du Xiuli. Static-dynamic combined
5、multiaxial strength criterion for concrete[J]. Journal of Engineering Mechanics. ASCE. 2021, 147(5):
6、04021017.
7、[3]. Wang Guosheng, Lu Dechun*, Zhou Xin, Wu Yufei, Du Xiuli, Xiao Yang. A stress-path-independent
8、damage variable for concrete under multiaxial stress conditions[J]. International Journal of Solids and
9、Structures. 2020, 206: 59-74.
10、[4]. Wang Guosheng, Zhang Xuepei, Lu Dechun*, Cai Tao, Ma Chao, Du Xiuli. Elastoplastic constitutive
11、model for concrete based on the cohesive-frictional deformation mechanism[J]. International Journal of
12、Solids and Structures, 2026, 336, 114037.
13、[5]. Wang Guosheng, Lu Dechun*, Du Xiuli, Zhou Xin. Dynamic multiaxial strength criterion for concrete
14、based on strain rate-dependent strength parameters[J]. Journal of Engineering Mechanics. ASCE. 2018,
15、144(5): 4018018.
16、[6]. Wang Guosheng, Xie Zengxun, Lu Dechun*, Song Zhiqiang, Du Xiuli. Fracture analysis for reinforced
17、concrete beams under impact using an enhanced interface viscoelasticity peridynamic impact-contact
18、algorithm[J]. International Journal of Impact Engineering. 2026, 208, 105545.
19、[7]. Wang Guosheng, Lu Dechun*, Ji Gangao, Liang Xuhua, Lin Qingtao, Lv Jirui, Du Xiuli. A lifecycle
20、carbon emission evaluation model for urban underground transportation infrastructure systems[J].
21、Underground Space. 2025, 24: 352-370.
22、[8]. Wang Guosheng, Lu Dechun*, Gao Yixin, Xie Zengxun, Du Xiuli. Viscoelastic peridynamic method for
23、the interface in the reinforced concrete[J]. Engineering Fracture Mechanics. 2025, 315, 110817.
24、[9]. Wang Guosheng, He Wenwen, Lu Dechun*, Song Zhiqiang, Du Xiuli. A peridynamic method for creep
25、and stress relaxation incorporating a novel fractional viscoelastic model[J]. Engineering Analysis with
26、Boundary Elements. 2025, 171, 106104.
27、[10].Wang Guosheng, Cai Tao, Lu Dechun*, Ma Chao, Meng Fanping, Du Xiuli. Experimental study on
28、cohesion-friction mechanical properties for concrete[J]. Construction and Building Materials. 2024, 449,
29、138421.
30、[11].Wang Guosheng, Li Zehua, Liang Jingyu*, Lu Dechun, Du Xiuli. A state-dependent non-orthogonal
31、elastoplastic constitutive model for sand[J]. Computers and Geotechnics. 2024, 166: 105960.
32、[12].Wang Guosheng, Lu Dechun, Ma Chao*, Shen Yimin, Du Xiuli. Computational modelling of concrete structures subjected to pre-static loading and subsequent impact dynamics[J]. Advances in Structural Engineering. 2025, 0: 0. https://doi.org/10.1177/13694332251391475
33、[13].Lu Dechun, Liang Xuhua, Wang Guosheng*, Meng Fanping, Song Mengyan, Liang Jingyu, Yao
34、Yangping. A thermo-mechanical fully coupled non-orthogonal elastoplastic constitutive model for
35、concrete[J]. Journal of Engineering Mechanics, ASCE. 2026, 152(12): 04026084.
36、[14].Xu Dongxu, Cui Jintao, Cheng Xinglei, Wang Guosheng*, Lu Dechun, Du Xiuli. Impact of marine water
37、environment on the seismic response of offshore wind turbines supported by the four-pile jacket in
112、computing[J]. Engineering Analysis with Boundary Elements. 2026, 189: 106814.
113、[46].Lu Dechun*, Wang Guosheng. Reply to the comments on “A nonlinear dynamic uniaxial strength
114、criterion that considers the ultimate dynamic strength of concrete by Lu Dechun, Guosheng Wang, Du
115、Xiuli, Yang Wang. Int J Impact Eng 103 (2017), 124-137” by Xu and Wen[J]. International Journal of
116、Impact Engineering. 2017, 109: 429-432.
117、[47].Yang Lei, Wang Guosheng, Zhao Gaofeng, Shen Luming*. A rate- and pressure-dependent damageplasticity constitutive model for rock[J]. International Journal of Rock Mechanics and Mining Sciences.