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2023-07-11 18:10| 来源: 网络整理| 查看: 265

1. Jian Cui, Hong Hao, Yanchao Shi, Xibing Li, Kun Du. Experimental study of concrete damage under high hydrostatic pressure. Cement and Concrete Research. 2017; 100: 140-152. 

2. Jian Cui, Hong Hao, Yanchao Shi. Discussion on the suitability of concrete constitutive models for high-rate response predictions of RC structures. International Journal of Impact Engineering. 2017; 106: 202-216. 

3. Jian Cui, Hong Hao, Yanchao Shi. Numerical study of the influences of pressure confinement on high-speed impact tests of dynamic material properties of concrete. Construction and Building Materials. 2018; 171: 839-849. 

4. Jian Cui, Hong Hao, Yanchao Shi. Study of concrete damage mechanism under hydrostatic pressure by numerical simulations. Construction and Building Materials. 2018; 160: 440-447. 

5. Jian Cui, Yanchao Shi, Zhong-Xian Li, Li Chen. Failure Analysis and Damage Assessment of RC Columns under Close-In Explosions. ASCE Journal of Performance of Constructed Facilities. 2015; 29: B4015003. 

6. Jian Cui, Hong Hao, Yanchao Shi, Xihong Zhang and Shi Huan. Volumetric properties of concrete under true tri-axial dynamic compressive loadings. ASCE Journal of Materials in Civil Engineering. 2019, 31(7): 04019126.

7. Yanchao Shi, Jing Wang, Jian Cui(通讯作者). Experimental studies on fragments of reinforced concrete slabs under close-in explosions. International Journal of Impact Engineering, 2020: 103630. 

8. Jian Cui, Yanchao Shi, Xihong Zhang, Weibo Huang, Mingliang Ma. Experimental study on the tension and puncture behavior of spray polyurea at high strain rates. Polymer Testing, 2020; 93: 106863.

9. Yanchao Shi,Ning Wang,Jian Cui(通讯作者), Changhui Li,Xuejie Zhang.Experimental and numerical investigation of charge shape effect on blast load induced by near-field explosions.Process Safety and Environmental Protection.2022;165:266-277.

10. Mei Li, Hong Hao, Jian Cui(通讯作者).Numerical investigation of the failure mechanism of concrete specimens under tri-axial dynamic loads.Engineering Fracture Mechanics.2022;266:108425.



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