Periodicals with Social and Economic Benefits
Core Journals of China
China’s Core Scientific Journals
RCCSE Periodical
Chinese Applied Core Journals (CACJ)
Periodicals in WJCI Report
SU Yilin, JI Xiaogang, XIN Jiaming, NIU Guofa. Analysis of Compressive Stiffness Characteristics of Tubular Support Structures with Negative Poisson's Ratio[J]. China Mechanical Engineering, 2026, 37(3): 538-545.
ZHAO Guoqi, FAN Yichang, TANG Can, et al. Preparation and Compressive Properties of Cementitious Composites Reinforced by 3D Printed Cellular Structures with a Negative Poisson’s Ratio[J]. Developments in the Built Environment, 2024, 17: 100362.
[2]
LI Qinyu, AINSWORTH O, ALLEGRI G, et al. Assessing the Mechanical and Static Aeroelastic Performance of Cellular Kirigami Wingbox Designs[J]. Aerospace Science and Technology, 2023, 143: 108716.
[3]
WANNIARACHCHI C T, ARJUNAN A, BAROUTAJI A, et al. 3D Printed CoCrMo Personalised Load-bearing Meta-scaffold for Critical Size Tibial Reconstruction[J]. Annals of 3D Printed Medicine, 2024, 15: 100163.
[4]
KHALAJ R, TABRIZ A G, OKEREKE M I, et al. 3D Printing Advances in the Development of Stents[J]. International Journal of Pharmaceutics, 2021, 609: 121153.
[5]
JIANG Huan, ZIEGLER H, ZHANG Zhennan, et al. Bending Behavior of 3D Printed Mechanically Robust Tubular Lattice Metamaterials[J]. Additive Manufacturing, 2022, 50: 102565.
[6]
ZHANG Chong, XIAO Sihang, QIN Qinghua, et al. Tunable Compressive Properties of a Novel Auxetic Tubular Material with Low Stress Level[J]. Thin-Walled Structures, 2021, 164: 107882.
[7]
BONFANTI A, SYNGELLAKIS S, BHASKAR A. Structural Analysis of Cyclically Periodic Rings and Its Application to the Mechanics of Balloon Expandable Stents[J]. International Journal of Solids and Structures, 2020, 185/186: 46-56.
[8]
HAN Dong, ZHANG Yi, ZHANG Xiangyu, et al. Lightweight Auxetic Tubular Metamaterials: Design and Mechanical Characteristics[J]. Composite Structures, 2023, 311: 116849.
[9]
HEDAYATI R, YOUSEFI A, DEZAKI M L, et al. Analytical Relationships for 2D Re-entrant Auxetic Metamaterials: an Application to 3D Printing Flexible Implants[J]. Journal of the Mechanical Behavior of Biomedical Materials, 2023, 143: 105938.
[10]
RUAN Xiaoli, YUAN Weixing, HU Yiqun, et al. Chiral Constrained Stent: Effect of Structural Design on the Mechanical and Intravascular Stent Deployment Performances[J]. Mechanics of Materials, 2020, 148: 103509.
[11]
ABBASLOU M, HASHEMI R, ETEMADI E. Novel Hybrid 3D-printed Auxetic Vascular Stent Based on Re-entrant and Meta-trichiral Unit Cells: Finite Element Simulation with Experimental Verifications[J]. Materials Today Communications, 2023, 35: 105742.
WEI Yunbo, ZHAO Danyang, WANG Minjie, et al. Design and Mechanics Analysis of Biodegradable Polymer Vascular Stents with High Radial Supporting Property[J]. China Mechanical Engineering, 2020, 31(9): 1098-1107.
LI Hongxia, TAN Zhong, WANG Xiyang, et al. Mechanical Properties of Polymeric Vascular Stents Considering Size Effect[J]. Journal of Medical Biomechanics, 2023, 38(5): 946-952.
MA Xiangnan, HUANG Gengqiang, SUN Yifei, et al. In-plane Compression and Energy Absorption Performance of the Combined Honeycomb Structures[J]. Journal of Wuhan University of Technology, 2023, 45(12): 1-7.
LIU Qian, LEI Liping, ZENG Pan, et al. Numerical and Experimental Study of Radial Support Capacity of Intravascular Stent[J]. Chinese Journal of Medical Instrumentation, 2010, 34(3): 175-179.