Paper Publications
- Li, Dahan,Wang, Songquan,Fang, Xingxing,Guo, Yongbo,Hu, Ningning,Zhang Dekun.Research progress of temperature field calculation of disc brake braking interface based on numerical analysis,2024,v 238,n 2-3,p320-333
- 杜乃洲,weixubing,Xiaowei Li,陈赞,卢诗琪,丁佳晴,fengcunao,CK,qiaojianghao,Zhang Dekun,Kwang-Ryeol Lee,张天财.Friction reactions induced by selective hydrogenation of textured surface under lubricant conditions,2024,卷: 12期: 1页: 174-184
- 岑佳佳,Zhang Dekun,陈琴,zhangxinyue,fengcunao,fenghaiyan,chenkai.滑液组分对“软—软”配副关节材料摩擦学行为的影响,2023,:,17
- 卢诗琪,杜乃洲,Xiaowei Li,weixubing,陈赞,丁佳晴,fengcunao,CK,qiaojianghao,Zhang Dekun,张伟.Exploring the role of surface hydrogenation in anti-friction of circular-textured amorphous carbon film from the atomic level and its dependence on textured shape,2023,卷: 43子辑: A
- 严小东,Yu Jia,Zhang, Yitong,Jia, Yuchen,chenkai,陈琴,zhangxinyue,fenghaiyan,fengcunao,Zhang Dekun.Construction and Properties of High-Toughness Soft-Soft Interfaces Based on the Adhesion of Natural Polyphenols,2023,v 39,n 46,p16261-16271
- 杜乃洲,Xiaowei Li,weixubing,陈赞,卢诗琪,丁佳晴,fengcunao,CK,qiaojianghao,Zhang Dekun,Kwang-Ryeol Lee.Atomistic Insights into Interfacial Optimization Mechanism for Achieving Ultralow-Friction Amorphous Carbon Films under Solid-Liquid Composite Conditions,2023,卷: 15期: 45页: 53122-53135
- 陈赞,杜乃洲,Xiaowei Li,weixubing,丁佳晴,卢诗琪,杜双江,fengcunao,chenkai,Zhang Dekun,Kwang-Ryeol Lee.Atomic-Scale Understanding on the Tribological Behavior of Amorphous Carbon Films under Different Contact Pressures and Surface Textured Shapes,2023,16(18)
- 王博,Dagang WANG,汤梁,种海浪,徐伟,张馨心,张春雷,谭佃龙,赵霞,Zhang Dekun,葛世荣.Bending tribo-corrosion-fatigue behaviors between cable wire and saddle material in the suspension bridge,2023,v187
- 杜乃洲,weixubing,Xiaowei Li,陈赞,卢诗琪,丁佳晴,fengcunao,CK,qiaojianghao,Zhang Dekun.Unraveling the friction response from selective hydrogenation of textured amorphous carbon surface,2023,v 614,
- 陈琴,张欣悦,chenkai,fengcunao,Dagang WANG,qijianwei,xiaoweili,Zhao, Xiaoduo,Chai, Zhimin,Zhang Dekun.Bilayer Hydrogels with Low Friction and High Load-Bearing Capacity by Mimicking the Oriented Hierarchical Structure of Cartilage,2022,v 14,n 46,p52347-52358
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