硕士生导师
[41]. 熊芹,史文,刘瑞娟,张亚丽,杨抒, 靳忠民. Zr-2.5Nb-HXLPE配副的髋关节磨损测试及磨屑特征分析,润滑与密封, 2024
[40]. Jianjun Zou, Xiaogang Zhang*, Yali Zhang, Zhongmin Jin. Prediction of medial knee contact force using multisource fusion recurrent neural network and transfer learning. Medical & Biological Engineering & Computing, 2024
[39]. Tao Feng#, Hao Tang#, Xiaogang Zhang*, Yali Zhang, Yixin Zhou*, Zhongmin Jin. A novel algorithm to efficiently calculate the impingement-free range of motion of irregularly-shaped total hip arthroplasty components. Journal of Orthopaedic Research. 2023; 41: 2516-2529.
[38]. 张祖佩, 张小刚, 张亚丽等. 基于拉普拉斯算子与统计形状模型的股骨三维重建方法. 生物医学工程学杂志, 2023, 40(06):1168-1174.
[37] Jian Pu,Yali Zhang*,Xiaogang Zhang,Xinlu Yuan, Shu Yang, Guoxian Zhang,Wen Cui,Tan Qin, Zhongmin Jin. Fretting corrosion behavior of Ti6Al4V alloy against zirconia-toughened alumina ceramic in simulated body fluid. Journal of the Mechanical Behavior of Biomedical Materials, 2023, 142: 105860.
[36] Qin Tan, Yali Zhang*, Xinle Li, Jian Pu, Shu Yang, Zhongmin Jin, Effect of synovial fluid constituent on the tribological behaviors of UHMWPE-CoCrMo alloy contact pair. Industrial Lubrication and Tribology, 2023, 75(3): 282-291.
[35] Weiping Lu, Wen Cui, Xiaogang Zhang*, Yali Zhang, Shu Yang, Jian Pu, Junyan Li and Zhongmin Jin. Friction and wear behaviors of HXLPE, PEEK and CoCrMo against articular cartilage under cross-shear motion. Proc IMechE Part J: J Engineering Tribology. 2023, 237(3): 552-561.
[34] Shu Yang, Jian Pu, Xiaogang Zhang*, Yali Zhang, Wen Cui, Fengbao Xie, Weiping Lu, Qin Tan, Zhongmin Jin. A preliminary experimental investigation on the biotribocorrosion of a metal-on-polyethylene hip prosthesis in a hip simulator. Friction. 2023, 11(6): 1094-1106.
[33] Guoxian Zhang, Shu Yang, Wen Cui, Zhi Huang, Xiaogang Zhang*, Yali Zhang, Junyan Li, Zhongmin Jin, Decomposition of micromotion at the head-neck interface in total hip arthroplasty during walking, Computer Methods in Biomechanics and Biomedical Engineering. 2023, 26(5): 548-558.
[32] Jianjun Zou, Xiaogang Zhang*, Yali Zhang, Junyan Li, Zhongmin Jin, Prediction on the medial knee contact force in patients with knee valgus using transfer learning approaches: Application to rehabilitation gaits, Computers in Biology and Medicine. 2022, 150: 106099.
[31] Wen Cui,Shu Yang,Xiaogang Zhang,Yali Zhang*,Yilun Shao,Xinle Li,Yanyan Bian,Xisheng Weng,Shixuan Xin,Zhongmin Jin. High Wear Resistance of Ultralow‑Wear Polyethylene with Different Molecular Weights Under Different Contact Pressure,Tribology Letters ,2022,70(2):51
[30] Zhi Huang, Yali Zhang, Xin Rong, Xiaogang Zhang*, Hao Liu, Zhongmin Jin. Investigation on the biomechanical behavior of the lower cervical spine induced by facet tropism with respect to the sagittal plane. Medical Engineering & Physics, 2022, 102:103779
[29] Zhang, Xiaogang, Yali Zhang, Junyan Li, and Zhongmin Jin*. Scientific Contributions of Duncan Dowson to Tribological Studies of Artificial Joints. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 2022, 236(8): 1554-1569.
[28] 史鸿星,张小刚*,张亚丽,崔文,张国贤,靳忠民.人工髋关节假体生物力学与生物摩擦学性能评价方法研究进展.摩擦学学报. 2023, 43(02): 123-142.
[27] 谭琴,张亚丽*,张小刚,靳忠民,滑液组分对人工关节摩擦学行为影响研究进展. 摩擦学学报,2023, 45(05): 581-596.
[26] 周维,张亚丽*,戎鑫,黄康康,张小刚,刘浩*,靳忠民,颈椎连续三节段 Hybrid 手术与融合术的生物力学研究. 医用生物力学,2022,37(6) : 45-51
[25] Xiaogang Zhang, Yali Zhang, Zhognmin Jin*, A review of the bio-tribology of medical devices. Friction, 2022, 10(1): 4-30.
[24] Jian Pu, Yali Zhang, Xiaogang Zhang*, Xinlu Yuan, Pingdi Ren, Zhongmin Jin, Mapping the fretting corrosion behaviors of 6082 aluminum alloy in 3.5% NaCl solution. Wear, 2021, 482: 203975
[23] Xing Peng, Qiyuan Huang, Yali Zhang, Xiaogang Zhang*, Tongtong Shen, Haoyu Shu, Zhongmin Jin*. Elastic response of anisotropic Gyroid cellular structures under compression: Parametric analysis. Materials & Design. 2021 205: 109706.
[22] Jian Pu, Dongsheng Wu, Yali Zhang*, Xiaogang Zhang, Zhongmin Jin*, An Experimental Study on the Fretting Corrosion Behaviours of Three Material Pairs at Modular Interfaces for Hip Joint Implants, Lubricants, 2021, 9(2): 12.
[21] 吴东升, 张亚丽*, 张小刚, 崔文, 张国贤, 陈瑱贤, 靳忠民, 人工髋关节组合界面微动腐蚀研究进展. 润滑与密封,2021, 46(02): 134-142.
[20] 邵一伦, 崔文, 张小刚*, 张亚丽, 靳忠民, 金属对聚乙烯型人工髋关节摩擦学性能研究进展. 润滑与密封,2021, 46(05):126-136.
[19] 杨抒, 崔文, 张小刚, 张亚丽*, 谢凤宝, 任旭辉, 陈瑱贤, 靳忠民, 国内全髋关节置换磨损测试及数值模拟研究进展. 摩擦学学报, 2021.
[18] 崔文, 杨抒, 张小刚*, 张亚丽, 张静, 张骁, 陈瑱贤, 靳忠民, 国内全膝关节置换磨损测试及数值模拟研究进展. 中华骨科, 2021, 41(7):459-470
[17] 游月婷, 黄刚, 张小刚, 张亚丽, 邓自刚, 屈树新, 靳忠民, 徐俊波*, 心力衰竭动物建模的进展. 心血管病学进展. 2021.42(12): 1105-1109.
[16] 黄刚, 邓晓奇, 张小刚, 张亚丽, 屈树新, 靳忠民, 徐俊波*, 德国永久性心脏辅助装置植入者紧急医疗处置共识. 心血管病学进展. 2020.41(12): 1353-1358.
[15] Yali Zhang*, Xiaogang Zhang, Zhongmin Jin, Deterministic investigation of the contact behavior of nominally curved rough surfaces. Industrial Lubrication and Tribology, 2020. 72(06): 743-748.
[14] Wen Cui#, Yanyan Bian#, Hongkai Zeng, Xiaogang Zhang, Yali Zhang*, Xisheng Weng, Sshixuan Xin, Zhongmin Jin, Structural and tribological characteristics of ultra-low-wear polyethylene as artificial joint materials. Journal of the Mechanical Behavior of Biomedical Materials, 2020. 104: 103629.
[13] Xiaogang Zhang, Yali Zhang*, Zhongmin Jin, A semi-analytical approach to the elastic loading behaviour of rough surfaces. Friction, 2019. 8(5): 970-981.
[12] 张亚丽, 王志强, 曾泓凯, 秦娜*, 薄膜在滑动接触临界条件下的应力分布及失效位置预测. 材料保护, 2019, 52(06): 27-34.
[11] 崔文, 张亚丽*, 王志强, 曾鸿凯, 吴东升, 靳忠民, 人工髋、膝关节磨损测试标准及模拟试验机研究进展. 摩擦学学报, 2019, 39(2): 248-258.
[10] 曾泓凯, 张亚丽*, 崔文, 王志强, 靳忠民, 用于全关节置换术的聚合物研究进展. 塑料工业, 2019, 47(06): 1-7+13.
[9] Xiaogang Zhang, Yali Zhang*, Numerical investigation of sliding friction behaviour and mechanism of engineering surfaces. Industrial Lubrication Tribology International, 2019. 71(2): 205-211.
[8] Xiaogang Zhang, Yali Zhang*, Jianmei Wang, Chenxing Sheng, Zhixiong Li*, Prediction of Sliding Friction Coefficient Based on a Novel Hybrid Molecular-Mechanical Model. Journal of nanoscience and nanotechnology, 2018. 18(8): 5551-5557.
[7] Yali Zhang*, Xiaogang Zhang, Tonghai Wu, Youbai Xie, Effects of surface texturing on the tribological behavior of piston rings under lubricated conditions. Industrial Lubrication and Tribology, 2016. 68(2): 158-169.
[6] Yali Zhang*, Xiaogang Zhang, George Matsoukas, Numerical study of surface texturing for improving tribological properties of ultra-high molecular weight polyethylene. Biosurface and Biotribology, 2015. 1(4): 270-277.
[5] Yali Zhang*, Zhongxiao Peng. A simulation model to study the potential use of micro- structured surfaces to improve the tribological properties of UHMWPE[C]. 8th Australasian Congress on Applied Mechanics, Melbourne, Australia, Nov23-28,2014.
[4] Yali Zhang*, Junhong Mao, Youbai Xie, Engine wear monitoring with OLVF. Tribology Transactions, 2011. 54(2): 201-207.
[3] Zhang YL, Wu TH, Wang JQ and Xie YB. Effects of Piston Ring Profiles on Lubrication by Theoretical Analyses[C]. International Tribology Conference, Hiroshima, Japan, Oct 30-Nov 3, 2011.
[2] Jingping Wu*, Yali Zhang, Zhongxiao Peng. The investigation of the wear behaviours of artificial joint at Aa macro and nano scale[C]. 8th Australasian Congress on Applied Mechanics, Melbourne, Australia, Nov23-28,2014.
[1] Tonghai Wu*, Junqun Wang, Yeping Peng, Yali Zhang, Description of wear debris from on-line ferrograph images by their statistical color. Tribology Transactions, 2012. 55(5): 606-614.
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