Research on Friction Characteristics of Roller-bushing Based on Material Experiment
YAO Sibo1,2, LUO Zhong1,2,3, ZHOU Shenghao1,2, XU Chunyang1,2,4, ZHANG Hongwei1,2, ZHAO Jiang1,2
1. School of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819; 2. Key Laboratory of Vibration and Control of Aero-Propulsion System of Ministry of Education, Northeastern University, Shenyang 110819; 3. Foshan Graduate School of Innovation, Northeastern University, Foshan 528312; 4. AECC Shenyang Engine Research Institute, Shenyang 110015
YAO Sibo, LUO Zhong, ZHOU Shenghao, XU Chunyang, ZHANG Hongwei, ZHAO Jiang. Research on Friction Characteristics of Roller-bushing Based on Material Experiment[J]. Journal of Mechanical Engineering, 2026, 62(5): 244-252.
[1] 王玉新. 喷气发动机轴对称推力矢量喷管[M]. 北京:国防工业出版社,2006. WANG Yuxin. Axial-symmetric vectoring exhaust nozzle for jet-thrust-aircraft[M]. Beijing:National Defense Industry Press,2006. [2] YAO S,LUO Z,SUN Y,et al. Analysis of Fluid- solid-thermal coupling characteristics of axial-symmetric vectoring exhaust nozzle[J]. Proceedings of the Institution of Mechanical Engineers,Part C:Journal of Mechanical Engineering Science,2022,236(17):9472-9484. [3] TENG X,LUO Z,YU X,et al. A wear simulation approach based on the energy consumption model and its application to the VSV bushing wear analysis[J]. Tribology International,2024,195(1):1-12. [4] ZHOU S,GAO H,XU C,et al. Kinematic modeling and stiffness analysis of a 3-DOF 3SPS+3PRS parallel manipulator[J]. Mathematics,2022,10(23):1-21. [5] GAO H,ZHAI J,ZHANG Ha,et al. Dynamic investigation of a spatial multi-body mechanism considering joint clearance and friction based on coordinate partitioning method[J]. Proceedings of the Institution of Mechanical Engineers,Part C:Journal of Mechanical Engineering Science,2021,235(24):7569-7587. [6] ZHANG H,MENG L,ZHANG Q,et al. Dynamic characteristic of thrust-vectoring nozzle adjusting mechanism considering clearance of motion joint[J]. Proceedings of the Institution of Mechanical Engineers,Part C:Journal of Mechanical Engineering Science,2023,237(15):3393-3405. [7] CHANG J,LUO Z,WEI K,et al. Investigation of spatial plane joint characteristic for dynamic analysis of VSV mechanism based on similarity scaling technique[J]. International Journal of Non-Linear Mechanics,2023,148(1):1-13. [8] CHANG J,LUO Z,WANG Y,et al. Characterization of joint contact model considering friction of variable stator vane mechanism and application to principle-level mechanism[J]. International Journal of Non-Linear Mechanics,2023,156(1):1-19. [9] CHANG J,LUO Z,ZHANG H,et al. A novel concept of components system stiffness and stiffness model application for VSV adjustment mechanism[J]. International Journal of Non-Linear Mechanics,2024,161(1):1-19. [10] ZHANG H,WU Q,HAO Z,et al. Analysis of the dynamic of vector nozzle adjustment mechanism considering the effect of joint clearance[J]. Journal of Vibration Engineering & Technologies,2024,12(1):6137-6154. [11] CHEN X,MU X. Theoretical and experimental studies on effect of impact load on dynamic characteristics of multi-link press mechanisms with clearances[J]. Nonlinear Dynamics,2024,112(1):81-100. [12] CHEN Y,WU X,WANG H,et al. Prediction of nonlinear vibration characteristics for high-speed and ultra-precision mechanism with clearance joints[J]. Journal of Sound and Vibration,2024,573(17):1-20. [13] WANG C,WANG K,LI Z,et al. Nonlinear dynamic of the rod-fastening combined rotor system with rub-impact based on the Stribeck friction model[J]. Applied Mathematical Modelling,2024,128(1):685-706. [14] ZHAO X,LI C,DU J,et al. A nonlinear model for dynamic performance analysis of gas foil bearing-rotor system considering frictional contacts[J]. Nonlinear Dynamics,2024,112(1):5975-5996. [15] KIM J,BAEK S,EPUREANU B I. Dynamic behavior analysis of systems with friction and hysteretic effects[J]. International Journal of Non-Linear Mechanics,2023,157(1):1-9. [16] MERTOL T,JOHN P D,LOÏC S. Forced vibration analysis of beams with frictional clamps[J]. Applied Mathematical Modelling,2024,128(1):450-469. [17] PAULO F,JORGE A,HAMID M L. Contact-impact events with friction in multibody dynamics:Back to basics[J]. Mechanism and Machine Theory,2023,184(1):1-35. [18] WOLLMANN T,NITSCHKE S, KLAUKE T,et al. Investigating the friction, wear and damage behaviour of plain bearing bushes of the variable stator vane system[J]. Tribology International,2022,165(1):1-6. [19] FLORES P. Contact mechanics for dynamical systems: a comprehensive review[J]. Multibody System Dynamics,2021,54(2):127-177. [20] SAFAEIFAR H,FARSHIDIANFAR A. A new model of the contact force for the collision between two solid bodies[J]. Multibody System Dynamics,2020,50(3):233-257. [21] 颜鸣皋. 中国航空材料手册[M]. 北京:中国标准出版社,2002. YAN Minggao. China Aviation materials handbook. Beijing:Standards Press of China,2002. [22] BLAU P J. A model for run-in and other transitions in sliding friction[J]. Journal of Tribology-Transactions of the ASME,1987,109(3):537-544. [23] LIJESH K P,KHONSARI M M,KAILA S S V. On the integrated degradation coefficient for adhesive wear:A thermodynamic approach[J]. Wear,2018,408-409(15):138-150. [24] CHRISTOPHE B. 湍流[M]. 北京:国防工业出版社,2018. CHRISTOPHE B. Turbulence[M]. Beijing:National Defense Industry Press,2018. [25] 钱宁,徐九华,傅玉灿,等. 面向绿色高效磨削的振荡热管砂轮磨削温度与强化传热分析[J]. 机械工程学报,2022,58(15):105-120. QIAN Ning,XU Jiuhua,FU Yucan,et al. Investigation on grinding temperature and heat transfer performance of oscillating grinding wheel for high-efficient green grinding[J]. Journal of Mechanical Engineering,2022,58(15):105-120. [26] 沈惠平,马履中,杨廷力. 基于混合链的弱耦合三维平移并联机构型综合[J]. 机械工程学报,2005,41(4):22-27. SHEN Huiping,MA Lüzhong,YANG Tingli. Kinematic structural synthesis of 3-translational weakly-coupled parallel mechanisms based on hybrid chains[J]. Journal of Mechanical Engineering,2005,41(4):22-27.