Contact Stiffness Model of Joint Surface Considering Continuous Smooth Characteristics and Asperity Interaction

被引:0
作者
Ling Li
Jingjing Wang
Xiaohui Shi
Shengli Ma
Anjiang Cai
机构
[1] Xi’an University of Architecture and Technology,School of Mechanical and Electrical Engineering
来源
Tribology Letters | 2021年 / 69卷
关键词
Joint surface; Contact stiffness; Hermite polynomial function; Asperity interaction;
D O I
暂无
中图分类号
学科分类号
摘要
A new model to accurately obtain the contact stiffness of the mechanical joint surface is established, which satisfies the continuous smooth contact characteristics of the asperity and also considers the influence of the asperity interaction. In order to satisfy the continuous and smooth contact characteristics of the asperity, the interpolation interval of the Hermite polynomial function is improved to make the asperity contact stiffness curve smoothly transition in the elastic, elastoplastic and completely plastic stages. Further, the contact situation of the joint surface considering the asperity interaction is explored through micro-contact analysis and mechanism research. Finally, using statistical principles, the microscopic contact model is extended to the entire joint surface, and the contact stiffness model of the joint surface is established. The simulation results show that the asperity stiffness model satisfies the continuous smooth contact characteristics. Surface roughness is the main factor that affects the contact stiffness, and the influence of the asperity interaction cannot be ignored.
引用
收藏
相关论文
共 86 条
[11]  
Afferrante L(2012)An analytical elastic-perfectly plastic contact model Int. J. Solids Struct. 49 3129-790
[12]  
Fu WP(2002)Elastic contact between randomly rough surfaces: comparison of theory with numerical results Phys. Rev. B 65 184106-83
[13]  
Huang YN(2003)Design consideration of contact/near-contact sliders based on a rough surface contact model J. Tribol. 125 562-749
[14]  
Zhang GP(2013)An improved model of asperity interaction in normal contact of rough surfaces J. Appl. Mech. 80 011025-319
[15]  
Liu P(2017)Statistical model of rough surface contact accounting for size-dependent plasticity and asperity interaction J. Mech. Phys. Solids 106 1-144
[16]  
Zhao H(2020)A modified elastic contact stiffness model considering the deformation of bulk substrate J. Mech. Sci. Technol. 34 777-1526
[17]  
Huang K(2020)Boundary element method for nonadhesive and adhesive contacts of a coated elastic half-space Proc. Inst. Mech. Eng. Part J. 234 73-74
[18]  
Chen Q(2020)A multi-scale FEM-BEM formulation for contact mechanics between rough surfaces Comput. Mech. 65 731-1448
[19]  
Chang WR(1966)Contact of nominally flat surfaces Proc R Soc Lond. Ser A 295 300-60
[20]  
Etsion I(2010)A modified fractal microcontact model developed for asperity heights with variable morphology parameters Wear 268 133-247