A novel nonlinear contact stiffness model of concrete–steel joint based on the fractal contact theory

被引:2
作者
Yongsheng Zhao
Hongchao Wu
Zhifeng Liu
Qiang Cheng
Congbin Yang
机构
[1] Beijing University of Technology,Key Laboratory of Advanced Manufacturing Technology
来源
Nonlinear Dynamics | 2018年 / 94卷
关键词
Steel–concrete joint; Fractal theory; Contact stiffness; Iteration model; Heavy-duty machine tool;
D O I
暂无
中图分类号
学科分类号
摘要
The heavy-duty machine tool is usually assumed in the concrete foundation, in which the machine tool-foundation joints have a critical effect on the working accuracy and life of heavy-duty machine tool. This paper proposed a novel contact stiffness model of concrete–steel joint based on the fractal theory. The topography of contact surface exist in concrete–steel joint has a fractal feature and can be described by fractal parameters. Asperities are considered as elastic, plastic deformation in micro-scale. However, the asperities of concrete surface will be crushed when the stress is larger than their yield limit. Then, the force balance of contact surfaces will be broken. Here, an iteration model is proposed to describe the contact state of concrete–steel joint. Because the contact asperities cover a very small proportion (less than 1%), the load on crushed asperities is assumed carried by other no contact asperities. This process will be repeated again and again until the crushed asperities are not being produced under external load. After that, the real contact area, contact stiffness of the concrete–steel joint can be calculated by integrating the asperities of contact surfaces. Nonlinear relationships between contact stiffness and load, fractal roughness parameter G, fractal dimension D can be revealed based on the presented model. An experimental setup with concrete–steel test-specimens is designed to validate the proposed model. Results indicate that the theoretical vibration mode shapes agree well with the experimental variation mode shapes. The errors between theoretical and experimental natural frequencies are less than 4.18%. The presented model can be used to predict the contact stiffness of concrete–steel joint, which will provide a theoretical basis for optimizing the connection characteristic of machine tool-concrete foundation.
引用
收藏
页码:151 / 164
页数:13
相关论文
共 50 条
[31]   Contact Model of Double Circular Arc Gear Based on Fractal Theory [J].
Huang Kang ;
Han Songbo ;
Yang Rongde ;
Xu Shun .
ADVANCES IN MECHATRONICS TECHNOLOGY, 2011, 43 :414-419
[32]   A Fractal Model for Lateral Contact of Joint Considering Contact Angle Distribution Between Asperities [J].
Wang S. ;
Liu X. ;
Fan L. ;
Cui S. ;
Li P. .
Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2023, 57 (12) :190-200
[33]   Investigation of Contact Stiffness Model for Joint Surfaces Based on Domain Expansion Factor and Asperity Interaction [J].
Wang R. ;
Zhu L. ;
Zhu C. .
Jixie Gongcheng Xuebao/Journal of Mechanical Engineering, 2018, 54 (19) :88-95
[34]   Research of Normal Contact Stiffness of Straddle-Type Monorail Tyres Based on Fractal Theory [J].
Du, Zixue ;
Zhou, Junchao ;
Wen, Xiaoxia .
MECHANIKA, 2019, 25 (03) :248-254
[35]   An improved meshing stiffness calculation algorithm for gear pair involving fractal contact stiffness based on dynamic contact force [J].
Yu, Xin ;
Sun, Yunyun ;
Li, Hongguang ;
Wu, Shijing .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2022, 94
[36]   A Leakage Model of Contact Mechanical Seals Based on the Fractal Theory of Porous Medium [J].
Ni, Xingya ;
Ma, Chenbo ;
Sun, Jianjun ;
Zhang, Yuyan ;
Yu, Qiuping .
COATINGS, 2021, 11 (01) :1-17
[37]   Contact Model of Sealing Surfaces for Flange and Metallic Gasket Based on Fractal Theory [J].
Feng, Xiu ;
Lu, Feng ;
Shen, Guoliang .
ADVANCED DESIGN TECHNOLOGY, PTS 1-3, 2011, 308-310 :1571-+
[38]   Normal dynamic contact stiffness and damping model of joint surfaces in mixed lubrication [J].
Li L. ;
Pei X.-Y. ;
Shi X.-H. ;
Cai A.-J. ;
Duan Z.-S. .
Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2021, 34 (02) :243-252
[39]   A Joint Surface Contact Stiffness Model Considering Micro-Asperity Interaction [J].
Xia, Tian ;
Qu, Jie ;
Liu, Yong .
AEROSPACE, 2024, 11 (06)
[40]   Research on fractal model of normal contact stiffness between two spheroidal joint surfaces considering friction factor [J].
Chen, Qi ;
Xu, Fan ;
Liu, Peng ;
Fan, Hao .
TRIBOLOGY INTERNATIONAL, 2016, 97 :253-264