Investigation of the Material Elasto-Plastic Response under Contact Indentation: The Effect of Indenter Material

被引:0
作者
Tonazzi, Davide [1 ]
Piva, Francesco [1 ]
Mondelin, Alexandre [2 ]
Le Jeune, Gwenole [2 ]
Maheo, Yves [2 ]
Massi, Francesco [1 ]
机构
[1] Sapienza Univ Rome, Dept Mech & Aerosp Engn, I-00184 Rome, Italy
[2] SKF Aerosp France, F-26300 Chateauneuf Sur Isere, France
关键词
indentation; contact mechanics; elasto-plastic behaviour; material law; numerical model analysis; ROLLING-CONTACT; DAMAGE ANALYSIS; STRESS; MODEL; WEAR;
D O I
10.3390/lubricants11100438
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
When dealing with joints and bearings, high pressures localised at the contact interface lead to residual plastic strain. The present paper combines numerical simulations and experimental tests to investigate the role of the material constitutive law in the indentation process. Numerical indentation tests between similar materials showed a good agreement with the experiments when classical material laws recovered from tensile-compressive tests on bulk samples were accounted for. On the other hand, when simulating indentation between different materials in contact, the comparison between the numerical and experimental results highlighted the limits of using classical material laws. Bilinear material laws were then derived for different steel materials (ASP 2060 PM, 100Cr6, 440C, Marval X12, and Z15 CN17-03) in contact with a ceramic indenter, leading to the correct simulation of the residual indentation profiles (error less than 5%). The proposed approach to determine suitable material laws for indentation between dissimilar materials can be further applied when dealing with applications involving contacts undergoing local plastic deformation.
引用
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页数:15
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共 43 条
[1]   A 3D Finite Element Model of Rolling Contact Fatigue for Evolved Material Response and Residual Stress Estimation [J].
Abdullah, Muhammad U. ;
Khan, Zulfiqar A. ;
Kruhoeffer, Wolfram ;
Blass, Toni .
TRIBOLOGY LETTERS, 2020, 68 (04)
[2]   Modelling of elastoplastic, multi-scale and multi-contact problems: application to worm gears [J].
Albahrani, Sayed Mohamed Baqer ;
Alves, Joel Teixeira ;
Duval, Arnaud ;
Chaise, Thibaut ;
De Vaujany, Jean-Pierre ;
Guingand, Michele .
MECHANICS & INDUSTRY, 2022, 23
[3]   Dynamic Responses of the Planetary Gear Mechanism Considering Dynamic Wear Effects [J].
Bai, Zhengfeng ;
Ning, Zhiyuan .
LUBRICANTS, 2023, 11 (06)
[4]   A unified rheological model for cells and cellularised materials [J].
Bonfanti, A. ;
Fouchard, J. ;
Khalilgharibi, N. ;
Charras, G. ;
Kabla, A. .
ROYAL SOCIETY OPEN SCIENCE, 2020, 7 (01)
[5]   Elastic-plastic spherical contact under combined normal and tangential loading in full stick [J].
Brizmer, V. ;
Kligerman, Y. ;
Etsion, I. .
TRIBOLOGY LETTERS, 2007, 25 (01) :61-70
[6]   Roller bearing under high loaded oscillations: Life evolution and accommodation mechanisms [J].
Cavacece, F. ;
Frache, L. ;
Tonazzi, D. ;
Bouscharain, N. ;
Philippon, D. ;
Le Jeune, G. ;
Maheo, Y. ;
Massi, F. .
TRIBOLOGY INTERNATIONAL, 2020, 147
[7]   Contact Pressure and Residual Strain in 3D Elasto-Plastic Rolling Contact for a Circular or Elliptical Point Contact [J].
Chaise, Thibaut ;
Nelias, Daniel .
JOURNAL OF TRIBOLOGY-TRANSACTIONS OF THE ASME, 2011, 133 (04)
[8]   A finite element model to simulate the physical mechanisms of wear and crack initiation in wheel/rail contact [J].
Daves, W. ;
Kubin, W. ;
Scheriau, S. ;
Pletz, M. .
WEAR, 2016, 366 :78-83
[9]   An improved 2D fem model for straight track corrugation using the mass redistribution method [J].
Duan, Fangfang ;
Pozzolini, Cedric ;
Saulot, Aurelien ;
Berthier, Yves .
MECHANICS & INDUSTRY, 2017, 18 (03)
[10]   Analytical model for elasto-plastic indentation of a hemispherical surface inclusion [J].
Eumelen, G. J. A. M. ;
Suiker, A. S. J. ;
Bosco, E. ;
Fleck, N. A. .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2022, 224