This work is devoted to the refinement of the previously developed numerical models of the frictional contact of composites based on iron oxide. The most important point is taking into account the plastic properties of iron oxide, which were determined from the experimental data on its constrained compression from the literature. To adjust them, we simulated the penetration of a Vickers indenter into an iron oxide specimen and compared the obtained load-displacement curve with the experimental data from other experiments. The second refinement of the proposed model consists of using the full three-dimensional geometry instead of the plane stress approximation. Periodic boundary conditions are still used in the sliding direction; however, the three-dimensionality of the problem makes it possible to more accurately take into account the size of inclusions and the formed dynamic inhomogeneities in the friction layer. The third refinement of the model is taking into account the heat release during friction due to plastic deformation, as well as the effects of thermal expansion and thermal conductivity.
Skip Nav Destination
,
Article navigation
14 December 2020
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY
5–9 October 2020
Tomsk, Russia
Research Article|
December 14 2020
Refinement of the model for iron oxide friction based on movable cellular automata Available to Purchase
A. Yu. Smolin;
A. Yu. Smolin
a)
Institute of Strength Physics and Materials Science SB RAS
, Tomsk, 634055 Russia
a)Corresponding author: [email protected]
Search for other works by this author on:
G. M. Eremina
G. M. Eremina
b)
Institute of Strength Physics and Materials Science SB RAS
, Tomsk, 634055 Russia
Search for other works by this author on:
A. Yu. Smolin
a)
G. M. Eremina
b)
Institute of Strength Physics and Materials Science SB RAS
, Tomsk, 634055 Russia
a)Corresponding author: [email protected]
AIP Conf. Proc. 2310, 020320 (2020)
Citation
A. Yu. Smolin, G. M. Eremina; Refinement of the model for iron oxide friction based on movable cellular automata. AIP Conf. Proc. 14 December 2020; 2310 (1): 020320. https://doi.org/10.1063/5.0034150
Download citation file:
Pay-Per-View Access
$40.00
Sign In
You could not be signed in. Please check your credentials and make sure you have an active account and try again.
34
Views
Citing articles via
The implementation of reflective assessment using Gibbs’ reflective cycle in assessing students’ writing skill
Lala Nurlatifah, Pupung Purnawarman, et al.
Effect of coupling agent type on the self-cleaning and anti-reflective behaviour of advance nanocoating for PV panels application
Taha Tareq Mohammed, Hadia Kadhim Judran, et al.
Classification data mining with Laplacian Smoothing on Naïve Bayes method
Ananda P. Noto, Dewi R. S. Saputro
Related Content
Effect of criteria for inter-particle bond breaking and formation on the friction layer structure modeled by movable cellular automata
AIP Conf. Proc. (April 2022)
Numerical simulation of friction of aluminum bronze samples obtained by additive deposition method
AIP Conf. Proc. (April 2022)
Effect of inclusion arrangement on strength of dual ceramics composites
AIP Conf. Proc. (April 2022)
Modelling elastic and plastic material properties with the movable cellular automata
AIP Conf. Proc. (October 2013)
Numerical Simulations of 3D Defects Growth in Ceramics Modelled with Movable Cellular Automata
AIP Conf. Proc. (September 2010)