Constitutive equation of friction based on the subloading-surface concept
Author(s) -
Koichi Hashiguchi,
Masami Ueno,
Takuya Kuwayama,
Noriyuki Suzuki,
Shigeru Yonemura,
Nobuo Yoshikawa
Publication year - 2016
Publication title -
proceedings of the royal society a mathematical physical and engineering sciences
Language(s) - English
Resource type - Journals
eISSN - 1471-2946
pISSN - 1364-5021
DOI - 10.1098/rspa.2016.0212
Subject(s) - static friction , viscoplasticity , materials science , sensitivity (control systems) , dynamical friction , constitutive equation , mechanics , kinetic energy , structural engineering , composite material , engineering , classical mechanics , finite element method , physics , electronic engineering
The subloading-friction model is capable of describing static friction, the smooth transition from static to kinetic friction and the recovery to static friction after sliding stops or sliding velocity decreases. This causes a negative rate sensitivity (i.e. a decrease in friction resistance with increasing sliding velocity). A generalized subloading-friction model is formulated in this article by incorporating the concept of overstress for viscoplastic sliding velocity into the subloading-friction model to describe not only negative rate sensitivity but also positive rate sensitivity (i.e. an increase in friction resistance with increasing sliding velocity) at a general sliding velocity ranging from quasi-static to impact sliding. The validity of the model is verified by numerical experiments and comparisons with test data obtained from friction tests using a lubricated steel specimen.
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