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Collectively, the data reveal a complex history of isolation followed by secondary contact shaping the current intraspecific diversity.
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The relative trimming range and sensitivity are analyzed as a function of additional contact shape and cut length.
It was demonstrated that different optimal contact shapes are generated depending on objective functional and wear parameters.
The analysis and results presented can be used in design of optimal contact shapes assuring the steady wear regimes throughout the whole contact operation period.
In this paper, the examples are presented to demonstrate some new features of contact shape optimization in the presence of the multiple load cases.
An alternative method of analysis was proposed in previous papers [Páczelt I, Mróz Z. On optimal contact shapes generated by wear.
This paper aims at extending the evolutionary structural optimization (ESO) algorithm to optimal contact shape design for elastic bodies under the multiple load cases.
This is due to the vast range of parameters involved, including fibril size, elastic modulus, contact shape, surface roughness and ambient humidity.
Furthermore, the presence of a coating, as well as different density and/or contact shape, has proved to influence the final acoustical performances.
It should be mentioned that the contact shape can be corrected by adjusting the interpenetration function, cf. [22, 23], but no shape correction is applied in this study for simplicity.
In this paper, the optimal contact shape is studied by formulating several classes of shape optimization problems, namely minimization of generalized wear volume rate, friction dissipation power and wear dissipation rate occurring in two bodies.
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