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The contact behavior is studied using the finite element analysis.
Bridge and device interaction are studied using linear and non-linear contact behavior.
The differences in contact behavior were stable to anneal temperatures of ∼300 °C.
The patients with the Flex inserts achieved greater range of motion without different tibiofemoral contact behavior.
The model is simple, yet it successfully captures a fairly complicated contact behavior.
The contact behavior between sealing disc and girth weld was analyzed using finite element methods.
The divergences of contact behavior and the strong correlation for the eight contact models still exist.
The results show that the texture pattern and material combinations significantly affect the micro-EHL contact behavior.
Effect of large compression of carbon paper on contact behavior is furtherly given necessary attention in this study.
The cell assembly will affect the contact behavior of the bipolar plates with the membrane electrode assembly (MEA).
The effect of the above-mentioned geometric parameters on the contact behavior was studied by perturbing the finite element model.
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