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Recent theoretical and experimental investigations have shown that the mode II (shear mode) fracture toughness of brittle materials is strongly dependent on the loading conditions, the geometry and the size of components.
Although the model parameters are dependent on the loading conditions, the 2R PRBM is useful in increasing the modeling accuracy of the 1R PRBM and reducing the computation time of the 3R PRBM.
The materials can be subjected to many different loading scenarios, and the composite performance is dependent on the loading conditions.
This finding can be attributed to two major reasons: (a) the results of nano-indentation are dependent on the loading conditions, tending to increase from lower (2 mN) to higher loading conditions (100 mN), possibly attributed to the contribution of the native oxide film as the indentation depth is superficial, within a few hundreds of nanometer from the outer surface [8].
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Biaxial stress strain behaviors were shown to exhibit similar features to uniaxial behavior including linear elasticity followed by a highly non-linear transition to yield followed by post-yield strain hardening with highly non-linear unloading and reloading; these features were each quantitatively dependent on the biaxiality of the loading conditions.
It is shown that material's cyclic hardening/softening behavior in low cycle fatigue and in ratcheting is dependent not only on material but also on the loading condition.
These results highlight the sensitivity of the conformational behavior on the loading condition.
For the coefficient of contact friction, different values are proposed, dependent on the thermal loading condition of the pipeline.
When the phantom replacement method was used, the calculated concentrations were strongly dependent on coil loading conditions.
In contrast, the concentrations determined using the phantom replacement method are highly dependent on coil loading conditions.
These results, however, were highly dependent on the engine load conditions, with decreases rather than increases observed at higher loads.
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