Sentence examples for materials under loading from inspiring English sources

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From the recent structured deformations theory and with respect to the irreversible thermodynamics framework, a micro-macro model for damaged materials under loading is developed.

Engineering concepts of stress, strain, shear, yielding and failure are introduced and through consideration of microstructural mechanisms, the behaviour of materials under loading is discussed.

Based on scale transition techniques, we aim to build the elasto-plastic behavior of composite materials under loading using two (2) incremental mean-field formulations.

This was most probably due to very small imposed damage and continuously increasing intrinsic electrical resistivity of individual carbon-based materials under loading, which cannot be discharged upon unloading.

In order to understand the nature of nonlinearity in the in-plane shear behaviour of fibre reinforce composites (FRC), experimental data of such materials under loading cycles, involving loading, unloading, reversed loading and unloading from reversed loading, are essential.

Similar(55)

Moreover, the strain softening behavior of the materials under loading-unloading was examined by employing a rubber-softening empirical model developed in previous works.

Farm trials aimed at finding the best materials are expensive but finite-element analysis, a computational method routinely used for engineering stress analysis, is now able to model the deformation of foam-like cubicle bedding materials under loads induced by a kneeling cow.

The permeability also contributes to the viscoelastic behavior of visco-porous material under loading through frictional drag mechanism.

A review of the technical literature reveals that several mechanical constitutive laws exist which allow determining a damage tensor for a damageable porous material under loading.

Experimental results have been obtained using a Rapoport Samoilenko-type appaRapoport Samoilenko-typel apparatusnd high temperatures as well as for electrolyzed material under loading.

Here, we use a multiscale computational framework to quantify the strain-dependent blueshift in the emission spectrum of CdTe QDs uniformly distributed in a matrix material under loading of a range of strain triaxiality.

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