Sentence examples for simulation of strain from inspiring English sources

Exact(5)

This paper discusses three hybrid-displacement finite element formulations for the simulation of strain localization based on nonlocal damage theory.

Based on standard kineto-elastodynamic assumptions, the linkage dynamic model is simplified and simulation of strain rate feedback control using PZT sensors and actuators is performed.

Fig. 4 The TCAD simulation of strain distribution in the channel by a tensile ALD W using B2H6 and b tensile ALD W using SiH4 filled in the trench.

Based on the simulation of strain distribution induced by lithiation, the nanostructure has been designed for Sn-C electrodes of smaller Sn particles embedded in matrix with large elastic modulus and proper thickness to obtain optimized combination of capacity and cycleability.

With the increase of the pre-loading amount, the prediction accuracy of the identified fracture criterion deteriorates, which is probably caused by the adoption of invariant model parameters or the error of numerical simulation of strain hardening response based on the assumption of isotropic hardening.

Similar(55)

Mesh-free approximation is used in numerical simulations of strain localization under large deformation.

Simulations of strain distributions in the channel region of the devices with selectively grown Si0.65Ge0.35 on different S/D recess shapes were carried out and the results were used as feedback to find out a trade-off between maximum strain in the channel region of the transistors and low short channel effect.

Three of its principal features are critical in simulations of strain localization: rate-dependence of plastic flow stress; strain-induced structural rejuvenation, represented by increase of Tool's fictive temperature and leading to pronounced post-yield strain softening; and molecular alignment during extension, giving rise to strain-hardening.

Computational simulations for strain 201 predict a significant decrease in flux for biomass production upon transition from 26°C to 37°C, while simulations of strain KIM5 find the flux of biomass production at 37°C is nearly equal to that of 26°C (see Table 2).

We performed dynamic Monte Carlo simulations of strain-induced crystallization of homopolymer and random copolymers under cyclic loading of strains.

Absence of modeling and simulation of high strain rate properties of syntactic foams in the published literature is noted.

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