Sentence examples for increase dislocation density from inspiring English sources

Exact(1)

Repeated γ-α-γ transformations slightly increase dislocation density achieved after the first cycle.

Similar(59)

Increasing dislocation density does not promote the development of carbides formation, while strain-induced martensite does.

This superior strength has been explained explicitly by accounting for the contributions from the increased dislocation density and the refined lath structure of V-added variant.

The dislocations subsequently form low-energy, stable structures as a means to accommodate the irreversible slip processes and increasing dislocation density during cyclic forward and reverse loading.

Synchrotron X-ray diffraction (XRD) line-profile analysis revealed a drastic increase in the dislocation density with an increase in hot-rolling reduction and proposed that the significant strengthening was primarily driven by the increased dislocation density, while the contributions of grain refinement were minor.

The increased dislocation density leads to the rise of the stress concentration at weak spots, which is believed to be the main reason for the fatigue failure.

Simultaneously, the contribution of the ε-Cu particles to the dispersion strengthening appeared to be decreased with increasing dislocation density in the matrix during cold rolling.

This has been rationalized on the basis of a scenario where an increasing dislocation density makes it more and more difficult for martensite to form.

The X-ray and EBSD correlation indicated that 〈a〉-type dislocations with considerable prismatic slip activity dominated plastic deformation in this alloy and that, with increasing dislocation density, the fractions of 〈a〉- and 〈c〉-type dislocations increased.

The dislocation densities in the WHZs are higher after creep than after squeeze casting, where the plastic strains associated with the thermal stresses that build up during solidification also result in an increased dislocation density close to fibers.

The reverse phase transformation during unloading was impeded by the combination of increased dislocation density in the austenite and the increased tensile strain in the martensite prior to unloading.

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