Unknown

Dataset Information

0

Improvement of structural efficiency in metals by the control of topological arrangements in ultrafine and coarse grains.


ABSTRACT: Improvement of structural efficiency in various materials is critically important for sustainable society development and the efficient use of natural resources. Recently, a lot of attention in science and engineering has been attracted to heterogeneous-structure materials because of high structural efficiency. However, strategies for the efficient design of heterogenous structures are still in their infancy therefore demanding extensive exploration. In this work, two-dimensional finite-element models for pure nickel with bimodal distributions of grain sizes having 'harmonic' and 'random' spatial topological arrangements of coarse and ultrafine-grain areas are developed. The bimodal random-structure material shows heterogeneities in stress-strain distributions at all scale levels developing immediately upon loading, which leads to developing concentrations of strain and premature global plastic instability. The bimodal harmonic-structure material demonstrates strength and ductility significantly exceeding those in the bimodal random-structure as well as expectations from a rule of mixtures. The strain hardening rates also significantly exceed those in homogeneous materials while being primarily controlled by coarse-grain phase at the early, by ultrafine-grain at the later and by their compatible straining at the intermediate stages of loading. The study emphasises the importance of topological ultrafine-/coarse-grain distributions, and the continuity of the ultrafine-grain skeleton in particular.

SUBMITTER: Shokry A 

PROVIDER: S-EPMC8408239 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

altmetric image

Publications

Improvement of structural efficiency in metals by the control of topological arrangements in ultrafine and coarse grains.

Shokry Abdallah A   Ahadi Aylin A   Ståhle Per P   Orlov Dmytro D  

Scientific reports 20210831 1


Improvement of structural efficiency in various materials is critically important for sustainable society development and the efficient use of natural resources. Recently, a lot of attention in science and engineering has been attracted to heterogeneous-structure materials because of high structural efficiency. However, strategies for the efficient design of heterogenous structures are still in their infancy therefore demanding extensive exploration. In this work, two-dimensional finite-element  ...[more]

Similar Datasets

2008-05-01 | GSE7010 | GEO
| S-EPMC6707776 | biostudies-literature
2008-06-15 | E-GEOD-7010 | biostudies-arrayexpress
| S-EPMC8301741 | biostudies-literature
| S-EPMC5241691 | biostudies-literature