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Dislocations in solids

A. S. Parasnis
- 01 Jul 1989 - 
- Vol. 45, Iss: 7, pp 499-500
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This article is published in Acta Crystallographica Section A.The article was published on 1989-07-01 and is currently open access. It has received 345 citations till now.

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Citations
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The conflicts between strength and toughness

TL;DR: This work focuses on the interplay between the mechanisms that individually contribute to strength and toughness, noting that these phenomena can originate from very different lengthscales in a material's structural architecture.
Journal ArticleDOI

Strong crystal size effect on deformation twinning

TL;DR: A ‘stimulated slip’ model is developed to explain the strong size dependence of deformation twinning in crystals, and the sample size in transition is relatively large and easily accessible in experiments, making the understanding of size dependence relevant for applications.
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Atomistic modeling of interfaces and their impact on microstructure and properties

TL;DR: An overview of the most recent developments in the area of atomistic modeling with emphasis on interfaces and their impact on microstructure and properties of materials is given in this paper, along with some challenges and future research directions in this field.
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A review on fundamental of high entropy alloys with promising high–temperature properties

TL;DR: In this paper, the microstructures of HESAs consisting of γ and γ′ phases are similar to that of Ni-base superalloys and refractory HEAs.
References
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Numerical implementation of a 3D continuum theory of dislocation dynamics and application to micro-bending

TL;DR: In this paper, the authors discuss the numerical implementation of a continuum theory of dislocation evolution that is based on this dislocation density measure and apply this to some simple benchmark problems as well as to plane-strain micro-bending.
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Atomic-scale plasticity in the presence of Frank loops

TL;DR: In this article, the different reactions between edge or screw dislocations and interstitial Frank loops were studied by means of molecular dynamics simulations using an embedded atom method (EAM) potential describing a model FCC material with low stacking fault energy.
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Role of interfaces in shock-induced plasticity in Cu/Nb nanolaminates

TL;DR: In this article, the deformation twins in the Cu layers preferentially nucleate from the Cu(112)/Nb(112)-interface habit planes rather than the predominant Cu(111)//Nb (110) interface planes.
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Reactions between a 1/2⟨111⟩ screw dislocation and ⟨100⟩ interstitial dislocation loops in alpha-iron modelled at atomic scale

TL;DR: In this article, a molecular dynamics study of interactions between a screw dislocation and loops in iron at temperature in the range 100 to 600 K was performed, and a variety of reaction mechanisms and outcomes were observed and classified in terms of the resulting dislocation configuration and the maximum stress required for the dislocation to break away.
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Liquids with conics

TL;DR: In this article, the authors review the development of focal conic domains over the last one hundred years, firstly emphasising its importance in the appearance and broadening of the concept of order and of its singularities in liquid crystals and beyond in condensed matter physics, through the renewed notions of dislocations, disclinations, grain boundaries, kinks, and focal cone domain imperfections.