DOI

In order to verify influence of particle velocity non-uniformity on dynamic recrystallization (DRX), shock tests of D16 Al alloy were conducted under uniaxial strain conditions within strain-rate range of 105 ÷ 107 s-1. The particle velocity non-uniformity arises due to both initial heterogeneity and non-linearity of shock-wave process. Apart from the nature of DRX mechanism, migrational or rotational, the particle velocity non-uniformity facilitates growth of local strain, strain rate and temperature. To adjust a duration of the particle velocity non-uniformity degree, two limiting situations is provided by means of single and double shock loading (reloading). The experimental technique used allows to register both mean particle velocity profile and particle velocity variation which is the quantitative characteristic of velocity non-uniformity. Shock tests of D16 Al alloy in single and reloading regimes [1] show that dynamic recrystallization takes place only in the second case. The reloading regime initiates a ten-fold increase in duration of the particle velocity non-uniformity stage, which is sufficient for fulfillment of the well-known DRX conditions: γ ≥ 3, dγ/dt ≥ 104 s-1, T ≥ 0.4Tm. The regions of DRX with equal-axis grains of ~1 μm in diameter are revealed with the metallography and X-ray analysis.

Язык оригиналаанглийский
Название основной публикацииAluminium Alloys, ICAA 2014
РедакторыKnut Marthinsen, Bjørn Holmedal, Yanjun Li
ИздательTrans Tech Publications Ltd
Страницы755-760
Число страниц6
ISBN (печатное издание)9783038351207
DOI
СостояниеОпубликовано - 2014
Событие14th International Conference on Aluminium Alloys, ICAA 2014 - Trondheim, Норвегия
Продолжительность: 15 июн 201419 июн 2014

Серия публикаций

НазваниеMaterials Science Forum
Том794-796
ISSN (печатное издание)0255-5476
ISSN (электронное издание)1662-9752

конференция

конференция14th International Conference on Aluminium Alloys, ICAA 2014
Страна/TерриторияНорвегия
ГородTrondheim
Период15/06/1419/06/14

    Предметные области Scopus

  • Материаловедение (все)
  • Физика конденсатов
  • Сопротивление материалов
  • Общее машиностроение

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