The low temperature yielding and flow of potassium and its alloys
โ Scribed by B.A Hands; H M. Rosenberg
- Publisher
- Elsevier Science
- Year
- 1969
- Weight
- 822 KB
- Volume
- 17
- Category
- Article
- ISSN
- 0001-6160
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โฆ Synopsis
The tensile deformation of a range of potassium-sodium and potassium-rubidium alloys has been examined at temperatures up to 77'K.
There is little difference in yield stress at 77ยฐK and 20.3'K, but below this latter temperature the yield stress increases nearly linearly with decrease in temperature. Extrapolation of the yield stress to 0ยฐK shows that up to 0.01 at.% sodium (and for 0.86 at.% rubidium) the yield stress decreases with decrease in purity. The work-hardening coefficient is strongly temperature dependent and the temperature dependence of the flow stress is large. It is suggested that in this region a Peierls force mechanism may be responsible for yielding.
Between 0.01 and 1 at.% sodium (and for 9 at.% rubidium) the deformation behaviour is nearly impurity independent. The workhardening rate and the flow stress both change comparatively slowly with temperature.
It is suggested that in this region, dislocation-dislocation interactions may control the yielding. Above 1 at. oh sodium, the yield stress increases strongly with both impurity and decrease in temperature.
The work-hardening rate is independent of both impurity and temperature.
It is possible that precipitation has occurred and that yielding is controlled by precipitation-dislocation interactions.
LIMITE
ELASTIQUE ET PLASTICITE DU POTASSIUM ET DE SES ALLIAGES AUS BASSES TEMPERATURES La deformation en traction d'une serie d'alliages potassium-sodium et potassium-rubidium a PtP etudiee en-dessous de 77ยฐK. De 77ยฐK it 20,3"K la limite Qlastique varie peu, mais au-dessous de cette derniere temperature, la limite elastique augmente a peu pres lineairement quand la temperature diminue. L'extrapolation a 0ยฐK de la limite Blastique montre que jusqu'a 0,Ol % at. de sodium (et 0,86 % at. de rubidium) la limite decroit quand la purete du potassium diminue. Le taux de consolidation depend fortement de la temperature, ainsi que la contrainte plastique. Les auteurs suggerent l'idee que dans cc cas la limite Blastique depend d'un mecanisme de Peierls. Entre 0,Ol et 1% at. de sodium (9 % at. de rubidium) le comportement a la deformation est presque independant de la concentration en impurete. Le taux de consolidation et la contrainte plastique varient comparativement lentement avec la temperature. Les auteurs suggerent l'idee que, dans ce domaine, les interactions dislocations-dislocation oon-trBlent la limite Blastique. Au-dessus de 1% at. de sodium, la limite Blastique augmente fortement it la fois aveo la concentration en impurete et avec la decroissance de la temperature. Le taux de consolidation est independant b la fois de la concentration en impurete et de la tempbrature. 11 est possible qu'une precipitation se soit produite et que la limite elastique soit contrblee par des interactions precipitation-dislocation.
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