Time distribution of stress drops, critical strain and crossover in the dynamics of jerky flow

2003 ◽  
Vol 356 (1-2) ◽  
pp. 102-107 ◽  
Author(s):  
K. Chihab ◽  
C. Fressengeas
Author(s):  
Rebecca N. Storer ◽  
Armand J. Beaudoin ◽  
Peter Kurath

In certain alloys non-homogeneous plastic flow is observed. A category of jerky flow, also called the Portevin-Le Chatelier (PLC) effect, is attributed to the competition between dislocation aging by solute atoms and plastic strain rate. In this study, the PLC effect was examined in an aluminum-magnesium alloy using digital image correlation (DIC) techniques. A cold rolling procedure was developed for Al5052-T0 specimens that resulted in repeatable jerky flow when tested in tension at nominal displacement rates that spanned three orders of magnitude. The tests were successful in producing repeatable propagating type bands of serrated flow, which resulted in serrations or stress drops on the stress versus time curve. Deforming specimens were photographed during testing, and the images were correlated using commercially available DIC software to determine local strains and local strain rates. The present study focuses upon type B, or hopping, bands. The DIC results revealed that the strain front moved along the length of the specimen and strains 1 to 2% higher were observed in the wake of the propagating bands. In addition, at least an order of magnitude increase in local strain rate corresponded to the band front as it moved through the specimen. At slower nominal displacement rates, the magnitude of the stress drops for type B bands was greater, but the number of stress drops was fewer for a given nominal displacement. The repeatability of this study shows that DIC provides an effective way to characterize this type of non-homogeneous or localized plastic flow.


2018 ◽  
Vol 157 ◽  
pp. 03019
Author(s):  
Ján Vavro ◽  
Ján Vavro ◽  
Petra Kováčiková ◽  
Juliána Vršková

This paper presents a kinematic and dynamic analysis and distribution of the stress for four-item planar mechanism by means of the SolidWorks software. Graphic dependence of kinematic and dynamic magnitudes of some points is given in dependence on the angle of rotation of the driving item and in dependence on the time. Distribution of the stress in the items is presented in [Pa]. In relation to the kinematic and dynamic analysis and subsequent simulation of the planar as well as spatial mechanisms, it is great solution to use SolidWorks software program. The considerable advantage of this mentioned program is based on its simplicity from the aspect of modeling and moreover, it is important to point out that utilisation of the mentioned program leads to results which are precise and accurate in the case of the numerical solution of the equations in the whole magnitude referring to motion of mechanism while the given results are obtained in the graphic form.


2018 ◽  
Vol 157 ◽  
pp. 03020
Author(s):  
Ján Vavro ◽  
Ján Vavro ◽  
Petra Kováčiková ◽  
Jakub Híreš

This paper presents a kinematic and dynamic analysis and distribution of the stress for six-item planar mechanism by means of the SolidWorks software. Graphic dependence of kinematic and dynamic magnitudes of some points is given in dependence on the angle of rotation of the driving item and in dependence on the time. Distribution of the stress in the items is presented in [Pa]. In relation to the kinematic and dynamic analysis and subsequent simulation of the planar as well as spatial mechanisms, it is great solution to use SolidWorks software program. The considerable advantage of this mentioned program is based on its simplicity from the aspect of modeling and moreover, it is important to point out that utilisation of the mentioned program leads to results which are precise and accurate in the case of the numerical solution of the equations in the whole magnitude referring to motion of mechanism while the given results are obtained in the graphic form.


2015 ◽  
Vol 631 ◽  
pp. 209-213 ◽  
Author(s):  
H. Ait-Amokhtar ◽  
C. Fressengeas ◽  
K. Bouabdallah

1994 ◽  
Vol 144 ◽  
pp. 275-277
Author(s):  
M. Karlický ◽  
J. C. Hénoux

AbstractUsing a new ID hybrid model of the electron bombardment in flare loops, we study not only the evolution of densities, plasma velocities and temperatures in the loop, but also the temporal and spatial evolution of hard X-ray emission. In the present paper a continuous bombardment by electrons isotropically accelerated at the top of flare loop with a power-law injection distribution function is considered. The computations include the effects of the return-current that reduces significantly the depth of the chromospheric layer which is evaporated. The present modelling is made with superthermal electron parameters corresponding to the classical resistivity regime for an input energy flux of superthermal electrons of 109erg cm−2s−1. It was found that due to the electron bombardment the two chromospheric evaporation waves are generated at both feet of the loop and they propagate up to the top, where they collide and cause temporary density and hard X-ray enhancements.


Crisis ◽  
2000 ◽  
Vol 21 (2) ◽  
pp. 95-97 ◽  
Author(s):  
Marco BL Rocchi ◽  
Chiara Perlini
Keyword(s):  

2010 ◽  
Author(s):  
Mario O. de Jonge ◽  
Diane Pecher ◽  
Jan W. Van Strien ◽  
Huib Tabbers ◽  
Rene Zeelenberg

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