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Author Renard, K.; Idrissi, H.; Schryvers, D.; Jacques, P.J. pdf  doi
openurl 
  Title Multiscale characterization of the work hardening mechanisms in Fe-Mn based TWIP steels Type A1 Journal article
  Year (down) 2012 Publication Steel research international Abbreviated Journal Steel Res Int  
  Volume 83 Issue 4 Pages 385-390  
  Keywords A1 Journal article; Engineering sciences. Technology; Electron microscopy for materials research (EMAT)  
  Abstract When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achieve very high strength and elongation before necking. The main hypotheses available in the literature about the origin of their excellent work hardening include deformation twinning and dynamic strain ageing. In order to provide some answers, various experiments at different scales were conducted on FeMnC steels and the Fe28 wt%Mn3.5 wt%Al2.8 wt%Si alloy. At a macroscopic scale, tensile tests were performed on all the studied grades. It was shown that, though the FeMnAlSi based alloy retains very high elongation, the FeMnC steels properties are even more extraordinary. Tensile tests at different strain rates with the help of digital image correlation were also performed on the Fe20 wt%Mn1.2 wt%C steel to study the PLC effect occurring in this type of steel. It is suggested that supplementary hardening could come from reorientation of MnC pairs in the cores of the dislocations. At a microscopic scale, the Fe20 wt%Mn1.2 wt%C TWIP steel and the FeMnAlSi grade were thoroughly investigated by means of in situ TEM analysis. In the FeMnC steel, the formed twins could also lead to a composite effect, since they contain plenty of sessile dislocations. In the FeMnAlSi alloy, mechanical twins are thicker and contain fewer defects, leading to a lower work hardening than the other grade.  
  Address  
  Corporate Author Thesis  
  Publisher Verlag Stahleisen Place of Publication Düsseldorf Editor  
  Language Wos 000302471600016 Publication Date 2012-02-22  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1611-3683; ISBN Additional Links UA library record; WoS full record; WoS citing articles  
  Impact Factor 1.235 Times cited 12 Open Access  
  Notes Approved Most recent IF: 1.235; 2012 IF: 0.493  
  Call Number UA @ lucian @ c:irua:97391 Serial 2239  
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Author Khalil-Allafi, J.; Amin-Ahmadi, B. pdf  doi
openurl 
  Title Effect of mold hardness on microstructure and contraction porosity in ductile cast iron Type A1 Journal article
  Year (down) 2011 Publication Journal of iron and steel research international Abbreviated Journal J Iron Steel Res Int  
  Volume 18 Issue 4 Pages 44-47  
  Keywords A1 Journal article; Electron microscopy for materials research (EMAT)  
  Abstract The effect of mold hardness on the microstructure of ductile iron and the contraction porosity was investigated. Molds with different hardnesses (0.41, 0.48, 0.55, 0.62 MPa) and a sand mold prepared by Co2 method were used. The influence of silicon content on the induced expansion pressure owing to the formation of graphite was also investigated. The contraction during solidification can be compensated by an induced expansion owing to the graphite relief when the hardness of mold increases; therefore, the possibility of achieving a sound product without using any riser increases.  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Wos Publication Date 2011-05-01  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1006-706X; ISBN Additional Links UA library record  
  Impact Factor 0.836 Times cited 1 Open Access  
  Notes Approved Most recent IF: 0.836; 2011 IF: 0.213  
  Call Number UA @ lucian @ c:irua:122044 Serial 823  
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Author Khalil-Allafi, J.; Amin-Ahmadi, B. pdf  doi
openurl 
  Title Influence of mold preheating and silicon content on microstructure and casting properties of ductile iron in permanent mold Type A1 Journal article
  Year (down) 2011 Publication Journal of iron and steel research international Abbreviated Journal J Iron Steel Res Int  
  Volume 18 Issue 3 Pages 34-39  
  Keywords A1 Journal article; Electron microscopy for materials research (EMAT)  
  Abstract The effects of the mold preheating and the silicon content of ductile iron on the percentage of carbides, graphite nodule counts and shrinkage volume were investigated. The results showed that the percentage of carbides and the shrinkage volume decreased when the mold preheating increased. The ductile iron with the carbon equivalent of 4.45% and the silicon content of 2.5% without any porosity defects was achieved when the mold preheating was 450 °C. Increasing the silicon content in the range of 2.1%3.3% led to the increase in graphite nodule count and graphite size and the decrease in percentage of carbides. It is due to the increase in induced expansion pressure during the graphite formation with the increasing of silicon content. The suitable condition for casting a sound product of ductile iron without the riser at the mold preheating temperature of 300 °C is the silicon content of 3.3% and carbon equivalent of 4.7%.  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Wos Publication Date 2011-03-28  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1006-706X; ISBN Additional Links UA library record  
  Impact Factor 0.836 Times cited 3 Open Access  
  Notes Approved Most recent IF: 0.836; 2011 IF: 0.213  
  Call Number UA @ lucian @ c:irua:122043 Serial 1629  
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Author Amin-Ahmadi, B.; Aashuri, H. doi  openurl
  Title Globular structure of M2 high speed steel by thermomechanical treatment in the semisolid state Type A1 Journal article
  Year (down) 2010 Publication Steel research international Abbreviated Journal Steel Res Int  
  Volume 81 Issue 5 Pages 381-386  
  Keywords A1 Journal article; Electron microscopy for materials research (EMAT)  
  Abstract The globular structure of M2 high speed steel in the rolled – annealed and as cast conditions was investigated in the semisolid state. Metallographic observations resulted in globular austenite particles that were surrounded by a liquid phase. Dissolution of various carbides in the austenite phase at semisolid temperatures led to grain boundary liquation and formation of near-spherical solid grains in a liquid matrix. Therefore, at the semisolid state, the solid particles were free from carbides. MC- type and M6C- type eutectic carbides re- precipitated at the grain boundaries during cooling of the samples from the semisolid temperature. The variation of shape factor versus holding time and holding temperature was examined. A transition value for shape factor changes in high speed steels was achieved. The growth rate constants of the Ostwald ripening and the coalescence mechanisms were calculated by using the experimentally determined rate constant. It was observed that less liquid droplets were enclosed inside the solid particles compared with non-ferrous alloys. Besides, it has been shown that at high solid fraction, the Ostwald ripening mechanism plays a prominent role in the coarsening phenomenon in comparison with the coalescence mechanism. Grains can rotate and arrange low misorientation with each other at high liquid contents, therefore low energetic grain boundaries form between these grains. These grain boundaries play an important role in the coalescence mechanism.  
  Address  
  Corporate Author Thesis  
  Publisher Verlag Stahleisen Place of Publication Düsseldorf Editor  
  Language Wos 000278292200007 Publication Date 2010-05-18  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1611-3683;1869-344X; ISBN Additional Links UA library record; WoS full record; WoS citing articles  
  Impact Factor 1.235 Times cited 1 Open Access  
  Notes Approved Most recent IF: 1.235; 2010 IF: 0.455  
  Call Number UA @ lucian @ c:irua:122047 Serial 1347  
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