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  • Materials characterized as TRIPLEX having decreased density are constituted on the following chemical composition usually: Fe-26/30Al-0.9/1.1C. Alloy microstructure is preferentially based on the FCC arrangement. Further, microstructure consists of nano-size carbides regularly dispersed in the FCC matrix and of low ferritic particle content (8% approximately). The strength level of this material is immediately connected with the solid solution strengthening forming the matrix basis. Besides this effect, it is useful to take into consideration process of its strengthening due to precipitated fine carbides (above mentioned nano-size k-carbides). The preferential effect of this material is connected with its high absorption capacity (double capacity in comparison with the conventional deep drawing steels applied in automotive industry). The formation of uniformly arranged shear bands (SIP effect) has very important influence on the realized deformation process of discussed material and the achieved ben
  • Materials characterized as TRIPLEX having decreased density are constituted on the following chemical composition usually: Fe-26/30Al-0.9/1.1C. Alloy microstructure is preferentially based on the FCC arrangement. Further, microstructure consists of nano-size carbides regularly dispersed in the FCC matrix and of low ferritic particle content (8% approximately). The strength level of this material is immediately connected with the solid solution strengthening forming the matrix basis. Besides this effect, it is useful to take into consideration process of its strengthening due to precipitated fine carbides (above mentioned nano-size k-carbides). The preferential effect of this material is connected with its high absorption capacity (double capacity in comparison with the conventional deep drawing steels applied in automotive industry). The formation of uniformly arranged shear bands (SIP effect) has very important influence on the realized deformation process of discussed material and the achieved ben (en)
  • Materiály charakterizované jako TRIPLEX mají sníženou hustotu a jsou konstituované na bázi Fe-26/Al-0,9/1,1C. Mikrostruktura slitiny má přednostní uspořádání FCC. Dále se skládá z k-karbidů o nano velikosi pravidelně uspořádaných v základní matrici a cca 8% feritických částic. pevnost je spojována se zpevněním tuhého roztoku tvořící základ matrice. Dále jsou v matirici detekovány k-karbidy o nanovelikosti. Efekt dané struktury spočívá ve vssoké absorpci pohlcení rázové energie (dvojnásobná ve srovnání s konvenčními materiály užívanými pro automobilový průmysl. Tvorba smykových pásů má velký význam na realizovaný deformační proces a příznivou tejcnickou odezvu. Je rovněž obvlivněn rovnoměrnou distribucí k- karbidů, které jsou koherentní s FFC matricí. Typickáje pro matirici pevnostní úroveň okolo 1000 MPa, pokles hustoty až o 10-12%, výborná tvařitelnost a vysoká odolnost proti dynamickému zatížení . Materiál lze pokládat za perspektivní zejména v automobilovém průmyslu. Dále nachází využití v kraogen (cs)
Title
  • Properties of high manganese Fe-Mn-C alloys
  • Properties of high manganese Fe-Mn-C alloys (en)
  • Vlastnosti vysokomanganových slitin Fe-Mn-Al-C (cs)
skos:prefLabel
  • Properties of high manganese Fe-Mn-C alloys
  • Properties of high manganese Fe-Mn-C alloys (en)
  • Vlastnosti vysokomanganových slitin Fe-Mn-Al-C (cs)
skos:notation
  • RIV/61989100:27360/07:00019945!RIV09-MSM-27360___
http://linked.open...avai/riv/aktivita
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  • Z(MSM6198910013)
http://linked.open...iv/cisloPeriodika
  • 1-4
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  • 445407
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  • RIV/61989100:27360/07:00019945
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  • high manganese alloy; nano-size k-carbides; shear bands; stacking fault energy (en)
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  • PL - Polská republika
http://linked.open...ontrolniKodProRIV
  • [8ABCA1081322]
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  • Archives of Materials Science and Engineering
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  • 28
http://linked.open...iv/tvurceVysledku
  • Jonšta, Zdeněk
  • Mazancová, Eva
  • Mazanec, Karel
http://linked.open...n/vavai/riv/zamer
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  • 1897-2764
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  • 27360
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