About: Anisotropy and Heterogeneity of High Cycle Fatigue Properties of AA6082 Extrusions and Die Forgings     Goto   Sponge   NotDistinct   Permalink

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  • The alloy AA6082 is at present extensively used in the automotive industry in the form of extrusions and forgings. Input products for die forgings are usually extruded sections and rods. The paper deals with the inhomogeneity and anisotropy of the fatigue properties of both extrusions and of a typical forging. All extrusions and forgings were in the T6 temper. A rectangular extrusion of size 107 x 16.7 mm2 was studied. The representative of typical die forgings for automotive industry investigated in this study was forged from the extruded rod of 40 mm in diameter. The results of high cycle fatigue tests of specimens taken from the rectangular extrusion in the longitudinal and transversal directions are reported. The inhomogeneity of the fatigue properties of forgings originates not only from the non-uniform deformation during the forging but also from the directional character of the structure of the extruded rod that was used as input material for forging.
  • The alloy AA6082 is at present extensively used in the automotive industry in the form of extrusions and forgings. Input products for die forgings are usually extruded sections and rods. The paper deals with the inhomogeneity and anisotropy of the fatigue properties of both extrusions and of a typical forging. All extrusions and forgings were in the T6 temper. A rectangular extrusion of size 107 x 16.7 mm2 was studied. The representative of typical die forgings for automotive industry investigated in this study was forged from the extruded rod of 40 mm in diameter. The results of high cycle fatigue tests of specimens taken from the rectangular extrusion in the longitudinal and transversal directions are reported. The inhomogeneity of the fatigue properties of forgings originates not only from the non-uniform deformation during the forging but also from the directional character of the structure of the extruded rod that was used as input material for forging. (en)
  • Slitina AA6082 je v současné době používána v automobilovém průmyslu. Jedná se především o výlisky a výkovky, přičemž výkovky jsou obvykle kovány z lisovaných tyčí. Příspěvek se zabývá nehomogenitou a anizotropií únavových vlastností výlisků a z nich kovaných výkovků. Všechny výrobky byly zkoušeny ve stavu tepelného zpracování T6. Byl hodnoceny výlisek průřezu 107 x 16,7 mm2 a výkovek kovaný z lisované tyče o průměru 40 mm. Jsou uvedeny výsledky vysokocyklové únavy výlisku v podélném a příčném směru. Nehomogenita únavových životů výkovků je ovlivněna nejenom složitým tokem materiálu při kování ale je ovlivněna i usměrněním struktury pocházející z použité lisované tyče. (cs)
Title
  • Anisotropy and Heterogeneity of High Cycle Fatigue Properties of AA6082 Extrusions and Die Forgings
  • Anisotropy and Heterogeneity of High Cycle Fatigue Properties of AA6082 Extrusions and Die Forgings (en)
  • Anizotropie a nehomogenita únavových vlastností výlisků a výkovků ze slitiny AA6082 (cs)
skos:prefLabel
  • Anisotropy and Heterogeneity of High Cycle Fatigue Properties of AA6082 Extrusions and Die Forgings
  • Anisotropy and Heterogeneity of High Cycle Fatigue Properties of AA6082 Extrusions and Die Forgings (en)
  • Anizotropie a nehomogenita únavových vlastností výlisků a výkovků ze slitiny AA6082 (cs)
skos:notation
  • RIV/25604716:_____/08:#0000048!RIV09-MSM-25604716
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  • P(1M0556)
http://linked.open...vai/riv/dodaniDat
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  • 356326
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  • RIV/25604716:_____/08:#0000048
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  • Anisotropy; Heterogeneity; Aluminium alloy; AA6082; Fatigue; Extrusions; Forgings (en)
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  • [143A1341BA85]
http://linked.open...v/mistoKonaniAkce
  • Aachen, Germany
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  • Weinheim, Germany
http://linked.open...i/riv/nazevZdroje
  • Aluminium Alloys, Their physical and mechanical properties
http://linked.open...in/vavai/riv/obor
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  • Jelínek, Miroslav
  • Sedláček, Petr
  • Očenášek, Vladivoj
  • Šperlink, Karel
http://linked.open...vavai/riv/typAkce
http://linked.open.../riv/zahajeniAkce
number of pages
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  • WILEY-VCH Verlag GmbH and Co. KGaA
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  • 978-3-527-32367-8
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