Microstructural characterization andd residual strain mapping of two ancient Japanese swords (Articolo in rivista)

Type
Label
  • Microstructural characterization andd residual strain mapping of two ancient Japanese swords (Articolo in rivista) (literal)
Anno
  • 2010-01-01T00:00:00+01:00 (literal)
Alternative label
  • F. Grazzi (1); L. Bartoli (2); F. Civita (3); A.M. Paradowska (4); A. Scherillo (1); M. Zoppi (1) (2010)
    Microstructural characterization andd residual strain mapping of two ancient Japanese swords
    in Notiziario Neutroni e Luce di Sincrotrone
    (literal)
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  • F. Grazzi (1); L. Bartoli (2); F. Civita (3); A.M. Paradowska (4); A. Scherillo (1); M. Zoppi (1) (literal)
Pagina inizio
  • 4 (literal)
Pagina fine
  • 10 (literal)
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  • http://www.fisica.uniroma2.it/~notiziario/2010/volume15n2.html (literal)
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  • 15 (literal)
Rivista
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  • CNR. (literal)
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  • 2 (literal)
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  • 1) CNR-ISC, Firenze 2) CNR-IFAC, Firenze 3) Stibbert Museum, Firenze, Italy 4) Science and Technology Facility Council ISIS Neutron Scattering Facility, United Kingdom (literal)
Titolo
  • Microstructural characterization andd residual strain mapping of two ancient Japanese swords (literal)
Abstract
  • Two Japanese long swords (katanas) belonging to the Koto Age (X-XVI century A.D.) were measured through time of flight neutron diffraction to analyze the phases, and the stress and strain distribution, in selected parts of the blades. The swords are representative of two different forging schools (Aoe and Kanesada) and one of the main aims of the measurements was to evidence possible similarities and differences. Two independent experiments were carried out at the ISIS pulsed neutron source using the INES and ENGIN-X diffractometers. The former was employed to map the average phase distribution on two selected cross sections, of each blade,distinguishing among the ridge, the core, and the edge of the blades. In this way, we were able to quantify the coarse distribution of the carbon content and, moreover, we could evidence the presence of martensite. These data were then complemented measuring detailed stress and strain distribution maps on ENGIN-X. As far as the ridge and the core are concerned, the tang data were taken as a reference. These measurements significantly improve the knowledge and understanding of the technology used to produce Japanese swords belonging to the Koto Age. (literal)
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