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      <dc:title>Fatigue performance improvement of electrical discharge machined hardmetals by means of combined thermal annealing and surface modification routes</dc:title>
      <dc:creator>Llanes Pitarch, Luis Miguel</dc:creator>
      <dc:creator>Casas Aguirregomezcorta, Begoña</dc:creator>
      <dc:creator>Salán Ballesteros, Maria Núria</dc:creator>
      <dc:creator>Mestra Rodríguez, Álvaro Miguel</dc:creator>
      <dc:creator>Torres Hernández, Yadir</dc:creator>
      <dc:subject>Àrees temàtiques de la UPC::Enginyeria dels materials::Assaig de materials::Assaig de fractura</dc:subject>
      <dc:subject>Àrees temàtiques de la UPC::Enginyeria mecànica</dc:subject>
      <dc:subject>Fracture mechanics</dc:subject>
      <dc:subject>Materials Fatigue</dc:subject>
      <dc:subject>Cemented carbides WC-Co</dc:subject>
      <dc:subject>Electrical discharge machining</dc:subject>
      <dc:subject>Fatigue strength</dc:subject>
      <dc:subject>Residual stresses</dc:subject>
      <dc:subject>Surface modification</dc:subject>
      <dc:subject>Assaigs de materials -- Propietats mecàniques</dc:subject>
      <dc:description>Electrical discharge machining (EDM) provides an effective means of shaping hardmetals. However, it is also&#xd;
known that surface integrity of these materials may be affected by EDM, degrading their tribomechanical&#xd;
characteristics. This work focuses on assessing the use of two different surface modification routes: thermomechanical&#xd;
treatments (shot blasting, polishing and final high temperature annealing) and/or physical vapor&#xd;
deposition of hard coatings, for improving the fracture and fatigue strength of an EDM-shaped fine-grained&#xd;
hardmetal grade. In doing so, an optimal EDM's surface finish variant and a diamond ground and polished&#xd;
one are used. Mechanical behavior is evaluated under four-point bending and fatigue characterization is&#xd;
given in terms of fatigue limit following the staircase method. Experimental results indicate that both approaches&#xd;
markedly decrease the lessening effect of EDM on the mechanical strength of hardmetals, although&#xd;
a complete fracture and fatigue strength retention is only achieved by combining both of them. The improved&#xd;
mechanical behavior is rationalized on the basis of the beneficial changes induced by surface modification on&#xd;
the effective residual stress field at the surface of EDM-shaped hardmetals, as assessed by a linear elastic fracture&#xd;
mechanics analysis combined with fractographic examination.</dc:description>
      <dc:description>Postprint (published version)</dc:description>
      <dc:date>2013-01</dc:date>
      <dc:type>Article</dc:type>
      <dc:rights>http://creativecommons.org/licenses/by-nc-nd/3.0/es/</dc:rights>
      <dc:rights>Restricted access - publisher's policy</dc:rights>
      <dc:rights>Attribution-NonCommercial-NoDerivs 3.0 Spain</dc:rights>
   </ow:Publication>
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