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Microstructure and corrosion behavior of laser processed NiTi alloy.
Marattukalam, Jithin J; Singh, Amit Kumar; Datta, Susmit; Das, Mitun; Balla, Vamsi Krishna; Bontha, Srikanth; Kalpathy, Sreeram K.
Afiliação
  • Marattukalam JJ; Department of Metallurgical and Materials Engineering, National Institute of Technology Karnataka, Surathkal, Srinivasnagar P.O. 575 025, India.
  • Singh AK; Department of Metallurgical and Materials Engineering, National Institute of Technology Karnataka, Surathkal, Srinivasnagar P.O. 575 025, India.
  • Datta S; Bioceramics & Coating Division, CSIR-Central Glass and Ceramic Research Institute, 196 Raja S.C. Mullick Road, Kolkata 700 032, India.
  • Das M; Bioceramics & Coating Division, CSIR-Central Glass and Ceramic Research Institute, 196 Raja S.C. Mullick Road, Kolkata 700 032, India.
  • Balla VK; Bioceramics & Coating Division, CSIR-Central Glass and Ceramic Research Institute, 196 Raja S.C. Mullick Road, Kolkata 700 032, India. Electronic address: vamsiballa@cgcri.res.in.
  • Bontha S; Department of Mechanical Engineering, National Institute of Technology Karnataka, Surathkal, Srinivasnagar P.O. 575 025 India.
  • Kalpathy SK; Department of Metallurgical and Materials Engineering, National Institute of Technology Karnataka, Surathkal, Srinivasnagar P.O. 575 025, India. Electronic address: sreeram@nitk.edu.in.
Mater Sci Eng C Mater Biol Appl ; 57: 309-13, 2015 Dec 01.
Article em En | MEDLINE | ID: mdl-26354269
Laser Engineered Net Shaping (LENS™), a commercially available additive manufacturing technology, has been used to fabricate dense equiatomic NiTi alloy components. The primary aim of this work is to study the effect of laser power and scan speed on microstructure, phase constituents, hardness and corrosion behavior of laser processed NiTi alloy. The results showed retention of large amount of high-temperature austenite phase at room temperature due to high cooling rates associated with laser processing. The high amount of austenite in these samples increased the hardness. The grain size and corrosion resistance were found to increase with laser power. The surface energy of NiTi alloy, calculated using contact angles, decreased from 61 mN/m to 56 mN/m with increase in laser energy density from 20 J/mm(2) to 80 J/mm(2). The decrease in surface energy shifted the corrosion potentials to nobler direction and decreased the corrosion current. Under present experimental conditions the laser power found to have strong influence on microstructure, phase constituents and corrosion resistance of NiTi alloy.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Titânio / Ligas / Lasers / Níquel Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Titânio / Ligas / Lasers / Níquel Idioma: En Ano de publicação: 2015 Tipo de documento: Article