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Original Articles

Preparation of NixTiy compound via Ni plating followed by thermal treatment of Ti powder

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References

  • Amirjan, M., K. Zangeneh-Madar, and N. Parvin. 2010. Preparation of tungsten base composite powder by electroless nickel plating. Powder Metallurgy 53:218–22. doi:10.1179/003258908x347650.
  • Barbat, N., and K. Zangeneh-Madar. 2014. Preparation of Ti–Ni binary powder via electroless nickel plating of titanium powder. Powder Metallurgy 57:97–102. doi:10.1179/1743290113y.0000000070.
  • Bastin, G. F., and D. Rieck. 1974. Diffusion in the titanium-nickel system: Occurrence and growth of the various intermetallic compounds. Metallurgical Transaction 51:17–27.
  • Fadlallah, S., A. N. El-Bagoury, S. M. F. Gad El-Rab, R. A. Ahmed, and G. H. El-Ousamii. 2014. An overview of NiTi shape memory alloy: Corrosion resistance and antibacterial inhibition for dental application. Journal of Alloys and Compounds 583:455–64. doi:10.1016/j.jallcom.2013.08.029.
  • Fu, Y., and C. H. Shearwood. 2004. Characterization of nanocrystalline TiNi powder. Scripta Materialia 50:319–23. doi:10.1016/j.scriptamat.2003.10.018.
  • Green, S. M., D. M. Grant, and N. R. Kelly. 1997. Powder metallurgical processing of Ni-Ti shape memory alloy. Powder Metallurgy 40:43–47. doi:10.1179/pom.1997.40.1.43.
  • Gupta, R., and A. Gupta. 2001. Mechanical alloying of Fe–B powders. Materials Science and Engineering A 304–06:442–45. doi:10.1016/s0921-5093(00)01445-3.
  • Hanyaloglu, S. C., B. Aksakala, and I. J. McColm. 2001. Reactive sintering of electroless nickel-plated aluminum powders. Materials Characterization 47:9–16. doi:10.1016/s1044-5803(01)00146-2.
  • Hey, J. C., and A. P. Jardine. 1994. Shape memory TiNi synthesis from elemental powders. Materials Science and Engineering A 188:291–300. doi:10.1016/0921-5093(94)90384-0.
  • Laeng, J., Z. Xiu, X. Xu, X. Sun, H. Ru, and Y. Liu. 2007. Phase formation of Ni–Ti via solid state reaction. Physica Scripta 129:250–54. doi:10.1088/0031-8949/2007/t129/056.
  • Lagutkin, S., L. Achelis, S. Sheikhaliev, V. Uhlenwinkel, and V. Srivastava. 2004. Atomization process for metal powder. Materials Science and Engineering A 383:1–6.
  • Li, B. Y., L. J. Rong, Y. Y. Li, and V. E. Gjunter. 2000. Synthesis of porous Ni–Ti shape memory alloys by self-propagating high temperature synthesis: Reaction mechanism and anisotropy in pore structure. Acta Materialia 48:3895–904. doi:10.1016/s1359-6454(00)00184-1.
  • Lin, K. Y., T. J. Yang, and W. T. Tsai. 2006. Synthesis of Invar alloy powders by electroless plating. Materials Science and Engineering A 416:226–31. doi:10.1016/j.msea.2005.10.028.
  • Loto, C. A. 1987. Electroless nickel plating of iron powders. Journal of Metals 39:36–38. doi:10.1007/bf03258607.
  • McNeese, M. D., D. C. Lagoudas, and T. C. Pollock. 2000. Processing of TiNi from elemental powders by hot isostatic pressing. Materials Science and Engineering A 280:334–48. doi:10.1016/s0921-5093(99)00550-x.
  • Novak, P., L. Mejzlikova, A. Michalcova, J. Capek, P. Beran, and D. Vojtech. 2013. Effect of SHS conditions on microstructure of NiTi shape memory alloy. Intermetallics 42:85–91. doi:10.1016/j.intermet.2013.05.015.
  • Panigrahi, B. B., and M. M. Godkhindi. 2006. Dilatometric sintering study of Ti-50Ni elemental powders. Intermetallics 14:130–35. doi:10.1016/j.intermet.2005.04.020.
  • Ramaseshan, R., N. G. Nair, and S. K. Seshadri. 1997. Magnetic moment studies on nickel coated titanium powders. Materials Science Letters 16:1441–43.
  • Shariat, B., S. Y. Liu, and G. Rio. 2014. Pseudoelastic behaviour of perforated NiTi shape memory plates under tension. Intermetallics 50:59–64. doi:10.1016/j.intermet.2014.02.016.
  • Suryanarayana, C. 2001. Mechanical alloying and milling. Progress in Materials Science 46:1–184.
  • Tang, C. Y., L. N. Zhang, C. T. Wong, K. C. Chan, and T. M. Yue. 2011. Fabrication and characteristics of porous NiTi shape memory alloy synthesized by microwave sintering. Materials Science and Engineering A 528:6006–11. doi:10.1016/j.msea.2011.04.040.
  • Wen, G., Z. X. Guo, and C. K. L. Davies. 2000. Microstructural characterisation of electroless-nickel coatings on zirconia powder. Acta Metallurgica 43:307–11. doi:10.1016/s1359-6462(00)00409-7.
  • Xu, J. L., X. F. Jin, J. M. Luo, and Z. C. Zhong. 2014. Fabrication and properties of porous NiTi alloys by microwave sintering for biomedical applications. Materials Letters 124:110–12. doi:10.1016/j.matlet.2014.03.088.
  • Zangeneh-Madar, K., and A. Jafari. 2012. Characterisation of electroless nickel plated titanium powder. Surface Engineering 28:393–99. doi:10.1179/1743294411y.0000000067.
  • Zhang, N., P. B. Khosrovabadi, J. H. Lindenhovius, and B. H. Kolster. 1992. TiNi shape memory alloys prepared by normal sintering. Materials Science and Engineering A 150:263–70. doi:10.1016/0921-5093(92)90120-p.
  • Zhang, X. X., H. W. Hou, L. S. Wei, Z. X. Chen, W. T. Wei, and L. Geng. 2013. High damping capacity in porous NiTi alloy with bimodal pore architecture. Journal of Alloys and Compounds 550:297–301. doi:10.1016/j.jallcom.2012.09.145.
  • Zhu, S. L., X. J. Yang, D. H. Fu, L. Y. Zhang, C. Y. Li, and Z. D. Cui. 2005. Stress-strain behavior of porous NiTi alloys prepared by powders sintering. Materials Science and Engineering A 408:264–68. doi:10.1016/j.msea.2005.08.012.
  • Zhu, S. L., X. J. Yang, F. Hu, S. H. Deng, and Z. D. Cui. 2004. Processing of porous NiTi shape memory alloy from elemental powders by Ar-sintering. Materials Letters 58:2369–73. doi:10.1016/j.matlet.2004.02.017.

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