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Research Papers

The metastable structure of hypereutectic Al–17·5Si alloy surface induced by high current pulsed electron beam

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Pages S5-320-S5-324 | Received 20 Oct 2014, Accepted 18 Dec 2014, Published online: 30 May 2015

References

  • W. Zhang, M. L. Sui, Y. Z. Zhou and D. X. Li: ‘Evolution of microstructures in materials induced by electropulsing’, Micron, 2003, 34, 189–198.
  • M. Gao, G. H. He, F. Yang, J. D. Guo, Z. X. Yuan and B. L. Zhou: ‘Effect of electric current pulse on tensile strength and elongation of casting ZA27 alloy’, Mater. Sci. Eng. A, 2002, 337, 110–114.
  • Y. H. Zhu, S. To, W. B. Lee, X. M. Liu, Y. B. Jiang and G. Y. Tang: ‘Effects of dynamic electropulsing on microstructure and elongation of a Zn–Al alloy’, Mater. Sci. Eng. A, 2009, 501, 125–132.
  • B. Gao, Y. Hao, G. Tu and W. Y. Wu: ‘Study on nanostructures induced by high-current pulsed electron beam’, J. Nanomater., 2012, 2012, Article id 480482, 1–5.
  • B. Gao, J. D. He, G. Tu and L. Hu: ‘Nanocrystallization of coarse primary phases in Al- and Mg-based alloys induced by HCPEB treatment’, J. Nanomater., 2013, 2013, Article id 815384, 1–6.
  • S. Z. Hao, L. M. Zhao and D. Y. He: ‘Surface microstructure and high temperature corrosion resistance of arc-sprayed FeCrAl coating irradiated by high current pulsed electron beam’, Nucl. Instrum. Meth. Phys. Res., Sect. B, 2013, 312, 97–103.
  • G. W. Guo, G. Z. Tang, X. X. Ma, M. R. Sun and G. E. Ozur: ‘Effect of high current pulsed electron beam irradiation on wear and corrosion resistance of Ti6Al4 V’, Surf. Coat. Technol., 2013, 229, 140–145.
  • J. Cai, L. Ji, S. Z. Yang, X. T. Wang, Y. Li, X. L. Hou and Q. F. Guan: ‘Deformation mechanism and microstructures on polycrystalline aluminum induced by high-current pulsed electron beam’, Chin. Sci. Bull., 2013, 58, 2507–2511.
  • Z. Q. Zhang, S. Z. Yang, Peng Lv, Y. Li, X. T. Wang, X. L. Hou and Q. F. Guan: ‘The microstructures and corrosion properties of polycrystalline copper induced by high-current pulsed electron beam’, Appl. Surf. Sci., 2014, 294, 9–14.
  • Y. Hao, B. Gao, G. F. Tu, S. W. Li, S. Z. Hao and C. Dong: ‘Surface modification of Al–20Si alloy by high current pulsed electron beam’, Appl. Surf. Sci., 2011, 257, 3913–3919.
  • K. M. Zhang, J. X. Zou, T. Grosdidier, C. Dong and D. Z. Yang: ‘Improved pitting corrosion resistance of AISI 316 L stainless steel treated by high current pulsed electron beam’, Surf. Coat. Technol., 2006, 201, 1393–1400.
  • Y. Hao, B. Gao, G. F. Tu, H. Cao, S. Z. Hao and C. Dong: ‘Surface modification of Al–12·6Si alloy by high current pulsed electron beam’, Appl. Surf. Sci., 2012, 258, 2052–2056.
  • B. Gao, S. Z. Hao, J. X. Zou, W. Y. Wu, G. F. Tu and C. Dong: ‘Effect of high current pulsed electron beam treatment on surface microstructure and wear and corrosion resistance of an AZ91HP magnesium alloy’, Surf. Coat. Technol., 2007, 201, 6297–6303.
  • S. Z. Hao, X. D. Zhang, X. X. Mei, T. Grosdidier and C. Dong: ‘Surface treatment of DZ4 directionally solidified nickel-based superalloy by high current pulsed electron beam’, Mater. Lett., 2008, 62, 414–417.
  • M. Tebib, J. B. Morin, F. Ajersch and X. Grant Chen: ‘Semi-solid processing of hypereutectic A390 alloys using novel rheoforming process’, Trans. Nonferr. Metals Soc., 2010, 20, 1743–1748.
  • G. J. Cha, J. G. Li, S. M. Xiong and Z. Q. Han: ‘Fracture behaviors of A390 aluminum cylinder liner alloys under static loading’, J. Alloys Compd., 2013, 550, 370–379.
  • W. X. Shi, B. Gao, G. F. Tu, S. W. Li, Y. Hao and F. X. Yu: ‘Effect of neodymium on primary silicon and mechanical properties of hypereutectic Al–15%Si alloy’, J. Rare Earths, 2010, 28, 367–370.
  • D. H. Lu, Y. H. Jiang, G. S. Guan, R. F. Zhou, Z. H. Li and R. Zhou: ‘Refinement of primary Si in hypereutectic Al–Si alloy by electromagnetic stirring’, J. Mater. Process. Technol., 2007, 189, 13–18.
  • C. L. Xu, H. Y. Wang, F. Qiu, Y. F. Yang and Q. C. Jiang: ‘Cooling rate and microstructure of rapidly solidified Al–20 wt.% Si alloy’, Mater. Sci. Eng. A, 2006, 417, 275–280.
  • Y. Hao, B. Gao, G. F. Tu, S. W. Li, C. Dong and Z. G. Zhang: ‘Improved wear resistance of Al–15Si alloy with a high current pulsed electron beam treatment’, Nucl. Instrum. Meth. Phys. Res., Sect. B, 2011, 269, 1499–1505.
  • B. Gao, Y. Hao, W. F. Zhuang, G. F. Tu, W. X. Shi, S. W. Li, S. Z. Hao, C. Dong and M. C. Li: ‘Study on continuous solid solution of Al and Si elements of a high current pulsed electron beam treated hypereutectic Al–17·5Si alloy’, Phys. Procedia, 2011, 18, 187–192.
  • Y. Hao: ‘Study on surface microstructure and properties of hypereutectic Al–Si alloy after high current pulsed electron beam treatment’, PhD thesis, Northeastern University, Shenyang, Liaoning, China, 2012 (in Chinese).
  • F. Yilmaz and R. Elliott: ‘Halo formation in Al–Si alloys’, Met. Sci., 1984, 18, 362–366.
  • X. Wang, J. S. Zhang and M. K. Lei: ‘Experimental research on the surface modification of 316 L stainless steel by high-intensity pulsed ion beam’, Acta Metall. Sin., 2007, 43, 393–398 (in Chinese).
  • X. D. Zhang: ‘Surface modification of Ti-and Ni-base alloys by high current pulsed electron beam’, PhD thesis, Dalian University of Technology, Shenyang, Liaoning, China, 2011 (in Chinese).
  • J. Murray, K. Song, W. Huebner and M. O'Keefe: ‘Electron beam induced crystallization of sputter deposited amorphous alumina thin films’, Mater. Lett., 2012, 74, 12–15.
  • S. Z. Hao: ‘Surface modification of pure aluminum by high current pulsed electron beam’, PhD thesis, Dalian University of Technology, Shenyang, Liaoning, China, 2000 (in Chinese).

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