References
- 左海哲夫, 2009: マグネシム合金の壓延による組織制御, 塑性と加工, 50(578), pp. 201-205.
- Yu Yoshida at al, 2005: Realization of high strength and high ductility for AZ61 magnesium alloy by severe warm working. Sci. Tech. Adv. Mater, 6, pp. 185-194. https://doi.org/10.1016/j.stam.2004.11.011
- Jie Xing et al., 2004: Formation of fine grained structure in a alloy AZ31 during multi-directional forging with decreasing deformation temperature, J. Japan Inst. Light Met. 54(11), pp. 527-531. https://doi.org/10.2464/jilm.54.527
- 水沼 晉, 2009: ねじり壓出しにおける大ひずみ加工特性と 結晶粒微細化, 塑性と加工, 50(578), pp. 186-191.
- 高津正秀, 2009: マグネシム合金板の成形性評價と成形性 改善の取組み, 塑性と加工, 50(576), pp. 13-17.
- 小山克己, 小松原俊雄, 2009: 溫間異周速壓延による高r値 のアルミニウム薄板の創製, 塑性と加工, 50(578), pp. 211-215.
- 異周速壓延法: http://unit.aist.go.jp/mrisus/ci/group/microcg/dsr.html
- 中浦祐典, 渡部 晶, 大堀 紘一, 2008: 異周速壓延によるマ グネシム合金板の結晶粒微細化と壓延加工性向上, 金屬, 78(4), pp. 341-346.
- Yasumasa Chino et al., 2006: Enhanced formability at elevated temperature of a cross-rolled magnesium alloy sheet, Material Science Engineering, A441, 2006, pp. 349356. https://doi.org/10.1016/j.msea.2006.08.038
- Yasumasa Chino et al., 2006: Press formability of a rolled AZ31 Mg alloy sheet with controlled texture, Materials Letters, 60, pp.173-176. https://doi.org/10.1016/j.matlet.2005.08.012
- 심재동, 2007: KISTI 유망기술 100선(가공성형성이 우수한 마그네슘 합금), KISTI 발간, pp. 1-52.
- 附田之欣, 2007: マグネシウム合金のチクソモルディグ, 塑性と加工, 48(556), pp. 396-400.
- 茂木徹一, 2008: 小形薄肉加工できるマグネシム合金の半凝固半溶融鑄造, 工業材料, 56(7), pp. 62-67.
- 左藤雅彦, 2007: Mg合金の板壓延とその利用, 塑性と加工, 48(556), pp. 373-378.
- A. J. Den Bakker A. J. et al., 2004: Process and Alloy Development for Hydrostatic Extrusion of magnesium, Proc. 6th Inter. Conf. on Mag. Alloys & Appl., Wiley-VCH Verglag, 2004, pp. 324-330.
- 村井 勉, 2007: マグネシウム合金の壓出し架空と形材への 利用, 塑性と加工, 48(556), pp. 379-383.
- J. Y. Byun et al., 1998 : Effect of Alloying Elements on the Iron Solubility of Magnesium alloys, J. Kor. Inst. Met. & Tater. 36(10), pp. 1715-1721.
- 심재동, 변지영 : 경량부품소재의 Recycling기술개발, KIST보고서 2000-G-AM-01-C-007.
- 東 健司, 2009: NEDOプログラム, マグネシウム鍛造部 材技術開發プロジェクト, の目指す新展開, 輕金屬, 59(10), pp. 576-588.
Cited by
- Precipitation of Magnesium Sulfate from Concentrated Magnesium Solution for Recovery of Magnesium in Seawater vol.25, pp.4, 2016, https://doi.org/10.7844/kirr.2016.25.4.32
- Production of Concentrated Magnesium Solution from Seawater Using Industrial By-products vol.25, pp.3, 2016, https://doi.org/10.7844/kirr.2016.25.3.63
- Analysis of Tube Extrusion Process Conditions Using Mg Alloy for Automotive Parts vol.36, pp.12, 2012, https://doi.org/10.3795/KSME-A.2012.36.12.1675