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Research Papers

THE EFFECT OF DISPERSOID PROPERTIES ON THE DISPERSION-STRENGTHENING OF CARBONYL IRON

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Pages 157-168 | Published online: 06 Nov 2014

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Read on this site (2)

Y.C. Lu & K.S. Hwang. (1999) The Institute of Materials Science and Engineering, National Taiwan University. Powder Metallurgy 42:3, pages 257-262.
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J. A. Rogers, D. E. Miles & B. E. Hopkins. (1973) THE PROPERTIES OF IRON CONTAINING A FINE OXIDE DISPERSION. Powder Metallurgy 16:32, pages 166-185.
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Articles from other publishers (6)

Y. C. Lu & K. S. Hwang. (2000) Improved densification of carbonyl iron compacts by the addition of fine alumina powders. Metallurgical and Materials Transactions A 31:6, pages 1645-1652.
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Donald J. Bailey & Robin Stevenson. (1979) High strength low carbon sheet steel by thermomechanical treatment: l. Strengthening mechanisms. Metallurgical Transactions A 10:1, pages 47-55.
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I. G. Wright & B. A. Wilcox. (1974) Observations on strengthening and oxidation behavior of a dispersion hardened Fe-Cr-Base alloy prepared by mechanical alloying. Metallurgical transactions 5:4, pages 957-960.
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Fritz Thümmier. (2004) Neuere Entwicklungen in der Pulvermetallurgie. Materialwissenschaft und Werkstofftechnik 3:8, pages 394-414.
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J. Lindbo & T. Leffers. (1972) Preparing dispersion-hardened materials for transmission electron microscopy. Metallography 5:5, pages 473-477.
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B.N Singh & P Cotterill. (1970) Thermally-activated deformation in dispersion-hardened polycrystalline iron at room temperature. Acta Metallurgica 18:5, pages 549-555.
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