18.07.2013 Aufrufe

Schlussbericht - Dechema Forschungsinstitut

Schlussbericht - Dechema Forschungsinstitut

Schlussbericht - Dechema Forschungsinstitut

MEHR ANZEIGEN
WENIGER ANZEIGEN

Erfolgreiche ePaper selbst erstellen

Machen Sie aus Ihren PDF Publikationen ein blätterbares Flipbook mit unserer einzigartigen Google optimierten e-Paper Software.

[15] Y. Mantani, Y. Takemoto, M. Hida, and A. Sakakibara. Tensile Property of -<br />

Martensite Structure in Ti-8Mass%Mo Alloy. In J. Albrecht, G. Lütjering, editor,<br />

Proceedings of Titan 2003, pages 1511–1518, Weinheim, 2004. Wiley-VCH.<br />

[16] J.C. Fanning and R.R.Boyer. Properties of TIMETAL 555 – A New near-Beta Titanium<br />

Alloy for Airframe Components. In J. Albrecht G. Lütjering, editor, Proceedings of Titan<br />

2003, pages 2643–2650, Weinheim, 2004. Wiley-VCH.<br />

[17] S. Matsumoto, T. Maeda, N. Ariasu, K. Nagashima. Mechanical Properties and<br />

Microstructure of Ti-20V-4Al-1Sn Produced by α + β Processing. In Proceedings of the<br />

Ti-2007 Science and Technology Conference, pp. 547 – 550, The Japan Institute of<br />

Metals, Sendai, Japan, 2007.<br />

[18] M. Ogawa, T. Shimizu, T. Noda, M. Ikeda. Mechanical Properties of Ti-13mass%Cr-<br />

1mass-%Fe-3mass%Al Alloy as Vanadium and Molybdenum Free Beta Titanium<br />

Alloy. In Proceedings of the Ti-2007 Science and Technology Conference, pp. 591 –<br />

594, The Japan Institute of Metals, Sendai, Japan, 2007.<br />

[19] S. Wie, Z. Guo, Q. Hu, S. Wang: Characteristic of Microstructure and Properties of<br />

Cold Deformed and Annealed Titanium Alloy Ti-6Al-2Zr-2V-1.5Mo. In Proceedings of<br />

the Ti-2007 Science and Technology Conference, pp. 411 – 414, The Japan Institute<br />

of Metals, Sendai, Japan, 2007.<br />

[20] D. Vojtech, T. Kubatik, and B. Bartova. Improvement of Oxidation Resistance of Ti-<br />

Based Alloys with Silicon. In J. Albrecht G. Lütjering, editor, Proceedings of Titan<br />

2003, pages 2059–2066, Weinheim, 2004. Wiley-VCH.<br />

[21] N. Matsukura, T. Yashiki, A. Okamoto, Y. Miyamoto, and Y. Yamamoto. Heat resistant<br />

Alloy Ti-1.5%Al. In Kobe Steel Ltd., editor, Kobe Steel Engineering Report, page 73,<br />

Osaka, Japan, 2004. Kobe Steel, Japan.<br />

[22] T. Naito, R. Suzuki, Y. Tomii. Reduction of TiCl4 Gas by Ca Dissolved in Molten<br />

Calcium Chloride. In Proceedings of the Ti-2007 Science and Technology Conference,<br />

pp. 103 – 106, The Japan Institute of Metals, Sendai, Japan, 2007.<br />

[23] M. Yamaguchi, Y. Ono, S. Kosemura, W. Kagohashi, T. Takenaka. Development of<br />

New Titanium Production Process. In Proceedings of the Ti-2007 Science and<br />

Technology Conference, pp. 143 – 146, The Japan Institute of Metals, Sendai, Japan,<br />

2007.<br />

[24] G.Z. Chen, D.J. Fray, and T.W. Farthing. Direct electrochemical reduction of titanium<br />

dioxide to titanium in molten calcium chloride. Nature, 407:361, 2000.<br />

[25] C.M.Ward-Close. Titanium Developments in the UK. In J. Albrecht G. Lütjering, editor,<br />

Proceedings of Titan 2003, pages 27–39, Weinheim, 2004. Wiley-VCH.<br />

[26] S. Nakamura. Machinability of Free-Machining Pure Titaniums and Free-Machining<br />

Titanium Alloys. Denki Seiko, 60:272–278, 1989.<br />

[27] Y. Kosaka, J.C. Fanning, and S.P. Fox. Development of Low Cost High Strength<br />

Alpha/Beta Alloy with Superior Machinability. In J. Albrecht G. Lütjering, editor,<br />

Proceedings of Titan 2003, pages 3027–3034, Weinheim, 2004. Wiley-VCH.<br />

106

Hurra! Ihre Datei wurde hochgeladen und ist bereit für die Veröffentlichung.

Erfolgreich gespeichert!

Leider ist etwas schief gelaufen!