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Metal technology

M. H. Cooper, ed.. Proceedings of the International Conference on Eiquid Metal Technology in Energy Production, CONE-760503-P1 and P2, Champion, Pa., May 3-6,1976. [Pg.172]

Table 1-1 Evolution of ferrous metals technology and corrosion protection... Table 1-1 Evolution of ferrous metals technology and corrosion protection...
Turbine Metal Technology, Inc. 7327 Elmo Street Tujinga, CA 91042, USA Tel 818-352-8721 Fax 818-352-8726... [Pg.496]

Epstein, L. F. Liquid Metal Technology , Chemical Eng. Progress, Symposium Series No. 20, 53, 67... [Pg.433]

Various authors. Proceeding of International Conference on Liquid Metal Technology in Energy Production, Champion, Pennsylvania, Conf 760503-P1-P2 (1976)... [Pg.433]

Lindley, T. C., McIntyre, P. and Trant, P. J., Fatigue crack initiation at corrosion pits . Metals Technology 9, 135-42 (1982)... [Pg.1326]

Deposition of Refractory Metal Silicides for VLSI Metallization, Technology, pp. 79-84 (Feb. 1989)... [Pg.341]

Hillman, J., etal, Integrated CVD Titanium and Titanium Nitride Process for Sub-0.5- im Metallization, Technology, pp. 147-152 (July 1995)... [Pg.380]

Christopher J. Nagel, Molten Metal Technology, Inc., Waltham, Massachusetts 02154 (1, 187)... [Pg.18]

Finally, it may be pointed out that none of the rare metals can be smelted directly from the ore. The concentrate must first be converted to a pure chemical compound which is utilized as the raw material for the production of the metal. The refractory rare metals are often obtained in the form of a powder or sponge. They are consolidated and refined by powder metallurgy techniques or by arc melting or by electron beam melting. In fact, the current refractory rare metals technology has been crucially dependent on the development of vacuum metallurgical techniques and processes. [Pg.77]

Lemmon, A. W Jr., H. W. Deem, E. H. Hall and J. F. Walling, 1964, The Thermodynamic and Transport Properties of Potassium, Proc. of High Temperature Liquid Metal Technology Meeting, Vol. 1, 88-114, USAEC Rep. ORNL-3605. (2)... [Pg.543]

Tepper, F., A. Murchison, J. Zelenak, and F. Roehlich, 1964, Thermophysical Properties of Rubidium and Cesium, Proc. 1963 High Temperature Liquid Metal Technology Meeting Vol. 1, 26-65, US AEC Rep. ORNL-3605. (5)... [Pg.555]

Gerin, J. (1972), Cast Metals Technology, Addison-Wesley, New York. [Pg.577]

CEP [Catalytic extraction processing] A process for destroying hazardous wastes by reaction with a molten metal at high temperature. Invented in 1989 by C. Nagel at the Massachusetts Institute of Technology and developed in the early 1990s by Molten Metals Technology, Waltham, MA. The company filed for bankruptcy in 1997. [Pg.59]

In continuation of his extraordinarily versatile and efficient directed-metalation technology, Snieckus employed indole 87 to selectively lithiate C-4 and to effect a Negishi coupling with 3-bromopyridine to give 88 in 90% yield [110]. In contrast, a Suzuki protocol gave 88 in only 19% yield (with loss of the TBS group). [Pg.94]

The combination of simple processes from plastic and metal technologies. Each material has its advantages and drawbacks. Hybrids that closely associate two or more families benefit from their best properties and mask their weaknesses. [Pg.836]

R.S. Steensma, Application of ultrasonics in the extraction of noble metals. Process metallurgy 5, Precious and Rare Metal Technologies, A.E. Torma and I.H. Gundder (eds.), Elsvier, Oxford, 1989, 175-182. [Pg.155]

T0507 Membrane Technology and Research, Inc., VaporSep Membrane Recovery System T0535 Molten Metal Technology, Inc., Quantum Catalytic Extraction Process (Q-CEP) T0546 Natural Attenuation—General... [Pg.60]

Molten Metal holds 41 patents on CEP and quantum-catalytic extraction process (QCEP) technologies, covering more than 200 application and disclosures. On December 3, 1997, Molten Metal Technology, Inc., filed for reorganization under Chapter 11 of the Federal Bankruptcy Code. [Pg.761]

The technology has now been licensed to the private sector for further development and commercialization. Quapp left ESTEEL to form Teton Technologies, Inc. (TTI). ITl, with a Ducrete shielding license, formed a joint venture with Starmet Corporation (formerly Nuclear Metals, Inc.), a Massachusetts-based advanced metals technology company that will continue commercial-scale development of the process. [Pg.997]

Staff ASM Handbook Powder Metal Technologies and Applications, Vol. 7, ASM International, Materials Pack, OH, 1998. [Pg.1366]


See other pages where Metal technology is mentioned: [Pg.282]    [Pg.14]    [Pg.776]    [Pg.80]    [Pg.80]    [Pg.246]    [Pg.51]    [Pg.88]    [Pg.218]    [Pg.800]    [Pg.800]    [Pg.800]    [Pg.877]    [Pg.877]    [Pg.136]    [Pg.47]    [Pg.227]    [Pg.211]   


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