Progress Relating to Civilian Applications During May, 1960

Progress Relating to Civilian Applications During May, 1960
Title Progress Relating to Civilian Applications During May, 1960 PDF eBook
Author Russell W. Dayton
Publisher
Pages 118
Release 1960
Genre
ISBN

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Progress Relating to Civilian Applications During July, 1960

Progress Relating to Civilian Applications During July, 1960
Title Progress Relating to Civilian Applications During July, 1960 PDF eBook
Author Russell W. Dayton
Publisher
Pages 100
Release 1960
Genre
ISBN

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TID.

TID.
Title TID. PDF eBook
Author
Publisher
Pages 212
Release 19??
Genre Energy development
ISBN

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Reactor Core Materials

Reactor Core Materials
Title Reactor Core Materials PDF eBook
Author
Publisher
Pages 938
Release 1958
Genre Nuclear reactors
ISBN

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Reactor Materials

Reactor Materials
Title Reactor Materials PDF eBook
Author
Publisher
Pages 406
Release 1963
Genre Nuclear reactors
ISBN

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Liquid Metal Technology

Liquid Metal Technology
Title Liquid Metal Technology PDF eBook
Author James M. Jacobs
Publisher
Pages 148
Release 1963
Genre Liquid metals
ISBN

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Experimental Study of Factors Controlling the Effectiveness of High-temperature Protective Coatings for Tungsten

Experimental Study of Factors Controlling the Effectiveness of High-temperature Protective Coatings for Tungsten
Title Experimental Study of Factors Controlling the Effectiveness of High-temperature Protective Coatings for Tungsten PDF eBook
Author Jack Brett
Publisher
Pages 306
Release 1965
Genre Tungsten
ISBN

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The restrictions imposed by the processes of diffusion, evaporation, and coating substrate reactions on the choice of potential protective coating materials for tungsten were studied analytically and experimentally. The diffusive restriction is the most limiting and eliminates many refractory oxides with otherwise satisfactory attributes. The diffusive properties of rare earth sesquioxides and complex refractory oxides were explored by means of oxidation experiments and a layer growth experiment respectively. Mass spectrometric studies of the vaporization of refractory complex oxides were carried out to determine the applicability of the Wagner-Hauffe method of predicting vaporization rates. Provided certain thermodynamic approximations are valid and the vapor species over the complex oxide are the same as those over the pure component oxides, the predictions yield order of magnitude accuracy. A survey and exploration of reactions of possible coating materials with tungsten was performed emphasizing promising materials from the diffusion studies. (Author).