Analysis of Thermally Generated Microstresses in Polycrystalline be due to the Presence of BeO Inclusions

Author:

Hahn T. A.,Armstrong R. W.

Publisher

Springer US

Reference13 articles.

1. R. W. Armstrong and N. R. Borch, Thermal Microstresses in Beryllium and Other HCP Materials, Metallurgical Transactions. 2: 3073 (1971).

2. L. E. Pope and A. L. Stevens, Wave Propagation in Beryllium Single Crystals, in: “Metallurgical Effects at High Strain Rates,” R. W. Rohde, B. M. Butcher, J. R. Holland, and C. H. Karnes, eds. Plenum Publishing Corporation, New York (1973); p. 349.

3. S. J. Burns, J. Gurland, and M. H. Richman, Application of Fractographic Techniques to Beryllium, Metallography. 4: 533 (1971)

4. R. W. Armstrong, S. J. Burns, J. Gurland, and M. H. Richman, Internal Structural Factors Determining the Flow and Fracture Strengths of Beryllium, Air Force Materials Laboratory Technical Report. AFML-TR-69–10 (1969).

5. G. Simmons and H. Wange, “Single Crystal Elastic Constants and Calculated Aggregate Properties,” 2nd edition. M. I. T. Press, Cambridge Mass. (1971).

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