1. F.A. Garner, “Overview of the Swelling Behavior of 316 Stainless Steel,” Optimizing Materials for Nuclear Applications, ed. F.A. Garner, D.S. Gelles, and F.W. Wiffen (Warrendale, PA: TMS, 1984), pp. 1l1–141.
2. J.A. Wang, F.B.K. Kam, and F.W. Stallman, “The Embrittlement Data Base (EDB) and Its Applications,” Effects of Radiation on Materials, ASTMSTP 1270, ed. D.S. Gelles et al. (Philadelphia, PA: ASTM, 1996), pp. 500–521.
3. R.E. Stoller, “Pressure Vessel Embrittlement Predictions Based on a Composite Model of Copper Precipitation and Point Defect Clustering,” Effects of Radiation on Materials, ASTM STP 1270, ed. D.S. Gelles et al. (Philadelphia, PA: ASTM, 1996), pp. 25–58.
4. For an example, see the proceedings of the bienniel international Symposia on the Effects of Radiation on Materials, published in a series of special technical publications by the ASTM, Philadelphia. The most recent in this series are STP 1046 (1989), STP l125 (1992), STP l175 (1993), and STP 1270 (1996).
5. W.J. Phythian et al., J. Nucl. Mater., 223 (1995), pp. 245–261.