Handbook of Stainless Steels, Chapters 10 and 42, Donald Peckner, McGraw-Hill Book Company. |
ASTM Designation F138-82, pp. 32-35. |
ASTM Designation F 745-81, pp. 270-273. |
Metallography Principles and Practice, G. F. VanderVoort, McGraw-Hill Book Company, 1984 ed, pp. 355-366. |
"Pitting Resistance of New & Conventional Orthopedic Implant Materials--Effect of Metallurgical Condition"; by Barry C. Syrett and Sharon S. Wing; Corrosion, vol. 34, No. 4, pp. 138-145; Apr. 1978. |
"Influence of Cold Plastic Deformation on Critical Pitting Potential of AISI 316 L and 304 L Steels in an Artificial Physiological Solution Simulating the Agressiveness of the Human Body"; by Cigada, Mazza, Pedeferri and Sinigaglia; J. Biomed. Mater. Res.; vol. II, pp. 503-512; 1977. |
"The Three-Way Tradeoff in Stainless-Steel Selection"; by Robert S. Brown; Journal of Mechanical Engineering, pp. 58-62; Nov. 1982. |
"Improved Properties of Type 316L Stainless Steel Implants by Low-Temperature Stress Relief"; by Hockman and Taussig; Journal of Materials, vol. 1, No. 2, pp. 425-442; Jun. 1966. |
"How Corrosion Fatigue Strength of Nickel-Containing Materials Relates to Ultimate Tensile Strength and Other Factors"; Nickel Topics; vol. 3, No. 3, pp. 8-10 (1978). |
"Surface Preparation and Corrosion Behavior of Titanium Alloys for Surgical Implants"; Fraker, Ruff, Sung, VanOrden and Speck; Titanium Alloys in Surgical Implants, ASTM STP, pp. 206-219; 1983. |
"The Comparative Crevice Corrosion Resistance of Co-Cr Base Surgical Implant Alloys"; Devine and Wulff; J. Electrochem. Soc.: Electrochemical Science and Technology, pp. 1433-1437, vol. 123, No. 10, Oct. 1976. |
"Corrosion Fatigue of 316L Stainless Steel, Co-Cr-Mo Alloy, and ELI Ti-6A1-4V"; by Imam, Fraker and Gilmore; Corrosion and Degradation of Implant Materials, ASTM STP 684, pp. 128-143; 1979. |
"Corrosion Behaviour of Cast and Forged Implant Materials for Artificial Joints, Particularly with Respect to Compound Designs"; by P. Sury; Sulzer Research Number 1974; pp. 1-12; 1974. |