Quenching theory and technology /

Quenching is one of the most fundamentally complex processes in the heat treatment of metals, and it is something on which mechanical properties and distortion of engineering components depend.

Bibliographic Details
Corporate Authors: International Federation for Heat Treatment and Surface Engineering, Taylor & Francis
Other Authors: Liščić, B. (Božidar)
Format: eBook
Language:English
Published: Boca Raton : CRC Press : International Federation for Heat Treatment and Surface Engineering, ©2010.
Edition:2nd ed.
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • Hardening of Steels, L. de C.F. Canale and G.E. Totten; Quenching of Aluminum Alloys, R.T. Shuey and M. Tiryakiogliu; Quenching of Titanium Alloys, L. Meekisho, X. Yao, and G.E. Totten; Mechanical Properties of Ferrous and Nonferrous Alloys after Quenching, H.-J. Spies; Thermo- and Fluid-Dynamic Principles of Heat Transfer during Cooling, F. Mayinger; Heat Transfer during Cooling of Heated Metals with Vaporizable Liquids, R. Jeschar, E. Specht, and C. Köhler; Wetting Kinematics, H.M. Tensi; Wetting Kinetics and Quench Severity of Selected Vegetable Oils for Heat Treatment, K.N. Prabhu; Residual Stresses after Quenching, V. Schulze, O. Vöhringer, and E. Macherauch; Effect of Workpiece Surface Properties on Cooling Behavior, F. Moreaux, G. Beck, and P. Archambault; Determination of Quenching Power of Various Fluids, H.M. Tensi and B. Lišcic; Types of Cooling Media and Their Properties, W. Luty; Gas Quenching, G. Belinato, L. de C.F. Canale, and G.E. Totten; Techniques of Quenching, H.E. Boyer, P. Archambault, and F. Moreaux; Intensive Steel Quenching Methods, N.I. Kobasko; Prediction of Hardness Profi le in Workpiece Based on Characteristic Cooling; Parameters and Material Behavior during Cooling, H.M. Tensi and B. Lišcic; Simulation of Quenching, C. Simsir and C. Hakan Gür; Appendices; Index