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.
| Corporate Authors: | , |
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| Format: | eBook |
| Language: | English |
| Published: |
Boca Raton :
CRC Press : International Federation for Heat Treatment and Surface Engineering,
©2010.
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| 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