Materials ScienceEngineering

Yuebin B. Guo, W. Li, I. Jawahir

2009.11.30MACHINING SCIENCE AND TECHNOLOGY

DOI: 10.1080/10910340903454922

tlooto Summary

Review of surface integrity characterization and prediction in machining of hardened steels, titanium, and nickel-based superalloys using geometrically defined tools.

Abstract

This paper presents a review of the state-of-art research on surface integrity characterization, especially the characteristics of residual stresses produced in machining of hardened steels, titanium and nickel-based superalloys using the geometrically defined tools. The interrelationships among residual stresses, microstructures, and tool-wear have been discussed. Current research on residual stress modeling and simulation using finite element method has been critically assessed. Also, the rationale for developing multi-scale simulation models for predicting residual stresses in machining has been presented. At the end, possible future work has been proposed.

Citation format

GUO, Yuebin B.; LI, W.; JAWAHIR, I. SURFACE INTEGRITY CHARACTERIZATION AND PREDICTION IN MACHINING OF HARDENED AND DIFFICULT-TO-MACHINE ALLOYS: A STATE-OF-ART RESEARCH REVIEW AND ANALYSIS. MACHINING SCIENCE AND TECHNOLOGY, 2009, 13: 437–470.