Investigating Machining Impact on Fatigue Variance: A Machining Quality Perspective

Author:

Yang Xiaoping12,Liu C. Richard34

Affiliation:

1. Mem. ASME

2. Cummins Inc., 1900 McKinley Avenue, Mail Code 50224, Columbus, IN 47201

3. Fellow ASME

4. School of Industrial Engineering, Purdue University, 1287 Grissom Hall, West Lafayette, IN 47907-1287

Abstract

Fatigue life of nominally identical structures under nominally identical loading conditions can scatter widely. This study has investigated the impact of machining processes on such scatters. After Ti 6Al-4V samples were surface ground and face turned, they were subject to constant amplitude four-point bending fatigue tests under room temperature. The best-case scenario of process capability ratios of fatigue for these samples were evaluated with assumed tolerances of fatigue life. Based on these ratios, the numbers of nonconforming parts were estimated. Under the machining conditions from the Machining Data Handbook (Machining Data Center, Cincinnati, 1980), up to 39% of samples due to one process are expected to be nonconforming, whereas only up to 0.6% of samples due to the other process are expected to be nonconforming. The ramifications in terms of cost for machining quality control due to the different capability ratios have been discussed. The current findings indicate an urgent need to further the study of this issue in a scientific manner.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference12 articles.

1. Yang, X. , 2001, “A Methodology for Predicting the Variance of Fatigue Life Incorporating the Effects of Manufacturing Processes,” Ph.D. thesis, Purdue University, West Lafayette, IN.

2. Variation in Surface Stress Due to Metal Removal;Prevey;CIRP Ann.

3. The Scatter of Surface Residual Stresses Produced by Face-Turning and Grinding;Liu;Mach. Sci. Technol.

4. An Experimental Study on Fatigue Life Variance, Residual Stress Variance, and Their Correlation of Face-Turned and Ground Ti 6Al-4V Samples;Yang;ASME J. Manuf. Sci. Eng.

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