Fatigue life evaluation of spindle of rolling mill using ADINA structure and WINLIFE

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DOI 10.1007/s12206-020-2209-6

Journal of Mechanical Science and Technology 34 (10) 2020 Original Article DOI 10.1007/s12206-020-2209-6 Keywords: · Spindle · Fatigue life evaluation · Cumulative damage theory · Computational numerical analysis · S-N curve · Rain flow cycle counting

Correspondence to: Eui Soo Kim [email protected]

Citation: Kim, E. S. (2020). Fatigue life evaluation of spindle of rolling mill using ADINA structure and WINLIFE. Journal of Mechanical Science and Technology 34 (10) (2020) ?~?. http://doi.org/10.1007/s12206-020-2209-6

Received March 30th, 2020 Revised

May 24th, 2020

Accepted June 1st, 2020 † This paper was presented at ICMR2019, Maison Glad Jeju, Jeju, Korea, November 27-29, 2019. Recommended by Guest Editor Insu Jeon

Fatigue life evaluation of spindle of rolling mill using ADINA structure and WINLIFE Eui Soo Kim Dept. of Safety Engineering, Korea National University of Transportation, Chungju-si, Chungbuk 27469, Korea

Abstract

The fatigue life prediction method using numerical analysis is the latest evaluation technology to predict the fatigue life using the stress data obtained from the structural analysis in order to reduce the evaluation time and cost. A rolling mill is a machine that produces a coil by rolling the material by a roller and the spindle of the rolling mill device serves to transmit the power to the rollers by periodically rotating by the motor. These spindles consist of universal joints, shafts and bearings to deliver power to the rollers. The spindle of the rolling mill is always exposed to the environment subjected to the fatigue load due to the rotation moment by the periodic rotation and there is possibility of the breakage accident due to this. It is very important to prevent breakage by predicting the fatigue life of the spindle in a dynamic operating environment. Therefore, in this study, dynamic stress analysis is performed considering the actual rotating environment conditions using ADINA. Based on the results of stress analysis, we want to predict fatigue life considering dynamic operating environment using WINLIFE that is used for the evaluation of the fatigue life of single shafts, multi-shafts, and gear bearings. Fatigue life analysis of the spindle of the rolling mill using linear cumulative damage theory using S-N curve and equivalent stress was performed in order to evaluate the fatigue life. Stress-life fatigue theory is a method of calculating the lifetime by the minimum input showing the fatigue characteristics of the material.

1. Introduction

© The Korean Society of Mechanical Engineers and Springer-Verlag GmbH Germany, part of Springer Nature 2020

A rolling mill is a machine that produces a coil by rolling material using a roller, and the spindle of the rolling mill device serves to transmit the power to the rollers through the periodic rotation of the motor. These spindles comprise universal joints, shafts, and bearings to deliver power to the rollers. The spindle of the rolling mill is always exposed to the environment and is subjected