The Evaluation of Fatigue Life in TWB Sheet Using Magnetic Method

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Key Engineering Materials (Volumes 270-273)

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1706-1711

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August 2004

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© 2004 Trans Tech Publications Ltd. All Rights Reserved

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[1] Young-Soo Yang, Se-Hwan Lee and Cheon-Su Lee, Trans. KSME A, Vol. 22, No. 6 (1998), pp.1016-1021.

Google Scholar

[2] Hisahi Kusuda, Toshyuki Takasago and Fumiaki Natsumi, Journal of Materials Processing Technology, Vol. 71 (1997), pp.134-140.

DOI: 10.1016/s0924-0136(97)00159-3

Google Scholar

[3] P. C. Wang, International Journal of Fatigue, Vol. 17, No. 1 (1995), pp.25-34.

Google Scholar

[4] Ki-Chul Kim, Ki-Ho Lee and Mok-Young Lee, Journal of KWS, Vol. 16, No. 2 (1998), pp.143-153.

Google Scholar

[5] Byung-Kil Yu and Kyung-Don Lee, Journal of KWS, Vol. 17, No. 2 (1999), pp.128-200.

Google Scholar

[6] John, R. et al.: Metals Handbook ninth Edition Vol. 8 (Mechanical Testing, American Society for Metals, America 1996).

Google Scholar

[7] Japan Society of Mechanical Engineers: Standard Practice for Statistical Analysis of linear or linearized stress- life(S-N) and strain life fatigue data JSME S 002 (JSME, Japan 1994).

Google Scholar

[8] Cullity: Introduction to Magnetic Materials (ADDISON WESLEY, 1972).

Google Scholar

[9] Nikkoshi Co.: An Experimental Study on Nondestructive Stress Measurement of Iron-Based Alloys Utilizing Magnetostriction (Nikkoshi Co., Japan 1993).

Google Scholar

[10] Seung-Ho Han and Byung-Chun Shin, 2002, Prediction Model for Relaxation of Welding Residual Stress under Fatigue Loads, Journal of KWS, Vol. 20, No. 3, pp.340-346.

Google Scholar

[11] Robert B. Abernethy, 1996, The New Weibull Handbook second Edition, Robert B. Abernethy, pp. B-1 - B-4.

Google Scholar