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Information Journal Paper

Title

A GEOMETRY-DEPENDENT GENERALIZED SHAPE FUNCTION FOR CALCULATION OF STRESS INTENSITY FACTOR FOR AXIALLY CRACKED THIN-WALLED TUBES

Pages

  1-11

Abstract

 Geometric SHAPE FUNCTION, f(a/W), is a correction factor that accounts for finite specimen size in calculation of STRESS INTENSITY FACTOR (SIF). Pin-loading tension method is suitable for fracture toughness testing of axially cracked thin-walled tubular specimens. But unique expression for f(a/W) of such specimens does not exist as it is sensitive to tube geometry. In this work, a generalized form of geometric SHAPE FUNCTION has been derived through a detailed finite element analysis and the outcome is validated with actual experimental results. Using the general SHAPE FUNCTION, SIF for any axially cracked thin-walled tube having dimensions within the range can be predicted.

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    Cite

    APA: Copy

    SANYAL, GOPAL, & SAMAL, MAHENDRA K.. (2014). A GEOMETRY-DEPENDENT GENERALIZED SHAPE FUNCTION FOR CALCULATION OF STRESS INTENSITY FACTOR FOR AXIALLY CRACKED THIN-WALLED TUBES. INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING, 6(2), 1-11. SID. https://sid.ir/paper/319764/en

    Vancouver: Copy

    SANYAL GOPAL, SAMAL MAHENDRA K.. A GEOMETRY-DEPENDENT GENERALIZED SHAPE FUNCTION FOR CALCULATION OF STRESS INTENSITY FACTOR FOR AXIALLY CRACKED THIN-WALLED TUBES. INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING[Internet]. 2014;6(2):1-11. Available from: https://sid.ir/paper/319764/en

    IEEE: Copy

    GOPAL SANYAL, and MAHENDRA K. SAMAL, “A GEOMETRY-DEPENDENT GENERALIZED SHAPE FUNCTION FOR CALCULATION OF STRESS INTENSITY FACTOR FOR AXIALLY CRACKED THIN-WALLED TUBES,” INTERNATIONAL JOURNAL OF ADVANCED STRUCTURAL ENGINEERING, vol. 6, no. 2, pp. 1–11, 2014, [Online]. Available: https://sid.ir/paper/319764/en

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