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Information Journal Paper

Title

MODELING OF DYNAMIC BEHAVIOR OF ALUMINUM ALLOY 5083 IN MACHINING PROCESS

Pages

  1-7

Abstract

 Widespread applications of MACHINING in various industrial sectors as well as acute needs for optimization are among attractive research topics for both academic and industrial institutions. Finite element analysis based techniques are available to simulate MACHINING processes. Success and reliability of numerical models are very much dependent to work material flow stress models in strain, strain rate and temperature functions. One of the most accurate and useful material model is the Johnson-Cook model. The basic equation for modeling the behavior of each material is needed to determine the equation coefficients. In this study, the model parameters are determined by fitting the data from both quasi-static compression tests at low strain rates and MACHINING tests at high strain rates. Therefore; the experimental results were then compared with those obtained through simulation works by Abaqus code. Experimental results confirmed the capability of material equation to determine the DYNAMIC BEHAVIOR of 5083 alloy.

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    Cite

    APA: Copy

    DAVOODI, BEHNAM, & ESLAMI, MOHAMMAD REZA. (2016). MODELING OF DYNAMIC BEHAVIOR OF ALUMINUM ALLOY 5083 IN MACHINING PROCESS. MODARES MECHANICAL ENGINEERING, 16(3), 1-7. SID. https://sid.ir/paper/178493/en

    Vancouver: Copy

    DAVOODI BEHNAM, ESLAMI MOHAMMAD REZA. MODELING OF DYNAMIC BEHAVIOR OF ALUMINUM ALLOY 5083 IN MACHINING PROCESS. MODARES MECHANICAL ENGINEERING[Internet]. 2016;16(3):1-7. Available from: https://sid.ir/paper/178493/en

    IEEE: Copy

    BEHNAM DAVOODI, and MOHAMMAD REZA ESLAMI, “MODELING OF DYNAMIC BEHAVIOR OF ALUMINUM ALLOY 5083 IN MACHINING PROCESS,” MODARES MECHANICAL ENGINEERING, vol. 16, no. 3, pp. 1–7, 2016, [Online]. Available: https://sid.ir/paper/178493/en

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