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Information Journal Paper

Title

INVESTIGATION OF TEMPERATURE DISTRIBUTION IN THE DISCHARGE MACHINING STEEL P20

Pages

  73-80

Abstract

 In this paper the software fluent is used to simulate the distribution of temperature on work piece during ELECTRICAL DISCHARGE MACHINING. For this purpose, Average thermodynamic properties is for kind of work piece, GAUSSIAN DISTRIBUTION of heat flux for the thermal source and the free movement of the upper part as a boundary condition is used in this simulation. At the end the pit volume obtained from temperature distribution profiles in the work piece P20 steel were compared with experimental data and also dielectric fluid of choice is Kerosene. In all simulations conducted, latent heat of melting is intended; to reduce error calculation in METAL REMOVAL RATE. The comparison showed that contrary to the previous models, Energy transferred to the work piece and dielectric fluid varies according to the machining conditions, and the fraction of energy transferred to the work piece increases with the intensity and duration of the input pulse and the Inlet flow. Also the effects of structural changes on the surface roughness are studied using the temperature distribution in the pit. Increasing the inlet flow will cause increases in transition zone volume, reduction in machined work piece smoothness and Changes the thermodynamic properties of the work piece.

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    APA: Copy

    RANJBAR, S.F., GHAHREMANIAN, A., & AZARAFZA, R.. (2012). INVESTIGATION OF TEMPERATURE DISTRIBUTION IN THE DISCHARGE MACHINING STEEL P20. JOURNAL OF MODELING IN ENGINEERING, 9(27), 73-80. SID. https://sid.ir/paper/173771/en

    Vancouver: Copy

    RANJBAR S.F., GHAHREMANIAN A., AZARAFZA R.. INVESTIGATION OF TEMPERATURE DISTRIBUTION IN THE DISCHARGE MACHINING STEEL P20. JOURNAL OF MODELING IN ENGINEERING[Internet]. 2012;9(27):73-80. Available from: https://sid.ir/paper/173771/en

    IEEE: Copy

    S.F. RANJBAR, A. GHAHREMANIAN, and R. AZARAFZA, “INVESTIGATION OF TEMPERATURE DISTRIBUTION IN THE DISCHARGE MACHINING STEEL P20,” JOURNAL OF MODELING IN ENGINEERING, vol. 9, no. 27, pp. 73–80, 2012, [Online]. Available: https://sid.ir/paper/173771/en

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