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Journal of mechanical science and technology v.24 no.8, 2010년, pp.1669 - 1677   SCIE 피인용횟수: 3
본 등재정보는 저널의 등재정보를 참고하여 보여주는 베타서비스로 정확한 논문의 등재여부는 등재기관에 확인하시기 바랍니다.

Surface roughness and cutting force prediction in MQL and wet turning process of AISI 1045 using design of experiments

Hwang, Young-Kug    (Department of Mechanical Design & Manufacturing Engineering, Changwon National University   ); Lee, Choon-Man    (Department of Mechanical Design & Manufacturing Engineering, Changwon National University  );
  • 초록

    This paper presents an investigation into the MQL (minimum quantity lubrication) and wet turning processes of AISI 1045 work material with the objective of suggesting the experimental model in order to predict the cutting force and surface roughness, to select the optimal cutting parameters, and to analyze the effects of cutting parameters on machinability. Fractional factorial design and central composite design were used for the experiment plan. Cutting force and surface roughness according to cutting parameters were measured through the external cylindrical turning based on the experiment plan. The measured data were analyzed by regression analysis and verification experiments were conducted to confirm the results. From the experimental results and regression analysis, this research project suggested the experimental equations, proposed the optimal cutting parameters, and analyzed the effects of cutting parameters on surface roughness and cutting force in the MQL and wet turning processes.


  • 주제어

    MQL turning .   Optimal cutting parameters .   Fractional factorial design .   Central composite design .   Surface roughness and cutting force prediction.  

  • 참고문헌 (22)

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  • 이 논문을 인용한 문헌 (3)

    1. 2012. "" Journal of mechanical science and technology, 26(12): 4105~4114     
    2. 2013. "" International journal of precision engineering and manufacturing, 14(6): 875~880     
    3. Choi, Min-Seok ; Kim, Dong-Hyeon ; Hwang, Seong-Ju ; Lee, Choon-Man 2014. "A Study on the Machinability Evaluation According to Lubrication Conditions and Taper Angle for Turning of SCM440" 한국정밀공학회지 = Journal of the Korean Society of Precision Engineering, 31(1): 35~42     

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