• DocumentCode
    2529309
  • Title

    Influence of machining parameters on surface roughness and material removal rate in machining carbon fiber reinforced polymer material

  • Author

    Rajasekaran, T. ; Vinayagam, B.K. ; Palanikumar, K. ; Prakash, Sachin

  • Author_Institution
    Sch. of Mech. Eng., Mechatron. Eng., SRM Univ., Chennai, India
  • fYear
    2010
  • fDate
    25-27 Nov. 2010
  • Firstpage
    75
  • Lastpage
    80
  • Abstract
    Machining of polymeric materials has become increasingly important in any engineering industry subsequently the prediction of surface roughness then the material removal rate. Surface quality has greater influence on components which are coming in contact with each other. So it becomes necessary for measuring and studying machined surfaces and its behavior. In this experimental study, turning operation was carried out using carbide cutting tool on a carbon fiber reinforced polyester resin to measure its surface roughness. Combination of machining parameters that offer the good surface finish was found out using, and then the highly influential machining parameter that affects the surface characteristics also was found out using ANOVA analysis. A fuzzy rule based model was developed to predict surface roughness of parts which are made by turning operation. It was observed that there exists a good correlation between the surface roughnesses obtained from experimental as well as fuzzy rule based prediction. This experimental study also presents the influence of machining parameters on material removal rate.
  • Keywords
    cutting tools; fuzzy set theory; machining; polymers; statistical analysis; surface roughness; ANOVA analysis; carbide cutting tool; carbon fiber reinforced polyester resin; carbon fiber reinforced polymer material; engineering industry; fuzzy rule based prediction; machined surfaces; machining parameters; material removal rate; polymeric materials; surface quality; surface roughness; Feeds; Fuzzy logic; Machining; Polymers; Rough surfaces; Surface roughness; Fuzzy Modeling; Machining; Machining parameter; Material removal rate; Surface roughness;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frontiers in Automobile and Mechanical Engineering (FAME), 2010
  • Conference_Location
    Chennai
  • Print_ISBN
    978-1-4244-9081-3
  • Type

    conf

  • DOI
    10.1109/FAME.2010.5714801
  • Filename
    5714801