IJIRST (International Journal for Innovative Research in Science & Technology)ISSN (online) : 2349-6010

 International Journal for Innovative Research in Science & Technology

An Investigation of Hole Size, Circularity and Delamination during Drilling Operation of Carbon Fiber Rein Forced Polymer-A Review


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International Journal for Innovative Research in Science & Technology
Volume 1 Issue - 10
Year of Publication : 2015
Authors : Chetan Rathod ; Mr.Mahesh Chudasama

BibTeX:

@article{IJIRSTV1I10004,
     title={An Investigation of Hole Size, Circularity and Delamination during Drilling Operation of Carbon Fiber Rein Forced Polymer-A Review},
     author={Chetan Rathod and Mr.Mahesh Chudasama},
     journal={International Journal for Innovative Research in Science & Technology},
     volume={1},
     number={10},
     pages={3--7},
     year={},
     url={http://www.ijirst.org/articles/IJIRSTV1I10004.pdf},
     publisher={IJIRST (International Journal for Innovative Research in Science & Technology)},
}



Abstract:

Carbon fiber reinforced polymers (CFRP) are increasingly employed within the aerospace industry, particularly within the aircraft sector. However, machining of fiber reinforced composites can be quite complex, first due to the inherent heterogeneity resulting from the reinforcements/matrix assembly and second due to the presence of high modulus/high strength fibers. In this dissertation work investigation on machining characterization of carbon fiber reinforced plastic is carried out for drilling operation with coated and uncoated twist drill. This investigation is carried out to find out hole quality parameters. Here comparison is made between the coated solid carbide drill conditions with the uncoated HSS drill condition for finding out the better one. In this study, the variable parameters, that affect much, are taken as input parameters. They are spindle speed, feed rate and point angle and output parameters are as Hole size and circularity and delamination.


Keywords:

hole size, circularity, tool wear, thrust force, spindle speed, feed, point angle, delamination


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