Please use this identifier to cite or link to this item: https://doi.org/10.3390/ma14071699
Title: Investigating the efficacy of adhesive tape for drilling carbon fibre reinforced polymers
Authors: Prakash, Chander
Pramanik, Alokesh
Basak, Animesh K.
Dong, Yu
Debnath, Sujan
Shankar, Subramaniam
Singh, Sunpreet 
Wu, Linda Yongling
Zheng, Hongyu Y.
Keywords: Adhesive tape
Carbon fibre reinforced polymers (CFRPs)
Delamination
Drilling
Drilling accuracy
Surface finish
Thrust force
Issue Date: 30-Mar-2021
Publisher: MDPI AG
Citation: Prakash, Chander, Pramanik, Alokesh, Basak, Animesh K., Dong, Yu, Debnath, Sujan, Shankar, Subramaniam, Singh, Sunpreet, Wu, Linda Yongling, Zheng, Hongyu Y. (2021-03-30). Investigating the efficacy of adhesive tape for drilling carbon fibre reinforced polymers. Materials 14 (7) : 1699. ScholarBank@NUS Repository. https://doi.org/10.3390/ma14071699
Rights: Attribution 4.0 International
Abstract: In the present research work, an effort has been made to explore the potential of using the adhesive tapes while drilling CFRPs. The input parameters, such as drill bit diameter, point angle, Scotch tape layers, spindle speed, and feed rate have been studied in response to thrust force, torque, circularity, diameter error, surface roughness, and delamination occurring during drilling. It has been found that the increase in point angle increased the delamination, while increase in Scotch tape layers reduced delamination. The surface roughness decreased with the increase in drill diameter and point angle, while it increased with the speed, feed rate, and tape layer. The best low roughness was obtained at 6 mm diameter, 130◦ point angle, 0.11 mm/rev feed rate, and 2250 rpm speed at three layers of Scotch tape. The circularity error initially increased with drill bit diameter and point angle, but then decreased sharply with further increase in the drill bit diameter. Further, the circularity error has non-linear behavior with the speed, feed rate, and tape layer. Low circularity error has been obtained at 4 mm diameter, 118◦ point angle, 0.1 mm/rev feed rate, and 2500 RPM speed at three layers of Scotch tape. The low diameter error has been obtained at 6 mm diameter, 130◦ point angle, 0.12 mm/rev feed rate, and 2500 rpm speed at three layer Scotch tape. From the optical micro-graphs of drilled holes, it has been found that the point angle is one of the most effective process parameters that significantly affects the delamination mechanism, followed by Scotch tape layers as compared to other parameters such as drill bit diameter, spindle speed, and feed rate. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
Source Title: Materials
URI: https://scholarbank.nus.edu.sg/handle/10635/232108
ISSN: 1996-1944
DOI: 10.3390/ma14071699
Rights: Attribution 4.0 International
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