Evaluation of drilling Al/B4C composites with carbide drills

<span>In this study, cutting forces and torque was evaluated through Taguchi Method (TM) in the drilling of the high density B4C particle reinforced composites, which were produced through powder metallurgy-hot pressing method, with coated and uncoated carbide drills. Cutting speed (18, 25 and...

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Main Authors: Ali Rıza Motorcu, Ergün Ekici
Format: Article
Language:English
Published: Pamukkale University 2016-08-01
Series:Pamukkale University Journal of Engineering Sciences
Online Access:http://dergipark.ulakbim.gov.tr/pajes/article/view/5000200407
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spelling doaj-220e4cdc21214ed3861239855e1fe7822020-11-24T22:12:37ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812016-08-012242592665000167307Evaluation of drilling Al/B4C composites with carbide drillsAli Rıza MotorcuErgün Ekici<span>In this study, cutting forces and torque was evaluated through Taguchi Method (TM) in the drilling of the high density B4C particle reinforced composites, which were produced through powder metallurgy-hot pressing method, with coated and uncoated carbide drills. Cutting speed (18, 25 and 35 m/min), feed rate (0.08, 0.112 and 0.16 mm/rev), coating properties (coated and uncoated) and the amounts of particle reinforcement (5%, 10% and 15% B4C) were used as the control factors. It was observed that the increased feed rate and particle reinforcement increased the axial force and torque, and decreased the cutting speed. The uncoated drills had a better performance than the coated drills. The amount of B4C reinforcement was observed to be the most effective parameter on the axial force and torque with the contribution ratios of 96.6% and 49.1%, respectively. Moreover, the correlation coefficients (R2) of the first order predictive equations developed for the axial force and torque were calculated as 0.895 and 0.854, respectively.</span>http://dergipark.ulakbim.gov.tr/pajes/article/view/5000200407
collection DOAJ
language English
format Article
sources DOAJ
author Ali Rıza Motorcu
Ergün Ekici
spellingShingle Ali Rıza Motorcu
Ergün Ekici
Evaluation of drilling Al/B4C composites with carbide drills
Pamukkale University Journal of Engineering Sciences
author_facet Ali Rıza Motorcu
Ergün Ekici
author_sort Ali Rıza Motorcu
title Evaluation of drilling Al/B4C composites with carbide drills
title_short Evaluation of drilling Al/B4C composites with carbide drills
title_full Evaluation of drilling Al/B4C composites with carbide drills
title_fullStr Evaluation of drilling Al/B4C composites with carbide drills
title_full_unstemmed Evaluation of drilling Al/B4C composites with carbide drills
title_sort evaluation of drilling al/b4c composites with carbide drills
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2016-08-01
description <span>In this study, cutting forces and torque was evaluated through Taguchi Method (TM) in the drilling of the high density B4C particle reinforced composites, which were produced through powder metallurgy-hot pressing method, with coated and uncoated carbide drills. Cutting speed (18, 25 and 35 m/min), feed rate (0.08, 0.112 and 0.16 mm/rev), coating properties (coated and uncoated) and the amounts of particle reinforcement (5%, 10% and 15% B4C) were used as the control factors. It was observed that the increased feed rate and particle reinforcement increased the axial force and torque, and decreased the cutting speed. The uncoated drills had a better performance than the coated drills. The amount of B4C reinforcement was observed to be the most effective parameter on the axial force and torque with the contribution ratios of 96.6% and 49.1%, respectively. Moreover, the correlation coefficients (R2) of the first order predictive equations developed for the axial force and torque were calculated as 0.895 and 0.854, respectively.</span>
url http://dergipark.ulakbim.gov.tr/pajes/article/view/5000200407
work_keys_str_mv AT alirızamotorcu evaluationofdrillingalb4ccompositeswithcarbidedrills
AT ergunekici evaluationofdrillingalb4ccompositeswithcarbidedrills
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