Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites

Machining of A-GFRP is needed to provide desired shapes, but involves many problems such as the drop of the surface integrity of the materials due to fluffing of the fibers. The ultrasonic vibration has been applied to the cutting tool during machining. The aramid-glass hybrid FRP consists of four l...

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Main Authors: E. Nakanishi, J. Suzuki, K. Isogimi
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 2015-06-01
Series:Engineering Transactions
Subjects:
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/625
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author E. Nakanishi
J. Suzuki
K. Isogimi
author_facet E. Nakanishi
J. Suzuki
K. Isogimi
author_sort E. Nakanishi
collection DOAJ
description Machining of A-GFRP is needed to provide desired shapes, but involves many problems such as the drop of the surface integrity of the materials due to fluffing of the fibers. The ultrasonic vibration has been applied to the cutting tool during machining. The aramid-glass hybrid FRP consists of four layers of hybrid roving cloth and five layers of chopped strand glass mats, and a polyester resin as the matrix. This FRP has very poor machinability resulting from the presence of aramid fibers. The wear of the cutting tool and roughness of the machined surface are measured, and cutting phenomena are investigated by a comparison with normal cutting conditions.
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institution Kabale University
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publishDate 2015-06-01
publisher Institute of Fundamental Technological Research
record_format Article
series Engineering Transactions
spelling doaj-art-0ddaac5fb555452b91c003ae1a73328d2025-08-20T03:49:50ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80712015-06-0147210.24423/engtrans.625.1999Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid CompositesE. Nakanishi0J. Suzuki1K. Isogimi2Mie UniversityMie UniversityMie UniversityMachining of A-GFRP is needed to provide desired shapes, but involves many problems such as the drop of the surface integrity of the materials due to fluffing of the fibers. The ultrasonic vibration has been applied to the cutting tool during machining. The aramid-glass hybrid FRP consists of four layers of hybrid roving cloth and five layers of chopped strand glass mats, and a polyester resin as the matrix. This FRP has very poor machinability resulting from the presence of aramid fibers. The wear of the cutting tool and roughness of the machined surface are measured, and cutting phenomena are investigated by a comparison with normal cutting conditions.https://et.ippt.pan.pl/index.php/et/article/view/625aramid fibermicroscopic observationvibrational cuttingtool wearsurface appearance
spellingShingle E. Nakanishi
J. Suzuki
K. Isogimi
Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
Engineering Transactions
aramid fiber
microscopic observation
vibrational cutting
tool wear
surface appearance
title Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
title_full Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
title_fullStr Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
title_full_unstemmed Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
title_short Effect of Vibrations on Fracture Phenomena in Machining Aramid-Glass Fiber Hybrid Composites
title_sort effect of vibrations on fracture phenomena in machining aramid glass fiber hybrid composites
topic aramid fiber
microscopic observation
vibrational cutting
tool wear
surface appearance
url https://et.ippt.pan.pl/index.php/et/article/view/625
work_keys_str_mv AT enakanishi effectofvibrationsonfracturephenomenainmachiningaramidglassfiberhybridcomposites
AT jsuzuki effectofvibrationsonfracturephenomenainmachiningaramidglassfiberhybridcomposites
AT kisogimi effectofvibrationsonfracturephenomenainmachiningaramidglassfiberhybridcomposites