Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube

Sound and vibration caused in the engine due to combustion process may affect the users. One of the vital qualities of diesel fuel is high sound and vibration. The vibration of the engine is one of the primary factors in engine structure and maintenance. Vibration estimation on the engine block, cyl...

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Main Authors: Velumani V, Manieniyan V, Sivaprakasam S
Format: Article
Language:English
Published: JVE International 2019-11-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/20459
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spelling doaj-a8d45f9572aa4a9b8dc977e53cbba5112020-11-25T02:21:51ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602019-11-012171810181810.21595/jve.2019.2045920459Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotubeVelumani V0Manieniyan V1Sivaprakasam S2Mechanical Engineering, Podhigai College of Engineering and Technology, Tamilnadu, IndiaMechanical Engineering, Government College of Engineering, Srirangam, IndiaMechanical Engineering, Annamalai University, Tamil Nadu, IndiaSound and vibration caused in the engine due to combustion process may affect the users. One of the vital qualities of diesel fuel is high sound and vibration. The vibration of the engine is one of the primary factors in engine structure and maintenance. Vibration estimation on the engine block, cylinder head is a non-intrusive strategy and has been utilized effectively for fault prediction of diesel engines. The vibration signals along with signal processing techniques are utilized to highlights the features that are sensitive to faults. In this work, experimental tests have been carried out to assess the vibration of a diesel engine with diesel, 20 % biodiesel (Ethyl Ester of ground nut acid oil EEGOA) and 30 ppm Multi-walled Carbon Nano tubes with 20 % biodiesel (MWCNT30ppm B20EEGAO) at various load (20 %, 40 %, 60 %, 80 % and 100 %). Digital Vibration Meter Model: Equinox-VM 6360 is utilized to gauge the vibration in three unique positions, one is cylinder head of the engine, second one is crank of the engine, and third one is bottom of the engine. In this work, the vibration is measured in terms of acceleration. The MWCNT30ppm B20EEGAO blend demonstrates the lower vibration compared with different blends.https://www.jvejournals.com/article/20459biodieselcarbon nano tubeenginevibration
collection DOAJ
language English
format Article
sources DOAJ
author Velumani V
Manieniyan V
Sivaprakasam S
spellingShingle Velumani V
Manieniyan V
Sivaprakasam S
Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
Journal of Vibroengineering
biodiesel
carbon nano tube
engine
vibration
author_facet Velumani V
Manieniyan V
Sivaprakasam S
author_sort Velumani V
title Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
title_short Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
title_full Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
title_fullStr Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
title_full_unstemmed Comparative vibration analysis on IC engine with biodiesel and multi-walled carbon nanotube
title_sort comparative vibration analysis on ic engine with biodiesel and multi-walled carbon nanotube
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2019-11-01
description Sound and vibration caused in the engine due to combustion process may affect the users. One of the vital qualities of diesel fuel is high sound and vibration. The vibration of the engine is one of the primary factors in engine structure and maintenance. Vibration estimation on the engine block, cylinder head is a non-intrusive strategy and has been utilized effectively for fault prediction of diesel engines. The vibration signals along with signal processing techniques are utilized to highlights the features that are sensitive to faults. In this work, experimental tests have been carried out to assess the vibration of a diesel engine with diesel, 20 % biodiesel (Ethyl Ester of ground nut acid oil EEGOA) and 30 ppm Multi-walled Carbon Nano tubes with 20 % biodiesel (MWCNT30ppm B20EEGAO) at various load (20 %, 40 %, 60 %, 80 % and 100 %). Digital Vibration Meter Model: Equinox-VM 6360 is utilized to gauge the vibration in three unique positions, one is cylinder head of the engine, second one is crank of the engine, and third one is bottom of the engine. In this work, the vibration is measured in terms of acceleration. The MWCNT30ppm B20EEGAO blend demonstrates the lower vibration compared with different blends.
topic biodiesel
carbon nano tube
engine
vibration
url https://www.jvejournals.com/article/20459
work_keys_str_mv AT velumaniv comparativevibrationanalysisonicenginewithbiodieselandmultiwalledcarbonnanotube
AT manieniyanv comparativevibrationanalysisonicenginewithbiodieselandmultiwalledcarbonnanotube
AT sivaprakasams comparativevibrationanalysisonicenginewithbiodieselandmultiwalledcarbonnanotube
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