Cargando…

Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels

Cutting tool characterization plays a crucial role in understanding the behavior of machining operations. The selection of a suitable cutting material, the operating conditions for the work piece, is necessary to yield good cutting-tool life. Several pieces of research have been carried out in cutti...

Descripción completa

Detalles Bibliográficos
Autores principales: Ganeshkumar, S., Singh, Bipin Kumar, Kumar, S. Dharani, Gokulkumar, S., Sharma, Shubham, Mausam, Kuwar, Li, Changhe, Zhang, Yanbin, Tag Eldin, Elsayed Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694931/
https://www.ncbi.nlm.nih.gov/pubmed/36431481
http://dx.doi.org/10.3390/ma15227994
_version_ 1784837929312452608
author Ganeshkumar, S.
Singh, Bipin Kumar
Kumar, S. Dharani
Gokulkumar, S.
Sharma, Shubham
Mausam, Kuwar
Li, Changhe
Zhang, Yanbin
Tag Eldin, Elsayed Mohamed
author_facet Ganeshkumar, S.
Singh, Bipin Kumar
Kumar, S. Dharani
Gokulkumar, S.
Sharma, Shubham
Mausam, Kuwar
Li, Changhe
Zhang, Yanbin
Tag Eldin, Elsayed Mohamed
author_sort Ganeshkumar, S.
collection PubMed
description Cutting tool characterization plays a crucial role in understanding the behavior of machining operations. The selection of a suitable cutting material, the operating conditions for the work piece, is necessary to yield good cutting-tool life. Several pieces of research have been carried out in cutting-tool characteristics for turning operation. Only a few pieces of research have focused on correlating the vibrations and stress with wear characteristics. This research article deals with stress induced in silicon carbide tool inserts and coated tool inserts while machining SS304 steel. Since this material is much less resistant to corrosion and oxidation it is widely used in engineering applications such as cryogenics, the food industry and liquid contact surfaces. Moreover, these materials have much lower magnetic permeability so they are used as nonmagnetic engineering components which are very hard. This article focuses on the machining of SS304 by carbide tool inserts and then, the cutting forces were observed with a tool dynamometer. Using observed cutting forces, the induced stress in the lathe tool insert was determined by FEA investigation. This research also formulates an idea to predict the tool wear due to vibration. Apparently, the worn-out tool vibrates more than new tools. Using the results, the relation between stress, strain and feed rate, depth of cut and speed was found and mathematically modeled using MINI TAB. It was observed that carbide tool inserts with coating withstand better than uncoated tools while machining SS304. The results were anticipated and correlation between the machining parameters furnished the prediction of tool life and obtaining the best machining outcomes by using coated tool inserts.
format Online
Article
Text
id pubmed-9694931
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96949312022-11-26 Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels Ganeshkumar, S. Singh, Bipin Kumar Kumar, S. Dharani Gokulkumar, S. Sharma, Shubham Mausam, Kuwar Li, Changhe Zhang, Yanbin Tag Eldin, Elsayed Mohamed Materials (Basel) Article Cutting tool characterization plays a crucial role in understanding the behavior of machining operations. The selection of a suitable cutting material, the operating conditions for the work piece, is necessary to yield good cutting-tool life. Several pieces of research have been carried out in cutting-tool characteristics for turning operation. Only a few pieces of research have focused on correlating the vibrations and stress with wear characteristics. This research article deals with stress induced in silicon carbide tool inserts and coated tool inserts while machining SS304 steel. Since this material is much less resistant to corrosion and oxidation it is widely used in engineering applications such as cryogenics, the food industry and liquid contact surfaces. Moreover, these materials have much lower magnetic permeability so they are used as nonmagnetic engineering components which are very hard. This article focuses on the machining of SS304 by carbide tool inserts and then, the cutting forces were observed with a tool dynamometer. Using observed cutting forces, the induced stress in the lathe tool insert was determined by FEA investigation. This research also formulates an idea to predict the tool wear due to vibration. Apparently, the worn-out tool vibrates more than new tools. Using the results, the relation between stress, strain and feed rate, depth of cut and speed was found and mathematically modeled using MINI TAB. It was observed that carbide tool inserts with coating withstand better than uncoated tools while machining SS304. The results were anticipated and correlation between the machining parameters furnished the prediction of tool life and obtaining the best machining outcomes by using coated tool inserts. MDPI 2022-11-12 /pmc/articles/PMC9694931/ /pubmed/36431481 http://dx.doi.org/10.3390/ma15227994 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ganeshkumar, S.
Singh, Bipin Kumar
Kumar, S. Dharani
Gokulkumar, S.
Sharma, Shubham
Mausam, Kuwar
Li, Changhe
Zhang, Yanbin
Tag Eldin, Elsayed Mohamed
Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title_full Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title_fullStr Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title_full_unstemmed Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title_short Study of Wear, Stress and Vibration Characteristics of Silicon Carbide Tool Inserts and Nano Multi-Layered Titanium Nitride-Coated Cutting Tool Inserts in Turning of SS304 Steels
title_sort study of wear, stress and vibration characteristics of silicon carbide tool inserts and nano multi-layered titanium nitride-coated cutting tool inserts in turning of ss304 steels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694931/
https://www.ncbi.nlm.nih.gov/pubmed/36431481
http://dx.doi.org/10.3390/ma15227994
work_keys_str_mv AT ganeshkumars studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT singhbipinkumar studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT kumarsdharani studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT gokulkumars studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT sharmashubham studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT mausamkuwar studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT lichanghe studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT zhangyanbin studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels
AT tageldinelsayedmohamed studyofwearstressandvibrationcharacteristicsofsiliconcarbidetoolinsertsandnanomultilayeredtitaniumnitridecoatedcuttingtoolinsertsinturningofss304steels