AbstractThis paper presents the investigation of cutting forces (tangential and feed force) by turning of unidirectional glass fiber reinforced plastics (UD-GFRP) composite. Composite materials are used in variety of engineering applications in different fields such as aerospace, oil, gas and process industries. Process parameters (tool nose radius, tool rake angle, feed rate, cutting speed, depth of cut and cutting environment) are investigated using Taguchi's robust design methodology. Taguchi's L18 orthogonal array is used to conduct experimentation. The experimentation is carried out with Carbide (K10) Tool, covering a wide range of machining conditions. Analysis of variance (ANOVA) is performed for significant parameters and later regr...
The use of composite materials continues to show an increasing trend in various fields such as sport...
Glass fiber–reinforced plastics are extensively applied in engineering fields as a potential replace...
In this technological era, globalization has brought new challenges for the manufacturing industries...
AbstractThis paper presents the investigation of cutting forces (tangential and feed force) by turni...
In this paper, a new multicriteria optimization approach is proposed for the selection of the optima...
Milling has been widely used in industry for machining parts to their final dimensions without requi...
AbstractCarbon Fiber Reinforced Polymer (CFRP) composites are widely used in aerospace industry in l...
In the present paper the influence of the main cutting parameters on process performance during long...
AbstractIn the present work, an attempt has been made to assess the influencing parameters on the ma...
The objective of the present work is to optimize process parameters namely, cutting speed, feed, poi...
AbstractComposite materials have been gaining immense importance in manufacturing industries, partic...
In the present work, a multi-response optimization method is used to optimize the machining paramete...
With the increasing use of Fiber Reinforced Polymer (FRP) composites outside the defense, space and ...
Introduction: Optimization of machining parameters is essential for improving expected outcome of an...
AbstractThe objective of the present work is to optimize process parameters namely, cutting speed, f...
The use of composite materials continues to show an increasing trend in various fields such as sport...
Glass fiber–reinforced plastics are extensively applied in engineering fields as a potential replace...
In this technological era, globalization has brought new challenges for the manufacturing industries...
AbstractThis paper presents the investigation of cutting forces (tangential and feed force) by turni...
In this paper, a new multicriteria optimization approach is proposed for the selection of the optima...
Milling has been widely used in industry for machining parts to their final dimensions without requi...
AbstractCarbon Fiber Reinforced Polymer (CFRP) composites are widely used in aerospace industry in l...
In the present paper the influence of the main cutting parameters on process performance during long...
AbstractIn the present work, an attempt has been made to assess the influencing parameters on the ma...
The objective of the present work is to optimize process parameters namely, cutting speed, feed, poi...
AbstractComposite materials have been gaining immense importance in manufacturing industries, partic...
In the present work, a multi-response optimization method is used to optimize the machining paramete...
With the increasing use of Fiber Reinforced Polymer (FRP) composites outside the defense, space and ...
Introduction: Optimization of machining parameters is essential for improving expected outcome of an...
AbstractThe objective of the present work is to optimize process parameters namely, cutting speed, f...
The use of composite materials continues to show an increasing trend in various fields such as sport...
Glass fiber–reinforced plastics are extensively applied in engineering fields as a potential replace...
In this technological era, globalization has brought new challenges for the manufacturing industries...