Tool flank wear model and parametric optimization in end milling of metal matrix composite using carbide tool: Response surface methodology approach

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Study on tool wear and surface roughness in end milling of particulate aluminum metal matrix composite: Application of response surface methodology

Metal matrix composites have been widely used in industries, especially aerospace industries, due to their excellent engineering properties. However, it is difficult to machine them because of the hardness and abrasive nature of reinforcement elements like silicon carbide particles (SiCp).In the present study, an attempt has been made to investigate the influence of spindle speed (N), feed rate...

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study on tool wear and surface roughness in end milling of particulate aluminum metal matrix composite: application of response surface methodology

metal matrix composites have been widely used in industries, especially aerospace industries, due to their excellent engineering properties. however, it is difficult to machine them because of the hardness and abrasive nature of reinforcement elements like silicon carbide particles (sicp).in the present study, an attempt has been made to investigate the influence of spindle speed (n), feed rate...

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Prediction of Tool Wear from Machining Parameters by Response Surface Methodology in End Milling

Tool wear increases cutting force, vibration, temperature, etc in end milling and reduces surface finish of the machined work piece. Mathematical model has been developed to predict the tool wear in terms of machining parameters such as helix angle of cutting tool, spindle speed, feed rate, axial and radial depth of cut. Central composite rotatable second order response surface methodology was ...

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Evaluation of Flank Wear of Iron-rich Binder Carbide Cutting Tool in Turning of Titanium Alloy

Despite the fact that Titanium material has been considered as difficult to cut material, its usage has been increasing day by day in all engineering sectors; wherever criticality is encountered. Many studies are going on in view of increasing tool life at high cutting speed to improve productivity. In this study, attempt has been made to see the effect of iron as a partial substitution  along ...

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Modelling and Numerical Simulation of Cutting Stress in End Milling of Titanium Alloy using Carbide Coated Tool

Based on the cutting force theory, the cutting stress in end milling operation was predicted satisfactorily through simulation of using finite element method. The mechanistic force models were introduced in high accuracy force predictions for most applications. The material properties in the simulations were defined based on the cutting force theory, as a function of strain and strain rate wher...

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ژورنال

عنوان ژورنال: international journal of industrial engineering computations

سال: 2012

ISSN: 1923-2926,1923-2934

DOI: 10.5267/j.ijiec.2011.12.002