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This book delves into enhancing machining performance for EN-24 alloy steel, a challenging material widely used in various industrial applications. Cutting fluids' impact on tool performance during CNC turning was investigated, comparing wet and dry conditions across different cutting parameters-spindle speed, feed rate, and depth of cut. Using an L18 orthogonal array and Taguchi approach for optimization. Spindle speed emerged as crucial, contributing 73.34% to achieve superior surface quality (surface roughness) and 85.47% for prolonged tool life (Tool Wear Rate). All cutting factors…mehr

Produktbeschreibung
This book delves into enhancing machining performance for EN-24 alloy steel, a challenging material widely used in various industrial applications. Cutting fluids' impact on tool performance during CNC turning was investigated, comparing wet and dry conditions across different cutting parameters-spindle speed, feed rate, and depth of cut. Using an L18 orthogonal array and Taguchi approach for optimization. Spindle speed emerged as crucial, contributing 73.34% to achieve superior surface quality (surface roughness) and 85.47% for prolonged tool life (Tool Wear Rate). All cutting factors (spindle speed, feed rate, and depth of cut) significantly impacted Material Removal Rate (MRR), showing their importance in maximizing productivity.This exploration underscores the pivotal role of spindle speed in surface quality and tool life, delineates optimal parameters for different outcomes, and emphasizes the multifaceted impact of cutting conditions on machining effectiveness for EN-24 alloy steel.
Autorenporträt
Jatinder Kumar a obtenu son doctorat en génie mécanique en 2022 et sa maîtrise de technologie en ingénierie de la production en 2011. Il s'enorgueillit d'une longue carrière d'enseignant qui s'étend sur plus de 19 ans. En outre, il a apporté une contribution significative au monde universitaire avec plus de 36 publications dans diverses revues indexées SCI et Scopus.