AbstractIn this study, experimental investigations were carried out to assess the machinability of hardened AISI 4340 steel during hard (55 HRC) and soft turning (35 and 45 HRC) using TiC mixed alumina ceramic tools. Mathematical models, which can predict the machining performances, namely, chip-tool interface temperature, cutting forces and surface roughness were developed based on experimental observations. Effect of workpiece hardness and cutting parameters, namely, cutting speed, depth of cut and feed on different responses were analyzed by performing ANOVA technique. Experimental observations indicate higher cutting forces, higher chip-tool interface temperature and lower values of surface roughness for harder workpiece. Feed value has...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
Tool wear and surface roughness as performance indexes are considered to be the most important in te...
Abstract The current experimental study is to investigate the effects of process parameters (cutting...
AbstractIn this study, experimental investigations were carried out to assess the machinability of h...
Hard turning has been explored as an alternative to cylindrical grinding used in manufacturing parts...
The hard turning process has an attracting interest in different industrial sectors for finishing op...
The hard turning process has an attracting interest in different industrial sectors for finishing op...
In industry, hardened steels are used in manufacturing of the products such as machine parts and com...
AbstractTool wear and surface roughness prediction plays a significant role in machining industry fo...
Literally, hard machining describes machining of parts having hardness over 45 HRC. Besides its adva...
Literally, hard machining describes machining of parts having hardness over 45 HRC. Besides its adva...
This paper describes a comparison between mixed ceramic [Al2O3 (70%) + TiC (30%)] and rein...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
This paper describes a comparison between mixed ceramic [Al2O3 (70%) + TiC (30%)] and rein...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
Tool wear and surface roughness as performance indexes are considered to be the most important in te...
Abstract The current experimental study is to investigate the effects of process parameters (cutting...
AbstractIn this study, experimental investigations were carried out to assess the machinability of h...
Hard turning has been explored as an alternative to cylindrical grinding used in manufacturing parts...
The hard turning process has an attracting interest in different industrial sectors for finishing op...
The hard turning process has an attracting interest in different industrial sectors for finishing op...
In industry, hardened steels are used in manufacturing of the products such as machine parts and com...
AbstractTool wear and surface roughness prediction plays a significant role in machining industry fo...
Literally, hard machining describes machining of parts having hardness over 45 HRC. Besides its adva...
Literally, hard machining describes machining of parts having hardness over 45 HRC. Besides its adva...
This paper describes a comparison between mixed ceramic [Al2O3 (70%) + TiC (30%)] and rein...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
This paper describes a comparison between mixed ceramic [Al2O3 (70%) + TiC (30%)] and rein...
The present study addresses the machinability investigation of high strength low alloy grade AISI 43...
Tool wear and surface roughness as performance indexes are considered to be the most important in te...
Abstract The current experimental study is to investigate the effects of process parameters (cutting...