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Many of the metallurgical companies work to up the efficient machining of a specific metals on correctly selected machine assignment of cutting conditions, geometry and material of cutting tool as well. One of the various effects of cutting conditions and tool geometry is their effect on the heat generated giving rise to temperature at different zones of machining. On the other hand, temperature and mainly chip-tool interface temperature determining cutting temperature, has a great interface on cutting tool (tool life), surface quality productivity, etc., hence, on machining efficiency…mehr

Produktbeschreibung
Many of the metallurgical companies work to up the efficient machining of a specific metals on correctly selected machine assignment of cutting conditions, geometry and material of cutting tool as well. One of the various effects of cutting conditions and tool geometry is their effect on the heat generated giving rise to temperature at different zones of machining. On the other hand, temperature and mainly chip-tool interface temperature determining cutting temperature, has a great interface on cutting tool (tool life), surface quality productivity, etc., hence, on machining efficiency Accordingly, investigation of cutting temperature and determination of optimum cutting conditions may lead to a significant solution of a big problem as efficient machining. This work deals with investigation of chip-tool interface temperature in turning a widely used standard steel C45 and stainless steel with the aid of popular in use now a day
Autorenporträt
Abdulrakeeb A. Ghaleb, demonstrator at Faculty of Engineering, University of Ibb, Yemen.Previously, Engineer in general packaging and industries company, Taiz , Yemen.Currently, studied in Industrial Engineering at University of Assiut, Egypt.