
doi: 10.2172/5244204
Electrochemical form grinding cutting tests were performed on 25 17-4 PH stainless steel bars by a copper resin aluminum oxide wheel formed from a diamond form block. Tests investigated methods of dressing a form into a grinding wheel, nozzle design, optimum machine settings, and tolerance capabilities. The electrolyte was distributed evenly onto the wheel by a form-fitting nozzle, and a minimum of two passes, rough and finish, were made because of current density variations throughout the cut. Tolerance held on the form test samples was +- 0.12 mm on the contour, with an average 0.12 mm overcut.
Aluminium Compounds, Aluminium Oxides, Polymers, Cutting Tools, Electrochemical Machining, Petroleum Products, Iron Base Alloys, Petrochemicals, Iron Alloys, Wheels, Alloys, Comminution, Copper Alloys, Chemical Machining, Organic Polymers, 360301 -- Composite Materials-- Preparation & Fabrication-- (-1987), Grinding, Organic Compounds, 36 Materials Science, Production, Oxides, Machining, Stainless Steels, Corrosion Resistant Alloys, Chromium Alloys, Steels, Tools 360101* -- Metals & Alloys-- Preparation & Fabrication, Oxygen Compounds, Resins, Chalcogenides
Aluminium Compounds, Aluminium Oxides, Polymers, Cutting Tools, Electrochemical Machining, Petroleum Products, Iron Base Alloys, Petrochemicals, Iron Alloys, Wheels, Alloys, Comminution, Copper Alloys, Chemical Machining, Organic Polymers, 360301 -- Composite Materials-- Preparation & Fabrication-- (-1987), Grinding, Organic Compounds, 36 Materials Science, Production, Oxides, Machining, Stainless Steels, Corrosion Resistant Alloys, Chromium Alloys, Steels, Tools 360101* -- Metals & Alloys-- Preparation & Fabrication, Oxygen Compounds, Resins, Chalcogenides
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