Electrical Discharge Machining of Alumina Using Ni-Cr Coating and SnO Powder-Mixed Dielectric Medium

被引:8
|
作者
Okunkova, Anna A. [1 ]
Volosova, Marina A. [1 ]
Kropotkina, Elena Y. [1 ]
Hamdy, Khaled [1 ,2 ]
Grigoriev, Sergey N. [1 ]
机构
[1] Moscow State Univ Technol STANKIN, Dept High Efficiency Proc Technol, Moscow 127055, Russia
[2] Minia Univ, Fac Engn, Prod Engn & Mech Design Dept, Al Minya 61519, Egypt
基金
俄罗斯科学基金会;
关键词
alumina; assisting electrode technique; brass; electrical discharge machining; electrode; erosion; thermochemical analyses; MECHANICAL-PROPERTIES; OPTICAL-PROPERTIES; CUTTING TOOLS; COMPOSITES; AL; DEPOSITION; MICROSTRUCTURE; PERFORMANCE; CERAMICS; BEHAVIOR;
D O I
10.3390/met12101749
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Aluminum-based ceramics exhibit excellent wear resistance and hot hardness that are suitable for various responsible applications allowing products to work under extreme mechanical and thermal loads (up to 1000 degrees C). The problem of high-precision forming complex-shaped parts is a known engineering challenge due to the insulating properties of aluminum-containing ceramics and the formation of chemically active carbides in a hydrocarbon medium. The alternative approach for electrical discharge machining non-conductive sintered Al2O3 in the water-based medium using nickel-chrome plasma-vapor-deposed coating of 12 mm, SnO powder suspension (particle diameter of empty set10 mu m, concentration of 150 g/L), and brass wire-tool is proposed. The productivity was evaluated by calculating the material removal rate and discharge gap for various combinations of pulse frequency and duration. The maximal material removal rate of 0.0014 mm(3)/s was achieved for a pulse frequency of 30 kHz and pulse duration of 1.7-2.5 mu s. The recommended value of the interelectrode gap is 48.0 +/- 4.9 mu m. The possibility of electrical discharge machining aluminum-containing insulating ceramics without using hydrocarbons, carbon and copper-group assisting measures was proposed and shown for the first time. The chemical content of the debris in the interelectrode gap between components of the materials was thermochemically analyzed.
引用
收藏
页数:22
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