Experimental Investigation of Surface Layer Properties of High Thermal Conductivity Tool Steel after Electrical Discharge Machining

被引:55
作者
Swiercz, Rafal [1 ]
Oniszczuk-Swiercz, Dorota [1 ]
机构
[1] Warsaw Univ Technol, Inst Mfg Technol, PL-00661 Warsaw, Poland
关键词
electrical discharge machining; EDM; surface layer; roughness; white layer; micro cracks; modeling; OF-THE-ART; ENERGY; MICROSTRUCTURE; PARAMETERS; METALLIZATION; OPTIMIZATION;
D O I
10.3390/met7120550
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
New materials require the use of advanced technology in manufacturing complex shape parts. One of the modern materials widely used in the tool industry for injection molds or hot stamping dies is high conductivity tool steel (HTCS) 150. Due to its hardness (55 HRC) and thermal conductivity at 66 W/mK, this material is difficult to machine by conventional treatment and is being increasingly manufactured by nonconventional technology such as electrical discharge machining (EDM). In the EDM process, material is removed from the workpiece by a series of electrical discharges that cause changes to the surface layers properties. The final state of the surface layer directly influences the durability of the produced elements. This paper presents the influence of EDM process parameters: discharge current I-c and the pulse time t(on) on surface layer properties. The experimental investigation was carried out with an experimental methodology design. Surface layers properties including roughness 3D parameters, the thickness of the white layer, heat affected zone, tempered layer and occurring micro cracks were investigated and described. The influence of the response surface methodology (RSM) of discharge current I-c and the pulse time t(on) on the thickness of the white layer and roughness parameters Sa, Sds and Ssc were described and established.
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页数:16
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