This paper focuses on an analysis of the surface texture formed during precision machining of tungsten carbide. The work material was fabricated using direct laser deposition (DLD) technology. The experiment included precision milling of tungsten carbide samples with a monolithic torus cubic boron nitride tool and grinding with diamond and alumina cup wheels. An optical surface profiler was applied to the measurements of surface textures and roughness profiles. In addition, the micro-geometry of the milling cutter was measured with the application of an optical device. The surface roughness height was also estimated with the application of a model, which included kinematic-geometric parameters and minimum uncut chip thickness. The research revealed the occurrence of micro-grooves on the machined surface. The surface roughness height calculated on the basis of the traditional kinematic-geometric model was incompatible with the measurements. However, better agreement between the theoretical and experimental values was observed for the minimum uncut chip thickness model.
A B S T R A C TThis paper presents analysis of flank wear influence on forces in orthogonal turning of 42CrMo4 steel and evaluates capacity of finite element model to provide such force values. Data about magnitude of feed and cutting force were obtained from measurements with force tensiometer in experimental test as well as from finite element analysis of chip formation process in ABAQUS/Explicit software. For studies an insert with complex rake face was selected and flank wear was simulated by grinding operation on its flank face. The aim of grinding inset surface was to obtain even flat wear along cutting edge, which after the measurement could be modeled with CAD program and applied in FE analysis for selected range of wear width. By comparing both sets of force values as function of flank wear in given cutting conditions FEA model was validated and it was established that it can be applied to analyze other physical aspects of machining. Force analysis found that progression of wear causes increase in cutting force magnitude and steep boost to feed force magnitude. Analysis of Fc/Ff force ratio revealed that flank wear has significant impact on resultant force in orthogonal cutting and magnitude of this force components in cutting and feed direction. Surge in force values can result in transfer of substantial loads to machine-tool interface.
W artykule przedstawiono analizę wpływu zużycia powierzchni przyłożenia (wskaźnik VBB) na składowe siły całkowitej oraz rozkład nacisków na ostrzu podczas toczenia ortogonalnego. Dane eksperymentalne uzyskano, mierząc składowe siły całkowitej siłomierzem tensometrycznym oraz przez rejestrację wartości reakcji ostrza w modelu MES procesu formowania wióra. Badania eksperymentalne posłużyły do walidacji modeli numerycznych przygotowanych w programie ABAQUS. Określone pasmo zużycia zostało zamodelowane geometrycznie na powierzchni przyłożenia, a wpływ tego zużycia został oceniony w niezależnych symulacjach. Model numeryczny formowania wióra wykorzystuje równanie konstytutywne Johnsona-Cooka do opisu wartości i rozkładu naprężeń w przedmiocie obrabianym, a ostrze z zamodelowanym zużyciem zostało opisane jako ciało idealnie sztywne. Mechanikę procesu skrawania przedstawiono, odwołując się do modelu Merchanta skrawania ortogonalnego, nanosząc wykreślnie wektory przyrostu składowych siły całkowitej obliczone MES na tle zamodelowanego konturu strefy skrawania. Wyniki pomiarów i symulacji wskazują, że wzrost zużycia określony wskaźnikiem VBB wpływa bezpośrednio na wzrost składowych siły całkowitej.Słowa kluczowe: metoda elementów skończonych, zużycie narzędzia, modelowanie, rozkład nacisków, składowe siły całkowitej
One of research methods in metal cutting process is to measure hardness in the contact zone between cutting tool and workpiece. The objective of the performed research was to determine thickness and hardness of the superficial layer of cut surface due to cutting process, both orthogonal and complex cutting. The most important finding was that thickness of the superficial hardened layer is very thin under considered conditions, less than 0.01 … 0.02 mm. This research should be continued.
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