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- W4313018424 abstract "Electrical discharge machining is a non-conventional manufacturing process with main thermal active principle. The induced thermal energy leads to material ablation and formation of numerous modifications in sub-surface layers. These modifications determine strongly the surface integrity of the manufactured component and thus affect the functional component properties directly. Therefore, predicting these material modifications will allow a detailed conclusion regarding the functionality in advance. In this work, a phase field method based model is developed to simulate the microstructure evolution in the heat affected zone of a steel (1.2343). Due to high local energy density of a single discharge, high temperature gradients occur, which cause different thermal loadings within sub-surface layers. Hence, the results of a heat transfer simulation at different locations of the rim zone served as input for the microstructure evolution models to represent the complete final heat affected zone. As a second step, the rim zone properties are derived as a superposition of the properties of pure phases based on the phase fractions resulting from the microstructure evolution model." @default.
- W4313018424 created "2023-01-05" @default.
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- W4313018424 date "2022-01-01" @default.
- W4313018424 modified "2023-10-18" @default.
- W4313018424 title "Simulation based derivation of changed rim zone properties caused by thermal loadings during EDM process" @default.
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- W4313018424 doi "https://doi.org/10.1016/j.procir.2022.09.117" @default.
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