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Titlebook: Enhanced Material, Parts Optimization and Process Intensification; Proceedings of the F Uwe Reisgen,Dietmar Drummer,Holger Marschall Confer

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https://doi.org/10.1007/978-3-030-64235-8 of γ′-particles in the simulation. The comparison to shapes of γ′-particles in experimental microstructures serves as an important cross validation of the model. The application of the model to investigate the effect of the subsequent aging treatment on the precipitation microstructure after a brazing process is discussed.
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Living reference work 2025Latest editionrnative to the existing momentum source formulation and the viscosity based solidification model commonly used in the literature. The developed solidification model is implemented in a three-dimensional coating build-up simulation to acquire the coating microstructure.
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https://doi.org/10.1057/978-1-349-95260-1me. It could be shown that the majority of part properties is unaffected by reducing the cylinder temperature, whereas cooling time and material aging of the surrounding powder could be reduced. This indicates the possibility of a solidification-optimized processing strategy with targeted temperature control in z-direction.
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https://doi.org/10.1007/978-3-030-23828-5On the other side, a liquid reactive UV-curing thermoset is implemented into the LS process chamber. After curing of the UV-curing thermoset the powder beside the cured thermoset is molten by the use of the CO. laser. Both strategies allow the generation of multi-material parts consisting of material regions with different functional properties.
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Noël Carroll,Laura T. Di Summa,Shawn Lohtssible to build up test specimen in form of wall shaped structures of 15 mm height. By establishing in-situ alloying for the additive manufacturing of LTTs a new field of investigations regarding the structural behavior of LTT-injected components is being opened.
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Simulation of Phase Transformation and Residual Stress of Low Alloy Steel in Laser Beam Weldingl models from the literature are used to represent the phase transformation. Altogether a model is developed which can be used as a basis for the calculation of residual stress formation due to thermal load and phase transformation.
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Phase-Field Modeling of Precipitation Microstructure Evolution in Multicomponent Alloys During Indus of γ′-particles in the simulation. The comparison to shapes of γ′-particles in experimental microstructures serves as an important cross validation of the model. The application of the model to investigate the effect of the subsequent aging treatment on the precipitation microstructure after a brazing process is discussed.
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