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Sökning: WFRF:(Müller Kaspar) > (2020-2023) > Multimaterial direc...

Multimaterial direct energy deposition: From three-dimensionally graded components to rapid alloy development for advanced materials

Müller, M. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany; Technische Universität Dresden, Helmholtzstr. 7, 01069 Dresden, Germany
Labisch, C. C. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
Gerdt, L. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
visa fler...
Bach, L. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
Riede, M. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
Kaspar, J. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
López, Elena (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
Brueckner, Frank (författare)
Luleå tekniska universitet,Produkt- och produktionsutveckling,Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany
Zimmermann, M. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany; Technische Universität Dresden, Helmholtzstr. 7, 01069 Dresden, Germany
Leyens, C. (författare)
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany; Technische Universität Dresden, Helmholtzstr. 7, 01069 Dresden, Germany
visa färre...
Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany; Technische Universität Dresden, Helmholtzstr 7, 01069 Dresden, Germany Fraunhofer IWS, Winterbergstraße 28, Dresden 01277, Germany (creator_code:org_t)
AIP Publishing, 2023
2023
Engelska.
Ingår i: Journal of laser applications. - : AIP Publishing. - 1042-346X .- 1938-1387. ; 35:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • Laser-based direct energy deposition (L-DED) with blown powder enables the simultaneous or sequential processing of different powder materials within one component and, thus, offers the possibility of additive multimaterial manufacturing. Therefore, the process allows a spatially resolved material allocation and fabrication of sharp or even graded material transitions. Within this contribution, the latest results from two major research fields in multimaterial L-DED—(I) automation and (II) rapid alloy development of high entropy alloys (HEAs) by in situ synthesis—shall be presented. First, an automated multimaterial deposition process was developed, which enables the automated manufacturing of three-dimensionally graded specimens. For this, a characterization of the deposition system regarding powder feeding dynamics and resulting powder mixtures in the process zone was conducted. The obtained system characteristics were used to achieve a three-dimensional deposition of specified powder mixtures. The fabricated specimens were analyzed by energy-dispersive x-ray spectroscopy, scanning electron microscopy, and micro hardness measurement. The research demonstrates the increasing readiness of L-DED for the fabrication of multimaterial components. Second, the latest results from rapid alloy development for HEAs by DED are presented. By the simultaneous usage of up to four powder feeders, a vast range of alloy compositions within the Al–Ti–Co–Cr–Fe–Ni HEA system was investigated. For this, tailored measurement systems such as an in-house developed powder sensor were beneficially used. The study shows the influence of a variation of Al on the phase formation and resulting mechanical properties and demonstrates the potential of L-DED for reducing development times for new alloys.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Materialteknik -- Bearbetnings-, yt- och fogningsteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering -- Manufacturing, Surface and Joining Technology (hsv//eng)

Nyckelord

additive manufacturing
multimaterial
direct energy deposition
high entropy alloys
in situ alloying
Produktionsutveckling
Manufacturing Systems Engineering

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