3D aspects of materials design for metals and alloys
Ulrich Krupp, Christian Haase, Wenwen Song, Wolfgang Bleck, Katrin, Jahns

TL;DR
This paper emphasizes the importance of three-dimensional microstructural analysis in materials design for metals and alloys, highlighting how advanced manufacturing techniques enable tailored anisotropic properties and improved structural performance.
Contribution
It introduces the practical application of 3D microstructure-property correlation in metals and alloys, advancing beyond traditional isotropic material models.
Findings
3D microstructure analysis reveals complex property gradients.
Additive manufacturing enables microstructure control for optimized properties.
Temperature management influences anisotropy and precipitation effects.
Abstract
Nowadays, most structural integrity concepts rely on simplified isotropic ma-terial data that are used within continuum mechanics modeling approaches. In contrast, modern casting and forming processes yield complex microstruc-tures coming along with pronounced gradients in the material's properties in various length scales. By means of additive manufacturing. bionics-inspired structures can be perfectly adapted to the space-resolved load distribution. Specific temperature control during solidification or heat treatment allow for usage of anisotropy and precipitation effects for materials optimization down to the atomic length scale. The present paper shows the significance and practical application of a three-dimensional correlation between the material's microstructure and its technical properties.
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Taxonomy
TopicsManufacturing Process and Optimization · Additive Manufacturing Materials and Processes · Additive Manufacturing and 3D Printing Technologies
