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Simon Pauly

Researcher at Leibniz Association

Publications -  95
Citations -  4751

Simon Pauly is an academic researcher from Leibniz Association. The author has contributed to research in topics: Amorphous metal & Microstructure. The author has an hindex of 34, co-authored 91 publications receiving 3817 citations. Previous affiliations of Simon Pauly include Technische Universität Darmstadt & Leibniz Institute for Solid State and Materials Research.

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Transformation-mediated ductility in CuZr-based bulk metallic glasses

TL;DR: The precipitation of nanocrystals and their subsequent twinning can be understood in terms of a deformation-induced softening of the instantaneous shear modulus and is believed to be not just limited to CuZr-based B MGs but also to promote ductility in other BMGs.
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Mechanical properties of bulk metallic glasses and composites

TL;DR: In this article, the authors review the processing, microstructure development, and resulting mechanical properties of Zr-, Ti-, Cu-, Mg-, Fe-, and Ni-based glassy alloys and also consider the superiority of composite materials containing different phases for enhancing the strength, ductility, and toughness.
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Processing metallic glasses by selective laser melting

TL;DR: In this article, it is shown that selective laser melting (SLM) can be applied to implement complex geometries and components from an Fe-base metallic glass, which is in principle viable for a large variety of metallic alloys and paves the way for the novel synthesis of materials and the development of parts with advanced functional and structural properties.
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Microstructural heterogeneities governing the deformation of Cu47.5Zr47.5Al5 bulk metallic glass composites

TL;DR: Based on microstructural investigations, a solidification mechanism is proposed for these bulk metallic glass (BMG) composites in this article, which enhances the compressive plasticity (plastic strain up to 14%) and both plastic strain as well as yield strength scale with the crystalline volume fraction.
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Serrated flow and stick-slip deformation dynamics in the presence of shear-band interactions for a Zr-based metallic glass

TL;DR: In this article, the effect of SBIs on the dynamics of shear bands and serrated flow was studied for a Zr-based metallic glass, and the authors showed that the stick-slip dynamics of interacting shear band is a complex, scale-free process, in which shears are highly correlated.