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Ludwig Schultz

Researcher at Dresden University of Technology

Publications -  736
Citations -  22295

Ludwig Schultz is an academic researcher from Dresden University of Technology. The author has contributed to research in topics: Microstructure & Amorphous metal. The author has an hindex of 70, co-authored 736 publications receiving 20839 citations. Previous affiliations of Ludwig Schultz include Leibniz Institute for Neurobiology & Federal Fluminense University.

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Difference in compressive and tensile fracture mechanisms of Zr59CU20Al10Ni8Ti3 bulk metallic glass

TL;DR: In this article, the authors investigated the fracture behavior of a Zr59Cu20Al10Ni8Ti3 bulk metallic glass under compressive and tensile deformation, and found that the fracture is mainly localized on one major shear band and the compressive fracture angle between the stress axis and the fracture plane is 43degrees.
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Influence of strain on the magnetization and magnetoelectric effect in La 0.7 A 0.3 Mn O 3 ∕ PMN − PT ( 001 ) ( A = Sr , Ca )

TL;DR: In this paper, the influence of a well-defined reversible biaxial strain on the magnetization of epitaxial ferromagnetic manganite films was investigated by reversibly compressing the isotropic inplane lattice parameter of the rhombohedral piezoelectric 0.72PMN-0.28PT (001) substrates by application of an electric field.
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Fracture mechanisms in bulk metallic glassy materials.

TL;DR: Extensive evidence indicates that the Tresca fracture criterion is invalid, and for the first time, three fracture criteria are developed for isotropic materials with high strength, such as advanced BMGs or the newly developed bulk nanostructural materials.
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Superconductively levitated transport system - the SupraTrans project

TL;DR: SupraTrans as discussed by the authors is an innovative transportation concept based on the principle of superconductive magnetic levitation, which uses the flux pinning in high temperature superconductors (HTS) to stabilize the lateral and vertical position of the vehicle on the magnetic track.
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Effect of oxygen on phase formation and thermal stability of slowly cooled Zr65Al7.5Cu17.5Ni10 metallic glass

TL;DR: In this article, the effect of small amounts of oxygen (0.28-0.6 ǫ at) on phase formation and the thermal stability of bulk samples of the Zr 65 Al 7.5 Cu 17.c.