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Hannes Alois Weiss

Researcher at Technische Universität München

Publications -  26
Citations -  282

Hannes Alois Weiss is an academic researcher from Technische Universität München. The author has contributed to research in topics: Electrical steel & Residual stress. The author has an hindex of 8, co-authored 25 publications receiving 205 citations.

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Influence of shear cutting parameters on the electromagnetic properties of non-oriented electrical steel sheets

TL;DR: In this paper, the residual stresses induced by punching with different shear cutting parameters, taking a qualitative approach using finite element analysis, were analyzed using a single sheet tester, and the correlation between residual stresses, micro hardness measurements, cutting surface parameters and magnetic properties was studied.
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Impact of Punching Parameter Variations on Magnetic Properties of Nongrain-Oriented Electrical Steel

TL;DR: In this article, the effect of punching parameter variations on the magnetic properties of eight different nongrain-oriented electrical steels is investigated by using a single-sheet tester, based on the specific loss and the maximum field strength increase.
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On the correlation between thermoelectricity and adhesive tool wear during blanking of aluminum sheets

TL;DR: In this paper, several blanking examinations were carried out with the aluminum alloy 5083 and the thermoelectric currents and voltages were measured instantaneously in the tool and their impact on the development of wear was shown.
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Effect of the Interdependence of Cold Rolling Strategies and Subsequent Punching on Magnetic Properties of NO Steel Sheets

TL;DR: In this paper, the effect of different cold rolling strategies, annealing treatments, and sheet metal blanking (punching) regarding microstructure evolution, magnetic properties, and deterioration is studied.
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Neutron grating interferometry investigation of punching-related local magnetic property deteriorations in electrical steels

TL;DR: In this paper, the effect of residual stress on the magnetic properties of non-grain oriented electrical steels has been investigated with respect to the local polarization distribution at varying magnetic field strengths next to the cutting lines.