Danièle Waldmann
University of Luxembourg
118 Papers
220 Citations
Danièle Waldmann is an academic researcher from University of Luxembourg. The author has contributed to research in topics: Computer science & Fracture mechanics. The author has an hindex of 17, co-authored 118 publications.
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Papers
Steel fibers as only reinforcement for flat slab construction – Experimental investigation and design
TL;DR: In this article, the bearing behavior of concrete flat slabs with steel fibers as reinforcement was investigated and the results showed an absence of punching shear failure and gave information on fiber distribution and orientation in steel fiber reinforced concrete (SFRC) elements with growing thickness.
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BIM-based end-of-lifecycle decision making and digital deconstruction: Literature review
TL;DR: The analysis highlights research gaps in the path of raw materials to reusable materials, i.e., from the deconstruction to M/C banks to DfD-based designs and then again to deconstruction.
Computational chemo-thermo-mechanical coupling phase-field model for complex fracture induced by early-age shrinkage and hydration heat in cement-based materials
TL;DR: In this article, a multi-physics computational framework is presented to capture and investigate complex fracture behavior in cement-based materials at early-age, where the changes of material properties are expressed as a function of the hydration degree, to capture the age effects.
92
Experimental and numerical investigation on postcracking behavior of steel fiber reinforced concrete
TL;DR: In this paper, the authors presented an experimental and numerical investigation on the postcracking strength, energy absorption and fracture energy of steel fiber reinforced concrete (SFRC) using a failure pattern based on plastic hinge and yield line theory.
91
A material and component bank to facilitate material recycling and component reuse for a sustainable construction: concept and preliminary study
TL;DR: It can be concluded that the bank could pave the way for effectively performing a further and repaid reuse of components and perfecting current recycling of materials to contribute a more sustainable built environment from the view of various terms mentioned in this study.
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