Norbert Randl

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Carinthia University of Applied Sciences
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Austria

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About

Professor Norbert Randl is a faculty member at Carinthia University of Applied Sciences in Austria. His research areas focus on ultra-high-performance fiber-reinforced concrete, shear strengthening techniques, and the assessment of tensile properties within concrete structures. His recent publications include studies on shear transfer mechanisms and experimental investigations related to the failure modes of textile-reinforced concrete. Professor Randl's work contributes significantly to advancements in concrete technology and structural engineering.

Recent Grants

Grant: Close

CON_FIT: Performance-oriented application of fiber- and textile-reinforced high performance concretes for structural retrofit

Open Date: 2018-10-01

Close Date: 2023-09-01

Grant: Close

Querkraftverstärkung - Methoden zur nachträglichen Querkraftverstärkung bestehender Brückentragwerke

Open Date: 2012-01-01

Close Date:

Grant: Close

HiPerComp - High Performance Composite Structures – Verbindung von Hochleistungswerkstoffen für nachhaltiges Bauen und Verstärken

Open Date: 2010-12-01

Close Date: 2015-11-01

Articles (16)

Experimental investigation on shear strengthening with fiber/textile reinforced concrete

The use of textile reinforced concrete (TRC) as a shear strengthening solution for reinforced concrete (RC) structures is a viable and effective strategy. The low tensile strength of the cementitious matrix used to produce TRC, however, can strongly limit the performance achievable by such material. Using fiber/textile reinforced concrete (F/TRC), that is, TRC where short‐dispersed fibers were admixed to the cementitious matrix, has proven to overcome such limitations. An experimental campaign, aimed at assessing the influence of the fiber‐reinforced cementitious matrix, the number of layers, and their anchoring, was performed at the structural laboratory of Carinthia University of Applied Sciences. F/TRC strengthening configurations were tested on real‐scale T‐beams without internal transversal reinforcement. The results highlight the contribution of the cementitious matrix and hint at the possibility of simply summing its contribution to the one of the textile fabrics, while appropriate end‐anchorage seems to improve the performance of both elements.

Year:

2023

Collaborators (4)

Margherita Pauletta

-

ITALY

Peter Harsányi

-

AUSTRIA

Alfred Strauss

Prof

Universität für Bodenkultur Wien

AUSTRIA

Paolo Bocchini

Professor

Lehigh University

UNITED STATES
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