dr hab. inż. Jerzy Bobiński | Politechnika Gdańska

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dr hab. inż. Jerzy Bobiński

Kontakt:

email:
bobin@pg.edu.pl
strona:
https://mostwiedzy.pl/jerzy-bobinski

Zajmowane stanowiska:

Profesor uczelni

miejsce pracy:
Katedra Konstrukcji Inżynierskich
Budynek A Wydziału Inżynierii Lądowej i Środowiska-Żelbet, 120
telefon:
+48 58 347 20 50

Pełnione funkcje:

Kierownik katedry

miejsce pracy:
Katedra Konstrukcji Inżynierskich
Budynek A Wydziału Inżynierii Lądowej i Środowiska-Żelbet, 120
telefon:
+48 58 347 20 50
dr hab. inż. Jerzy Bobiński

Publikacje:

  1. Publikacja

    - ENGINEERING STRUCTURES - Rok 2024

    High performance concrete (HPC) is a quite novel material which has been rapidly developed in the last few decades. It exhibits superior mechanical properties and durability comparing to normal concrete. HPC can achieve also superior tensile performance if strong fibres (steel or carbon) are implemented in the matrix. Thus, there exist the unabated interest in studying how the addition of different types of fibres modifies the...

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  2. In the paper a non-uniqueness of fracture parameter choice in simulations of cracking process in plain concrete specimens at mesoscale level under monotonic static loading is analysed. The Finite Element Method is used, where cracks are defined in a discrete way using interface cohesive elements with nonlinear material law including softening. The concrete mesostructure (such as: cement matrix, air voids, aggregates, and Interfacial...

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  3. Publikacja

    The performance of advanced isotropic constitutive laws under complex stress states in plain and reinforced concrete specimens is investigated. Three different formulations are chosen: original Mazars model, Mazars mi model and model proposed by Pereira and coworkers. The degradation of the material in all formulations is described via a single variable, but a strain/stress state is taken into account via quite sophisticated relationships....

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  4. The paper investigates a mechanical quasi-static size effect in concrete during splitting tension at the macro- and meso-level. In experiments, five different diameters of cylindrical concrete specimens were tested. Twodimensional plane strain finite element (FE) simulations were carried out to reproduce the experimental size effect. The size effect in experiments by Carmona et al. was also simulated. Two enhanced continuum concrete...

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  5. Publikacja

    The paper is aimed at accurately predicting the discrete fracture process in concrete specimens under complex stress states in two dimensional (2D) simulations. Plain concrete specimens subjected to Montevideo splitting test (MVD) were used for consideration due to non-negligible shear stresses impact in this type of test. In order to reflect the heterogeneous nature of the concrete, the meso-structure of the samples was included...

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