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Mirosław Ferdynus
Mirosław Ferdynus
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Cited by
Year
Crashworthiness performance of thin-walled prismatic tubes with corner dents under axial impact-Numerical and experimental study
M Ferdynus, M Kotełko, M Urbaniak
Thin-Walled Structures 144, 106239, 2019
572019
APPLICATION OF FEM IN THE ANALYSIS OF THE STRUCTURE OF A TRAILER SUPPORTING FRAME WITH VARIABLE OPERATION PARAMETERS WYKORZYSTANIE MES W ANALIZIE STRUKTURY NOŚNEJ RAMY NACZEPY …
H Dębski, M FerDynus
EKSPLOATACJA I NIEZAWODNOSC 14 (2), 2012
552012
Numerical analysis of compressed plates with a cut-out operating in the geometrically nonlinear range
K Falkowicz, M Ferdynus, H Dębski
Eksploatacja i niezawodność 17 (2), 222-227, 2015
462015
Experimental study on the effect of eccentric compressive load on the stability and load-carrying capacity of thin-walled composite profiles
H Debski, P Rozylo, P Wysmulski, K Falkowicz, M Ferdynus
Composites Part B: Engineering 226, 109346, 2021
372021
Experimental and numerical analysis of stability and failure of compressed composite plates
K Falkowicz, M Ferdynus, P Rozylo
Composite Structures 263, 113657, 2021
332021
Progressive failure analysis of thin-walled composite structures verified experimentally
P Rozylo, M Ferdynus, H Debski, S Samborski
Materials 13 (5), 1138, 2020
322020
An energy absorber in the form of a thin-walled column with square cross-section and dimples
M FERDyNUS
Eksploatacja i Niezawodność 15 (3), 253-258, 2013
292013
An energy absorber in the form of a thin-walled column with square cross-section and dimples
M FERDyNUS
Eksploatacja i Niezawodność 15 (3), 253-258, 2013
292013
The effect of geometrical non-linearity on the crashworthiness of thin-walled conical energy-absorbers
M Rogala, J Gajewski, M Ferdynus
Materials 13 (21), 4857, 2020
282020
Energy absorbing effectiveness–different approaches
M Kotełko, M Ferdynus, J Jankowski
acta mechanica et automatica 12 (1), 54-59, 2018
252018
Energy absorption capability of thin-walled prismatic aluminum tubes with spherical indentations
M Ferdynus, P Rozylo, M Rogala
Materials 13 (19), 4304, 2020
222020
Energy absorption capability numerical analysis of thin-walled prismatic tubes with corner dents under axial impact
M Ferdynus, M Kotełko, J Kral
Eksploatacja i Niezawodność 20 (2), 2018
212018
Numerical analysis of the thin-walled structure with different trigger locations under axial load
M Rogala, J Gajewski, M Ferdynus
IOP Conference Series: Materials Science and Engineering 710 (1), 012028, 2019
202019
The influence of different length aluminum foam filling on mechanical behavior of a square thin-walled column
M Rogala, M Ferdynus, K Gawdzińska, P Kochmański
Materials 14 (13), 3630, 2021
192021
Numerical Crush Analysis of Thin-Walled Aluminium Columns with Square Cross-Section and a Partial Foam Filling
M Ferdynus, M Rogala
Advances in Science and Technology. Research Journal 13 (3), 2019
182019
Crashworthiness performance of thin-walled hollow and foam-filled prismatic frusta–FEM parametric studies–Part 1
K Szklarek, M Kotełko, M Ferdynus
Thin-Walled Structures 181, 110046, 2022
122022
Energy calculation model of an outgoing conveyor with application of a transfer chute with the damping plate
V Molnár, G Fedorko, N Husáková, J Král'Jr, M Ferdynus
Mechanical Sciences 7 (2), 167-177, 2016
112016
The use of industrial metrotomography in the field of maintenance and reliability of rubber-textile conveyor belts in closed continuous transport systems
G Fedorko, V Molnar, M Dovica, N Husakova, J Král'jr, M Ferdynus
Eksploatacja i Niezawodność 18 (4), 539-543, 2016
72016
Wykorzystanie MES w analizie struktury nośnej ramy naczepy o zmiennych parametrach eksploatacyjnych
H Dębski, G Koszałka, M Ferdynus
Eksploatacja i Niezawodność 14 (2), 107-114, 2012
62012
FEM analysis of critical loads plate with cut-out
K Falkowicz, M Ferdynus, P Wysmulski
Applied Computer Science 11 (2), 43--49, 2015
52015
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