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Hou J., Jankowski Ł., Ou J., Substructure Isolation Method for online local damage identification using time series, EWSHM 2012, 6TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2012-07-03/07-06, DRESDEN (GE), 1631-1638, 2012 | |
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Suwała G., Jankowski Ł., Experimental study of a model-free method for identification of stiffness-related structural damages, EWSHM 2012, 6TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2012-07-03/07-06, DRESDEN (GE), 714-721, 2012 | |
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Gawlicki M., Jankowski Ł., Path identification of a moving load based on multiobjective optimization, EWSHM 2020, 10TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2020-07-04/07-07, PALERMO (IT), 799-807, 2021 | |
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Błachowski B., Świercz A., Ostrowski M., Tauzowski P., Jankowski Ł., Multi-type sensor placement for structural health monitoring of tied-arch bridges, EWSHM 2020, 10TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2020-07-04/07-07, PALERMO (IT), 127, 286-297, 2021 | |
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Błachowski B., Ostrowski M., Żarski M., Wójcik B., Tauzowski P., Jankowski Ł., An Efficient Computer Vision-Based Method for Estimation of Dynamic Displacements in Spatial Truss Structures, EWSHM 2022, 10TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2022-07-04/07-07, PALERMO (IT), 254, 474-484, 2022 | |
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Hou J., Xu D., Zhang Q., Liu Y., Jankowski Ł., Extraction of Single-Mode Free Responses by the Constrained Mode Decomposition Method, EWSHM 2022, 10TH EUROPEAN WORKSHOP ON STRUCTURAL HEALTH MONITORING, 2022-07-04/07-07, PALERMO (IT), 1, 1107-1115, 2022 | |
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Pawłowska S., Kowalewski T.A., Lateral migration of solid spheroidal nanoparticles and highly deformable hydrogel nanofilaments under the influence of oscillatory flow, EXFM2017, EXPERIMENTS IN FLUID MECHANICS, 2017-10-23/10-24, WARSZAWA (PL), 1-2, 2017 | |
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Kopeć M.,Gunputh U.,Williams G.,Macek W.,Kowalewski Z.,Wood P., Fatigue Damage Evolution in SS316L Produced by Powder Bed Fusion in Different Orientations with Reused Powder Feedstock, EXPERIMENTAL MECHANICS, 1-16, 2024 | |
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Kopeć Mateusz, Compression and Fatigue Testing of High‑Strength Thin Metal Sheets by Using an Anti-Buckling Device, EXPERIMENTAL MECHANICS, 1-11, 2023 | |
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Moćko W., Radziejewska J., Analysis of the application of a nanosecond laser pulse for dynamic hardness tests under ultra-high strain rates, EXPERIMENTAL MECHANICS, 59, 4, 483-487, 2019 | |
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Kucharski S., Jarząbek D., Piątkowska A., Woźniacka S., Decrease of Nano-hardness at Ultra-low Indentation Depths in Copper Single Crystal, EXPERIMENTAL MECHANICS, 56, 3, 381-393, 2016 | |
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Oliferuk W., Maj M., Zembrzycki K., Determination of the Energy Storage Rate Distribution in the Area of Strain Localization Using Infrared and Visible Imaging, EXPERIMENTAL MECHANICS, 55, 753-760, 2015 | |
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Kucharski S., Stupkiewicz S., Petryk H., Surface Pile-Up Patterns in Indentation Testing of Cu Single Crystals, EXPERIMENTAL MECHANICS, 54, 957-969, 2014 | |
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Ziółkowski A., Imiełowski Sz., Buckling and post-buckling behaviour of prismatic aluminium columns submitted to a series of compressive loads, EXPERIMENTAL MECHANICS, 51, 1335-1345, 2011 | |
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Kowalewski Z.L., Klepaczko J.R., Malinowski J.Z., Miniaturized compression test at very high strain rates by direct impact, EXPERIMENTAL MECHANICS, 47, 451-463, 2007 | |