Projects
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total: 10
Catalog Projects
Year -
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Development of novel bifunctional ceramic coatings with osteoinductive and anti-oncogenic properties on metallic implants dedicated to the bone reconstruction after tumor resection obtained via the dual-step ultrasonic micro-arc oxidation
ProjectsProject realized in Division of Machine Design and Medical Engineering according to UMO-2023/49/N/ST5/03551 agreement
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Study of the correlation between the emission intensity of the airborne wear particles from the friction materials and the brake disc surface roughness
ProjectsProject realized in Division of Applied Mechanics and Biomechanics
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NEPTUN NEw aPproach to innovative Technologies in manUfacturiNg
ProjectsProject realized in Division of Applied Mechanics and Biomechanics according to Project 101079398 — NEPTUN agreement from 2022-07-15
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Study of airborne wear particle emissions from airplane brakes in order to increase the environmental friendliness of aircrafts
ProjectsProject realized in Division of Applied Mechanics and Biomechanics according to UMO-2023/51/D/ST8/01635 agreement from 2024-06-25
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DROZD An unmanned water surface-air-based platform using the wing-in-ground effect for support of the special armed forces at sea area.
ProjectsProject realized in Zakład Mechaniki, Wytrzymałości i Sterowania Złożonych Obiektów Technicznych
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A method for evaluating airborne wear particle emissions from sliding contacts based on the novel aerodynamic chamber design
ProjectsProject realized in Division of Applied Mechanics and Biomechanics
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NEPTUN NEw aPproach to innovative Technologies in manUfacturiNg
ProjectsProject realized in Division of Applied Mechanics and Biomechanics
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XMAN Extended Reality for Machine Tool Training
ProjectsProject realized in Division of Mechatronics
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SOVtBAL Hybrid-powered low emission autonomous/semi-autonomous vessels for servicing off-shore wind farms
ProjectsProject realized in Institute of Mechanics and Machine Design
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CreepFatFrac3DTopo Application of three-dimensional quantitative fractography for analysis of structural materials fatigue life under multiaxial loading, taking into account creep pre-deformation and elevated temperature
ProjectsProject realized in Division of Applied Mechanics and Biomechanics