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Search results for: AIRBORNE PARTICLES,STUDDED TYRES,CONCRETE ROAD,WEAR

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Search results for: AIRBORNE PARTICLES,STUDDED TYRES,CONCRETE ROAD,WEAR

  • Zespół Katedry Konstrukcji Maszyn i Pojazdów

    * Badania własności smarów i cieczy technicznych * Badania tarcia i zużycia elementów maszyn - dobór materiałów na współpracu-jące elementy, dobór środków smarowych, dobór alternatywnych materiałów umożliwiających pracę bez smarowania lub przy smarowaniu wodą * Badania diagnostyczne maszyn i urządzeń, badania trwałości i niezawodności * Projektowanie i optymalizacja konstrukcji nietypowych maszyn i urządzeń * Projektowanie urządzeń...

  • Zespół Biomateriałów

    Inżynieria i technologia biomateriałów, inżynieria powierzchni, wytwarzanie implantów metalowych, rozwój materiałów odpornych na korozję

  • Katedra Geodezji

    Research Potential

    Katedra Geodezji realizuje zadania związane z geodezją i kartografią, a przede wszystkim w zakresie geodezji inżynieryjnej, fotogrametrii, teledetekcji, gospodarki nieruchomościami, systemów informacji przestrzennej oraz nawigacji i pomiarów GPS. W ramach Katedry Geodezji funkcjonują Zespoły Dydaktyczne związane z przedmiotami i szkoleniami oraz Zespoły Badawczo-Rozwojowe prowadzące prace naukowe i realizacje techniczne we współpracy...

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Search results for: AIRBORNE PARTICLES,STUDDED TYRES,CONCRETE ROAD,WEAR

  • A pin-on-disc study of airborne wear particle emissions from studded tyre on concrete road contacts

    Publication
    • U. Olofsson
    • M. Tu
    • O. Nosko
    • Y. Lyu
    • S. Dizdar

    - WEAR - Year 2018

    Studded tyres wear surfaces of winter roads, generating inhalable airborne particles. In this study, four concrete road materials and two stud geometries were investigated in terms of wear, road material hardness and airborne particle concentration. The sliding contact between studded tyres and road materials was studied using a pin-on-disc machine in a clean chamber. The results show that the normal load and the stud size have...

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  • The importance of the bottom layer in double-layer porous asphalt for noise reduction

    Publication

    Double-layer porous asphalt concrete (DPAC) surfaces are generally considered to be the acoustically most effective low noise road surfaces ready for implementation. While DPAC used on highways in warm climates may have an average life of around 8 years, in Scandinavia with severe winter climate DPAC usually survive only about 3 years; partly due to wear of studded tyres. An ongoing project in Sweden, applying DPAC and single-layer...

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  • The best porous asphalt pavement in Sweden so far

    Publication

    - Year 2014

    In 2010 a double-layer porous asphalt concrete (DPAC) pavement was constructed in various versions on the E4 motorway through the Swedish city Huskvarna. As a result of a court decision the Swedish Transport Administration had to reduce noise emission by applying a low noise road surface that would reduce A-weighted noise levels by 5 dB, as an average. Earlier experience in Sweden indicated that it was possible to obtain a high...

  • Effective density of airborne wear particles from car brake materials

    Publication

    - JOURNAL OF AEROSOL SCIENCE - Year 2017

    People living in urban environments are subject to high health risks due to various anthropogenic sources of airborne particulate matter, including wear of transport vehicle brakes. Studies of airborne particles often require an estimate of the effective particle density, a property that allows correct matching of mass and size characteristics measured by different aerosol instruments. In this study we investigated the effective...

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  • A Study on Emission of Airborne Wear Particles from Car Brake Friction Pairs

    Publication
    • M. Alemani
    • O. Nosko
    • I. Metinoz
    • U. Olofsson

    - SAE International Journal of Materials and Manufacturing - Year 2016

    The emission of airborne wear particles from friction material / cast iron pairs used in car brakes was investigated, paying special attention to the influence of temperature. Five low-metallic materials and one non-asbestos organic material were tested using a pin-on-disc machine. The machine was placed in a sealed chamber to allow airborne particle collection. The concentration and size distribution of 0.0056 to 10 μm particles...

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