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Best results in : Research Potential Pokaż wszystkie wyniki (4)
Search results for: POROELASTIC LAYER
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Zespół Biomateriałów
Research PotentialInżynieria i technologia biomateriałów, inżynieria powierzchni, wytwarzanie implantów metalowych, rozwój materiałów odpornych na korozję
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Zespół Katedry Konstrukcji Maszyn i Pojazdów
Research Potential* 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...
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Katedra Inżynierii Drogowej i Transportowej
Research PotentialKatedra Inżynierii Drogowej i Transportowej jest jedną z najstarszych katedr Politechniki Gdańskiej. Prowadzi prace naukowo-badawcze obejmujące szereg zagadnień związanych z budową dróg, autostrad i lotnisk oraz w zakresie transportu, ruchu drogowego oraz bezpieczeństwa ruchu drogowego.
Best results in : Business Offer Pokaż wszystkie wyniki (1)
Search results for: POROELASTIC LAYER
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Laboratorium Badań Drogowych
Business Offer
Other results Pokaż wszystkie wyniki (26)
Search results for: POROELASTIC LAYER
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The Use of Direct Shear Test for Optimization of Interlayer Bonding Under a Poroelastic Layer
PublicationPoroelastic Road Surfaces (PERS) are characterised by porous structure with air void content of 20% or higher and stiffness almost 10 times lower than that of a standard asphalt course. Such properties enable noise reduction by up to 12 dB in comparison to SMA 11 mixture. However, the disadvantage of a poroelastic pavement is its low durability, which partially results from delamination from the lower layer. The paper aims to investigate...
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Optimisation and field assessment of poroelastic wearing course bond quality
PublicationCompared to typical asphalt mixtures, poroelastic mixtures are characterised by high porosity and high flexibility, which are desirable for traffic noise reduction. However, the same properties increase the risk of debonding from the lower layer, which is a significant source of premature damage. The study investigates which of the factors – tack coat agent, type and texture of the lower layer – have the greatest impact on interlayer...
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Bitumen-Based Poroelastic Pavements: Successful Improvements and Remaining Issues
PublicationThis article presents the development process of designing and testing poroelastic pavement based on highly polymer-modified bitumen. Poroelastic wearing course was composed of mineral and rubber aggregate mixed with highly polymer-modified bitumen, in contrast to previous trials, during which polyurethane resins were mainly used as binder, which led to several serious technological problems concerning difficult production, insufficient...
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Low noise poroelastic road pavements based on modified asphalt binder
PublicationTire/road noise is one of the most important environmental problems related to road traffic. As the most effective way to fight noise is reduction of sound emission from the source, a lot of work is being done to improve tire and road surfaces construction. This paper describes the first “road” results obtained within the SEPOR project, which is focused on developing a low noise poroelastic road surface based on bituminous binder....
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Design of poroelastic wearing course with the use of direct shear test
PublicationPoroelastic Road Surfaces (PERS) are characterized by porous structure with at least 20% of air void content and stiffness almost 10 times lower than typical asphalt course. Such properties enable noise reduction up to 12 dB in comparison to SMA 11 mixture. However, the main disadvantage of previously used poroelastic mixtures, based on resin type binders, was their low durability, which resulted in raveling and delamination from...