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Publikacje Pracowników Politechniki Lubelskiej

MNiSW
70
Lista 2021
Status:
Autorzy: Golewski Grzegorz Ludwik
Dyscypliny:
Aby zobaczyć szczegóły należy się zalogować.
Rok wydania: 2019
Wersja dokumentu: Drukowana | Elektroniczna
Język: angielski
Numer czasopisma: 3
Wolumen/Tom: 71
Strony: 317 - 327
Impact Factor: 2,984
Web of Science® Times Cited: 59
Scopus® Cytowania: 60
Bazy: Web of Science | Scopus
Efekt badań statutowych TAK
Materiał konferencyjny: NIE
Publikacja OA: NIE
Abstrakty: angielski
The aim of this paper is to present the most important issues on the implementation, operation and maintenance of foundation for machines. The article presents the newest solutions both in terms of technology implementation as well as materials used in construction of such structures. Foundations for machines are special building structures used to transfer loads from an operating machine to the subsoil. The purpose of these foundations is not just to transfer loads, but also to reduce vibrations occurring during operation of the machine, i.e. their damping and preventing redistribution to other elements of the building. It should be noted that foundations for machines (particularly foundations for hammers) are the most dynamically loaded building structures. For these reasons, they require precise static and dynamic calculations, accuracy in their implementation and care for them after they have been made. Therefore, the paper in detail present the guidelines regarding: design, construction and maintenance of structures of this type. Furthermore, the most important parameters and characteristics of materials used for the construction of these foundations are described. As a result of the conducted analyzes, it was found that the concrete mix, in foundations for machines, should have a low water/binder ratio. For its execution, it is necessary to use broken aggregates from igneous rocks and binders modified with mineral additives and chemical admixtures. On the other hand, the reinforcement of composites should contain a large amount of structural reinforcement to prevent shrinkage cracks.