Please use this identifier to cite or link to this item: https://scidar.kg.ac.rs/handle/123456789/9053
Title: Basic parameters of the static stability, loads and strength of the vital parts of a bucket wheel excavator’s slewing superstructure
Authors: Bošnjak S.
Gnjatovic N.
Savicevic S.
Pantelic, Milorad
Milenović I.
Issue Date: 2016
Abstract: © 2016, Zhejiang University and Springer-Verlag Berlin Heidelberg. Determining a bucket wheel excavator (BWE)’s slewing superstructure weight and its center of gravity (COG) is of extreme importance not only in the design phase, but also after the completion of the erection process and during the operation of the machine. This paper presents a critical comparative analysis of the basic parameters of the static stability of a BWE 1600 superstructure, with the parameters being obtained by both analytical and experimental procedures. The analysis shows that a relatively small difference in superstructure mass, obtained by calculation, leads to a relatively large unfavorable shifting of its COG, necessitating a significant increase in counterweight mass for balancing. A procedure for superstructure 3D model mass correction is presented based on results obtained by weighing after the completion of the erection process. The developed model provides enough accuracy to determine the superstructure’s COG in the entire domain of the bucket wheel boom inclination angle, and enables accurate load analysis of the superstructure’s vital parts. The importance of this analysis is reinforced by the finding that the procedure prescribed by standard DIN 22261-2 gives results which are not on the side of safety, as shown by an example of strength analysis of a bucket wheel boom stays’ end eyes.
URI: https://scidar.kg.ac.rs/handle/123456789/9053
Type: article
DOI: 10.1631/jzus.A1500037
ISSN: 1673-565X
SCOPUS: 2-s2.0-84984850948
Appears in Collections:Faculty of Technical Sciences, Čačak

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