Interface reduction for Hurty/Craig-Bampton substructured models: Review and improvements
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Date
2019-01-01Type
- Journal Article
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Cited 31 times in
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Abstract
The Hurty/Craig-Bampton method in structural dynamics represents the interior dynamics of each subcomponent in a substructured system with a truncated set of normal modes and retains all of the physical degrees of freedom at the substructure interfaces. This makes the assembly of substructures into a reduced-order system model relatively simple, but means that the reduced-order assembly will have as many interface degrees of freedom as the full model. When the full-model mesh is highly refined, and/or when the system is divided into many subcomponents, this can lead to an unacceptably large system of equations of motion. To overcome this, interface reduction methods aim to reduce the size of the Hurty/Craig-Bampton model by reducing the number of interface degrees of freedom. This research presents a survey of interface reduction methods for Hurty/Craig-Bampton models, and proposes improvements and generalizations to some of the methods. Some of these interface reductions operate on the assembled system-level matrices while others perform reduction locally by considering the uncoupled substructures. The advantages and disadvantages of these methods are highlighted and assessed through comparisons of results obtained from a variety of representative linear FE models. Show more
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publishedExternal links
Journal / series
Mechanical Systems and Signal ProcessingVolume
Pages / Article No.
Publisher
ElsevierSubject
Component mode synthesis; Substructuring; Hurty/Craig-Bampton method; Interface reduction; Characteristic constraint modesOrganisational unit
03973 - Haller, George / Haller, George02618 - Institut für Mechanische Systeme / Institute of Mechanical Systems
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Show all metadata
Citations
Cited 31 times in
Web of Science
Cited 40 times in
Scopus
ETH Bibliography
yes
Altmetrics