Browsing by Author "Allegri, Giuliano"

Browsing by Author "Allegri, Giuliano"

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  • Yuan, Jie; Scarpa, Fabrizio; Allegri, Giuliano; Titurus, Branislav; Patsias, Sophoclis; Rajasekaran, Ramesh (Elsevier, 2016-11-06)
    This paper describes a review of the relevant literature about mistuning problems in bladed disc systems, and their implications for the uncertainty propagation associated to the dynamics of aeroengine systems. An emphasis ...
  • Zhang, Xiang; Boscolo, M.; Figueroa-Gordon, Douglas J.; Allegri, Giuliano; Irving, Phil E. (Elsevier Science B.V., Amsterdam., 2009-01-01)
    This paper presents an investigation on the effectiveness of crack growth retarders bonded to integral metallic structures. The study was performed by both numerical modelling and experimental tests. It focuses on aluminium ...
  • Yuan, Jie; Scarpa, F.; Titurus, B.; Allegri, Giuliano; Patsias, S.; Rajasekaran, R. (American Society of Mechanical Engineers (ASME), 2017-03-06)
    The work investigates the application of a novel frame model to reduce the computational cost of the mistuning analysis of bladed disc systems. A full-scale finite element (FE) model of the bladed disc is considered as ...
  • Zhang, B.; Allegri, Giuliano; Yasaee, Mehdi; Hallett, Stephen R.; Partridge, Ivana K. (Elsevier, 2016-03-19)
    This paper investigates for the first time the usage of through-thickness reinforcement for delamination detection in self-sensing composite laminates. Electrically conductive T300/BMI Z-pins are considered in this study. ...
  • Allegri, Giuliano; Zhang, Xiang (Elsevier Science B.V., Amsterdam., 2007-04-01)
    The main objective of this paper is to investigate the benefits of Z-fibre pinning to improve the bonding strength of composite joints. The problem is addressed from a design point of view in order to develop a ...
  • Allegri, Giuliano; Zhang, Xiang (Elsevier Science B.V., Amsterdam., 2008-06-01)
    This paper addresses the usage of inverse power laws in accelerated fatigue testing under wide-band Gaussian random loading. The aim is not at predicting an absolute value of fatigue life but assessing the fatigue damage ...