Preprint Article Version 2 Preserved in Portico This version is not peer-reviewed

Bending Response and Energy Dissipation of Interlayered Slidable Friction Booklike-Plates

Version 1 : Received: 19 April 2022 / Approved: 19 April 2022 / Online: 19 April 2022 (07:48:16 CEST)
Version 2 : Received: 13 December 2022 / Approved: 14 December 2022 / Online: 14 December 2022 (06:19:12 CET)

A peer-reviewed article of this Preprint also exists.

Sun, B.-H.; Dang, W.; Liu, X.-T.; Guo, X.-L. Bending Response and Energy Dissipation of Interlayer Slidable Friction Booklike-Plates. Acta Mechanica Sinica 2023, 39, doi:10.1007/s10409-022-22449-x. Sun, B.-H.; Dang, W.; Liu, X.-T.; Guo, X.-L. Bending Response and Energy Dissipation of Interlayer Slidable Friction Booklike-Plates. Acta Mechanica Sinica 2023, 39, doi:10.1007/s10409-022-22449-x.

Abstract

To have a better protection, strong toughness and good flexibility, all lives and plants must have skins, similarly, all books should have covers. In this paper, considering interlayer friction as a perturbation, we formulate a hardcover-book-like laminated plates with internal friction. For a quasi-static problem, detail analysis on the bending response and energy dissipation are carried out for a three-point-supported plates. Our numerical investigations show that the hardcover is more essential than the core layers in terms of bending response, and the energy dissipation within per loading-unloading cycle can be made to vary by a considerable amount. The central goal of studying is not only to predict the bending deformation of the book-like-plates, but also as a representative case to help finding some clue on the universal behaviours of multilayered architectures with internal friction.

Keywords

Hardcover book; multilayer; plates; curvature; bending; friction; dissipation; deflection

Subject

Physical Sciences, Applied Physics

Comments (1)

Comment 1
Received: 14 December 2022
Commenter: Bohua Sun
Commenter's Conflict of Interests: Author
Comment: Eq.12 is corrected
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