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2023 | OriginalPaper | Chapter

13. Transforming Deformation Model of Flat Beams with Finite Length Fastening Areas Located on One of the Front-Face Surfaces

Authors : Vitaly N. Paimushin, Victor M. Shishkin, Vyacheslav A. Firsov, Ruslan K. Gazizullin

Published in: Deformation and Destruction of Materials and Structures Under Quasi-static and Impulse Loading

Publisher: Springer International Publishing

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Abstract

On the example of a plane problem of the mechanics of a beam with finite length fastening areas located on one of the front-face surfaces, it is shown that in the study of deformation processes with additional account of the fixed area compliance requires the introduction of the concept of the stress–strain state type transformation at the transition across the boundary from an unfastened to a fastened section. Appropriate mathematical models are also required to describe such a phenomenon. Within the framework of the classical Kirchhoff–Love model it is impossible to take into account the presence of such fixed sections. At the same time, within the framework of the simplest S.P. Timoshenko shear model, this transformation is possible if the section is fixed only on one of the front-face surfaces. The kinematic and force conditions for coupling of fastened and unfastened beam sections have been formulated. Based on the derived relations, an exact analytical solution to the problem of static bending of a cantilevered beam under the action of a constant surface load has been found. This solution is in good agreement with the results obtained by modeling of a beam using rectangular finite elements in a plane stress state, as well as using the ANSYS software package based on the equations of a plane problem of elasticity theory. An exact analytical solution has been obtained for the problem of transverse bending vibrations of a flat beam with two cantilevered parts and a finite length section between them under vibration loading by a transverse force acting on one of the unfastened section.

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Literature
1.
go back to reference Reddy J (1984) A simple higher-order theory for laminated composite plates. J Appl Mech 51:745–752CrossRefMATH Reddy J (1984) A simple higher-order theory for laminated composite plates. J Appl Mech 51:745–752CrossRefMATH
3.
go back to reference Schmidt R, Reddy J (1988) A refined small strain and moderate rotation theory of elastic anisotropic shells. J Appl Mech 55:611–617CrossRefMATH Schmidt R, Reddy J (1988) A refined small strain and moderate rotation theory of elastic anisotropic shells. J Appl Mech 55:611–617CrossRefMATH
4.
go back to reference Librescu L, Schmidt R (1988) Refined theories of elastic anisotropic shells accounting for small strains and moderate rotations. Int J Nonlinear Mech 23:217–229CrossRefMATH Librescu L, Schmidt R (1988) Refined theories of elastic anisotropic shells accounting for small strains and moderate rotations. Int J Nonlinear Mech 23:217–229CrossRefMATH
5.
go back to reference Yankovskii A (2020) Critical analysis of the equations of statics in the bending theories of composite plates obtained on the basis of variational principles of elasticity theory 1. General Theories of high order. Mech Compos Mater 56(3):271–290 Yankovskii A (2020) Critical analysis of the equations of statics in the bending theories of composite plates obtained on the basis of variational principles of elasticity theory 1. General Theories of high order. Mech Compos Mater 56(3):271–290
6.
go back to reference Yankovskii A (2020) Critical analysis of the equations of statics in the bending theories of composite plates obtained on the basis of variational principles of elasticity theory 2. Particular low-order theories. Mech Compos Mater 56(4):437–454 Yankovskii A (2020) Critical analysis of the equations of statics in the bending theories of composite plates obtained on the basis of variational principles of elasticity theory 2. Particular low-order theories. Mech Compos Mater 56(4):437–454
7.
go back to reference Paimushin VN, Firsov VA, Gynal I, Shishkin VM (2016) Theoretical-experimental method for evaluating the elastic and damping characteristics of soft materials based on studying the resonance flexsural vibrations of test specimens. Mech Compos Mater 52(5):571–582CrossRef Paimushin VN, Firsov VA, Gynal I, Shishkin VM (2016) Theoretical-experimental method for evaluating the elastic and damping characteristics of soft materials based on studying the resonance flexsural vibrations of test specimens. Mech Compos Mater 52(5):571–582CrossRef
8.
go back to reference Paimushin VN, Firsov VA, Shishkin VM (2019) Identification of the dynamic elasticity characteristics and damping properties of the OT-4 titanium alloy based on study of damping flexural vibrations of the test specimens. J Mach Manuf Reliab 48(2):119–129CrossRef Paimushin VN, Firsov VA, Shishkin VM (2019) Identification of the dynamic elasticity characteristics and damping properties of the OT-4 titanium alloy based on study of damping flexural vibrations of the test specimens. J Mach Manuf Reliab 48(2):119–129CrossRef
Metadata
Title
Transforming Deformation Model of Flat Beams with Finite Length Fastening Areas Located on One of the Front-Face Surfaces
Authors
Vitaly N. Paimushin
Victor M. Shishkin
Vyacheslav A. Firsov
Ruslan K. Gazizullin
Copyright Year
2023
DOI
https://doi.org/10.1007/978-3-031-22093-7_13

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