Direct dissipation-based arc-length approach for the cracking elements method

07/04/2020
by   Yiming Zhang, et al.
0

Dissipated energy, representing a monotonically increasing state variable in nonlinear fracture mechanics, can be used as a restraint for tracing the dissipation instead of the elastic unloading path of the structure response. In this work, in contrast to other energy-based approaches that use internal energy and the work done by the external loads, a novel arc-length approach is proposed. It directly extracts the dissipated energy based on crack openings and tractions (displacement jumps and cohesive forces between two surfaces of one crack), taking advantage of the global/extended method of cracking elements. Its linearized form is developed, and the stiffness factor of the arc-length restraint is naturally obtained by means of the Sherman-Morrison formula. Once cohesive cracks appear, the proposed approach can be applied until most of the fracture energy is dissipated. Results from several numerical tests, in which arc-length control and self-propagating cracks are jointly used, are presented. They demonstrate the robustness of the proposed method, which captures both global and local peak loads and all snap-back parts of the force-displacement responses of loaded structures with multiple cracks.

READ FULL TEXT
research
08/26/2023

A new displacement-controlled arc-length method for damage mechanics problems

The numerical solution of continuum damage mechanics (CDM) problems suff...
research
12/29/2022

Controllable Mechanical-domain Energy Accumulators

Springs are efficient in storing and returning elastic potential energy ...
research
05/05/2022

Convergence of a scheme for elastic flow with tangential mesh movement

Elastic flow for closed curves can involve significant deformations. Mes...
research
08/17/2019

Global cracking elements: a novel tool for Galerkin-based approaches simulating quasi-brittle fracture

Following the so-called Cracking Elements Method (CEM), recently present...
research
12/18/2022

On the design of energy-decaying momentum-conserving integrator for nonlinear dynamics using energy splitting and perturbation techniques

This work proposes a suite of numerical techniques to facilitate the des...
research
12/05/2020

Constrained motion design with distinct actuators and motion stabilization

The design of adaptive structures is one method to improve sustainabilit...
research
04/19/2018

Metamorphs: Bistable Planar Structures

Extreme deformation can drastically morph a structure from one structura...

Please sign up or login with your details

Forgot password? Click here to reset