Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Solution of the Quasi‐static Contact Problem
This chapter helps the readers to solve the system of equations by restricting it to the static frame. The inertial term subsequently disappears and the system reduces to one consisting of nonlinear algebraic equations, allowing us to concentrate solely on the nonlinear aspect of the problem. The chapter explains how to solve this system using the iterative Newton‐Raphson method, and describes the expression for the contact tangent matrix, which is the essential ingredient for each numerical iteration. A calculation with friction is costly in terms of memory and in computation time than a calculation without friction. The solution algorithm for the case of the static contact problem with the arc‐length method is analogous to that with the direct incrementation of the variable factors, while being a little more complicated, because this time the arc length has to be managed. The chapter focuses on the SI units of the different quantities involved in the contact matrix.
Solution of the Quasi‐static Contact Problem
This chapter helps the readers to solve the system of equations by restricting it to the static frame. The inertial term subsequently disappears and the system reduces to one consisting of nonlinear algebraic equations, allowing us to concentrate solely on the nonlinear aspect of the problem. The chapter explains how to solve this system using the iterative Newton‐Raphson method, and describes the expression for the contact tangent matrix, which is the essential ingredient for each numerical iteration. A calculation with friction is costly in terms of memory and in computation time than a calculation without friction. The solution algorithm for the case of the static contact problem with the arc‐length method is analogous to that with the direct incrementation of the variable factors, while being a little more complicated, because this time the arc length has to be managed. The chapter focuses on the SI units of the different quantities involved in the contact matrix.
Solution of the Quasi‐static Contact Problem
Le van, Anh (Autor:in)
Contact in Structural Mechanics ; 109-155
18.06.2024
47 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Numerical Examples of Quasi‐static Contact
Wiley | 2024
|IMPROVED ALGORITHM FOR QUASI-STATIC SOLUTION OF HIGH SPEED ANGULAR CONTACT BALL BEARING
DOAJ | 2018
|Contact Behaviour of Composite Laminate under Quasi-Static Indentation Load
British Library Online Contents | 2014
|Dynamic and quasi-static instability of sliding thermoelastic frictional contact
British Library Online Contents | 2016
|An alternative formulation for quasi-static frictional and cohesive contact problems
British Library Online Contents | 2014
|