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Blog Posts Tagged Structural Mechanics Module

Model Deforming Objects with the Arbitrary Lagrangian-Eulerian Method

January 17, 2018

The combined efforts of Leonhard Euler and Joseph-Louis Lagrange inspired the arbitrary Lagrangian-Eulerian (ALE) method, which we can use to model deforming objects.

Analyzing the Mechanical Behavior of Cells for Biological Applications

January 11, 2018

Finite element modeling can be used to analyze the mechanical behavior of biological cells. Guest blogger Björn Fallqvist of Lightness by Design sheds light on this bioengineering topic.

How to Model Fluid-Structure Interaction in a Water Balloon

December 15, 2017

They’re not just for playing games in the backyard: Water balloons are also an example of fluid–structure interaction in a nonlinear elastic material. Learn how to model this effect…

Analyzing Magnetic Flowmeters for Blood Flow Measurement

November 24, 2017

Biomedical researchers used multiphysics modeling in order to understand how blood vessel movement influences the sensitivity of their flow meter designs. Get the full story here.

Keynote Video: Modeling the Multiphysics Behavior of Nuclear Fuel

November 6, 2017

A laboratory engineer discusses using multiphysics simulation to understand the complex and challenging behavior of nuclear fuel. Watch his presentation and get a quick summary here.

How to Implement Elastoplasticity in a Model Using External Materials

November 2, 2017

Sometimes the mechanical behavior of a material is not readily expressed in terms of a built-in model. In these cases, you can use external materials. Learn how with an elastoplasticity example.

What Is the Physics Behind a Counterweight Trebuchet?

October 11, 2017

A counterweight trebuchet, a siege weapon commonly seen in movies set in the Middle Ages and fantasy worlds, also happen to be an interesting multibody dynamics problem.

Analyzing a Unique Poroelastic Metamaterial with Simulation

August 7, 2017

This blog post combines the subjects of 3D printing and metamaterials, featuring a group that used simulation-based research to analyze a unique poroelastic metamaterial.


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