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Blog Posts Tagged 3D Printing

3 Real-World Uses of Simulation in the Manufacturing Industry

August 27, 2025

Modeling and simulation enable those working in the manufacturing industry to optimize designs while cutting down on costs, resources, and time — without sacrificing precision. Explore 3 examples.

Designing the Sound Absorption of Microlattice Structures

September 29, 2021

Using numerical simulation, you can design microlattice structures with sound-absorbing properties, and then print them via additive manufacturing without traditional manufacturing constraints.

Optimizing an NIV Mask Design with Multiphysics Simulation

August 13, 2020

NIV masks offer a form of noninvasive monitoring and ventilation for COVID-19 patients, which lessens the need for ventilators and other mechanical respirators.

Introducing the Metal Processing Module

December 9, 2019

The Metal Processing Module includes 2 interfaces for analyzing diffusive and displacive metallurgical phase transformations: Metal Phase Transformation and Austenite Decomposition.

Comparing Optimization Methods for a Heat Sink Design for 3D Printing

April 18, 2019

When designing a heat sink, is it better to use parametric or topology optimization? When manufacturing said design, does 3D printing produce the best result, or a conventional method?

How to Activate Material in Simulations of Manufacturing Processes

November 7, 2018

Do you model manufacturing processes such as welding or additive manufacturing? You can activate or deactivate a material in a material deposition simulation using specialized functionality.

Advancing Additive Manufacturing with Sequential Simulations

March 7, 2018

In some ways, additive manufacturing is like sewing or weaving. We talk to a professor of additive manufacturing about how sequential simulations can be used to analyze and optimize the process.

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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