DE · Topics · Resources · Sponsored Content

Predict 3D Printed Cellular Material Stiffness and Failure Response

Shape Independent Models Predict Behavior of 3D Printed Cellular Materials with 90% Accuracy.

PROBLEM

Despite the ability to design and manufacture cellular materials and structures with additive manufacturing, companies are reluctant to implement these in criticalto- function applications due to the large uncertainties in performance.

The challenge in predicting cellular material behavior stems partly from the uncertainty attributable to the process itself, and partly due to the difficulties fundamentally intrinsic to cellular materials, such as shape and size dependence, junction effects, and nonuniform stress and damage states.

The use of bulk material properties disregards behavior that includes these effects, and the use of homogenization techniques is limited due to their inherent, empirical dependence on shape.

OBJECTIVE

While previous work homogenized behavior on the cellular level, this project sought to go a level deeper and extract data at a material level. The objective of this project was to develop analytical equations that could be used not merely to study the effective performance of cellular structures, as is commonly done in literature, but also to extract a point-wise material property that is cell-shape independent.

The primary workforce and education goal of this project was to develop a pilot online, living textbook in additive manufacturing, for and by the members of America Makes.

Fill out the information below to download the resource.

By downloading this content, I agree to receive the DE 24/7 Newswire, a twice weekly free email newsletter (you may choose to opt-out in the newsletter).

Latest News

Skip the Mesh, Print from CAD
Skipping the mesh and printing from CAD, some argue, is long overdue.

SPEE3D Collaborates With Northeastern University Kostas Research Institute
Purpose of collaborative effort is to bring additive manufacturing to students and military.

Azure Printed Homes Launches $4.2 MM Crowdfunding Campaign
Company named a 2025 SXSW Innovation finalist in Urban Experience for Sustainable Homes

JT File Importer Updated in KISTERS 3D CAD Visualization App
The new JT importer maximizes efficiency under multithreading demands.

Altair and Cranfield University Sign Simulation-Focused MoU
Organizations agree to advance use of simulation, data analytics, and AI.

Role of Additive Manufacturing Through 2030
The global market for aerospace additive manufacturing is estimated at US$1.2 billion in 2023 and is projected to reach US$3.8 billion...

All posts