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30 July 2026

New Master’s Thesis Demonstrates the Potential of the rbfCAE Platform for Human Body Model Articulation

We are pleased to highlight a new Master’s thesis developed at the University of Rome Tor Vergata that showcases the application of the rbfCAE platform to advanced biomechanics and reduced-order modeling. Entitled “Articulation of THUMS through Reduced-Order Models,” the thesis was carried out by Samuele Stazi under the supervision of Prof. Marco Evangelos Biancolini and […]

1 July 2026

rbfCAE Technology Featured at the 21st OpenFOAM Workshop

We are pleased to announce that the work entitled “A Framework for the Analysis of the Coupled Aerodynamic-Dynamic Response of a Vehicle: An OpenFOAM Approach” will be presented on July 2, 2026, by Alice Zanella at the 21st OpenFOAM Workshop, taking place in Porto, Portugal. The contribution presents a computational framework for the coupled simulation […]

30 June 2026

ENGYS Partners with RBF Morph to Deliver Advanced Shape Morphing and FSI Capabilities via rbfCAE

ENGYS is pleased to announce a new partnership with RBF Morph, bringing the advanced capabilities of the rbfCAE software to engineers seeking faster and more efficient design exploration, optimisation and simulation workflows. Built on Radial Basis Function (RBF) technology, rbfCAE features high-fidelity mesh morphing, shape optimisation, fluid-structure interaction (FSI), reduced-order modelling (ROM), and virtual reality […]

1 December 2025

RBF Morph Brings a New Level of Speed and Integration to CAD–CFD Aerodynamic Design

A recent thesis by our colleague Davide Zambon at Università Ca’ Foscari Venezia explores a new approach to accelerating aerodynamic design through the integration of Radial Basis Function (RBF) technologies directly within Autodesk Alias. The work, titled “Acceleration of the Aerodynamic Design Workflow: A Plugin for Alias Based on Radial Basis Functions,” demonstrates how geometric […]

26 November 2025

Presentation Now Available: “Interactive Reduced Order Models for Ship Hull Design and Optimization” at COMPIT 2025

We are pleased to announce that the presentation corresponding to our paper co-authored with ENGYS, “Interactive Reduced Order Models for Ship Hull Design and Optimization”, presented at COMPIT 2025, is now available for download on our website. The 23rd Conference on Computer Applications and Information Technology in the Maritime Industries (COMPIT 2025), held in Pontignano, […]

20 November 2025

Forthcoming F4E Workshop on Metrology and Reverse Engineering

As the date approaches for the Metrology and Reverse Engineering Workshop organized by Fusion for Energy (F4E), preparations are intensifying for the online session to be held on 5 December 2025. The RBF Morph team is pleased to contribute to this event, which aims to facilitate advanced discussion on emerging methodologies and practical applications in […]

11 November 2025

The Avicenna Alliance Webinar Featuring RBF Morph 2025

Our second RBF Morph webinar hosted and organized by the Avicenna Alliance was a success.  On November 11, 2025, the webinar “Real-Time Medical Digital Twins: Geometry, Simulation, and Immersive Interaction” featured Marco Evangelos Biancolini, Founder of RBF Morph, who explored how real-time medical Digital Twins are transforming healthcare. The session examined the integration of geometry, […]

14 October 2025

Pushing the Boundaries of Ship Design: Our COMPIT 2025 Paper with ENGYS Now Available

We are pleased to announce that the paper we co-authored with ENGYS, titled “Interactive Reduced Order Models for Ship Hull Design and Optimization,” and presented at COMPIT 2025, is now available for download on our website. The 23rd Conference on Computer Applications and Information Technology in the Maritime Industries (COMPIT 2025) took place in the […]

12 September 2025

New publication in Smart Materials and Structures

We are pleased to announce the publication of our open access article “Computational simulation of shape memory polymer structures via finite elements and mesh morphing” in Smart Materials and Structures. Shape-memory polymers (SMPs) are an important class of smart materials, able to recover a permanent shape after being deformed into a temporary configuration under external […]