Prediction of Particle Dynamics for Additive Manufacturing

Additive manufacturing is an emerging technology that can revolutionize specific manufacturing sectors, but several technical issues related to flowability of metal powders remain to be resolved before its full potential can be achieved. The project aims at better characterizing and predicting the flow behavior of powders used for additive manufacturing, and improving powder flow simulation. […]

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Advanced Applied Probabilistic Programming

Autonomous cars are one example of a compelling next-generation artificial intelligence technology. In order to safely navigate through the world, cars must plan long-range routes and short-range paths, perceive the world around them, and act according to a safety-first policy that takes into account the intent of agents in their surrounding world. While not strictly […]

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Impact modeling of composite aircraft structure

Composite structures are vulnerable to impact damage, and have to satisfy certification procedures for high velocity impact from bird strike and foreign object damage. Since performing full scale impact tests is highly expensive and thus impractical, the development of validated analytical tools for the prediction of the structural response is essential for the industry to […]

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Data fusion strategies for reducing the uncertainty of point cloud data

For decades, contact probes on coordinate measuring machine (CMM) have been widely used for data acquisition in coordinate metrology, mainly because of their high accuracy. However, the acquired data is a low-density set of points, because sampling using a contact probe is a slow process. Nowadays, optical 3D scanning technologies such as structured-light scanners or […]

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Développement d’un modèle mathématique thermo-hydrodynamique transitoire de la trempe thermique pour la production d’aciers de haute dureté

La fabrication de pièces en acier de haute dureté et de hautes propriétés mécaniques pour différentes applications industrielles (pétrochimiques, moule d’injection de plastique, etc.) se fait par différents traitements thermiques. Ces pièces sont fabriquées par différents procédés et subissent une trempe. Les pièces peuvent être de différentes tailles et de formes diverses. Plus la taille […]

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Développement d’un modèle mathématique thermo-hydrodynamique transitoire de la trempe thermique pour la production d’aciers de haute dureté – Year two

La fabrication de pièces en acier de haute dureté et de hautes propriétés mécaniques pour différentes applications industrielles (pétrochimiques, moule d’injection de plastique, etc.) se fait par différents traitements thermiques. Ces pièces sont fabriquées par différents procédés et subissent une trempe. Les pièces peuvent être de différentes tailles et de formes diverses. Plus la taille […]

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Development of fast photocrosslinking bioinks for visible light-based stereolithography 3D bioprinting

The research projects aims to develop the fast photocrosslinking bioinks for visible light-based stereolithography 3D bioprinting. In order to prepare bioinks for 3D bioprinting, alginate was modified with tyramine which is phenol group and gelatin was modified with glycidyl methacrylate. Compound with alginate-tyramine derivatives(Alg/Tyr) and gelatin-methacrylate(GelMA) will improve its 3D printability, mechanical properties and cell […]

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ELSTec : Efficient lightweight structures made by automated fiber placement (AFP) of thermoplastic composites

Led by Prof. Steve Tsai from Stanford University, Palo Alto, USA, new methods to efficiently design, analyze, optimize and manufacture high-performance light weight panels made of carbon fiber reinforced composites and thermoset resins have been developed by an international consortium. The ideas already available give indication to massively reduce cost, maximize light weight efficiency and […]

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Development of high precision microelectromechanical systems (MEMS) based vacuum encapsulated resonators

Rapid development of micro-fabrication technology, once considered exclusively for aerospace navigation, is now regarded for a wide range of applications, including autonomous vehicle navigation, underwater and industrial applications. Microelectromechanical systems (MEMS)-based gyroscope employs a resonating mass (resonator) to detect changes in motion, which is the central element of the gyroscope. MEMS resonator energy loss is […]

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