Optimisation du procédé SACE pour l’usinage de murs minces en verre de quartz

Ce projet de recherche vise à améliorer une technique de fabrication miniature appelée « gravure chimique assistée par décharges » pour sculpter le verre de façon très précise. Pendant son stage à l’ÉTS, Augustin Mazet utilisera des équipements de pointe pour tester de nouvelles méthodes de fabrication de composants en verre de quartz extrêmement fins. […]

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Intelligent Automation of PAUT for Quantitative Defect Characterization and Evaluation

This project focuses on developing an automated decision making system for Phased Array Ultrasonic Testing (PAUT). Our goal is to reduce the industry’s reliance on manual defect evaluation. PAUT is standard in aerospace, nuclear, and manufacturing sectors for checking safety critical components. However, current practices depend heavily on a technician’s experience to interpret complex scan […]

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Smart mannequin platform for compression testing

This project is a collaborative research partnership designed to support Tression, a Canadian health-tech apparel company, in enhancing its product development. The primary challenge in the therapeutic apparel industry is the difficulty of accurately and efficiently testing the performance of medical-grade compression garments. The current process can be slow and subjective, making it difficult to […]

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Experimental Investigation of RuCl3 Electronic and Magnetic Properties Toward Spintronic and Quantum Computing Applications

Since their discovery in 2017, two-dimensional (2D) magnetic materials have emergedas a powerful platform for probing magnetism at reduced dimensionality, where thermal fluctuations challenge long-range order. Among them, RuCl3 is particularly compelling due to its unusual electronic and magnetic properties and its capacity to form heterostructures with potential ferroelectric effects, positioning it as a candidate […]

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Deep Learning-Based Classification of Defects in Induction Brazed Copper Joints Using Infrared Thermal Imaging for Enhanced Joint Quality Monitoring

This project will develop a new system that uses infrared cameras and artificial intelligence to automatically detect defects in copper joints made by induction brazing, a process widely used in heat pump manufacturing. By capturing and analyzing the heat patterns that appear during brazing, the system can quickly identify problems such as cracks or poor […]

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ESROP Laser Plume Formation MPSD 2026

This research project explores a fundamental anomaly in fluid mechanics: the potential for simple liquids to exhibit solid-like elasticity under extreme conditions. Conventionally, Newtonian fluids are understood to lack elasticity because they dissipate deformation energy almost instantly through viscous flow. However, research demonstrated that liquid glycerol exhibits “rubber-like” elasticity when subjected to ultrafast, high-strain-rate laser […]

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Procédés de microfabrication pour la polarisation de guides d’ondes dans les isolateurs

AEPONYX Inc. a développé une technologie innovante de guides d’ondes dans les isolateurs, révolutionnant l’intégration des isolateurs aux circuits photoniques et quantiques haute performance. L’intérêt du marché pour cette technologie est manifeste, mais la capacité de production demeure limitée en raison du caractère expérimental du procédé actuel. Le projet général vise à concevoir un procédé […]

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Improving the flame resistance of lyocell fibres using nanoparticles

Worldwide demand for man-made cellulosic fibres is increasing as availability of cotton fibre is limited. The regenerated cellulose lyocell process offers large advantages over other processes in terms of environmental and social impacts. However, cellulose is flammable. Current strategies to prepare flame-resistant (FR) regenerated cellulose fibre involve the incorporation of a fine powder of organophosphate […]

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Residual Stress Dynamics: Bridging the Gap Between Manufacturing Heterogeneity and Shakedown Relaxation

This research project investigates how residual stress heterogeneity generated during manufacturing affects the performance and durability of gears, which are critical components in power transmission systems. When properly controlled, residual stresses can improve fatigue resistance and extend the service life of mechanical parts. However, their behavior of relaxation during the early stages of operation is […]

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L2M- Biorenewable and Biodegradable Cellulose-based Gloves

This project focuses on validating the market potential of a new kind of sustainable, fully biodegradable glove made from renewable cellulose—designed to replace the billions of plastic-based disposable gloves used each year in Canada. Over four months, we will manually produce prototype gloves, share them with healthcare, laboratory, and food-service users, and collect real-world feedback […]

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Enhancing the Accuracy of Digital Twin Simulation with Machine Learning and Predictive Analytics

Manufacturing companies often face challenges like unexpected equipment breakdowns, shifting production needs, and resource shortages or surpluses, which can lead to delays in production schedules. Traditional systems struggle to manage these issues effectively. Our project introduces a better solution using Digital Twin (DT) technology, which creates a real-time digital replica of a factory’s operations. This […]

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