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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L2M- Lightweight Additive Manufacturing of Marine Components for Fuel Efficient and Low-Emission Shipping

The proposed project aims to develop advanced materials that can better resist corrosion and damage in marine and offshore environments. These materials will help extend the service life of equipment and structures exposed to harsh seawater conditions, reducing maintenance costs and downtime. By improving durability and reliability, the project will support safer and more efficient […]

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TRLUP – Lickety Splint

RAR Innovations is a woman-owned, Newfoundland-based start-up focused on improving emergency-care technology through the development of the Lickety Splint (LS), a one-piece, wrap-around compression immobilization device that combines the function of a splint and a bandage. Unlike conventional splints such as the SAM Splint, SpeedSplint, or improvised wooden planks, the Lickety Splint can be applied […]

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L2M Highly Efficient DC-DC Converters for Small Offshore Oil Rigs

Offshore oil rigs play a critical role in Canada’s energy industry, but they rely heavily on diesel generators that are expensive, polluting, and difficult to maintain in remote marine environments. This project explores the development of highly efficient DC–DC converters—advanced electronic devices that improve the way electricity is managed on offshore platforms. These converters make […]

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L2M –Next-Generation Marine and Offshore Components via Canadian High-Entropy Alloys and Laser Powder Bed Fusion (LPBF)

This project focuses on developing next-generation marine and offshore components using high-entropy alloys (HEAs) derived from Canadian resources and manufactured through Laser Powder Bed Fusion (LPBF), an advanced metal additive manufacturing technology. The marine and offshore oil and gas industries operate in some of the world’s most corrosive and mechanically demanding environments, where corrosion, fatigue, […]

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Impression 3D des biocomposites à base de lignine

Le projet de recherche porte sur l’impression 3D de bio composites à base de lignine, un matériau biosourcé issu de la biomasse. L’objectif est de développer des matériaux écologiques et performants pour l’impression 3D en intégrant la lignine dans des composites innovants. Le stagiaire étudiera la formulation de ces bio composites, leurs propriétés rhéologiques et […]

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Channel Modeling of Wireless Communication Systems Using Optimized Reconfigurable Intelligent Surface Arrays

The major objectives of this research are to derive the ultimate performance limits of a communication system using Reconfigurable Intelligent Surfaces (RIS), trying to reach those ultimate limits through the optimization of elements of the RIS and their configuration, evaluating the performance of physically realizable RIS based systems given practical limitations, and trying to alleviate […]

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Technology and Tools for Quantitative Neurodiagnostics Using Ultra-High Resolution Magnetic Resonance Imaging

The project aims to translate developments in ultra-sensitive MRI sensors to a clinically-relevant setting. To create high-sensitivity sensors for better images, we aim to create a tight-fitting system which places the sensors—akin to antennas—closer to the brain. This will improve the quality of the signals that we can extract from the brain, and allow us […]

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Vision-Based Welding Control and Quality Assurance

Manual welding is a highly demanding task which requires extensive expertise for certain applications such as pipe welding. To facilitate the welding process, increase productivity, and decrease welder’s required level of skill, Novarc Technologies has designed and manufactured a collaborative Spool Welding Robot (SWR) equipped with a laser assistant weld path tracking. Our proposed research […]

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Vision-Based Welding Control and Quality Assurance – Year two

Manual welding is a highly demanding task which requires extensive expertise for certain applications such as pipe welding. To facilitate the welding process, increase productivity, and decrease welder’s required level of skill, Novarc Technologies has designed and manufactured a collaborative Spool Welding Robot (SWR) equipped with a laser assistant weld path tracking. Our proposed research […]

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Proof of Principle Application for Biosensors in Animal Models

NXTSens has developed an implantable continuous monitoring, stand-alone and potentially mass-producible microsensor for accurate monitoring of tissue pressure and temperature in damaged limb muscles to better diagnose ACS. The proposed research will involve several sub-projects that include: i) develop appropriate surgical models for the accurate and reproducible placement of the microsensors in rodent compartments; ii) […]

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