Numerical Prediction of Mode Splitting on Rotating Disks

This project aims to develop a numerical tool for predicting accurately resonance frequencies of high-heads hydraulic turbines. Both the presence of water and the rotation of the disk-like structure induce shifts in these frequencies compared to a standing disk in air, respectively added mass and mode split. The project is articulated around the following steps: […]

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Reduced-order thermo-fluid modelling of automotive interior

Recreational vehicles operating off the grid rely on battery power to maintain climate control and, by doing so, the occupants’ comfort. Extended battery usage in these vehicle can be achieved by optimizing the thermal-fluid design of the interior space through the judicious selection of insulation material, properly sized HVAC systems, window glazing, and even external […]

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Optimal Design and Control of an Automated Bike Parking System

Automated parking systems is a relatively new industry in North America. Although there are techniques available for automotive applications, there is not much attention given to storing bicycles. The goal of this Mitacs project is to develop a reliable and efficient system for bicycle storage. The outcome of this project will help the supporting company, […]

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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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High Performance of Sulfide-based Electrolytes in All Solid-State Batteries for Safe Applications of Electric Vehicles

Lithium-ion batteries (LIBs) have become a key player in the growing need for electric vehicles (EVs). State-of-the-art LIBs, using liquid electrolytes, still have significant challenges in their safety, lifespan, and energy density. Accordingly, solid-state lithium-ion batteries (SSLBs) have recently been attracting increasing research and industrial attention due to their ability to overcome intrinsic disadvantages of […]

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Reliability Study for Urban Transit Buses

The reliability of transit buses is essential for the cost-effective delivery of public transportation services. This research aims to improve the reliability of transit buses through optimized operational maintenance planning. We specifically wish to develop a mathematical optimization model that would help transit operators in deciding which bus components to repair during a maintenance intervention. […]

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Advanced Hybrid Solid-State Lithium(-ion) Batteries for Electric Vehicle Applications

As the dominating power supplies for current electric vehicles (EVs), the state-of-the-art LIBs are yet sulfuring from severe challenges in terms of safety, lifespan, and energy density due to the adoption of liquid electrolytes (LEs). Accordingly, developing next generation solid-state lithium(-ion) batteries (SSLBs) is considered to be a feasible approach to achieve safe and high […]

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3D Imaging Development for Part Dimensional Measurement

Manual inspection method is still applied by mounting parts on customized checking fixtures and thus dimensions are checked with different gauges/feelers. Typically, it could take 10 -30 minutes to fully inspect the required spatial dimensions of one part. This project will develop an automated 3D dimensional inspection system for deep drawing parts. After manually mounting […]

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Study of thermal energy storage solutions for a long-term, eco-friendly and cost-effective adiabatic compressed air energy storage system

It is vital to reduce today’s consumption of fossil fuels by using renewable energies like wind energy, solar or photovoltaic. However, majority of renewable energies are intermittent and not in phase with human electricity consumption cycle. It is therefore essential to develop energy storage systems to capture renewable energies when they are available and distribute […]

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Investigation of the strength of bonded joints for lightweight vehicle assembly

In this research project, strength and behaviour of bonded joints is investigated under various loading and geometrical conditions. The interns will prepare specimen in accordance with industry guidelines, test the specimen and record data. Interns will study and investigate the joint behavior under several different scenarios, will model material behavior from the test data. This […]

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Magnetorheological Fluid Actuators for various industries

Exonetik designs, develops and manufactures magnetorheological (MR) actuator systems that enable novel functionalities to satisfy unmet customer needs. In collaboration with Exonetik engineers, interns will participate in the design, development and testing of customized magnetorheological actuators for three specific applications in the automotive, manufacturing and health sectors. The expected results of these subprojects will be […]

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Modeling of the Wear Performance of Carbide-Based Overlays and Coatings

Surface degradation during Oil & Gas and Mining operations in the Province of Alberta are pervasive. This has resulted in extensive research and development activities into the development of advanced surface modifications that are based on overlays and coatings. Most research effort has focused on materials selection, fabrication, and optimization of wear performance of those […]

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