preliminary data on ambulance gurney.

Furthermore, the addition of electronic components increases functionality and safety by assisting in unloading and loading activities. The team will start by gathering information for alternative materials that are compatible and do not compromise current weight limits, functionality, or overall integrity in current designs. Strength, resistivity to corrosion, and biocompatibility are key characteristics when researching materials for use on the gurney. SolidWorks/Creo will be used to render a 3D design to have a better vision of the stretcher and ensure its manufacturability. With help of volunteer EMTs, we will tests current and experimental designs (powered and hydraulic designs) to measure the forces and flexion/torsion that is exerted during everyday operations revolving stretchers, including lifting, loading, unloading, equipment/patient weight variances, etc.

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