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Testing of the air conditioning unit proved to effectively cool incoming air at 30 degrees Celsius and 40% relative humidity. The second stage will incorporate a conventional 12000 BTU upright air-conditioning unit. The first stage will incorporate an evaporative cooler using CELdek porous media.

The purpose of this project is to decrease the thermal discomfort of high-temperature outdoor spaces with the use of a 1-2-person capacity two-stage cooling system. To ensure the quality of theproduct, drop tests and humidity tests simulating real-world environmental wear will also be brieflydiscussed to address the reliability against mechanical shock and moisture induced electrical failure.įigure 1: High Level Overview of Device’s Operation The device is made to becomfortable to wear, lightweight, non-intrusive, and be cost-effective. This device will help the user explore new environmentsmore comfortably, thereby providing an overall higher degree of autonomy. It allows the user to detect objects they are not closeenough to touch, and objects that are silent. Thisdevice functions beyond the normal sensory capabilities of a person who is visually impaired while notreplacing or hindering their current abilities. An array of nine vibratingmotors across both the user’s chest and back give haptic feedback, and notify the user of the speed, direction, and distance of detected objects in a non-redundant way, as depicted in Figure 1. A Raspberry Pi 3 augmented by an IntelNeural Compute Stick 2 machine-learning co-processor takes video input from two pi-camera v2modules to detect people and various objects within 6 feet of the user. Our obstacle detection device is a wearable device made to help blind and visually impaired peoplenavigate more easily through their everyday environment. “Fused Filament Fabrication/FFF – 3D Printing Simply Explained,” All3DP, 0.
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”Amended and Restated Exclusive Patent License Agreement”. Following the completion of the open-source powder printer, it will be utilized by the Hudson Valley Additive Manufacturing Center (HVAMC) for student and client use.įigure 1: Rendering, Open Source 3D Powder Printer, OASIS Ytec’s original powder printer design will also be improved in a sustainable manner in which binder liquid will be conserved after each print.
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Computer engineering software has been improved by updating the user interface of the OASIS source code.

Mechanical design improvements have been done by increasing the build volume. Electrical designs have been improved by updating the printed circuit board track layout, as well as the speed of the printer. The electrical, mechanical, and software design of Ytec’s original printer has been altered and improved upon. The goal of the Open Source Powder Printer is to build a functional printer that will initially use one type of powder for printing, shown in Figure 1. In building a printer that explores binder jetting, this can be an addition to FFF printers that future students at SUNY New Paltz can use. Alternatively, the binder jetting method of 3D printing will produce parts with complex geometries without the use of support material. Fused Filament Fabrication is the process by which heated plastic is extruded through a nozzle and deposits it into thin layers that create a 3D object. It is different from the Fused Filament Fabrication (FFF) printers used commonly across SUNY New Paltz in that it is a method where 3D objects are created using a powder and binding liquid.
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Without their support, we would not be able to produce such professional projects.Įnjoy the 2020 Virtual Engineering Design EXPO!īinder Jetting technology was patented in 1993 by the Massachusetts Institute of Technology. I would like to extend a very special thank you to our Engineering Design EXPO sponsors:ĮLNA Magnetics | Bantam Tools | GeoSync Microwave, Inc. This display is a testament to the resilience of the SUNY New Paltz Engineering community. As you browse the 20 projects on display this year, you will find that our students, faculty, mentors, and sponsors decided not to let extenuating circumstances get in the way of continuing that trend. I have marveled as projects have grown in complexity and sophistication every year since the EXPO’s inception.

However, this new platform gives us the opportunity to reach an even broader audience this year. We are prouder than ever of their accomplishments and wish that we could gather in celebration, as we have in the past. This year’s cohort had to face exceptional challenges in pursuit of their final designs.

Thank you for taking time out of your busy schedule to click through our Virtual Engineering Design EXPO!Įach year, our Senior Design students design, build, test, and repeat until they create a product we are all proud to display at our EXPO.
