Modeling And Simulation Of An Electrostatic Lunar Particle Sieve,
2023
Missouri University of Science and Technology
Modeling And Simulation Of An Electrostatic Lunar Particle Sieve, Aaron Berkhoff
NASA-Missouri Space Grant Consortium
The following research was conducted to develop a kinetic particle model, which simulates an electromagnetic sieve used for in-situ material utilization on the lunar surface. A code package was developed to simulate an electromagnetic sieve that uses electrodes to transport fine particles within a cylindrical device. Specifically, this research generates an initial working model for the sieve and tests different electrode configurations. The simulation models different electric fields generated by electrodes, kinetic particle dynamics, and lunar particle distribution. During the case study, which investigates different electrode configurations, it was determined that electrodes oriented such that electrodes located above and below …
Nationwide Eclipse Ballooning Project: April 2023 Status Report,
2023
Missouri University of Science and Technology
Nationwide Eclipse Ballooning Project: April 2023 Status Report, Jill Schmidt
NASA-Missouri Space Grant Consortium
This report details the progress of the Missouri S&T Nationwide Eclipse Ballooning Project as of April 2023 and the future work the team will complete throughout the remainder of 2023 and 2024. This project began in January 2023, and students have been completing preliminary training activities, so they are prepared to begin assembling and testing the eclipse payloads during summer 2023. Throughout the summer, all team members will be actively engaged in this research project and participating in outreach events related to high altitude ballooning.
High Pressure Injection Process For Ceramic Composites,
2023
Missouri University of Science and Technology
High Pressure Injection Process For Ceramic Composites, Samuel Weiler
NASA-Missouri Space Grant Consortium
Ceramic materials are valued for good heat resistance and corrosion resistance. Due to these benefits, they are widely used in the aviation, automotive, medical, construction, and other industries. Ceramic materials are also both hard and brittle, qualities that are not ideal in many applications. To reduce brittleness, and other undesirable characteristics of ceramics, engineers have turned to composites to increase the mechanical properties of these materials. By adding composite particles or fibers, these characteristics can be improved. Constructing ceramic composites is not without its challenges, however. Current processes are prone to high porosity, high shrinkage, and poor accuracy of parts. …
Performance Evaluation Of Additively Manufactured Carbon/Peek Composites,
2023
Missouri University of Science and Technology
Performance Evaluation Of Additively Manufactured Carbon/Peek Composites, Matik S. Heskin
NASA-Missouri Space Grant Consortium
Carbon/PEEK composites have a broad range of applications due to their combinations of superior creep properties and excellent strength to weight ratios. Like all fiber-based composites they are limited geometrically by their required manufacturing processes. Additively manufactured (AM) materials overcome this issue and can be formed into incredibly complex shapes. By combining these two fields, a material limited in application by geometry can have its shortcomings supported with AM processes.
AM carbon/PEEK composites have already been created but this relatively new material still needs property characterization. Therefore, the objective of this work will be to evaluate the structural performance of …
From Land Grant To Space Grant,
2023
Missouri University of Science and Technology
From Land Grant To Space Grant, Mohammad Dehghani
NASA-Missouri Space Grant Consortium
No abstract provided.
Comparison Of Injection Molded Abs Using Conventional Steel And Novel Composite-Based Additively Manufactured Mold Plates,
2023
Missouri University of Science and Technology
Comparison Of Injection Molded Abs Using Conventional Steel And Novel Composite-Based Additively Manufactured Mold Plates, John Mitchell
NASA-Missouri Space Grant Consortium
Polymer injection molding processes have been used for over 100 years to create high-volume parts quickly and efficiently. Injection molding uses mold plates that are traditionally made of very hard tool steels, such as P20 steel, which is extremely heavy and has very long lead times to build new molds. In this study, composite-based additive manufacturing (CBAM) was used to create mold plates using long-fiber carbon fiber and polyether ether ketone (PEEK). These mold plates were installed in an injection molding machine, and rectangular flat plates were produced using Lustran 348 acrylonitrile butadiene styrene (ABS). Tensile testing was performed on …
Multi-Disciplinary Analysis Surrogate Based On Twin-Generator Generative Adversarial Networks For Electric Drone,
2023
Missouri University of Science and Technology
Multi-Disciplinary Analysis Surrogate Based On Twin-Generator Generative Adversarial Networks For Electric Drone, Samuel Sisk
NASA-Missouri Space Grant Consortium
Multi-Disciplinary Analysis and Optimization (MDAO) plays an important role in the future of aviation, especially relating to Urban Air Mobility (UAM). MDAO for UAM effectively quantifies and maximizes system performance and safety while minimizing cost or consumption. Electric drone takeoff trajectory design aims to minimize energy consumption while fulfilling acceleration and other constraints to keep passengers comfortable. Conventional simulation-based MDAO is computationally expensive due to repeatedly evaluating physics-based models while naïvely constructing machine learning predictive models, also known as surrogate models, do not scale well with large-scale problems due to the “curse of dimensionality”. A twin-generator generative adversarial networks (Twin-GAN) …
Progress In Optimization Of Electrostatic Sieve Concept For Transport Of Lunar Regolith Using A Genetic Algorithm,
2023
Missouri University of Science and Technology
Progress In Optimization Of Electrostatic Sieve Concept For Transport Of Lunar Regolith Using A Genetic Algorithm, Easton Ingram
NASA-Missouri Space Grant Consortium
A method for optimizing electrostatic dust transport systems using a genetic algorithm is in development. Applications to electrostatic sieving are discussed for use on the lunar surface. This simulation will allow for rapid development, testing, and optimization of electrostatic particle transport designs with large search spaces. Current progress and ongoing work for the simulation is reviewed.
Lunar In-Situ Aluminum Production Through Molten Salt Electrolysis (Lisap-Mse),
2023
Missouri University of Science and Technology
Lunar In-Situ Aluminum Production Through Molten Salt Electrolysis (Lisap-Mse), Jacob Ortega, Jeffrey D. Smith, Fateme Rezaei, David Bayless, William P. Schonberg, Daniel S. Stutts, Daoru Frank Han
NASA-Missouri Space Grant Consortium
The goal of Artemis is to establish a sustained presence on the Moon. To achieve so, numerous resources are necessary. The Moon contains several essential elements needed to sustain human presence. Most of those elements are trapped in the form of minerals. To refine those minerals into useful materials, reduction methods are needed. Most reduction methods on Earth require large amounts of mass and power which is unrealistic for early stages of building a lunar base. To solve this problem, we are developing a concept of Lunar In-Situ Aluminum Production through Molten Salt Electrolysis (LISAP-MSE).
The LISAP-MSE project, if successful, …
Supersonic Wind Tunnel Improvement For Advanced Laser-Based Non-Intrusive Diagnostics,
2023
Missouri University of Science and Technology
Supersonic Wind Tunnel Improvement For Advanced Laser-Based Non-Intrusive Diagnostics, Joshua Gary
NASA-Missouri Space Grant Consortium
This work presents an approach to the design, and theoretical application, of a new test section for the Missouri S&T Supersonic Wind Tunnel to be used with advanced laserbased non-intrusive diagnostics. Supersonic wind tunnel test sections present multiple challenges. They need to ensure proper flow by avoiding jet-flow interactions and ensuring started conditions; they need to withstand large pressure loads in the case of tunnel unstart; they need to provide easy optical access for advanced diagnostics; they need to be modular and adaptable for different experiments. This work presents detailed analytical and numerical analyses of the mechanical loads. Based on …
Effects Of Tempering Temperature On Gas Turbine Fan Cases,
2023
University of Connecticut
Effects Of Tempering Temperature On Gas Turbine Fan Cases, Seth Utter
Honors Scholar Theses
The project aimed to investigate the effects of tempering temperature on metals used for gas turbine engine fan cases as a major relevant concern is containing blades in during blade-out events. There are three ways to accomplish this: using a thicker metal, incorporating different materials into the case, or heat treating the metal. This project focused on the third solution: reviewing the impact toughness and hardness of fractured samples and their equivalent ductile-to-brittle transition shear faces. Given its availability, 1045 steel, as opposed to aerospace grade metals, was used for in-house testing. The data obtained from these experiments were then …
Mask-On Breathing Awareness Trainer (Mobat),
2023
Old Dominion University
Mask-On Breathing Awareness Trainer (Mobat), Robert Larson, Yuzhong Shen
Modeling, Simulation and Visualization Student Capstone Conference
Currently there is no low-cost solution to teach large quantities of Naval Aviators on how to correctly breath on an oxygen mask. This report will discuss the design and implementation of a mask-on breathing apparatus for use with United States Naval Aircrew for initial and annual familiarization. With the current uptick in physiological episodes within the naval aviation enterprise, there has been a need to find solutions to this problem. Currently when a naval aircrew is trained in aviation physiological threats, they do so with normobaric hypoxia tools in the form of the 9A19 Normobaric Hypoxia Trainer for aircrew who …
Statistical Approach To Quantifying Interceptability Of Interaction Scenarios For Testing Autonomous Surface Vessels,
2023
Old Dominion University
Statistical Approach To Quantifying Interceptability Of Interaction Scenarios For Testing Autonomous Surface Vessels, Benjamin E. Hargis, Yiannis E. Papelis
Modeling, Simulation and Visualization Student Capstone Conference
This paper presents a probabilistic approach to quantifying interceptability of an interaction scenario designed to test collision avoidance of autonomous navigation algorithms. Interceptability is one of many measures to determine the complexity or difficulty of an interaction scenario. This approach uses a combined probability model of capability and intent to create a predicted position probability map for the system under test. Then, intercept-ability is quantified by determining the overlap between the system under test probability map and the intruder’s capability model. The approach is general; however, a demonstration is provided using kinematic capability models and an odometry-based intent model.
The Lagrange Logistics Method,
2023
University of North Dakota
The Lagrange Logistics Method, Jeffrey Rogers
Space Studies Student Publications
Human development into different environments has always required logistics support to sustain life, focusing this research on one method in supporting interplanetary missions beyond Earth. It explores utilizing stations in Lagrange orbital points within the solar system, analogous to transcontinental hubs for logistics operations in an emerging domain. The evaluation considers available Lagrange points, environmental considerations including available resources, flight distances and time in comparison to current interplanetary flight, potential risks, and possibilities beyond the immediate future to determine the practicability of this method. To determine this, a qualitative descriptive analysis method is employed. Data was collected through historical accounts, …
Thermal Control For A Miniaturized Fabry-Perot Interferometer In A Cubesat,
2023
Western Michigan University
Thermal Control For A Miniaturized Fabry-Perot Interferometer In A Cubesat, Callie Pilkington
Honors Theses
The evaluation of neutral winds is critical in understanding the ever-changing weather and climate of the thermosphere, which can develop into a hostile environment for satellites. To measure these neutral winds, Michigan Aerospace Corporation is developing a 6U CubeSat that utilizes a miniaturized Fabry-Perot interferometer. For ideal operation, the Fabry-Perot interferometer requires a closely maintained thermal environment. These requirements are crucial in obtaining accurate measurements and for sustaining instrument and mission life due to the vast temperature range experienced in the thermosphere. With the solutions outlined in this proposal, the goal is to provide Michigan Aerospace with an optimized configuration …
Analysis And Mitigation Of Pneumatic Regulator Resonance,
2023
Western Michigan University
Analysis And Mitigation Of Pneumatic Regulator Resonance, Luke Fouch
Honors Theses
Internal resonance in pneumatic regulators can result in heavy leakage, which can lead to less efficient processes. To address this issue, two simulations were developed to simulate pneumatic regulation systems. The first simulation involved deriving a mathematical model of the equations of motion for a regulator and applying it using MATLAB. The second simulation involved developing a Simulink model that incorporated physical regulator properties. To verify the accuracy of both models, physical testing data was used. After verification, the models were modified in various ways to determine the main drivers of resonance in pneumatic systems. Additionally, Finite Element Analysis was …
High Power Rocket Motor Test Bench,
2023
Western Michigan University
High Power Rocket Motor Test Bench, Jonathan Wine
Honors Theses
Static ground testing of rocket motors is used to gather performance data and troubleshoot the propulsion system, allowing propulsion engineers to compare actual characteristics to the designed parameters. It is also used in the development and validation of new propulsion systems and alterations to the fuel and oxidizer mixtures. Test benches are used to continuously collect data throughout the burn of a rocket motor, which allows engineers to plot the thrust as a function of time. This plot, a thrust curve, displays several important pieces of information about a rocket motor. This information is crucial to allow astronautical engineers to …
Design Of A Dynamometer Test Platform For Formula Sae Internal Combustion And Electric Powertrains,
2023
Western Michigan University
Design Of A Dynamometer Test Platform For Formula Sae Internal Combustion And Electric Powertrains, Ryan Bare
Honors Theses
This dynamometer project was completed for the Formula SAE team at Western Michigan University and aimed to deliver a functional and safe engine dynamometer test stand. Formula SAE is a student organization that designs and manufactures a new formula style race car from the ground up every year to compete at an international collegiate competition. The purpose of the dynamometer is to allow the team to tune their internal combustion (IC) engine and the newly developed electric powertrain (EV). The engine dynamometer is important to the Formula team as it will allow engine tuning and diagnosis prior to the completion …
Experimental And Numerical Studies Of Slurry-Based Coextrusion Deposition Of Continuous Carbon Fiber Micro-Batteries To Additively Manufacture 3d Structural Battery Composites,
2023
Missouri University of Science and Technology
Experimental And Numerical Studies Of Slurry-Based Coextrusion Deposition Of Continuous Carbon Fiber Micro-Batteries To Additively Manufacture 3d Structural Battery Composites, Aditya R. Thakur, Xiangyang Dong
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Carbon Fiber Structural Battery Composites Have Recently Attracted Growing Interests Due to their Potentials of Simultaneously Carrying Mechanical Loads and Storing Electrical Energy for Lightweight Application. in This Study, We Present a Slurry-Based Coextrusion Deposition Method to Additively Manufacture 3D Structural Battery Composites from Carbon Fiber Micro-Batteries. Cathode Slurry is Coextruded Together with Solid Polymer Electrolyte-Coated Carbon Fibers in a Single Deposition. a Network of Carbon Fiber Micro-Batteries is Achieved within the Fabricated Structural Battery Composites. Electrochemical Tests Show a Stable Charge-Discharge Performance Up to 100 Cycles. the Rheological Behavior of the Cathode Slurry is Found to Govern the Coextrusion …
New Rocket Fuel Blend For Hybrid Rocket Ignition Enhancement,
2023
Utah State University
New Rocket Fuel Blend For Hybrid Rocket Ignition Enhancement, Ryan Thibaudeau
Student Research Symposium
This work describes and compares different methods of ignition for hybrid rockets using acrylonitrile butadiene styrene (ABS) as the fuel and high-test hydrogen peroxide (HTP) as the oxidizer. Additionally, the work provides an overview of the current state of the art regarding ignition of HTP hybrid rockets. The approach to ignition methods using gaseous oxygen (GOX) pre-lead and catalytic ignition configurations are presented. The manufacturing process and testing results of a unique catalyst-infused fuel grain is presented as the optimal solution to overcome ignition latencies present in HTP-ABS hybrid rockets.
