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Articles 6811 - 6840 of 30002
Full-Text Articles in Mechanical Engineering
Liquid-Vapor Distributions In Evacuated Small Diameter Channels For Improved Accuracy Of Initial Conditions In Modeling Of Oscillating Heat Pipes, Travis Mayberry
Liquid-Vapor Distributions In Evacuated Small Diameter Channels For Improved Accuracy Of Initial Conditions In Modeling Of Oscillating Heat Pipes, Travis Mayberry
Mechanical Engineering Research Theses and Dissertations
Oscillating heat pipes, also known as pulsating heat pipes, are increasingly becoming a preferred high-performance thermal ground plane in a variety of heat spreading applications due to a number of advantages over traditional copper-water wicked heat pipes, including their lighter weight, thinner profiles, simpler fabrication, and greater variety of material and working fluid options. A major barrier to even wider adoption, however, is the lack of comprehensive analytical models to simulate their performance. A key input to first principles models simulating the fundamental physics of the devices is the initial condition of liquid and vapor segment lengths and their distribution …
Automated Fiber Placement: A Review Of History, Current Technologies, And Future Paths Forward, Alex Brasington, Christopher Sacco, Joshua Halbritter, Roudy Wehbe, Ramy Harik
Automated Fiber Placement: A Review Of History, Current Technologies, And Future Paths Forward, Alex Brasington, Christopher Sacco, Joshua Halbritter, Roudy Wehbe, Ramy Harik
Faculty Publications
Automated fiber placement (AFP) is a composite manufacturing technique used to fabricate complex advanced air vehicle structures that are lightweight with superior qualities. The AFP process is intricate and complex with various phases of design, process planning, manufacturing, and inspection. An understanding of each of these phases is necessary to achieve the highest possible manufacturing quality. This literature review aims to summarize the entire AFP process from the design of the structure through inspection of the manufactured part to generate an overall understanding of the lifecycle of AFP manufacturing. The review culminates with highlighting the challenges and future directions for …
High-Order Deterministic Sensitivity Analysis And Uncertainty Quantification: Review And New Developments, Dan Gabriel Cacuci
High-Order Deterministic Sensitivity Analysis And Uncertainty Quantification: Review And New Developments, Dan Gabriel Cacuci
Faculty Publications
This work reviews the state-of-the-art methodologies for the deterministic sensitivity analysis of nonlinear systems and deterministic quantification of uncertainties induced in model responses by uncertainties in the model parameters. The need for computing high-order sensitivities is underscored by presenting an analytically solvable model of neutron scattering in a hydrogenous medium, for which all of the response’s relative sensitivities have the same absolute value of unity. It is shown that the wider the distribution of model parameters, the higher the order of sensitivities needed to achieve a desired level of accuracy in representing the response and in computing the response’s expectation, …
Mems 411: Safely Capturing Giant African Pouch Rats, Anthony Brown, John Christensen, Jared Harrison
Mems 411: Safely Capturing Giant African Pouch Rats, Anthony Brown, John Christensen, Jared Harrison
Mechanical Engineering Design Project Class
We were tasked with designing a trap to safely capture Giant African Pouch Rats. The traps are used in both urban and rural environments that include city streets, basements, farms, river beds, and bushes among other locations. Pouch rats are much larger than most rats and are a very ferocious species; they will harm themselves if there are any non-smooth surfaces when captured. It is very important that we designed a trap with this safety top of mind.
Mems 411: Rowing Force Plate, Mae Hubel, Taylor Southwick, Miles Petersen
Mems 411: Rowing Force Plate, Mae Hubel, Taylor Southwick, Miles Petersen
Mechanical Engineering Design Project Class
The Rowing Force Plate is a device that is designed to measure a rower’s force
over time so that they can understand how hard they are rowing. Most rowing
aids communicate the speed at which someone is rowing, which is variant on water
speed, wind speed, and other inconsistent environmental and situational factors.
Force, however, can be consistently measured and is a better indicator of effort a
rower is exerting. Other products that measure force do exist, but use complex and
expensive technology, unlike our design.
After brainstorming and analyzing multiple possible designs, we concluded to use
four force sensors …
Mems 411: Lost Grains Thresher, Alicia Gupte, Sophie Fox, Dan Heikes, Andrew Waldherr
Mems 411: Lost Grains Thresher, Alicia Gupte, Sophie Fox, Dan Heikes, Andrew Waldherr
Mechanical Engineering Design Project Class
The Lost Grains Thresher project aims to design and implement a device that can successfully separate the seed and chaff from various grains that are native to the greater St. Louis area. This project is designed for Dr. Natalie Mueller at Washington University in St. Louis to replace her current method of separating plant seeds from chaff by hand. This project focused on three main performance goals: 1) the device should work on a minimum of two types of seeds and thresh them to an acceptable quality, 2) the device should be easily cleaned and reset within three minutes, and …
Mems 411: Q.T. B-Bar, Gambian Pouched Rat Trap, Benjamin W. Horine Jr., Ileane Ho, Sarangi Pathirana
Mems 411: Q.T. B-Bar, Gambian Pouched Rat Trap, Benjamin W. Horine Jr., Ileane Ho, Sarangi Pathirana
Mechanical Engineering Design Project Class
To design and build an improved rat trap that will effectively capture a Gambian Pouched Rat of larger size ensuring the rodents' safety, easy deployment in natural environments, simple mechanical release mechanisms, and cost-effectiveness.
Mems 411: P.O.T.T.E.R. Test Frame, Marie Drevets, Kiersten Horton, Tony Sancho
Mems 411: P.O.T.T.E.R. Test Frame, Marie Drevets, Kiersten Horton, Tony Sancho
Mechanical Engineering Design Project Class
Our senior mechanical engineering design is a flexure test frame. At our university, third-year mechanical engineering students take a class called machine elements, in which the final project is a structural design competition. The students design a strong but lightweight object. The P.O.T.T.E.R. device can be used to judge the structural integrity of students contest entries. The customer who commissioned this project is Dr. Potter, who teaches the machine elements class. The customer needs a portable test frame which can apply enough compressive force to fracture an object which is secured in the device. The test frame should also measure …
Mems 411: Soccer Robot Project, Evan Sucherman, Dylan Mitchell, Benjamin Hessman, Emre Koc
Mems 411: Soccer Robot Project, Evan Sucherman, Dylan Mitchell, Benjamin Hessman, Emre Koc
Mechanical Engineering Design Project Class
This project aims at designing a robot that is capable of playing a simplified form of soccer against other robots. The original competition was created by the ASME organization as a student design competition in 2018. This project is an adapted version in which some of the rules and guidelines have been changed to fit the goals of this class better. The design parameters for this project include: having the robot drive around the parameter of the playing field in under 17 seconds, having the vehicle successfully capture the ball within 2 seconds of approaching 8 out of times, and …
Volleyball Crossbow- Group W, Giovanni Alvarez, Kyle Krippner, Alexis Rivera
Volleyball Crossbow- Group W, Giovanni Alvarez, Kyle Krippner, Alexis Rivera
Mechanical Engineering Design Project Class
The Volleyball Crossbow was our solution to the problem of a limited number of skilled setters on a volleyball team. This device will alleviate expectations of the setters and improve the efficiency of practice drills. The major customer needs for this device included consistency in launch, height and angle adjustability, high speed of operation, and ease of use. The Volleyball Crossbow provides a relatively low-cost, easy to manufacture design that meets these customer needs. As the name suggests, the design inspiration came from the crossbow mechanism. Two elastic bands attached to a cross-member and a cart on a track are …
Mems 411: Volleyball Setter, Alexander Zuga, Liam Cadden, Neil Cumberland, Jacob Ridderhoff
Mems 411: Volleyball Setter, Alexander Zuga, Liam Cadden, Neil Cumberland, Jacob Ridderhoff
Mechanical Engineering Design Project Class
Our volleyball setting machine is intended for use by the WashU men’s club volleyball team to improve their training. It allows their skilled hitters to get more reps in practice because there currently aren’t enough skilled setters on their team.
Mems 411: Giant Pouched Rat Trap, Ronald Fields, Mariano Gonzalez, Edward Li, Jordan Hu
Mems 411: Giant Pouched Rat Trap, Ronald Fields, Mariano Gonzalez, Edward Li, Jordan Hu
Mechanical Engineering Design Project Class
Dr. Braude from the Biology department at Washington University in St. Louis is currently working on a project training giant Gambian pouched rats to find mines and other bombs in former conflict zones. In order to trap Gambian pouched rats, Professor Braude asked a few MEMS 411 Senior Design groups to design and build a trap that can safely capture the rats. The trap had to be about 2-3 feet long, 6 inches in diameter, completely mechanical, simple, and it had to cost less than 30 USD to build.
Mems 411: Laundry No Mo (Lnm), Justin Tai, Minju Lee, Logan Johnson, Elijah Stewart
Mems 411: Laundry No Mo (Lnm), Justin Tai, Minju Lee, Logan Johnson, Elijah Stewart
Mechanical Engineering Design Project Class
How can you optimize your time and labor while folding laundry? You can do so with this laundry folding device called Laundry No Mo (LNM).
Mems 411: The Bueffer 3000, Ty W. Bedillion, Krista Sudar, Anna Oneto, Cole Kocjancic
Mems 411: The Bueffer 3000, Ty W. Bedillion, Krista Sudar, Anna Oneto, Cole Kocjancic
Mechanical Engineering Design Project Class
We were tasked with creating a quality product for a customer for MEMS 411 Senior Design. Our customer was the Washington University in St. Louis Men's Club Volleyball team and they asked us to create a volleyball setting machine.
Mems 411: Friction Frenzy, Angelo Hawa, Landon Tafoya, Noah Owens
Mems 411: Friction Frenzy, Angelo Hawa, Landon Tafoya, Noah Owens
Mechanical Engineering Design Project Class
The demo is designed to demonstrate the concept of friction to younger children(ages 4+) using an incline plane. The premise is to allow the user to slowly elevate a surface until a block resting on top begins to slide, at which point an electronic interface displays the calculated amount (or coefficient) of friction. The core functions of the device are discussed based on the customer needs in order to identify key performance goals for its successful operation. The design process is documented from initial modeling to the final prototype and critical metrics including safety and ease of fabrication are discussed. …
Mems 411: Giant Pouched Rat Trap, Shannon Wang, Isha Shah, Vaishali Shah, Elizabeh Saliba
Mems 411: Giant Pouched Rat Trap, Shannon Wang, Isha Shah, Vaishali Shah, Elizabeh Saliba
Mechanical Engineering Design Project Class
Our goal is to design a giant pouched rat trap that meets the customer needs from professor Stan Braude. The giant pouched rats are to be breed and trained to find land mines. Therefore, the rats must be captured in good condition. However, giant pouched rats are not passive once caught and tries to escape every way possible. In the past, with traditional trap wires, they tend to get caught in the wire and hurt themselves. Our solution offers a completely smooth inner wall of the trap to prevent damage to the rats, while improving on the functionality of the …
Mems 411: The Hash Setting Slasher, Garrett Barber, William Koopman, Andrew Werner, Alexandra Carr
Mems 411: The Hash Setting Slasher, Garrett Barber, William Koopman, Andrew Werner, Alexandra Carr
Mechanical Engineering Design Project Class
The volleyball setter has certain patents that utilize some sort of rotational component or is a stationary platform that the ball rests on before the player hits it. Our design is different because it utilizes the mechanical properties of springs to propel the ball forwards. We had certain specifications to meet to allow the volleyball to be natural in its trajectory and able to be shot efficiently and effectively. Some specifications required positioning adjustments and some defined how the ball should be propelled through the air. We also had parameters involving cost, weight, and the repeatability of the mechanism to …
Mems 411: Soccer Robot, Luis Castro, Lydia Kang, Moshe Eskenazi, Ryan Whelan
Mems 411: Soccer Robot, Luis Castro, Lydia Kang, Moshe Eskenazi, Ryan Whelan
Mechanical Engineering Design Project Class
The American Society of Mechanical Engineers (ASME) hosts annual competitions for engineeringstudents across the world. The ASME 2018 Student Design Competition wasto build a robotic soccerteam to compete in a FIFA World Cup style elimination tournament. Robot(s) must fit inside a 0.5 x 0.5 x 0.5 meter cube,be powered by batteries, and be controlled by a human operator with a wireless radio transmitter or through an electrical “umbilical” cord. The balls are tennis balls.
Dynamic Modeling Of Soft Robotic Dielectric Elastomer Actuator, Abdullah De Jesus El Atrache Ceballos
Dynamic Modeling Of Soft Robotic Dielectric Elastomer Actuator, Abdullah De Jesus El Atrache Ceballos
Doctoral Dissertations and Master's Theses
Dielectric elastomers actuators (DEAs) are among the preferred materials for developing lightweight, high compliance and energy efficient driven mechanisms for soft robots. Simple DEAs consist mostly of a homogeneous elastomeric materials that transduce electrical energy into mechanical deformation by means of electrostatic attraction forces from coated electrodes. Furthermore, stacking multiple single DEAs can escalate the total mechanical displacement performed by the actuator, such is the case of multilayer DEAs. The presented research proposes a model for the dynamical characterization of multilayer DEAs in the mechanical and electrical domain. The analytical model is derived by using free body diagrams and lumped …
Development Of Acoustic Metamaterial Noise Barriers And Simultaneously Harvesting Energy Using Smart Materials, Fariha Mir
Theses and Dissertations
In our surroundings abundant energy, we either feel through component vibration or hear noises from acoustic sources. Harvesting these unused and untapped green energy in the form of ambient vibration, and acoustic sounds is an emerging field of research in recent years. Utilization of the energy within a wide band of the frequency spectrum originated from the vibrational sources alone stands as one of the most promising ways to power small electronic devices, smartphones, local structural health monitoring sensors, home, and workshop appliances. These abundant sources of green energy are available in almost all the engineering industries, workshops, manufacturing facilities, …
Effect Of Crystal Size On The Failure Mechanics Of Polymer Bonded Explosives, Chizoba Onwuka
Effect Of Crystal Size On The Failure Mechanics Of Polymer Bonded Explosives, Chizoba Onwuka
Theses and Dissertations
Polymer bonded explosives (PBXs), typically constitute 80-95% of energetic crystals and 5-20% of a soft polymer binder, are widely used in extreme loading conditions such as rocket propellants and explosive munitions because of their high performance and low sensitivity. The particle size of crystals has a significant effect on the mechanical properties of most polymer particulate composites.
In the study, the effect of particle size on the deformation behavior of PBX under dynamic loading is investigated. The study involves testing polymer bonded sugar (PBS) samples, a well-known mechanical simulant of PBXs, with four different crystal sizes: coarse, intermediate, fine and …
Purification Of Uranium Tetrafluoride Using Ammonium Bifluoride, Kyle Robert Foster
Purification Of Uranium Tetrafluoride Using Ammonium Bifluoride, Kyle Robert Foster
Theses and Dissertations
Molten salt reactors are being deployed as one of the Generation IV nuclear reactor concepts starting in 2025. While their applications and safety potential are considered extremely advantageous, there is a lack of operating history to draw on, so thorough understanding of proposed molten salt materials’ thermochemical behavior is crucial to their successful implementation.
The most prominent fissile fuel proposed for molten salts is uranium tetrafluoride (UF4) using 233U of the thorium fuel cycle. UF4 is extremely hygroscopic, meaning it will react with moisture and oxygen in its environment, so as-received powders contain significant levels of impurity. In …
Me-Em 2020-21 Annual Report, Department Of Mechanical Engineering-Engineering Mechanics, Michigan Technological University
Me-Em 2020-21 Annual Report, Department Of Mechanical Engineering-Engineering Mechanics, Michigan Technological University
Department of Mechanical and Aerospace Engineering Annual Reports
Table of Contents
- Responsive Research
- Alumni Impact
- Innovative Enterprises
- Enrollment & Degrees
- Graduates
- Department
- Donors
- Contracts & Grants
- Patents & Publications
Occurrence And Probabilistic Health Risk Assessment (Pra) Of Dissolved Metals In Surface Water Sources In Southern Peru, Alexander Ccanccapa-Cartagena, Betty Paredes, Corina Vera, Francisco D. Chavez-Gonzales, Elizabeth Joy Olson, Lisa Welp, Nadezhda N. Zyaykina, Timothy R. Filley, David M. Warsinger, Chad T. Jafvert
Occurrence And Probabilistic Health Risk Assessment (Pra) Of Dissolved Metals In Surface Water Sources In Southern Peru, Alexander Ccanccapa-Cartagena, Betty Paredes, Corina Vera, Francisco D. Chavez-Gonzales, Elizabeth Joy Olson, Lisa Welp, Nadezhda N. Zyaykina, Timothy R. Filley, David M. Warsinger, Chad T. Jafvert
School of Mechanical Engineering Faculty Publications
Often, metal and metalloid ions are present in water at concentrations that seriously affect human health; understanding their occurrence is critical, especially in regions such as Peru, where natural volcanic activity and anthropogenic activity have made them more prevalent in local waterbodies. In this study, river, lake, aquifer, and irrigation water samples, collected from the Chili-Quilca, Camana-Majes, Colca-Chivay-Siguas, Oco˜na, Urubamba-Vilcanota, and Titicaca river basins in Southern Peru, were analyzed for transition metals, other metals, metalloids, and other inorganic water constituents. Special emphasis was placed on metals and metalloids regulated by Peruvian Water Quality Standards and those categorized as of “primary …
Nanofluids Improve Energy Efficiency Of Membrane Distillation, Harsharaj B. Parmar, Hamid Fattahi Juybari, Yashwant S. Yogi, Sina Nejati, Ryan M. Jacob, Prashant S. Menon, David M. Warsinger
Nanofluids Improve Energy Efficiency Of Membrane Distillation, Harsharaj B. Parmar, Hamid Fattahi Juybari, Yashwant S. Yogi, Sina Nejati, Ryan M. Jacob, Prashant S. Menon, David M. Warsinger
School of Mechanical Engineering Faculty Publications
Thermal desalination of high salinity water resources is crucial for increasing freshwater supply, but efficiency enhancements are badly needed. Nanomaterial enhancements offer enormous potential for improving promising technologies like membrane distillation (MD). However, while many approaches have been tried, such as nanoparticle solar absorbers or nanomaterial membranes, there have not been studies to directly enhance the fluid properties in MD; via nanofluids. In this work, we examine nanofluids for gap-based MD systems, including the role of nanoscale physics and system-level energy efficiency enhancements. Our model includes the dominant micro-mixing from Brownian motion in fine particle nanofluids (copper oxide) and the …
2021 (Fall) Ensi Informer Magazine, Morehead State University. Engineering Sciences Department
2021 (Fall) Ensi Informer Magazine, Morehead State University. Engineering Sciences Department
ENSI Informer Magazine Archive
The ENSI Informer Magazine published in the fall of 2019.
Implementation Of Stereo Digital Image Correlation For In-Plane Strain Measurements To Quantify The Anisotropic Behavior, Plastic Flow, And Strain Hardening Of Extruded Aluminum Alloy, Farzana Yasmeen
Theses and Dissertations
The efficient use of metals is important in various industries, including aerospace, automotive, and energy systems. In each case, the type and range of combined loading conditions can be quite different. The approaches to stress analysis of such complex engineering components and assemblies often are limited to elastic conditions. For those cases where components are relatively thin, elastic-plastic conditions are present; there is continuing interest in assessing the accuracy of analytic and computational models for combined loading conditions. In such cases, experiments performed with axial and shear loads (e.g., tension-torsion) provide baseline data regarding the relationship between applied stresses and …
Application Of Digital Transformation In The Water Desalination Industry To Develop Smart Desalination Plants, Ibrahim Yousif
Application Of Digital Transformation In The Water Desalination Industry To Develop Smart Desalination Plants, Ibrahim Yousif
Theses and Dissertations
Fresh water shortage threatens the development and prosperity of many countries including several areas in the United States. Sea and ground water reverse osmosis desalination is rapidly becoming a dominant technology for overcoming water shortage threats by providing cost-effective freshwater production. Digital transformation can be used to help facilitate and advance water treatment technologies by reducing costs and minimizing downtime. Digital transformation is a process that encapsulates digital tools and technologies such as cloud computing, machine learning, artificial intelligence, the internet of things, and virtual/augmented reality. It is a process where objects in the physical world are given virtual replicas …
On The Need To Determine Accurately The Impact Of Higher-Order Sensitivities On Model Sensitivity Analysis, Uncertainty Quantification And Best-Estimate Predictions, Dan Gabriel Cacuci
On The Need To Determine Accurately The Impact Of Higher-Order Sensitivities On Model Sensitivity Analysis, Uncertainty Quantification And Best-Estimate Predictions, Dan Gabriel Cacuci
Faculty Publications
This work aims at underscoring the need for the accurate quantification of the sensitivities (i.e., functional derivatives) of the results (a.k.a. “responses”) produced by large-scale computational models with respect to the models’ parameters, which are seldom known perfectly in practice. The large impact that can arise from sensitivities of order higher than first has been highlighted by the results of a third-order sensitivity and uncertainty analysis of an OECD/NEA reactor physics benchmark, which will be briefly reviewed in this work to underscore that neglecting the higherorder sensitivities causes substantial errors in predicting the expectation and variance of model responses. The …
Assessing The Feasibility Of A Belt Based Continuously Varied Transmission For Bicycles, Ethan Wicko
Assessing The Feasibility Of A Belt Based Continuously Varied Transmission For Bicycles, Ethan Wicko
Holster Scholar Projects
The objective of this project is to establish the feasibility of a new drivetrain that decreases maintenance and decreases rider effort compared to current widely used derailleur-based drivetrains by utilizing a belt based continuously varied transmission. With further development, this technology will make cycling more accessible by reducing the mechanical knowledge required to maintain a functional bike and facilitate bicycle riding by increasing durability and providing infinite gear ratios within that range, potentially increasing the health and quality of life for many.