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Articles 391 - 420 of 1130
Full-Text Articles in Mechanical Engineering
Curvature Induced Phase Stability Of An Intensely Heated Liquid, Kiran Sasikumar, Zhi Liang, David G. Cahill, Pawel Keblinski
Curvature Induced Phase Stability Of An Intensely Heated Liquid, Kiran Sasikumar, Zhi Liang, David G. Cahill, Pawel Keblinski
Mechanical and Aerospace Engineering Faculty Research & Creative Works
We Use Non-Equilibrium Molecular Dynamics Simulations to Study the Heat Transfer Around Intensely Heated Solid Nanoparticles Immersed in a Model Lennard-Jones Fluid. We Focus Our Studies on the Role of the Nanoparticle Curvature on the Liquid Phase Stability under Steady-State Heating. for Small Nanoparticles We Observe a Stable Liquid Phase Near the Nanoparticle Surface, Which Can Be at a Temperature Well above the Boiling Point. Furthermore, for Particles with Radius Smaller Than a Critical Radius of 2 Nm We Do Not Observe Formation of Vapor Even above the Critical Temperature. Instead, We Report the Existence of a Stable Fluid Region …
A Study Of Slipper And Rail Wear Interaction At Low Speed, Greg V. Cavallaro
A Study Of Slipper And Rail Wear Interaction At Low Speed, Greg V. Cavallaro
Theses and Dissertations
The wear research presented in the work consists of results gathered from adapting a FEM based on a Holloman High Speed Test Track (HHSTT) mission executed in January 2008. The FEM consists of a VascoMax slipper sliding on a stationary AISI-1080 steel rail. The slipper is slid along the rail at speeds of 20 m/s and 40 m/s with complementary vertical velocities of -0.079 m/s and -0.059 m/s, respectively. The surface roughness caused by features such as asperities and valleys of the materials, is simulated in this model by five asperities, 1 micron to 5 microns on the rail and …
Minimization Of The Effects Of Secondary Reactions On Turbine Film Cooling In A Fuel Rich Environment, Andrew T. Shewhart
Minimization Of The Effects Of Secondary Reactions On Turbine Film Cooling In A Fuel Rich Environment, Andrew T. Shewhart
Theses and Dissertations
The demand for increased thrust, higher engine efficiency, and reduced fuel consumption has increased the turbine inlet temperature and pressure in modern gas turbine engines. The outcome of these higher temperatures and pressures is the potential for unconsumed radical species to enter the turbine. Because modern cooling schemes for turbine blades involve injecting cool, oxygen rich air adjacent to the surface, the potential for reaction with radicals in the mainstream flow and augmented heat transfer to the blade arises. This study evaluated various configurations of multiple cylindrical rows of cooling holes in terms of both heat release and effective downstream …
Organizing A Student Poster Session In An Asee Section Conference, Steve Eugene Watkins, Les Kinsler, Julia L. Morse, Douglas R. Carroll
Organizing A Student Poster Session In An Asee Section Conference, Steve Eugene Watkins, Les Kinsler, Julia L. Morse, Douglas R. Carroll
Electrical and Computer Engineering Faculty Research & Creative Works
Student poster sessions at conferences can be valuable experiences for undergraduate and graduate students and can enrich the conference program for all participants. Student poster presentations beyond the local campus can provide additional experience in professional communication (especially in preparing succinct abstracts and in effective visual design), can prepare students for future conference participations, and can facilitate student-faculty interaction. Several issues exist when including student poster sessions in engineering education conferences. How can the content of posters be related to an engineering education theme? How are communication principles of audience and purpose incorporated into the session guidelines and review process? …
Helicopters As A Theme In A Machine Design Course, Devin Turner, Mark L. Nagurka
Helicopters As A Theme In A Machine Design Course, Devin Turner, Mark L. Nagurka
Mechanical Engineering Faculty Research and Publications
Helicopters as a Theme in Teaching Machine Design A machine design course is required in most undergraduate mechanical engineering curricula. This course generally covers an introduction to mechanical engineering design, a review of materials engineering, a review of mechanics of materials (shear force and bending moment diagrams, stress and strain analysis, deflection and stiffness analysis of beams, columns, etc.),models for failure due to static loading and variable fatigue, and then presents (in somewhat arbitrary order) the design of specific mechanical elements: shafts, fasteners, springs, bearings, gears, flexible elements such as belts, chain, and wire rope, clutches, brakes, couplings, etc. For …
Machine Design Experiments Using Mechanical Springs To Foster Discovery Learning, Peter William Malak, Mark L. Nagurka
Machine Design Experiments Using Mechanical Springs To Foster Discovery Learning, Peter William Malak, Mark L. Nagurka
Mechanical Engineering Faculty Research and Publications
Machine Design Experiments Using Mechanical Springs to Foster Discover Learning For the typical undergraduate engineering student the topic of mechanical springs is introduced and discussed in several courses. A first exposure may be in a physics course, where springs are presented as idealized mechanical energy storage components. Springs store potential energy,complementing masses that store kinetic energy and dampers that are resistive and offer no energy storage capability. In an electrical circuit course, springs are often presented as the analog of either capacitors or inductors, depending on which analogy is used. For mechanical engineering students, springs are a core component studied …
Induction Phone Charger Case, Dante Eley, Nicholas Mason, Laurence Pringle
Induction Phone Charger Case, Dante Eley, Nicholas Mason, Laurence Pringle
Mechanical Engineering Senior Theses
This report discusses the project of creating a manual charging phone case for smartphones by means of electromagnetic induction. In today's world, smartphones are being used on the go more often, creating an increased demand for battery life. The capacity of current batteries cannot keep up with the constant usage of data in such activities as emailing, social media, apps, and more. We developed an efficient, ergonomic, and aesthetically pleasing phone case that can manually charge a smartphone without an electrical outlet, but by means of electromagnetic induction. This product would target two main demographics: business people who are constantly …
Phonon Confinement Using Spirally Designed Elastic Resonators In Discrete Continuum, Sourav Banerjee, Raiz U. Ahmed
Phonon Confinement Using Spirally Designed Elastic Resonators In Discrete Continuum, Sourav Banerjee, Raiz U. Ahmed
Faculty Publications
Periodic and chiral orientation of microstructures, here we call phononic crystals, have extraordinary capabilities to facilitate the innovative design of new generation metamaterials. Periodic arrangements of phononic crystals are capable of opening portals of non-passing, non-dispersive mechanical waves. Defying conventional design of regular periodicity, in this paper spirally periodic but chiral orientation of resonators are envisioned. Dynamics of the spirally connected resonators and the acoustic wave propagation through the spirally connected multiple local resonators are studied using fundamental physics. In present study the spiral systems with local resonators are assumed to be discrete media immersed in fluid. In this paper …
Uncertainty Quantification Driven Predictive Multi-Scale Model For Synthesis Of Mycotoxins, Sourav Banerjee, Gabriel A. Terejanu, Anindya Chanda
Uncertainty Quantification Driven Predictive Multi-Scale Model For Synthesis Of Mycotoxins, Sourav Banerjee, Gabriel A. Terejanu, Anindya Chanda
Faculty Publications
Many toxic molds synthesize and release an array of poisons, termed mycotoxins that have an enormous impact on human health, agriculture and economy [1]. These molds contaminate our buildings, indoor air and crops, cause life threatening human and animal diseases and reduce agricultural output [2]. In order to design appropriate approaches to minimize the detrimental effects of these fungi, it is essential to develop diagnostic methodologies that can rapidly and accurately determine based on fungal strains and their growth patterns, the extent of mycotoxin mediated damage caused to the environment.Here we developed a novel multi-scale predictive mathematical model that could …
Stress Analysis For Chip Scale Packages With Embedded Active Devices Under Thermal Cycling, Hyunwook Yeo
Stress Analysis For Chip Scale Packages With Embedded Active Devices Under Thermal Cycling, Hyunwook Yeo
Dissertations and Theses
One of the main challenges in the electronics manufacturing and packaging development is how to integrate more functions inside the same or even smaller size. To meet the demand for higher integration, the interest toward passive and active component embedding has been increasing during the past few years. One of the main reasons for the growing interest toward embedded active components, in addition to demand for higher packaging density, is the need for better electrical performance of the component assemblies. However, it is little known how embedded IC and passives affect the reliability of IC packaging.
Solder joints have been …
Assessment Of Energy Efficient Methods Of Indoor Humidity Control For Florida Building Commission Research, Florida Solar Energy Center, Charles Withers, Jr.
Assessment Of Energy Efficient Methods Of Indoor Humidity Control For Florida Building Commission Research, Florida Solar Energy Center, Charles Withers, Jr.
FSEC Energy Research Center®
This research project was conducted with the primary objective to identify approaches and technologies which can achieve energy-efficient latent cooling in light of code requirements that may increase overall ventilation rates in new Florida homes. This report covers the work of two primary efforts of completing a literature review and testing a few space conditioning methods in a mechanically ventilated building. Results from a literature review provide a list of various approaches to managing the latent load in homes with emphasis on energy efficiency and cost-effectiveness. In addition to a literature review, controlled experiments using four different approaches to space …
Aeroponic Test Bed For Hypergravity Research, Shane Brunner, Theron Hawley, Mike Nichols, David Patzelt, Kurt Sprouse
Aeroponic Test Bed For Hypergravity Research, Shane Brunner, Theron Hawley, Mike Nichols, David Patzelt, Kurt Sprouse
Mechanical Engineering Senior Theses
Taking one pound of food to space costs over $10,000. A plant growth chamber in space would help reduce the cost of transporting food by creating a healthy, long-term source of food that can be used for extended space missions. Currently, there is a lack of knowledge in gravity response mechanisms of plants to facilitate employing such a system. The overarching goal of this project is to add to the current body of knowledge related to growing plants in space by conducting research regarding the effect of hypergravity on cherry belle radish growth. To successfully accomplish this goal, an aeroponic …
A Review Of Home Airtightness And Ventilation Approaches For Florida Building Commission Research, Florida Solar Energy Center, Jeffrey Sonne
A Review Of Home Airtightness And Ventilation Approaches For Florida Building Commission Research, Florida Solar Energy Center, Jeffrey Sonne
FSEC Energy Research Center®
This research project was conducted with the primary objectives of 1) providing a literature review, examination of experimental data, and calculations of energy impacts of using or not using various types of ventilation systems and 2) developing alternative approaches to achieving acceptable levels of ventilation while avoiding the risks associated with super-tight home enclosures and potential mechanical system failures. The report includes discussions of pertinent airtightness and mechanical ventilation topics and provides recommended ventilation practices for Florida.
Solar Absorption Chiller, Craig Carlson, Mark Coulter, Claire Kunkle, Patrick Watson
Solar Absorption Chiller, Craig Carlson, Mark Coulter, Claire Kunkle, Patrick Watson
Mechanical Engineering Senior Theses
In developing nations access to electricity is inconsistent at best, and food spoilage is a prevalent issue. The solar powered absorption chiller is a refrigeration system designed to provide refrigeration to these developing areas. This year, our team has worked to develop a system where the sun's rays are collected as heat to power an absorption refrigerator. The goal of this project was to take an existing solar tracker system and use its collected heat to power a refrigerator. Our team designed and built heat exchangers to extract heat from the concentrated solar system; assembled components for a fluid circulation …
The Poverty Crusher, Rob Golterman, Brian Hammond, Thien-Ryan Le, Arvin Lie
The Poverty Crusher, Rob Golterman, Brian Hammond, Thien-Ryan Le, Arvin Lie
Mechanical Engineering Senior Theses
The Poverty Crusher team built a human-powered rock breaking device for the women in Nepal who make $1.50 - $3 per day crushing rocks. A prototype jaw-type rock crusher was designed and built over a period of several months. However, the device was unable to break rocks due to excessive bending in the connection points of the frame and in the crushing faces. Improvements were suggested for the next prototype, which include increasing the second moment of inertia of the crushing faces, using a welded frame, and generally decreasing the cost and weight of the device.
Vex Robotics, Ho Joon Cha, Joshua Del Real, Jamie Kalb, Thomas Nance, Jenny Yang
Vex Robotics, Ho Joon Cha, Joshua Del Real, Jamie Kalb, Thomas Nance, Jenny Yang
Mechanical Engineering Senior Theses
The objective of our project was to design and construct a control system for communication between two autonomous robots, of different size and capabilities, in an environment with numerous obstacles and challenges. These challenges, completed autonomously, involved moving over and under barriers along with the obtainment and transportation of spherical objects. Our project was tied to the VEX Robotics competition environment as we tested our robots by competing at the World Championships. Unfortunately, due to time and budget considerations, we had to scale back our sensor subsystem. This led to a simpler control system than originally intended; however, we were …
Swing Wing Aerial Drone (Swad), Chris Barton, Robert Gomez, Matt Kochalko, Kyle Nakagaki
Swing Wing Aerial Drone (Swad), Chris Barton, Robert Gomez, Matt Kochalko, Kyle Nakagaki
Mechanical Engineering Senior Theses
Drones are unmanned aerial vehicles that have a variety of different applications in the field. Drones are very helpful for first responders such as firefighters, police, and even ranchers and large landowners. Most drones have a fixed wing. This report will show the design, construction, and fluid dynamic testing of a drone that has multiple wing positions. These modes are the straight wing position and swept back position. This design will change the flight profile of the plane, allowing for the user to launch at a faster speed and the glider to get to the desired location faster. Once the …
Akabot: 3d Printing Filament Extruder, Emily Albi, Kevin Kozel, Daniel Ventoza, Rachel Wilmoth
Akabot: 3d Printing Filament Extruder, Emily Albi, Kevin Kozel, Daniel Ventoza, Rachel Wilmoth
Mechanical Engineering Senior Theses
3D printing could usher in a new age of localized manufacturing in places like Uganda, where three of our senior design team members spent the summer of 2013. Motivated by a concept for our senior design project, one of our team members interned with Village Energy, a small electronics business in Kampala, Uganda, as it piloted the use of a 3D printer to manufacture enclosures for its solar lights. The need for our project arose when we realized that although the 3D printer proved a viable method of manufacturing enclosures, Village Energy could not afford to continue 3D printing with …
Benchtop Centrifuge For Materials Science, Jose Lizheno, Nathaniel Tseng, Ryan Tsuzaki
Benchtop Centrifuge For Materials Science, Jose Lizheno, Nathaniel Tseng, Ryan Tsuzaki
Mechanical Engineering Senior Theses
The Benchtop centrifuge for materials science was designed to be a versatile, cost-effective, user-friendly and safe centrifuge for the university setting. While a prototype was not completed due to running out of time for assembly, various forms of analysis were conducted including Natural Frequency Analysis and Finite Element Analysis. The team hopes that the work completed will provide a useful starting point for other teams that may wish to continue the project in the future.
Automated Precision Passing System, Bryan Herrera, David Savitz, Mikiah Raffaeli
Automated Precision Passing System, Bryan Herrera, David Savitz, Mikiah Raffaeli
Mechanical Engineering Senior Theses
Athletes are always seeking ways to improve their performance. Down time and a lack of capable throwers prevent athletic receivers from practicing their skills. We hope to aid athletes in receiving drills within their respective sports and increase practice efficiency. In order to achieve this, the machine has one major axis of rotation driven by a motor. This enables it to adjust where the ball is being thrown. Using an Arduino Uno coupled with a Roboteq AX1500 motor driver, the Automated Precision Passing System is able to throw a ball to a specified point in space by adjusting both the …
Wireless Impact Sensing Headband - W.I.S.H., Ryan Daly, Doug Furstinger, Tim Sashegyi, Nicklaus Schmidt, Mihir Shah
Wireless Impact Sensing Headband - W.I.S.H., Ryan Daly, Doug Furstinger, Tim Sashegyi, Nicklaus Schmidt, Mihir Shah
Mechanical Engineering Senior Theses
The prevalence of undiagnosed head injuries in the athletic world, and their associated health risks, is too great to ignore. This is especially true in non-helmeted sports where the availability of impact monitoring technologies is few and far between. In this paper, we discuss our wireless impact sensing headband technology that aids in the awareness and detection of potential concussions, from inception through design completion. Through the use of a custom-built validation system capable of simulating impact collisions, along with a series of experiments and revisions, our team was able to build a device that can sense and transmit data …
Characterization And Optimization Of Thermal Protective Fabrics Designed To Protect Against Splash Hazards, Jeremy Osguthorpe
Characterization And Optimization Of Thermal Protective Fabrics Designed To Protect Against Splash Hazards, Jeremy Osguthorpe
Theses and Dissertations
Thermal textiles used in Personal Protective Equipment (PPE) are used to protect individuals from the hazards of thermal energy. An analytical model of the diffusion of thermal energy within the fabric was developed to simulate the transfer of thermal energy due to a hot liquid splash. Based on the model results, it was determined that that the use of an orthotropic material in which the thermal conductivities in the radial and axial directions are different can be used to decrease the amount of heat transferred through the fabric and thereby increase amount of protection in PPE. An orthotropic material particularly …
Santa Clara University Human Powered Vehicle 2013-2014, Peter Chester, Luis Flores, Ian Jones, Ryan Nakamura, Dylan Porter, Peter Stephens
Santa Clara University Human Powered Vehicle 2013-2014, Peter Chester, Luis Flores, Ian Jones, Ryan Nakamura, Dylan Porter, Peter Stephens
Mechanical Engineering Senior Theses
This document discusses the conceptual design for the 2013-2014 Santa Clara University Human Powered Vehicle. The objective of the Santa Clara University Human Powered Vehicle team is to design and manufacture a human powered vehicle that is practical, sustainable, and efficient. Key design features include a partial body fairing, tilt and ackermann steering, and cargo space. Ultimately we had to block out the tilt steering because its operation conflicted with the Ackermann steering. This vehicle's design satisfies the primary needs of a commuter and ultimately serves as a practical alternative to an automobile. Finally, this design complies with the requirements …
Rsl Rover: Robotic Systems Laboratory Rugged Offroad Vehicle For Experimental Research, Garrett Bonner, Owen Hale, Julian Pitt, Andrew Torrellas
Rsl Rover: Robotic Systems Laboratory Rugged Offroad Vehicle For Experimental Research, Garrett Bonner, Owen Hale, Julian Pitt, Andrew Torrellas
Mechanical Engineering Senior Theses
The goal of this project was to build an autonomous vehicle testbed for the Robotics Systems Laboratory. This testbed will be used by undergraduate, graduate, and faculty researchers to test different control methods, sensor combinations, vehicle control laws, and eventually autonomous navigation. This paper documents our accomplishments to achieve this goal; we built a hierarchical control system, robust actuator mounts, and an effective safety system. The result is a capable 6-wheeled offroad vehicle that can be electronically controlled by remote or directly by wire. A feed-forward control law was incorporated for speed control, yielding predictable performance given a desired speed. …
Legacy Borehole Project, Maza Brady, Luke Cashman, Erin Hicks, Meghan Richey
Legacy Borehole Project, Maza Brady, Luke Cashman, Erin Hicks, Meghan Richey
Interdisciplinary Design Senior Theses
The Legacy Borehole Project is a three-year effort to design and build a sensor package that will be used to explore the geological and chemical conditions of the ocean floor. Over the course of three years, a mechanical structure and a robotic system will be constructed to lower sensors into previously drilled boreholes. As the team responsible for the development of the first year of this project, we have constructed a prototype sensor package and mock mechanical structure to test a communication interface between the sensors and a graphical user interface. The sensors were tested by lowering the sensor package …
A Neural Network Structure For Prediction Of Chemical Agent Fate, Homayun K. Navaz, N. Kehtarnavaz, Zoran Jovic
A Neural Network Structure For Prediction Of Chemical Agent Fate, Homayun K. Navaz, N. Kehtarnavaz, Zoran Jovic
Mechanical Engineering Presentations And Conference Materials
This work presents the development of a multi-input, multi-output neural network structure to predict the time dependent concentration of chemical agents as they participate in chemical reaction with environmental substrates or moisture content within these substrates. The neural network prediction is based on a computationally or experimentally produced database that includes the concentration of all chemicals presents (reactants and products) as a function of the chemical agent droplet size, wind speed, temperature, and turbulence. The utilization of this prediction structure is made userfriendly via an easy-to-use graphical user interface. Furthermore, upon the knowledge of the time-varying environmental parameters (wind speed …
Shrouded Small Wind Turbines, Kristen Flannery, Michael Holligan, Joseph Soares
Shrouded Small Wind Turbines, Kristen Flannery, Michael Holligan, Joseph Soares
Mechanical Engineering Senior Theses
The goal of this project is to improve the energy production of small wind turbines (rated less than 100 kW) by increasing wind velocity at the turbine blades through the design of a shroud attachment. The design process involves the analysis of various computer aided design (CAD) nozzle/diffuser shroud geometries. Computational fluid dynamic (CFD) modeling is used to analyze the effect of shroud features on velocity and pressure fields. A 3D printed scale model is tested in a wind tunnel with strain gauges and pressure transducers to validate the CFD data. The resulting design locally increases velocity by a factor …
Proteus: Mini Underwater Remotely Operated Vehicle, Jorge Guerra, Robert Heinevetter, Tristan Morris, Killian Poore, Alexandra Waschura
Proteus: Mini Underwater Remotely Operated Vehicle, Jorge Guerra, Robert Heinevetter, Tristan Morris, Killian Poore, Alexandra Waschura
Mechanical Engineering Senior Theses
Marine ecosystems contain life, minerals, information, etc, that can help the planet, however, only 5% of them are explored. This is mainly because existing Underwater Remotely Operated Vehicles (ROVs) are expensive and require a lot of workand time to use. Team Proteus designed a low cost, easy to use, portable, safe, and reliable ROV capable of being used for scientific research, while being operated and maintained by students. In this paper we explain the necessity behind this project, how it compares to similar projects and the design decisions made in developing the ROV, to include the options and trade-offs considered. …
Redox Stable Anodes For Solid Oxide Fuel Cells, Guoliang Xiao, Fanglin Chen
Redox Stable Anodes For Solid Oxide Fuel Cells, Guoliang Xiao, Fanglin Chen
Faculty Publications
Solid oxide fuel cells (SOFCs) can convert chemical energy from the fuel directly to electrical energy with high efficiency and fuel flexibility. Ni-based cermets have been the most widely adopted anode for SOFCs. However, the conventional Ni-based anode has low tolerance to sulfur-contamination, is vulnerable to deactivation by carbon build-up (coking) from direct oxidation of hydrocarbon fuels, and suffers volume instability upon redox cycling. Among these limitations, the redox instability of the anode is particularly important and has been intensively studied since the SOFC anode may experience redox cycling during fuel cell operations even with the ideal pure hydrogen as …
Microstructural Factors Of Strain Delocalization In Model Metallic Glass Matrix Composites, Thomas James Hardin
Microstructural Factors Of Strain Delocalization In Model Metallic Glass Matrix Composites, Thomas James Hardin
Theses and Dissertations
Metallic glass matrix composites have enormous potential stemming from the interplay between crystalline and amorphous phases. This work models such a composite using shear transformation zone dynamics (a modified kinetic Monte Carlo method) for the amorphous phase, and a local Taylor dislocation model for the crystalline phase. An N-factorial experiment using the model is presented examining the effects of crystalline volume fraction, microstructure length scale, and yield stress of the crystalline phase. Each replicate is analyzed for maximum stress, maximum strain, strain energy dissipation, strain localization, and strain partitioning between phases. Regression analysis is used to identify statistically-significant trends in …