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Articles 301 - 330 of 930
Full-Text Articles in Mechanical Engineering
Adult Strider, Matthew Browning, Michael Flynn, Douglas Desfor, Mary Gentilucci
Adult Strider, Matthew Browning, Michael Flynn, Douglas Desfor, Mary Gentilucci
Mechanical Engineering
The goal of the Strider project was to create a mobility device that would support a person with weakened leg strength and allow them to push the device around with their legs and build more leg strength. There are many health benefits to standing and the Strider was intended to help a person with a disability experience these benefits. The Strider is a fully independent device that the user can get into and maneuver without assistance. The device is also safe, highly maneuverable, and complies with all ADA standards and requirements.
The design is built around a frame that supports …
Structure Climbing Monkey Robot, Paul Bessent
Structure Climbing Monkey Robot, Paul Bessent
Master's Theses
This report describes the design, building, and testing of the Structure Climbing Monkey Robot (SCMR). It is composed of seven successive joints and linkages with two grippers at the two ends. Each gripper can act as the base or the end of the robot. The SCMR has the ability to climb any structure. The gripper plates can be changed to grab different kinds of structures, but this one is made to grab 2x4‘s. A program was written to assist the user to grab four non-coplanar, non-orthogonal points.
The SCMR is actuated by a total of nine motors: two to open …
Thermodynamic Based Model Eliciting Activities For Undergraduate Mechanical Engineering Education, Paul Nicholas Van Bloemen Waanders
Thermodynamic Based Model Eliciting Activities For Undergraduate Mechanical Engineering Education, Paul Nicholas Van Bloemen Waanders
Master's Theses
Undergraduate engineering education is designed to prepare students for their careers. The rise of technology in modern engineering allows for a shift in the way undergraduates are prepared for the modern workplace. Model Eliciting Activities (MEAs) allow students to think critically about their own work and allow instructors to analyze the students’ problem solving methods. To ensure that new MEAs are as effective as possible they are subject to six basic principles: model construction, reality, generalizability, self-assessment, model documentation, and effective prototype.
This document focuses on evaluating new MEAs for their adherence to the six principles from an instructor's and …
Design Optimization Of Gaas Betavoltaic Batteries, Haiyanag Chen, Lan Jiang, Xuyuan Chen
Design Optimization Of Gaas Betavoltaic Batteries, Haiyanag Chen, Lan Jiang, Xuyuan Chen
Mechanical and Aerospace Engineering Faculty Research & Creative Works
GaAs junctions are designed and fabricated for beta voltaic batteries. the design is optimized according to the characteristics of GaAs interface states and the diffusion length in the depletion region of GaAs carriers. under an illumination of 10 mCi cm-263Ni, the open circuit voltage of the optimized batteries is about ∼0.3 V. It is found that the GaAs interface states induce depletion layers on P-type GaAs surfaces. the depletion layer along the P+PN+ junction edge isolates the perimeter surface from the bulk junction, which tends to significantly reduce the battery dark current and leads to a high open circuit voltage. …
Bevcool, Matthew (Matt) Slette, Ryan Talyat, Camille Sybert
Bevcool, Matthew (Matt) Slette, Ryan Talyat, Camille Sybert
Mechanical Engineering
A consumer product for rapidly cooling canned and bottled beverages.
Automated Mail Stacker, Robert (Rj) Atkinson, Stephanie Henning, Tyler Wetzel
Automated Mail Stacker, Robert (Rj) Atkinson, Stephanie Henning, Tyler Wetzel
Mechanical Engineering
No abstract provided.
Marauder Marine: Spearfishing Float Design, Kevin Glen, Kyle Lancaster, Andrew Wickham
Marauder Marine: Spearfishing Float Design, Kevin Glen, Kyle Lancaster, Andrew Wickham
Mechanical Engineering
No abstract provided.
Flow Loop Simulator, John Abruzzini, Manuel Carrasco, Neil Sutherland, Elise Woolworth
Flow Loop Simulator, John Abruzzini, Manuel Carrasco, Neil Sutherland, Elise Woolworth
Mechanical Engineering
PG&E’s Diablo Canyon Power Plant (DCPP) has requested an operational flow loop simulator to aid in operator/technician training. The flow loop simulator will provide hands-on training that the current plant training process cannot model. This project is a continuation from the 2009-2010 school year. Project scope and design requirements were gathered from the previous group’s design reports as well as meetings with PG&E. The goal of this year’s project team is to verify, enhance and implement the schematic diagram proposed by last year’s team.
The main focus of the flow loop simulator is to provide operators and technicians with …
Automated Adaptive Feeding Device, John Dolcini, Stephanie Smith, Pavel Yakovlev
Automated Adaptive Feeding Device, John Dolcini, Stephanie Smith, Pavel Yakovlev
Mechanical Engineering
No abstract provided.
Pop-A-Wheelie Design Team, Mackenzie Hill, Thuyen Nguyen, Shaun Van't Hul
Pop-A-Wheelie Design Team, Mackenzie Hill, Thuyen Nguyen, Shaun Van't Hul
Mechanical Engineering
The purpose of this report is to illustrate the Pop-a-Wheelie design team’s progression and implementation of a concept in regards to the project sponsored by Break the Barriers (BTB). The Pop-a-Wheelie design team was tasked to design two devices that will be attached onto wheelchairs. The devices should facilitate the independence of user’s ability to pop-a-wheelie and return to an upright position without any assistance. After a list of specifications was agreed upon, the design process initiated. All customer specifications are listed in Objectives section located in Chapter 1: Introduction. A complete engineering specification table can be found in the …
Cal Poly Human Powered Helicopter, Josiah Auer, Eric Behne, Dave Berry, Rebecca Hennings, James Koch, Ian Marquardt, Josiah Mayfield, Sean Miller
Cal Poly Human Powered Helicopter, Josiah Auer, Eric Behne, Dave Berry, Rebecca Hennings, James Koch, Ian Marquardt, Josiah Mayfield, Sean Miller
Mechanical Engineering
The following report encompasses the Cal Poly Human Powered Helicopter team’s efforts during the 2010-2011 academic year. The intention of this project is to further the knowledge of human powered helicopter design and to validate an ideal configuration through experimental tests and analysis.
A. Background
The Sikorsky Prize offered by the American Helicopter Society has been the catalyst for many attempts at Human Powered Helicopter (HPH) flight. The requirement to win the prize is a continuous, human powered flight of more than 60 seconds that stays within a 10 meter square box and reaches an altitude greater than 3 meters …
Solar Powered Oil Well Site, Jonathan Hyland, Matthew Mastro, Kyle Moore
Solar Powered Oil Well Site, Jonathan Hyland, Matthew Mastro, Kyle Moore
Mechanical Engineering
No abstract provided.
Competition Sit Ski Final Design Report, Kyle Martinez, Vinay Clauson, Ben Woodward
Competition Sit Ski Final Design Report, Kyle Martinez, Vinay Clauson, Ben Woodward
Mechanical Engineering
This project consisted of designing and fabricating a competition sit ski for an above-knee double-amputee, Andy Soule. Andy is a talented athlete who won a bronze medal in the 2010 Winter Paralympics. The project was completed by VinayClauson, Kyle Martinez, and Ben Woodward, mechanical engineering seniors at California Polytechnic State University in San Luis Obispo, CA. The project advisor, Professor Sarah Harding, and sponsor Dr. Brian Self, of the Mechanical Engineering Department at Cal Poly, oversaw the project with the help of Jon Kreamelmeyer, a former coach of Andy's and a valuable source of knowledge. The sit ski project was …
Power Steering Concept, Anthony N. Escobedo, William Ryan Flores, Russell Haverstock
Power Steering Concept, Anthony N. Escobedo, William Ryan Flores, Russell Haverstock
Mechanical Engineering
This senior project was created in conjunction with Edwards Lifesciences. This project was created under an non-disclosure agreement and will not be submitted to any outside sources. The submitted title page will act as proof of completion.
Mustang Adaptive Nordic Sports Conceptual Design Report, Krystina Murrietta, Tom Silva, Allen Thrift, Dan Murray
Mustang Adaptive Nordic Sports Conceptual Design Report, Krystina Murrietta, Tom Silva, Allen Thrift, Dan Murray
Mechanical Engineering
Mustang Adaptive Nordic Sports has undertaken a recreational sit ski as a mechanical engineering senior project. The team consists of four seniors: Daniel Murray, Krystina Murrietta, Tom Silva, and Allen Thrift. The goal of this project was to design, build, and test an adjustable sit ski that is lightweight and accommodates different users. The first half of this project focused on researching past senior projects and existing designs, defining the need and specifications, brainstorming, designing, and analyzing the validity of the final design. The second half of this project required the acquiring materials, building the prototype and testing it. The …
Rock-N-Bowler Ii, Josh Grip, Travis Rodrigues, Richard Rozporka
Rock-N-Bowler Ii, Josh Grip, Travis Rodrigues, Richard Rozporka
Mechanical Engineering
The report of the creation of an adaptive bowling device designed for people in powered wheelchairs. The basic design is a ramp that attaches to the wheelchair and has the ability to add spin to the ball to allow the user to hook the ball.
Rayleigh Test Apparatus Design Report, Josef Duller, Owen Raybould, James Nicovich
Rayleigh Test Apparatus Design Report, Josef Duller, Owen Raybould, James Nicovich
Mechanical Engineering
The Rayleigh Test Apparatus is a device that will be used to test the thermodynamic properties of Nitrous Oxide to assess the feasibility of using this fluid as a coolant for a hybrid rocket aero spike. The aero spike is intended to redirect the propulsion flow as it leaves the engine to create a more efficient flow pattern at low and high altitudes. However, there are issues of overheating which leads to melting of the aero spike. For this reason, the use of nitrous oxide (N2O) as a coolant is being explored. N20 is being considered because it is already …
Photovoltaic System Design For Dc House, Luis B. Perez, Hao Ming Mai
Photovoltaic System Design For Dc House, Luis B. Perez, Hao Ming Mai
Electrical Engineering
The objective of this project is to research and design a practical 200W photovoltaic system at the lowest cost and highest efficiency in order to support the DC House Project. The impetus for this project stems from the necessity of delivering energy to people in developing countries who otherwise lack the benefits of electricity. The Photovoltaic System Design is divided into two main parts, the buck DC-DC converter and the optimized photovoltaic panel. The converter consists of schematics, efficiency calculations, load/line regulation calculations, component comparisons, data plots from simulations and testing. The optimized photovoltaic panel section includes component comparisons, complete …
Machine Design Lab: Using Automotive Transmission Examples To Reinforce Understanding Of Gear Train Analysis, Roger A. Beardsley, Charles O. Pringle
Machine Design Lab: Using Automotive Transmission Examples To Reinforce Understanding Of Gear Train Analysis, Roger A. Beardsley, Charles O. Pringle
Engineering Technologies, Safety, and Construction Faculty Scholarship
In studying mechanical gear train analysis, some students struggle with relatively simple gear design concepts, and virtually all have difficulty with the complexities of planetary gear sets. This paper describes two labs developed for an undergraduate senior level machine design course. One lab uses a three-speed manual synchromesh transmission with parts of the case cut away to demonstrate the operation of the gears, shifting mechanism, bearings, and other aspects of the design. Students then count teeth and analyze the gear ratios using standard gear train analysis methods. The other lab uses a 1924 Ford Model T planetary transmission to observe …
Development Of A Cubesat Instrument For Microgravity Particle Damper Performance Analysis, John Trevor Abel
Development Of A Cubesat Instrument For Microgravity Particle Damper Performance Analysis, John Trevor Abel
Master's Theses
Spacecraft pointing accuracy and structural longevity requirements often necessitate auxiliary vibration dissipation mechanisms. However, temperature sensitivity and material degradation limit the effectiveness of traditional damping techniques in space. Robust particle damping technology offers a potential solution, driving the need for microgravity characterization. A 1U cubesat satellite presents a low cost, low risk platform for the acquisition of data needed for this evaluation, but severely restricts available mass, volume, power and bandwidth resources. This paper details the development of an instrument subject to these constraints that is capable of capturing high resolution frequency response measurements of highly nonlinear particle damper dynamics.
Me-Em Enewsbrief, June 2011, Department Of Mechanical Engineering-Engineering Mechanics, Michigan Technological University
Me-Em Enewsbrief, June 2011, Department Of Mechanical Engineering-Engineering Mechanics, Michigan Technological University
Department of Mechanical and Aerospace Engineering eNewsBrief
No abstract provided.
Optimization And Modeling Tools For Telescope Hexapod Structures, Michael Edward Feeney
Optimization And Modeling Tools For Telescope Hexapod Structures, Michael Edward Feeney
Master's Theses
Hexapod trusses are an important element in many mechanical design systems. The natural frequency and stiffness behavior under geometric and mass variations of such structures is largely undocumented. Furthermore, the ability to quickly model hexapod designs and explore a large design-space in finite element software packages is, in general, time consuming and inefficient. The purpose of this project was to develop software tools that made design-space exploration (modeling and simulation processes) for hexapod structures drastically more efficient. Secondly, the project included an experimental analysis portion to demonstrate the various modal study techniques and to validate finite element analysis predictions. Lastly, …
The Effect Of On-Line Videos On Learner Outcomes In A Mechanics Of Materials Course, Jeffery S. Thomas, Richard H. Hall, Timothy A. Philpot, Douglas R. Carroll
The Effect Of On-Line Videos On Learner Outcomes In A Mechanics Of Materials Course, Jeffery S. Thomas, Richard H. Hall, Timothy A. Philpot, Douglas R. Carroll
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
The Mechanics of Materials course is one of the core engineering courses included in the curriculum of mechanical, civil, mining, petroleum, marine, aeronautical, and several other engineering disciplines. As a core course, the Mechanics of Materials course typically has large enrollment. Initiatives aimed at improving the effectiveness of the engineering core courses can have a major impact on engineering education by virtue of the large number of students affected.
Computers afford opportunities for creative instructional activities that are not possible in the traditional lecture-and-textbook class format. The study described in this paper examines the effectiveness of asynchronous online video that …
Building Balls: Final Design Report, Jumpsport Inc., Gary Johnson, Rosalie Mangione, Steven (Steve) Rose
Building Balls: Final Design Report, Jumpsport Inc., Gary Johnson, Rosalie Mangione, Steven (Steve) Rose
Mechanical Engineering
JumpSport, a major trampoline company, has requested Cal Poly to design a custom play-structure consisting of large diameter balls with two types of connectors-long rod connections and very close connectors (for a ball-to-ball type connection). By the end of the project, appropriate testing will be carried out on the connections and a full-scale model will be constructed.
After an extensive design process, our team of three decided on a rod connection style for both the long and short connectors. These consist of a hook that latches into a loop protruding from the ball where the hook is attached by a …
Port Flow Test System, Daniel Chairez, Chelsea E. Crawford, Daniel S. Welch
Port Flow Test System, Daniel Chairez, Chelsea E. Crawford, Daniel S. Welch
Mechanical Engineering
Solar Turbines Gas Compressor Engineering Division of San Diego, California called upon the Mechanical Engineering students of California Polytechnic University, San Luis Obispo to provide recommendations for optimization of compressor end cap port design. Various sizes of compressors have end caps with numerous ports that exchange fluids between the inside and outside of the working fluid pressure vessel. Because so many ports must exist on the end caps, unusual flow paths are created to supply the appropriate location within the compressor. These flow paths commonly consist of a drilled inlet hole which intersects with a sudden expansion. The sudden expansion …
Rapid Animatronic Target System, Brandon Keith Bray, Matt Gerhardt Guise, Martin Thomas Quinn
Rapid Animatronic Target System, Brandon Keith Bray, Matt Gerhardt Guise, Martin Thomas Quinn
Mechanical Engineering
No abstract provided.
Poroelastic Finite Element Analysis Of A Heterogeneous Articular Cartilage Explant Under Dynamic Compression In Abaqus, Kelsey Kiyo Kam
Poroelastic Finite Element Analysis Of A Heterogeneous Articular Cartilage Explant Under Dynamic Compression In Abaqus, Kelsey Kiyo Kam
Master's Theses
A poroelastic finite element model of a heterogeneous articular cartilage disc was
created to examine the tissue response to low amplitude (± 2% strain), low
frequency (0.1 Hz) dynamic unconfined compression (UCC). A strong correlation
has been made between the relative fluid velocity and stimulation of
glycosaminoglycan synthesis. A contour plot of the model shows the relative fluid
velocity during compression exceeds a trigger value of 0.25 μm/s at the radial
periphery. Dynamic UCC biochemical results have also reported a higher
glycosaminoglycan content in this region versus that of day 0 specimens. Fluid
velocity was also found not to be …
Compressibility Effects Of Extended Formation Flight, Andrew Ning, Ilan Kroo
Compressibility Effects Of Extended Formation Flight, Andrew Ning, Ilan Kroo
Faculty Publications
Aircraft flown in formations may realize significant reductions in induced drag by flying in regions of wake upwash. However, most transports fly at transonic speeds and compressibility effects in formation flight are not well understood. This study uses an Euler solver to analyze the inviscid aerodynamic forces and moments of transonic wing/body configurations flying in a 2-aircraft formation. We consider formations with large streamwise separation distances (10-50 wingspans) in an arrangement we term extended formation flight. Compressibility-related drag penalties in formation flight may be eliminated by slowing 2-3% below the nominal out-of-formation drag divergence Mach number, at fixed lift coefficient …
Modeling Of Non-Uniform Hydrodynamics And Catalytic Reaction In A Solids-Laden Riser, Rajeshkumar Patel
Modeling Of Non-Uniform Hydrodynamics And Catalytic Reaction In A Solids-Laden Riser, Rajeshkumar Patel
Dissertations
The riser reactors are widely used in a variety of industrial applications such as polymerization, coal combustion and petroleum refinery because of the strong mixing of gas and solids that yields high heat and mass transfer rates, and reaction rates. In a Fluid Catalytic Cracking (FCC) process, the performance of riser reactor is strongly dependent on the interaction between the fluid and catalysts, since the reaction takes place on the active surface of the catalysts. This is why, the local coupling between hydrodynamics and reaction kinetics is critical to the development of riser reaction models. The local gas-solids flow structure …
A Virtual Supply Airflow Rate Meter In Rooftop Air Conditioning Units, Daihong Yu
A Virtual Supply Airflow Rate Meter In Rooftop Air Conditioning Units, Daihong Yu
Durham School of Architectural Engineering and Construction: Dissertations, Theses, and Student Research
Virtual sensing technology aims to estimate difficult to measure, expensive, or new quantities by using multifarious mathematical models along with non-invasive and low-cost measurements. Such embedded intelligence is a key to improving the performance of building systems in terms of functionality, safety, energy efficiency, environmental impacts, and costs. Considering the progress that has been achieved over many various fields (e.g., process controls, automobiles, avionics, autonomous robots, telemedicine) within the last two decades, numerous intelligent features have been incorporated and enabled that would otherwise not be possible or economical.
To identify the potential opportunities and research/development needs of virtual sensing technology …