Development Of 3d Compression Molded Composite Primary Structure,
2017
California Polytechnic State University, San Luis Obispo
Development Of 3d Compression Molded Composite Primary Structure, Sean D. Tischler, Jacob H. Goldstein, Alea A. Perez
Mechanical Engineering
The work accomplished by the Black Gold team improved upon the carbon fiber compression molding research and information available on the Cal Poly San Luis Obispo campus. The team used the rear suspension rocker arm off a Ventana Alpino mountain bike as a design goal for this project. This research and body of work includes the methods used to design a compression molded part for complex part loading and shape. This extends to the process of choosing an appropriate layup process, in addition to benefits and drawbacks of the use of chopped fibers in compression molding. The research includes the …
Cal Poly Compost Chomper,
2017
California Polytechnic State University, San Luis Obispo
Cal Poly Compost Chomper, David Anthony Jungquist, Cory James Parmenter, Joseph Mark Mcgill
Mechanical Engineering
The purpose of this final design report is to detail the design, manufacturing, and testing of a bicycle powered compost cutter for use by the Captain Raymond Collin’s Elementary school. Students in the garden program are tired of manually chopping up garden waste into small enough pieces to be composted effectively. Project Sponsor and Master Gardener, Susan Deogracias had the idea to create a pedal powered compost cutter which would save time and improve moral for the aspiring gardeners.
This report details the ideation process the team went through in defining the compost cutting system. Engineering methods are documented for …
Micro-Spi Sediment Profile Imaging Micro-Inspector,
2017
California Polytechnic State University, San Luis Obispo
Micro-Spi Sediment Profile Imaging Micro-Inspector, Andrew P. Corvin, Caleb T. Davies, Matt R. Ferrari
Mechanical Engineering
This project was proposed by Dr. Brian Paavo through a desire to more easily study the benthic sediment layers of the ocean. To do so, he asked us to build a simple and compact machine for use in sediment profile imagery (SPI). Although devices like this already exist, they are all large scale devices that require a ship with a crane to deploy, which is expensive and time consuming. Instead, he desired a “micro” SPI, which is capable of being deployed from a small vessel that can easily navigate shallow waters. Our interpretation of these requirements was as follows: a …
Pedal-Powered Drivetrain System,
2017
California Polytechnic State University, San Luis Obispo
Pedal-Powered Drivetrain System, Geremy J. Patterson, Callaghan Fenerty, Bradley Welch
Mechanical Engineering
No abstract provided.
Deployable Antenna For Cubesat,
2017
California Polytechnic State University, San Luis Obispo
Deployable Antenna For Cubesat, Mackenzie Thomas Lennon, Caleb Andrew Barber, David Matthew Galves
Mechanical Engineering
This project is a proof-of-concept ground model of a large deployable antenna designed for the small space requirements of CubeSats. This small deployment module is designed to fit a 2 m by 1 m reflective antenna inside a storage volume of with the dimensions 20 cm by 20 cm x 40 cm. The reflector will be deployed to a parabolic shape with the goal of modeling the reflector necessary for high frequency communication. Because this module is designed as a proof-of-concept for the deployable parabolic reflector specifically, no electrical components will be incorporated and will just focus on the deployment …
Swanton Pacific Railroad - Track Maintainer Upgrades,
2017
California Polytechnic State University, San Luis Obispo
Swanton Pacific Railroad - Track Maintainer Upgrades, Jakob Graf, Dustin Platt
Mechanical Engineering
This project’s sponsor is Swanton Pacific Railroad, a 1/3 scale railroad in Santa Cruz, CA. Our team was given the task of upgrading a maintenance cart used to clear debris from the track and level the gravel ballast during maintenance projects. Our focus was to upgrade the blowing system used to clear any debris. The current system used is a hydraulic fan with a single length of ducting serving as its outlet. Our solution is to mount two Stihl backpack leaf blowers to manufactured saddles and mount the assembly to the cart in place of the hydraulic fan. Ducting is …
Grey Water Capture,
2017
California Polytechnic State University, San Luis Obispo
Grey Water Capture, Paul B. Brenneman, Vicente J. Ramirez, Kevin J. Alexander
Mechanical Engineering
Many households today do not implement any kind of grey water recycling system. People do not get a grey water system for a variety of reasons; the benefits could be unknown, the uses for grey water could be limited in their specific home, or the economic gain is too minimal to constitute a modification to the house.
For our project, we are going to design an easy to install product that enables the reuse of grey water from household sources. Examples of our final product could be something that lets the customer use grey water from the bathroom sink to …
A Computational Fluid Dynamics Study On Bidirectional Glenn Shunt Flow With An Additional Pulsatile Flow Through A Modified Blalock-Taussig Shunt,
2017
LSU New Orleans
A Computational Fluid Dynamics Study On Bidirectional Glenn Shunt Flow With An Additional Pulsatile Flow Through A Modified Blalock-Taussig Shunt, Seda Aslan
LSU New Orleans Theses and Dissertations
The blood flow through the Bidirectional Glenn shunt (BGS) and modified Blalock-Taussig shunt (mBTS) to the pulmonary arteries (PAs) was analyzed using Computational Fluid Dynamics. This study consisted of the steady and pulsatile cases. In case one, the results of blood flow through the BGS for the Newtonian and non-Newtonian viscosity models were compared. Case two focused on having an additional pulsatile blood flow through the mBTS using the non-Newtonian Carreau viscosity model. The geometries were created based on the angiograms. In case one, boundary conditions to be specified at the inlets were obtained from the flow rate measurements via …
Numerical Simulation Of Enhancement In Co2 Sequestration With Various Water Production Schemes Under Multiple Well Scenarios,
2017
Washington University in St. Louis
Numerical Simulation Of Enhancement In Co2 Sequestration With Various Water Production Schemes Under Multiple Well Scenarios, Li Chen
McKelvey School of Engineering Graduate Student Theses & Dissertations
CO2 geological sequestration simultaneously combined with water production from deep saline aquifers can effectively address the challenge faced by the modern energy systems for reducing the CO2 emissions and water intensity while providing reliable, affordable, and secure energy. However, little attention has been paid to date in the literature on determining the best CO2 injection strategy for achieving both the optimal water production and the optimal CO2 space storage capacity while maintaining operational safety. This research first establishes three injection-extraction scenarios based on the typical geological parameters of the Junggar Basin in China to analyze the …
Particle Enrichment In Longitudinal Standing Bulk Acoustic Wave Microfluidics,
2017
Washington University in St. Louis
Particle Enrichment In Longitudinal Standing Bulk Acoustic Wave Microfluidics, Mingyang Cui
McKelvey School of Engineering Graduate Student Theses & Dissertations
Separation, isolation, and enrichment of targeted nano- and microparticles are critical to a variety of biomedical applications from clinical research (development of therapeutics and diagnostics) to fundamental investigations that require concentration of specific cells from culture, separation of target species from heterogenous mixtures, or controlled perturbation of cells and microorganisms to determine their response to stimuli. Numerous techniques are available for bench-scale and medical settings; however, these traditional approaches are often labor intensive, time-consuming, costly, and/or require modification of the target. Efficiency and specificity are also lacking. Recently, techniques that exploit the similar scales of microfluidic technologies and the intrinsic …
Investigating The Classical And Non-Classical Mechanical Properties Of Gan Nanowires,
2017
University of New Mexico
Investigating The Classical And Non-Classical Mechanical Properties Of Gan Nanowires, Mohammad Reza Zamani Kouhpanji
Electrical and Computer Engineering ETDs
Study and prediction of classical and non-classical mechanical properties of GaN is crucial due to the potential application of GaN nanowires (NWs) in piezoelectric, probe-based nanometrology, and nanolithography areas. GaN is mainly grown on sapphire substrates whose lattice constant and thermal expansion coefficient are significantly different from GaN. These discrepancies cause mechanical defects and high residual stresses and strains in GaN, which reduce its quantum efficiency.
Specifically, for nanoscale applications, the mechanical properties of materials differ significantly compared to the bulk properties due to size-effects. Therefore, it is essential to investigate the mechanical properties of GaN NWs using the non-classical …
Determining Drag Forces On 3d Printed Shark Skin And The Conditions In Which Drag Forces Are Reduced,
2017
University of Arkansas, Fayetteville
Determining Drag Forces On 3d Printed Shark Skin And The Conditions In Which Drag Forces Are Reduced, Kayla M. Bartnicke
Mechanical Engineering Undergraduate Honors Theses
ABSTRACT
This project was conducted at the University of Arkansas with access to 3D printers and a water tunnel. The project examines drag forces over 3D-printed shark skin. Shark skin was chosen to be studied because of its unique three-pronged denticle shape and the assumption that this unique shape has a purpose, such as drag reduction.
A shark denticle was designed using SolidWorks software, multiplied 164 times creating a total skin area of 17.5 in2, and printed using both a MakerBot Replicator 2 3D printer and an Ultimaker 2 Go 3D printer. The shark skin was initially printed …
Surface Acoustic Wave Based Pumping In A Microchannel,
2017
University of South Florida, Tampa
Surface Acoustic Wave Based Pumping In A Microchannel, Tao Wang, Qi Ni, Nathan B. Crane, Rasim Guldiken
Faculty Publications
Pumping and manipulation of liquids in microfluidic channels is important for many mechanical, chemical and biomedical applications. Surface acoustic wave based devices fabricated on high-efficiency piezoelectric substrates have been recently investigated for mixing and separation application within microfluidic channels. In this paper, we introduce a novel integrated surface acoustic wave based pump for liquid delivery and precise manipulation within a microchannel. The device employs a hydrophobic surface coating (Cytop) in the device design for decreasing the friction force and increasing the bonding. Contrary to previous surface acoustic wave based pump, this device does not need precise layers of water and …
Next Steps For Mentoring Program,
2017
University of Dayton
Next Steps For Mentoring Program, Patrick Gray
Sustainability and Connectivity
This file provides a jump-off position for students in the fall 2017 semester who want to continue work toward a mentoring program.
Design And Development Of A High Altitude Wind Tunnel (Hat),
2017
University of Alabama in Huntsville
Design And Development Of A High Altitude Wind Tunnel (Hat), David Ritchie
Research Horizons Day Posters
No abstract provided.
Simulation And Analysis Of A Drilling Fluid Using A Herschel-Bulkley Model,
2017
University of New Mexico
Simulation And Analysis Of A Drilling Fluid Using A Herschel-Bulkley Model, Daniel Powell
Mechanical Engineering ETDs
In the study, a drilling fluid with known properties is analyzed and simulated in the laminar regime through a pipe with dimensions of 1.5m in length and 0.02m in diameter. The purpose of the conducted analysis is to demonstrate the advantages of the Herschel-Bulkley model currently used in the oil and gas industry for analyzing non-Newtonian drilling fluids.
For comparison, the analysis is also performed using more simple models for non-Newtonian fluids such as the Bingham Plastic model and the Power Law model and for a Newtonian fluid (water). In addition to analytical models, computations are conducted using …
Superpositioning High Power Lasers For Mid-Air Image Formations,
2017
University of Nebraska-Lincoln
Superpositioning High Power Lasers For Mid-Air Image Formations, Auston Viotto
UCARE: Research Products
This research evaluates different methods to create voxels, 3-dimensional pixels, in air without the need for special glasses or reflections off of surfaces. Research on the advantages of superimposing or the culmination, focusing, of laser light will be conducted. The point of superpositioning/culmination will be evaluated by the brightness of the voxel due to the Rayleigh Scatter Effect. The voxel’s brightness is dependent on the laser output strength and inversely proportional to its wavelength. Once a superimposed/culminated voxel has been created in the lab the next step will be to manipulate the location of the voxel through 3-dimensional space. This …
Primary Blast Waves Induced Brain Dynamics Influenced
By Head Orientations,
2017
University of Nebraska-Lincoln
Primary Blast Waves Induced Brain Dynamics Influenced By Head Orientations, Yi Hua, Yugang Wang, Linxia Gu
Department of Mechanical and Materials Engineering: Faculty Publications
There is controversy regarding the directional dependence of head responses subjected to blast loading. The goal of this work is to characterize the role of head orientation in the mechanics of blast wave-head interactions as well as the load transmitting to the brain. A three-dimensional human head model with anatomical details was reconstructed from computed tomography images. Three different head orientations with respect to the oncoming blast wave, i.e., front-on with head facing blast, back-on with head facing away from blast, and side-on with right side exposed to blast, were considered. The reflected pressure at the blast wave-head interface positively …
Project Plan - Mentoring,
2017
University of Dayton
Project Plan - Mentoring, Abigail Lisjak, Patrick Gray, Timothy Leonard, Adam Foster
Sustainability and Connectivity
A presentation that includes the ideal goal for the project as well as how the project can relate to the other projects in the class.
Corgi: Compute Oriented Recumbent Generation Infrastructure,
2017
California Polytechnic State University, San Luis Obispo
Corgi: Compute Oriented Recumbent Generation Infrastructure, Christopher Allen Hunt
Master's Theses
Creating a bicycle with a rideable geometry is more complicated than it may appear, with today’s mainstay designs having evolved through years of iteration. This slow evolution coupled with the bicycle’s intricate mechanical system has lead most builders to base their new geometries off of previous work rather than expand into new design spaces. This crutch can lead to slow bicycle iteration rates, often causing bicycles to all look about the same. To combat this, several bicycle design models have been created over the years, with each attempting to define a bicycle’s handling characteristics given its physical geometry. However, these …
