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2017

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Articles 301 - 330 of 615

Full-Text Articles in Materials Science and Engineering

Characterizing Structure, Properties, And Deformation In Metallic Glasses And Olivine Using Instrumented Nanoindentation, Kelly Kranjc May 2017

Characterizing Structure, Properties, And Deformation In Metallic Glasses And Olivine Using Instrumented Nanoindentation, Kelly Kranjc

McKelvey School of Engineering Graduate Student Theses & Dissertations

Micro- and nanomechanical testing can provide significant insight about the structure, properties, and behavior of materials. These techniques are nondestructive, require only limited amounts of material, and have been known to detect a brittle-to-ductile transition in mechanical behavior due to a size effect. This work utilizes this type of testing to explore fundamental questions about the structure, properties, and behavior of two disparate material systems: metallic glasses and olivine.

Metallic glasses are metallic alloys devoid of any long-range order. Their unique atomic structure imbues them with properties such as a high elastic strain limit, near-theoretical strengths, and the ability to …


Pore Functionalized Pvdf Membranes With In-Situ Synthesized Metal Nanoparticles: Material Characterization, And Toxic Organic Degradation, Hongyi Wan, Nicolas J. Briot, Anthony Saad, Lindell E. Ormsbee, Dibakar Bhattacharyya May 2017

Pore Functionalized Pvdf Membranes With In-Situ Synthesized Metal Nanoparticles: Material Characterization, And Toxic Organic Degradation, Hongyi Wan, Nicolas J. Briot, Anthony Saad, Lindell E. Ormsbee, Dibakar Bhattacharyya

Chemical and Materials Engineering Faculty Publications

Functionalized PVDF membrane platforms were developed for environmentally benign in-situ nanostructured Fe/Pd synthesis and remediation of chlorinated organic compounds. To prevent leaching and aggregation, nanoparticle catalysts were integrated into membrane domains functionalized with poly (acrylic acid). Nanoparticles of 16–19 nm were observed inside the membrane pores by using focused ion beam (FIB). This technique prevents mechanical deformation of the membrane, compared to the normal SEM preparation methods, thus providing a clean, smooth surface for nanoparticles characterization. This allowed quantification of nanoparticle properties (size and distribution) versus depth underneath the membrane surface (0–20 μm). The results showed that nanoparticles were uniformly …


An Experimental And Numerical Study Of Nanomechanical Behavior Of Hard/Soft Multilayered Coatings, Benigno Sandoval May 2017

An Experimental And Numerical Study Of Nanomechanical Behavior Of Hard/Soft Multilayered Coatings, Benigno Sandoval

Mechanical Engineering ETDs

Multilayer thin film composites, sometimes referred to as nanolaminates, have emerged as an important subset of materials with novel, and often tunable, properties such as high strength, high toughness, and resistance to wear or corrosion. Often fabricated using alternating layers of two or more materials, these multilayer thin film coatings are typically expensive and time intensive to fabricate and characterize and exhibit novel responses to nanomechanical testing such as plasticity during unloading. This thesis explores the nanoindentation response of hard/soft multilayer coatings through examination of the optical coating Al/SiC and similar coating Al/SiO2. Instrumented indentation was used to study single …


Real-Time Atomistic Observation Of Structural Phase Transformations In Individual Hafnia Nanorods, Bethany M. Hudak, Sean W. Depner, Gregory R. Waetzig, Anjana Talapatra, Raymundo Arroyave, Sarbajit Banerjee, Beth S. Guiton May 2017

Real-Time Atomistic Observation Of Structural Phase Transformations In Individual Hafnia Nanorods, Bethany M. Hudak, Sean W. Depner, Gregory R. Waetzig, Anjana Talapatra, Raymundo Arroyave, Sarbajit Banerjee, Beth S. Guiton

Chemistry Faculty Publications

High-temperature phases of hafnium dioxide have exceptionally high dielectric constants and large bandgaps, but quenching them to room temperature remains a challenge. Scaling the bulk form to nanocrystals, while successful in stabilizing the tetragonal phase of isomorphous ZrO2, has produced nanorods with a twinned version of the room temperature monoclinic phase in HfO2. Here we use in situ heating in a scanning transmission electron microscope to observe the transformation of an HfO2 nanorod from monoclinic to tetragonal, with a transformation temperature suppressed by over 1000°C from bulk. When the nanorod is annealed, we observe with …


Understanding Photovoltaic Properties Of Pbs Quantum Dot Solids Via Solution Contacting, Vitalii Dereviankin, Erik Johansson May 2017

Understanding Photovoltaic Properties Of Pbs Quantum Dot Solids Via Solution Contacting, Vitalii Dereviankin, Erik Johansson

Student Research Symposium

Photovoltaic (PV) devices based on PbS quantum dot (QD) solids demonstrate high photontoelectron conversion yields. However, record power conversion efficiency remain low, in part due to small photovoltages, which in turn are affected by both bulk and interfacial defects. Their relative impacts on limiting the photovoltaic performance of QD solids are not known. Interfacial defects can be formed when contacting a semiconductor and may dominate the semiconductor/metal or metaloxide junction properties. The objective of this study is to explore whether electrochemical contacting using liquid electrolytes provides means of contacting QD solids without introducing interfacial defects. We have initially focused on …


Speculations On A City For Mars, Edouard Terzis May 2017

Speculations On A City For Mars, Edouard Terzis

School of Architecture - Theses

This thesis proposes the reinterpretation of architectural forms as the index of the constitution of the idea of the city. “Speculations on a City on Mars” is paradoxical in a sense as it superposes both the managerial representation of a city, that is Zoning, along with the speculative aspect of an extra-terrestrial city.


Single Use Droplet Based Microfluidics – Screening Tools For Biotechnology And Life-Sciences, Alexander Groß, Jialan Cao, Stefen Schneider, J.M. Köhler, Thomas Henkel, Martin Roth, Mark Kielpinsky, Alexander Mendel May 2017

Single Use Droplet Based Microfluidics – Screening Tools For Biotechnology And Life-Sciences, Alexander Groß, Jialan Cao, Stefen Schneider, J.M. Köhler, Thomas Henkel, Martin Roth, Mark Kielpinsky, Alexander Mendel

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

In the recent years droplet-based microfluidic techniques were developed and used for various screening purposes mainly in the field of life-sciences and biotechnology. Therefore, droplet volumes in a range from pL to μL were used and different technology platforms were necessary to produce the required fluidic devices which made of various materials. Traditionally, lithography combined with etching processes were used to produce precise glass or silicon devices. But, hot embossing and injection molding techniques are better suited for the production of single use devices. Recently, 3D-printing technologies are under development for the generation of individual costumes made microfluidic devices in …


3-D Printing Open-Source Click-Muac Bands For Identification Of Malnutrition, Ross Michaels, Joshua M. Pearce May 2017

3-D Printing Open-Source Click-Muac Bands For Identification Of Malnutrition, Ross Michaels, Joshua M. Pearce

Department of Materials Science and Engineering Publications

No abstract provided.


Of Sut And Stainless, Manuel Carrondo May 2017

Of Sut And Stainless, Manuel Carrondo

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

No Abstract, Please Click And See The Presentation.


Roll-To-Roll Pilot Line For Large-Scale Manufacturing Of Microfluidic Devices, Martin Smolka, Anja Haase, Ursula Palfinger, Dieter Nees, Ladislav Kuna, Jan Hesse, Barbara Stadlober, Sascha. Geidel, Jörg Nestler, Nikolaus Ladenhauf, Andoni Rodriguez, Florian Hasenöhrl, Martin Eibelhuber, Max Sonnleitner, Guggi Kofod, Dan Kofoed, Jan Kafka, Isbaal Ramos, Manuel W. Thesen, Mirko Lohse, Ana Ayerdi, Nerea Briz May 2017

Roll-To-Roll Pilot Line For Large-Scale Manufacturing Of Microfluidic Devices, Martin Smolka, Anja Haase, Ursula Palfinger, Dieter Nees, Ladislav Kuna, Jan Hesse, Barbara Stadlober, Sascha. Geidel, Jörg Nestler, Nikolaus Ladenhauf, Andoni Rodriguez, Florian Hasenöhrl, Martin Eibelhuber, Max Sonnleitner, Guggi Kofod, Dan Kofoed, Jan Kafka, Isbaal Ramos, Manuel W. Thesen, Mirko Lohse, Ana Ayerdi, Nerea Briz

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Roll-to-roll (R2R) technologies with roller-based nanoimprinting methods enable manufacturing of highly cost-effective and large-scale sheets of flexible polymer film with precise structures on a micro- and nanoscale 1. Areas that can benefit strongly from such large scale technologies are microfluidics, biosensors, and lab-on-chip products for point of care diagnostics, drug discovery and food control. Here, R2R fabrication could greatly reduce production costs and increase manufacturing capacity with respect to currently used products. A pilot line with this technology is investigated in the European Horizon 2020 project R2R Biofluidics and its capabilities are tested on two Demonstrators: - Demonstrator 1: In-vitro …


Protein-Specific Empirical Model Of Protein Adsorption On Surfaces, Dan Nicolau May 2017

Protein-Specific Empirical Model Of Protein Adsorption On Surfaces, Dan Nicolau

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Predicting protein adsorption from solution to a surface is an important problem in biomedicine and related fields. Despite constant attention in the literature, it is not currently possible to predict quantitatively the amount of adsorbed protein given environment, protein and surface parameters. We present a purely empirical approach to predict protein adsorption using a linearly piecewise model with breakpoint, based on progress in the understanding and quantification of physico-chemical properties on protein molecular surfaces. This model is capable of accounting for over 90% of the variance in the data, despite the fact that the adsorption data spans over three orders …


On The “Fate Of Leachables” In Biopharmaceutical Up-Stream And Down- Stream Processes, Armin Hauk, Ina Pahl, Roberto Menzel, Samuel Dorey, Isabelle Uettwiller May 2017

On The “Fate Of Leachables” In Biopharmaceutical Up-Stream And Down- Stream Processes, Armin Hauk, Ina Pahl, Roberto Menzel, Samuel Dorey, Isabelle Uettwiller

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Single use systems (SUS), based on polymeric materials, are widely used in the biopharmaceutical manufacturing. Compounds potentially migrating from the polymeric materials into the production process at various stages as leachables can either negatively influence the production process performance (e.g. inhibit cell growth) or can contribute to process related drug impurities, which may potentially have an effect on product quality and/or patient safety. Today, the concept of investigating leachables is mainly focused on the measurement of extractables under worst case- or simulation-conditions plus their assessment including an interpolation towards potential leachables. In particular, in the frame of this assessment of …


Tie Layer Technology For Multilayer Coextrusion Of Single-Use Biopharma Bags, Barry A. Morris May 2017

Tie Layer Technology For Multilayer Coextrusion Of Single-Use Biopharma Bags, Barry A. Morris

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

The needs of the demanding biopharma processing bag, such as barrier, toughness and heat sealability, cannot be met by any one polymer. As a result, multiple layers of different polymers, each playing its role in meeting the design requirements, are combined in coextrusion or lamination. Most of the polymers used in these layers do not naturally adhere to each other in the film making or lamination process without tie layers. Tie layers are polymer resins designed to provide adhesion between specific polymers in a given film manufacturing process. In coextrusion, the polymer layers are brought together in the melt state. …


Influence Of Γ-Irradiated Biopharmaceutical Films, Samuel Dorey, Fanny Gaston, Magali Barbaroux,, Nathalie Dupuy, Sylvain R.A. Marque May 2017

Influence Of Γ-Irradiated Biopharmaceutical Films, Samuel Dorey, Fanny Gaston, Magali Barbaroux,, Nathalie Dupuy, Sylvain R.A. Marque

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Preventing cross-contamination, saving costs and increasing configuration flexibility make the adoption of single-use technologies very attractive for the biopharmaceutical industry. The integrity and the security of bags are due to appropriate flexible and barrier polymeric materials, such as polyethylene (PE) or ethylene vinyl acetate (EVA) and polyethylene-co-vinyl alcohol (EVOH), which are barrier to water vapor and oxygen, respectively. Conventional stainless steel tanks are sterilized by steam sterilization by the end-users, whereas plastic containers are sterilized by gamma-irradiation before delivery. The major advantage of radio-sterilization is the penetration power of the γ-radiation. It is known that γ -sterilization of polyolefin based …


The Journey Of A Polymer Producer To Support Customers E&L Needs, Jerome Vachon May 2017

The Journey Of A Polymer Producer To Support Customers E&L Needs, Jerome Vachon

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

In the view of SABIC’s ambitions to grow in the Healthcare applications market, a clear understanding of customers’ challenges and problems with respect to Extractables and Leachables is crucial. In addition to ensuring high quality products and compliance with standard regulations, material suppliers must also have a deep knowledge of their product chemistries for specific healthcare applications. Responding to our customers’ needs when performing their own material toxicological assessment, SABIC has continued to develop and share deeper insights into E&L. A growing involvement of SABIC to develop a true E&L knowledge base, from Research to Marketing, has thus been taking …


Xdr-500 Mo—Single-Use Fermentor For Microbial Processes, Jozsef Vasi, Andreas Castan, Sandeep Kristiansson May 2017

Xdr-500 Mo—Single-Use Fermentor For Microbial Processes, Jozsef Vasi, Andreas Castan, Sandeep Kristiansson

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Single-use bioreactors are well-established in production of biopharmaceuticals in mammalian expression systems. However, a similar technology breakthrough for microbial/yeast-based productions is still awaiting due to the unique requirements associated with such high-cell density cultivations, including high oxygen transfer capacity and efficient heat removal. Here, we present the single-use Xcellerex™ XDR-500 MO stirred-tank fermentor system specifically designed for microbial/yeast applications. The performance of the fermentor was evaluated using an E. coli fed-batch process producing a domain antibody (dAb) as a model system. The process was originally developed for a lab-scale conventional stainless steel system. This work describes the transposition and scale-up …


Effect Of Agitation On Protein Aggregation In Vials Made From Glass Or Plastics, Birgit Mueller-Chorus, Erica Tullo, Vinod Vilivalam, Lloyd Waxman May 2017

Effect Of Agitation On Protein Aggregation In Vials Made From Glass Or Plastics, Birgit Mueller-Chorus, Erica Tullo, Vinod Vilivalam, Lloyd Waxman

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

The increasing use of proteins as therapeutics including monoclonal antibodies has focused attention on the need to maintain the stability of these labile molecules during both storage and shipment. The degradation of therapeutic proteins can arise from aggregation and adsorption in primary containers, as well as from exposure to leachables, and chemical damage due to exposure to oxygen or light. Since vials continue to be used as primary containers for multiple-use applications, including vaccines and lyophilized drug products, we have compared the effect of mechanical stress on protein aggregation in vials made of glass versus vials made of the plastic …


Particulate Contamination In Single Use Systems: Measurement Challenges, Klaus Wormuth, Fanny Gaston, Mathieu Labedan May 2017

Particulate Contamination In Single Use Systems: Measurement Challenges, Klaus Wormuth, Fanny Gaston, Mathieu Labedan

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

In conventional biopharmaceutical processes using stainless steel components, the pharmaceutical manufacturer is responsible for process cleanliness. However for single use systems, the pharmaceutical manufacturer “outsources” process cleanliness to the manufacturer of the single use systems, since no rinsing or cleaning occurs prior to implementation. Especially critical applications such as final fill and finish or aseptic processes demand a high degree of cleanliness with respect to particulate contamination. Although single use component assembly occurs in carefully controlled cleanroom environments, risks arise for particulate contamination from incoming components, cutting and welding operations, and human activity during manually intensive assembly processes. While visual …


Conference Program, Ekta Mahajan, Gary Lye, Regine Eibl-Schindler May 2017

Conference Program, Ekta Mahajan, Gary Lye, Regine Eibl-Schindler

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

No abstract provided.


Characterization Of Silicone Tubing – Effect Of Pressure And Irradiation On Tubing Diameter, Lise Tan-Sien-Hee, Csilla Kollar, Andrew Diehl, Ernie Jenness, Pietro Perrone May 2017

Characterization Of Silicone Tubing – Effect Of Pressure And Irradiation On Tubing Diameter, Lise Tan-Sien-Hee, Csilla Kollar, Andrew Diehl, Ernie Jenness, Pietro Perrone

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

A Single-Use assembly or system consists of numerous flexible components connected together via heat seals, overmolds or mechanical fasteners. The integrity (e.g. leak assurance) of such a system is dependent on the internal surface being continuously sealed and free of disconnects between the various components. The diameter of the flexible tubing during manufacture of the assemblies and the tubing expansion at operational pressures are important characteristics to know. Understanding these factors can help in the design of assemblies that maintain their integrity throughout their use at operating conditions. The aim of the study was to characterize four different tubing types …


Improving Single Use Bioreactor Design And Process Development Using The Hyperforma 5:1 S.U.B, Michael Goodwin May 2017

Improving Single Use Bioreactor Design And Process Development Using The Hyperforma 5:1 S.U.B, Michael Goodwin

Single-use Technologies II: Bridging Polymer Science to Biotechnology Applications

Operating bioreactor vessels at low working volumes (high turn-down ratio) is often desirable but brings about challenges in regard to mixing, mass transfer, and process control. Research done towards optimizing cell culture has provided methods to improve performance and control when operating under these special conditions.  Impacts of enhanced energy transfer-Implementing bottom heat exchange, alternate impeller positions, and considering agitation dissipation rates.  Maximizing your platform-Taking advantage of the unique Thermo Fisher Scientific Drilled Hole Sparge design and implementing a new Cross Flow Sparge into the headspace have yielded reliable mass transfer and cell culture results from 10-2000L working …


Life Cycle Sustainability Analysis (Lcsa) Of Polymer-Based Piping For Plumbing Applications, Andy J. Rivas Bolivar May 2017

Life Cycle Sustainability Analysis (Lcsa) Of Polymer-Based Piping For Plumbing Applications, Andy J. Rivas Bolivar

Senior Honors Projects, 2010-2019

Water conveyance systems play a critical role in modern developed areas. Polymer pipes have been used for about a century, and their convenient physical properties have positioned polymers as the leading material in the piping industry. Having such influence in the market means that changes in current material selection and manufacturing could lead to significant reductions in the footprint associated with their products. Currently, there are no comparative lifecycle assessments that evaluate the different polymer selections commercially available, which makes it hard to determine what products have the least impact on the environment. Understanding how such impacts are relative to …


Process Development And Implementation For The Imaging Of Heat Treated A2 Steel For Consolidation Into An Atlas, Jessica Roberts May 2017

Process Development And Implementation For The Imaging Of Heat Treated A2 Steel For Consolidation Into An Atlas, Jessica Roberts

Senior Honors Projects, 2010-2019

Material processes, properties, and microstructure are interconnected, often visualized as the points of a triangle. Changing the process a material goes through will in turn change the properties and microstructure of that material. In materials research and education (specifically with metals), comparison between research or experiment results and scholarly-accepted results is important. When reading textbooks addressing different properties of metals and the process of metal treatment, images are often shown of the various microstructures associated with each property or process stage. The difficulty comes in trying to compare the stages or properties to one another; often different materials and processes …


Investigating The Classical And Non-Classical Mechanical Properties Of Gan Nanowires, Mohammad Reza Zamani Kouhpanji May 2017

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 …


Study Of Knowledge-Based System (Kbs) And Decision Making Methodologies In Materials Selection For Lightweight Aircraft Metallic Structures, Pashupati R. Adhikari, Reza Mirshams May 2017

Study Of Knowledge-Based System (Kbs) And Decision Making Methodologies In Materials Selection For Lightweight Aircraft Metallic Structures, Pashupati R. Adhikari, Reza Mirshams

Journal of Applied Science & Engineering Technology

This paper presents an overview of knowledge-based system (KBS) in the context of decision making methodologies used in materials selection for the design of light weight aircraft metallic structures. Overall aircraft weight reduction means substantially less fuel consumption and better efficiency. Part of the solution to this problem is to find a way to reduce overall weight of metallic structures in the aircraft. Two distinct multiple criteria decision making (MCDM) methodologies are presented with examples featuring a set of short-listed materials suitable in the design of the structures. Pre-defined constraint values, mainly mechanical properties, are employed as relevant attributes satisfying …


A Novel Technique For Designing High Power Semiconductor Optical Amplifier (Soa)-Based Tunable Fiber Compound-Ring Lasers Using Low Power Optical Components, Muhammad A. Ummy, Simeon Bikorimana, Roger Dorsinville May 2017

A Novel Technique For Designing High Power Semiconductor Optical Amplifier (Soa)-Based Tunable Fiber Compound-Ring Lasers Using Low Power Optical Components, Muhammad A. Ummy, Simeon Bikorimana, Roger Dorsinville

Publications and Research

A simple, stable and inexpensive dual-output port widely tunable semiconductor optical amplifier (SOA)-based fiber compound-ring laser structure is demonstrated. This unique nested ring cavity enables high optical power to split into different branches where amplification and wavelength selection are achieved by using low-power SOAs and a tunable filter. Furthermore, two Sagnac loop mirrors, which are spliced at the two ends of the compound-ring cavity not only serve as variable reflectors but also channel the optical energy back to the same port without using any high optical power combiner. We propose and discuss how the demonstrated fiber compound-ring laser structure can …


Flux Focusing Axial Magnetic Gear, Robert J. Rutherford May 2017

Flux Focusing Axial Magnetic Gear, Robert J. Rutherford

Undergraduate Research & Mentoring Program

Power transmission is traditionally achieved with a mechanical gear. These gears require maintenance, cause vibration, and have no overload protection. Magnetic gears (MGs) offer an innovative solution to these drawbacks as they do not require regular maintenance, have no need for lubrication, create very little acoustic noise, have built in overload protection and as a result of these advantages, have a longer lifetime of operation. The flux focusing axial magnetic gear (FFAMG) was assembled for future testing of power transmission, conversion, and generation applications.

Gears are used to transmit power by converting low speed-high torque rotary motion into high speed-low …


Compositionally Graded Indium Gallium Nitride Solar Cells, Christopher Matthews May 2017

Compositionally Graded Indium Gallium Nitride Solar Cells, Christopher Matthews

Electrical Engineering Undergraduate Honors Theses

For the past several decades, methods to harvest solar energy have been investigated intensively. A majority of the work done in this field has been on solar cells made with silicon – the most mature semiconductor material. Recent developments in material fabrication and processing techniques have enabled other semiconductor materials to attract practical interest and research effort as well. Indium gallium nitride (InGaN) is one such material. The material properties of InGaN indicate that solar cells made with it have the potential to achieve much higher power density than a standard silicon solar cell. High power density InGaN solar cells …


The Effect Of Plasma On Graphene Quality In An Inductively Couple Plasma Chemical Vapor Deposition Reactor, Brendan Coyne May 2017

The Effect Of Plasma On Graphene Quality In An Inductively Couple Plasma Chemical Vapor Deposition Reactor, Brendan Coyne

Undergraduate Research & Mentoring Program

Despite continued interest in research and application development, full scale graphene production is still limited by many factors including prohibitively high growth temperature requirements. Extremely high quality graphene growth is possible at high temperatures using chemical vapor deposition (CVD). Use of an inductively coupled plasma chemical vapor deposition (ICP CVD) reactor with the benefit of precursor gas decomposition through plasma generation, may provide possibility to reduce growth temperature. Herein, we report plasma’s effects on graphene growth by comparing growths of increasing power supplied to plasma generation and changes in precursor gas ratios. Plasma composition was characterized by ultraviolet and visible …


Jet Bounce In Low Gravity, Caleb Turner May 2017

Jet Bounce In Low Gravity, Caleb Turner

Undergraduate Research & Mentoring Program

Liquid jets rebound (‘bounce’) from superhydrophobic surfaces when they impinge at oblique angles. We call this interesting phenomena ‘jet bounce’ and in this work we investigate the phenomena at large length scales in a reduced gravitational environment. For example, for water at Reynolds numbers 0 < Re < 3500 and surface normal Weber numbers 0 < We < 60 we characterize the response of the jets on the hydrophobic surface in the brief 2.1s micro-gravity environment achieved using a drop tower. It is observed that by varying jet velocity, flow rate, jet diameter, and incident angle we observe up to four distinct regimes of behavior. The various regimes may be targeted for specific applications and we demonstrate a variety of unique jet bounce behaviors for applications such as no-touch, no-contact fluid-thermal transport for spacecraft unit operations such as contaminated water processing, device cooling, and cryogenic fluids transport and management.

Stable jet bounce from small diameter jet ≈ 1 mm and low impact angle. Characterizing Reynolds number ≈ 900 and normal Weber number ≤ 10 allow jet bounce to rebound in non-destructive behavior.