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Articles 10891 - 10920 of 16715
Full-Text Articles in Engineering
Scaffold For Bone And Tissue Repair In Mammals, D. E. Day, Steven B. Jung
Scaffold For Bone And Tissue Repair In Mammals, D. E. Day, Steven B. Jung
Materials Science and Engineering Faculty Research & Creative Works
A mammalian tissue scaffold and method for making a tissue scaffold including a rigid scaffold body of biocompatible glass fibers bonded together and in special alignment to define open channels within the scaffold to allow fluid flow into and within the scaffold.
Experimental Study Of Nanofiber Production Through Forcespinning, Simon Padron, Arturo Fuentes, Dumitru Caruntu, Karen Lozano
Experimental Study Of Nanofiber Production Through Forcespinning, Simon Padron, Arturo Fuentes, Dumitru Caruntu, Karen Lozano
Mechanical Engineering Faculty Publications
A newly developed method of producing nanofibers, called forcespinning, has proven to be a viable alternative to mass produce nanofibers. Unlike electrospinning, the most common method currently being employed (which draws fibers through the use of electrostatic force), forcespinning utilizes centrifugal forces which allow for a host of new materials to be processed into nanofibers (given that electric fields are not required) while also providing a significant increase in yield and ease of production. This work presents a detailed explanation of the fiber formation process. The study is conducted using high speed photography to capture the jet initiation process at …
Surface Interactions On Glass Optics During Fabrication, Post Processing & Laser Operation, Tayyab Suratwala
Surface Interactions On Glass Optics During Fabrication, Post Processing & Laser Operation, Tayyab Suratwala
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Glasses For Energy Storage: Advancing The Energy Density And Safety Of Batteries, Steve W. Martin
Glasses For Energy Storage: Advancing The Energy Density And Safety Of Batteries, Steve W. Martin
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Glass And Glass Ceramic For Nonlinear Optics: Fundamentals To Applications, T. Cardinal, E. Fargin, J. J, Videau, Y. Petit, G. Guery, M. Dussauze, F. Adamiertz, V. Rodriguez, L. Canioni, A.| Royon
Glass And Glass Ceramic For Nonlinear Optics: Fundamentals To Applications, T. Cardinal, E. Fargin, J. J, Videau, Y. Petit, G. Guery, M. Dussauze, F. Adamiertz, V. Rodriguez, L. Canioni, A.| Royon
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Surface Chemistry Of Glass: Interfacial Water And Mechanochemical Properties, Hongtu He, Laura C. Bradley, Zachary R. Dilworth, Carlo G. Pantano, Seong H. Kim
Surface Chemistry Of Glass: Interfacial Water And Mechanochemical Properties, Hongtu He, Laura C. Bradley, Zachary R. Dilworth, Carlo G. Pantano, Seong H. Kim
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Coated Glass For Energy Efficient Buildings: Spectral Selectivity, Angular Dependence & Time Variability, C. G. Granqvist
Coated Glass For Energy Efficient Buildings: Spectral Selectivity, Angular Dependence & Time Variability, C. G. Granqvist
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Sealing Glasses For Electrochemical Devices, Richard K. Brow
Sealing Glasses For Electrochemical Devices, Richard K. Brow
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Fundamentals Of Indentation Cracking In Glass: A Measure Of Strength?, Satoshi Yoshida
Fundamentals Of Indentation Cracking In Glass: A Measure Of Strength?, Satoshi Yoshida
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Sharp Contact Damage In Ion-Exchanged Cover Glass, Tim Gross, Jim Price, Scott Glaesemann
Sharp Contact Damage In Ion-Exchanged Cover Glass, Tim Gross, Jim Price, Scott Glaesemann
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Ion Transport Across Grain Boundaries In Fast Lithium Ion Conducting Glass Ceramics, Bernhard Roling, Katharina I. Gries, Michael Gellert, Kerstin Volz, Fabio Rosciano, Chihiro Yada
Ion Transport Across Grain Boundaries In Fast Lithium Ion Conducting Glass Ceramics, Bernhard Roling, Katharina I. Gries, Michael Gellert, Kerstin Volz, Fabio Rosciano, Chihiro Yada
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Integrated Glass Substrates For Oled Lighting, Mehran Arbab
Integrated Glass Substrates For Oled Lighting, Mehran Arbab
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Photovoltaic Industry & Role Of Glass For Reducing The Cost Of Solar Energy, Sener Oktik
Photovoltaic Industry & Role Of Glass For Reducing The Cost Of Solar Energy, Sener Oktik
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Alterations Of Glass Surfaces & Functional Coatings For Energy Conversion Systems, Joachim Deubener
Alterations Of Glass Surfaces & Functional Coatings For Energy Conversion Systems, Joachim Deubener
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
A General Introduction For The Use And Needs Of Tcms, Driss Lamine
A General Introduction For The Use And Needs Of Tcms, Driss Lamine
Functional Glasses: Properties And Applications for Energy and Information
No abstract provided.
Synthesis Of Graphene And Its Applications For Dye-Sensitized Solar Cells, Hui Wang
Synthesis Of Graphene And Its Applications For Dye-Sensitized Solar Cells, Hui Wang
Dissertations, Master's Theses and Master's Reports - Open
Graphene, which is a two-dimensional carbon material, exhibits unique properties that promise its potential applications in photovoltaic devices. Dye-sensitized solar cell (DSSC) is a representative of the third generation photovoltaic devices. Therefore, it is important to synthesize graphene with special structures, which possess excellent properties for dye-sensitized solar cells.
This dissertation research was focused on (1) the effect of oxygen content on the structure of graphite oxide, (2) the stability of graphene oxide solution, (3) the application of graphene precipitate from graphene oxide solution as counter electrode for DSSCs, (4) the development of a novel synthesis method for the three-dimensional …
Extending Device Performance In Photonic Devices Using Piezoelectric Properties, Gregory Edward Triplett
Extending Device Performance In Photonic Devices Using Piezoelectric Properties, Gregory Edward Triplett
Electrical and Computer Engineering Publications
This study focuses on the influence of epi-layer strain and piezoelectric effects in asymmetric GaInAs/GaAlAs action regions that potentially lead to intra-cavity frequency mixing. The theoretical limits for conduction and valence band offsets in lattice-matched semiconductor structures have resulted in the deployment of non-traditional approaches such as strain compensation to extend wavelength in intersubband devices, where strain limits are related to misfit dislocation generation. Strain and piezoelectric effects have been studied and verified using select photonic device designs. Metrics under this effort also included dipole strength, oscillator strength, and offset of energy transitions, which are strongly correlated with induced piezoelectric …
Pseudomorphic Growth Of Inas On Misoriented Gaas For Extending Quantum Cascade Laser Wavelength, Gregory Edward Triplett, Charles Meyer, Emily Cheng, Justin Grayer, David Mueller, Denzil Roberts, Samuel Graham
Pseudomorphic Growth Of Inas On Misoriented Gaas For Extending Quantum Cascade Laser Wavelength, Gregory Edward Triplett, Charles Meyer, Emily Cheng, Justin Grayer, David Mueller, Denzil Roberts, Samuel Graham
Electrical and Computer Engineering Publications
The authors have studied the impact of epilayer strain on the deposition of InAs/GaAs on (100) and (111)B with 2 degrees offset toward 2-1-1 surfaces. Consequences of a 7% lattice mismatch between these orientations in the form of three-dimensional growth are less apparent for (111)B with 2 degrees offset toward 2-1-1 surfaces compared to (100). By exploring a range of molecular beam epitaxy process parameters for InAs/GaAs growth and utilizing scanning electron microscopy, atomic force microscopy, and Raman spectroscopy to evaluate the quality of these strained layers, the authors develop empirical models that describe the influence of the process conditions …
Investigation Of Astm E 238 Bearing Pin Properties For Various Aerospace Alloys, Trevor J. Lee
Investigation Of Astm E 238 Bearing Pin Properties For Various Aerospace Alloys, Trevor J. Lee
Master's Theses
Aircraft are often designed with numbers determined by testing in a lab, rather than by repeatedly building prototypes. These lab tests conform to testing specifications so that the numbers can be compared between manufacturers, suppliers, and lab technicians. One such specification is ASTM specification E238 – 84(08), and it is used to determine important properties of a bearing pin joint like hinges, bolt holes, and rivet joints. The properties determined from this fastener-through-plate method are bearing strength, bearing yield strength, and bearing stiffness.
Adhering to the methods outlined in ASTM E238, a study was performed, looking at the effects that …
Transient And Quasi-Steady Thermal Behaviour Of A Building Envelope Due To Retrofitted Cavity Wall And Ceiling Insulation, Aimee Byrne, Gerard Byrne, Anna Davies, Anthony Robinson
Transient And Quasi-Steady Thermal Behaviour Of A Building Envelope Due To Retrofitted Cavity Wall And Ceiling Insulation, Aimee Byrne, Gerard Byrne, Anna Davies, Anthony Robinson
Articles
Accurate understanding of the thermal behaviour of building components is essential for predicting heat-ing or cooling needs and facilitates the implementation of more successful energy saving strategies and retrofits. This paper focuses on a specific measure commonly introduced through the residential energy efficiency retrofit programmes in Ireland–insulation. Traditionally, assessments of the performance of building envelopes have been based on assumed thermal resistances of the materials involved, labora-tory tests and computer modelling. The aim of the present work is to investigate the in situ thermal behaviour of a case study building and its components under transient and quasi-steady environmental conditions, comparing …
Structure And Properties Of Cocoons And Silk Fibers Produced By Attacus Atlas, Narendra Reddy, Yi Zhao, Yiqi Yang
Structure And Properties Of Cocoons And Silk Fibers Produced By Attacus Atlas, Narendra Reddy, Yi Zhao, Yiqi Yang
Department of Textiles, Merchandising and Fashion Design: Faculty Publications
Silk fibers in the three layers of Attacus atlas (A. atlas) cocoons have morphological structure and tensile properties similar to that of Bombyx mori silk. Attempts are being made to produce silk for commercial applications from cocoons of relatively unknown wild insects due to the unique properties of the fibers and as a source of income and employment. In this research, A. atlas cocoons were used to study the chemical composition, morphology, physical structure and tensile properties of the silk fibers in the cocoons and ability of the fibers to support the attachment and proliferation of mouse fibroblast cells. It …
Molecular Crystallization Directed By Nanoparticles And Nanopatterns, Li Li
Molecular Crystallization Directed By Nanoparticles And Nanopatterns, Li Li
Wayne State University Dissertations
This dissertation focuses on nanoparticle/nanopattern-induced molecular self-assembly and crystallization. We propose a universal strategy to synthesize organic/inorganic hybrid nanostructures using inorganic nanoparticles and nanoparticle arrays to induce organic crystalline compound nucleation and crystallization. The nanoconfinement effect will be addressed to study molecular crystallization by changing nanoparticle size, curvature and separation distance. Atomic force microscopy (AFM) is the main characterization tool to investigate the topography of the hybrid nanostructures and the nucleation and crystallization process. This work will contribute to the understanding of seed mediated nucleation and crystallization, molecular ordering under nanoconfinement and hybrid nanomaterials.
Micromechanical Analysis Of Nanoparticle-Reinforced Dental Composites, Yi Hua, Linxia Gu, Hidehiko Watanabe
Micromechanical Analysis Of Nanoparticle-Reinforced Dental Composites, Yi Hua, Linxia Gu, Hidehiko Watanabe
Department of Mechanical and Materials Engineering: Faculty Publications
The mechanical behavior of TiO2 nanoparticle-reinforced resin-based dental composites was characterized in this work using a three-dimensional nanoscale representative volume element. The impacts of nanoparticle volume fraction, aspect ratio, stiffness, and interphase zone between the resin matrix and nanoparticle on the bulk properties of the composite were characterized. Results clearly demonstrated the mechanical advantage of nanocomposites in comparison to microfiber-reinforced composites. The bulk response of the nanocomposite could be further enhanced with the increased nanoparticle volume fraction, or aspect ratio, while the influence of nanoparticle stiffness was minimal. The effective Young’s modulus and yield strength of the composite was …
Bioreducible Polymer Nanosystems For Gene Delivery, Yi Zou
Bioreducible Polymer Nanosystems For Gene Delivery, Yi Zou
Wayne State University Dissertations
This dissertation describes the research of bioreducible polymers for gene delivery. A series of bioreducible poly(amido amine)s (PAAs) were synthesized. They complex with DNA forming polyplex nanoparticles and layer-by-layer (LbL) thin films as gene delivery vectors. Atomic force microscope (AFM), especially in situ real time AFM, provides a microscopic view of DNA release dynamics. It is shown that the depolymerization of bioreducible polymer triggers DNA release via disulfide-thiol exchange reaction. The AFM images revealed a three-stage pathway beginning with a morphological change from metastable nanostructures into the more favorable toroid structure. Then toroids interact with each other by aggregation and …
Green Diesel Production Via Catalytic Hydrogenation/Decarboxylation Of Triglycerides And Fatty Acids Of Vegetable Oil And Brown Grease, Elvan Sari
Wayne State University Dissertations
Increase in the petroleum prices, projected increases in the world’s energy demand and environmental awareness have shifted the research interest to the alternative fuel technologies. In particular, green diesel, vegetable oil/animal fat/waste oil and grease derived hydrocarbons in diesel boiling range, has become an attractive alternative to biodiesel— a mixture of fatty acid methyl esters, particularly due to its superior fuel properties that are similar to petroleum diesel. Hence, green diesel can be used as a drop-in fuel in the current diesel engines. The current technology for production of green diesel– hydrodeoxygenation of triglycerides and fatty acids over conventional hydrotreating …
A Comparative Study Of Three Different Chemical Vapor Deposition Techniques Of Carbon Nanotube Growth On Diamond Films, Betty T. Quinton, Paul N. Barnes, Chakrapani V. Varanasi, Bang-Hung Tsao, Kevin J. Yost, Sharmila M. Mukhopadhyay
A Comparative Study Of Three Different Chemical Vapor Deposition Techniques Of Carbon Nanotube Growth On Diamond Films, Betty T. Quinton, Paul N. Barnes, Chakrapani V. Varanasi, Bang-Hung Tsao, Kevin J. Yost, Sharmila M. Mukhopadhyay
Mechanical and Materials Engineering Faculty Publications
This paper compares between the methods of growing carbon nanotubes (CNTs) on diamond substrates and evaluates the quality of the CNTs and the interfacial strength. One potential application for these materials is a heat sink/spreader for high-power electronic devices. The CNTs and diamond substrates have a significantly higher specific thermal conductivity than traditional heat sink/spreader materials making them good replacement candidates. Only limited research has been performed on these CNT/diamond structures and their suitability of different growth methods. This study investigates three potential chemical vapor deposition (CVD) techniques for growing CNTs on diamond: thermal CVD (T-CVD), microwave plasma-enhanced CVD (MPE-CVD), …
Nanomaterials Synthesis, Applications, And Toxicity 2012, Mallikarjuna Nadagouda, Dionysios Demetriou Dionysiou, Darren A. Lytle, Thomas F. Speth, Sharmila M. Mukhopadhyay
Nanomaterials Synthesis, Applications, And Toxicity 2012, Mallikarjuna Nadagouda, Dionysios Demetriou Dionysiou, Darren A. Lytle, Thomas F. Speth, Sharmila M. Mukhopadhyay
Mechanical and Materials Engineering Faculty Publications
Nanotechnology presents new opportunities to create better materials and products. Nanomaterials find wide applications in catalysis, energy production, medicine, environmental remediation, automotive industry, and other sectors of our society. Nanomaterial-containing products are already available globally and include automotive parts, defense application, drug delivery devices, coatings, computers, clothing, cosmetics, sports equipment, and medical devices. This special issue includes emerging advances in the field, with a special emphasis given to nanomaterial synthesis and applications.
Microstructural Evolution During Stress Relaxation Of Gold Thin Films, Luthfia Amra Syarbaini
Microstructural Evolution During Stress Relaxation Of Gold Thin Films, Luthfia Amra Syarbaini
Open Access Theses
Microstructure evolution in metal thin films for use in microelectronic devices was studied due to the formation of defects such as whiskers and hillocks that may cause problems in electrical circuits. Thin film stress relaxation can occur through a variety of processes. Understanding such mechanisms and the conditions under which certain mechanism dominate can potentially lead to the improved control of thin film stability. Studies of the 3D microstructural changes in Au thin films on silicon and other substrates with different thermal expansion coefficients aid us in understanding thin film relaxation phenomena such as hillock/whisker formation. Techniques such as in-situ …
Multi-Scale Characterization Of Nanostructured Sodium Aluminum Hydride, Shathabish Narasegowda
Multi-Scale Characterization Of Nanostructured Sodium Aluminum Hydride, Shathabish Narasegowda
Doctoral Dissertations
Complex metal hydrides are the most promising candidate materials for onboard hydrogen storage. The practicality of this class of materials is counter-poised on three critical attributes: reversible hydrogen storage capacity, high hydrogen uptake/release kinetics, and favorable hydrogen uptake/release thermodynamics. While a majority of modern metallic hydrides that are being considered are those that meet the criteria of high theoretical storage capacity, the challenges lie in addressing poor kinetics, thermodynamics, and reversibility. One emerging strategy to resolve these issues is via nanostructuring or nano-confinement of complex hydrides. By down-sizing and scaffolding them to retain their nano-dimensions, these materials are expected to …
Nano-Silicon/Graphene Composite Anodes For Enhanced Performance Lithium Ion Batteries, Rhet Joseph Caballes De Guzman
Nano-Silicon/Graphene Composite Anodes For Enhanced Performance Lithium Ion Batteries, Rhet Joseph Caballes De Guzman
Wayne State University Dissertations
The ever evolving technological applications such as with portable electronics and electric vehicles have led to increasing energy demands that have proven the existing commercial LIB capacity insufficient. Recently, the most promising anode material to substitute the traditional graphite is Si. As an anode Si has low discharge potential and theoretical the highest known theoretical capacity (>10 fold of graphite). However, due to the increased accommodated Li+ during charge-discharge reactions, silicon's volume varies up to 400%, causing pulverization and loss of electrical contact.
This dissertation focuses on a systematic approach in developing effective means to utilize Si for improved …