Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Other Mechanical Engineering (150)
- Physical Sciences and Mathematics (134)
- Energy Systems (133)
- Arts and Humanities (104)
- Aerospace Engineering (96)
-
- Education (96)
- Science and Mathematics Education (93)
- History (92)
- History of Science, Technology, and Medicine (92)
- United States History (91)
- Materials Science and Engineering (73)
- Electrical and Computer Engineering (59)
- Manufacturing (59)
- Civil and Environmental Engineering (48)
- Ocean Engineering (46)
- Engineering Science and Materials (39)
- Chemical Engineering (38)
- Applied Mechanics (36)
- Computer Engineering (36)
- Civil Engineering (34)
- Electrical and Electronics (34)
- Electro-Mechanical Systems (33)
- Metallurgy (33)
- Structural Engineering (33)
- Operations Research, Systems Engineering and Industrial Engineering (29)
- Acoustics, Dynamics, and Controls (28)
- Biomedical Engineering and Bioengineering (28)
- Nanoscience and Nanotechnology (27)
- Institution
-
- University of Nebraska - Lincoln (148)
- California Polytechnic State University, San Luis Obispo (71)
- Brigham Young University (66)
- Missouri University of Science and Technology (58)
- University of Alabama at Birmingham (47)
-
- University of Texas at Arlington (43)
- University of Central Florida (35)
- University of Texas at El Paso (34)
- Universitas Indonesia (29)
- Clemson University (28)
- Michigan Technological University (27)
- Utah State University (25)
- Old Dominion University (24)
- University of Kentucky (21)
- Louisiana State University (20)
- Cleveland State University (18)
- University of South Carolina (17)
- University of Texas Rio Grande Valley (17)
- Wright State University (16)
- Embry-Riddle Aeronautical University (14)
- University of South Florida (14)
- Wayne State University (14)
- National Taiwan Ocean University (13)
- University of Arkansas, Fayetteville (13)
- University of Nevada, Las Vegas (13)
- Syracuse University (11)
- Western Michigan University (10)
- Marquette University (9)
- University of Connecticut (9)
- The University of Akron (8)
- Keyword
-
- Engineering (48)
- ASME (47)
- Conference (47)
- ECTC (47)
- Proceedings (47)
-
- Applied sciences (23)
- CFD (12)
- Simulation (9)
- Buildings (8)
- Department of Mechanical and Materials Engineering (8)
- Finite element analysis (8)
- Finite element method (7)
- Microfluidics (7)
- Modeling (7)
- Solar (7)
- Composite (6)
- Computational fluid dynamics (6)
- Heat transfer (6)
- MEMS (6)
- Acoustics (5)
- Automation (5)
- Combustion (5)
- Composites (5)
- Control (5)
- Daniel Felix Ritchie School of Engineering and Computer Science (5)
- Design (5)
- Energy (5)
- HVAC (5)
- Mechanical engineering (5)
- Optimization (5)
- Publication
-
- Nebraska Tractor Tests (91)
- Theses and Dissertations (63)
- Early Career Technical Journal (ECTJ) (47)
- Mechanical and Aerospace Engineering Theses - Archive (37)
- Mechanical Engineering (32)
-
- Mechanical and Aerospace Engineering Faculty Research & Creative Works (31)
- Electronic Theses and Dissertations (29)
- Makara Journal of Technology (29)
- Masters Theses (29)
- Department of Mechanical and Materials Engineering: Faculty Publications (28)
- Faculty Publications (24)
- Dissertations, Master's Theses and Master's Reports - Open (23)
- Master's Theses (22)
- Open Access Theses & Dissertations (21)
- All Theses (18)
- Theses and Dissertations--Mechanical and Aerospace Engineering (18)
- Department of Mechanical and Materials Engineering: Dissertations, Theses, and Student Research (17)
- Mechanical & Aerospace Engineering Theses & Dissertations (17)
- Mechanical Engineering Faculty Publications (14)
- USF Tampa Graduate Theses and Dissertations (14)
- Journal of Marine Science and Technology–Taiwan (13)
- Theses and Dissertations - UTB/UTPA (13)
- FSEC Energy Research Center® (12)
- Mechanical and Aerospace Engineering Faculty Publications (12)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (11)
- Industrial and Manufacturing Engineering (11)
- Wayne State University Dissertations (11)
- LSU Doctoral Dissertations (10)
- LSU Master's Theses (10)
- Mechanical and Aerospace Engineering - Dissertations (10)
- Publication Type
- File Type
Articles 601 - 630 of 987
Full-Text Articles in Mechanical Engineering
Applied Energy Systems: Hydrostatic Fluid Power Transmission And Flow In Pipes, Jim Mcgovern
Applied Energy Systems: Hydrostatic Fluid Power Transmission And Flow In Pipes, Jim Mcgovern
Book/Book Chapters
This is an intentionally compact textbook or set of notes for a module addressing basic Fluid Mechanics for incompressible fluids within the context of Applied Energy Systems. Rather than attempting to cover Fluid Mechanics in a very broad and general way, two practical areas are selected in the use of fluids: hydrostatic power transmission systems and the flow of fluids through pipes and fittings. This allows the two areas to be presented in some detail, but also allows them to be sample application areas that would enable learners to put the principles of fluid mechanics into context, while developing their …
A Simulation Analysis Of Photovoltaic Ac Module Integrated Converters In Parallel, Under Controlled Edge Shading Conditions, Lynette O'Callaghan, Mick Mckeever, Brian Norton
A Simulation Analysis Of Photovoltaic Ac Module Integrated Converters In Parallel, Under Controlled Edge Shading Conditions, Lynette O'Callaghan, Mick Mckeever, Brian Norton
Conference Papers
A DC and AC power simulation comparison of: a Photovoltaic (PV) array with a modular, parallel, AC converter configuration; and a series, string configuration with a central AC converter, is presented. The systems are simulated using a comprehensive range of edge shading scenarios and irradiance conditions. Power control and transformation circuitry must be designed for shade and module mismatch tolerance to prevent over-proportional power to shade losses, as average losses from Building Integrated PV (BIPV) systems are approximately 20 to 25%, due to shade, mismatch, differences in orientation and inclination, and temperature effects. 59.4% of the simulations showed gains in …
Numerical Simulation And Experimentation Of Pulsatile Flows In Axisymmetric Arterial Models, Tadesse Gebreegziabher
Numerical Simulation And Experimentation Of Pulsatile Flows In Axisymmetric Arterial Models, Tadesse Gebreegziabher
Wayne State University Dissertations
ABSTRACT
NUMERICAL SIMULATION AND EXPERIMENTATION OF PULSATILE FLOWS IN AXISYMMETRIC ARTERIAL MODELS
by
TADESSE GEBREEGZIABHER
December 2011
Co-advisors: 1. Dr. Emmanuel Ayorinde 2. Dr. Trilochan Singh
Major: Mechanical Engineering
Degree: Doctor of Philosophy
The primary motivation for this dissertation is the fluid flow and structural response to unsteady blood flow in the human body. The research work is a synergistic merging of numerical simulation and experimentation. For the experiments, an all-encompassing, highly flexible experimental apparatus was designed and fabricated to facilitate a wide range of operating conditions, the range of which was chosen to accommodate mammalian cardiovascular system for both …
Investigation And Improvment Of Noise, Vibration And Harshness(Nvh) Properties Of Automotive Panels, Mohammad Al Zubi
Investigation And Improvment Of Noise, Vibration And Harshness(Nvh) Properties Of Automotive Panels, Mohammad Al Zubi
Wayne State University Dissertations
ABSTRACT
INVESTIGATION AND IMPROVEMENT OF NOISE, VIBRATION AND HARSHNESS (NVH) PROPERTIES OF AUTOMOTIVE PANELS
by
MOHAMMAD AL-ZUBI
July 2012
Advisor: Dr. Emmanuel Ayorinde
Major: Mechanical Engineering
Degree: Doctor of Philosophy
The reduction of noise and vibration in and across several components and modules of the automotive, such as the panels, doors, engine covers, seats, and others, is of primary importance. The NVH performance may be a crucial factor in the purchase decisions of numerous buyers. This work investigates through experimental, analytical and computational methods, six groups of sample materials - fabric, foam, honeycomb, monolithic and sandwich, periodic cellular material structures …
Gapped Cantilever For The Enhancement Of Strain Sensitivity And Energy Efficiency, Qinglong Zheng
Gapped Cantilever For The Enhancement Of Strain Sensitivity And Energy Efficiency, Qinglong Zheng
Wayne State University Dissertations
Cantilever structures have been widely used in a large variety of transducer applications. For cantilever based transducers, piezoresistive/piezoelectric mechanisms has always been a popular choice due to the advantages of being low cost, simple structure and portability. However, low sensitivity is recognized as a major disadvantage of these transducers compared with optical based measurement. In this research, a gapped cantilever structure is proposed to potentially increase the sensitivity by orders of magnitude. In order to guide the design, an advanced analytical model is developed, and the increased strain sensitivity is theoretically demonstrated. In addition, optimizations with this model interestingly reveal …
Low Loss Vhf And Uhf Filters For Wireless Communications Based On Piezoelectrically-Transduced Micromechanical Resonators, Julio Mario Dewdney
Low Loss Vhf And Uhf Filters For Wireless Communications Based On Piezoelectrically-Transduced Micromechanical Resonators, Julio Mario Dewdney
USF Tampa Graduate Theses and Dissertations
For the past decade, a great deal of research has been focused towards developing a viable on-chip solution to replace the current state-of-the-art VHF and UHF filters based on SAW and FBAR technologies. Although filters based on SAW and FBAR devices are capable of fulfilling the basic requirements needed for IF and RF bandpass filtering and reference signal generation, an alternative solution that can enable the next generation of multi-frequency and multi-mode transceivers while enabling size and price reduction by allowing the manufacturing of single-chip monolithic RF transceivers is highly desired. In response to these new needs, piezoelectrically-transduced micromechanical filters …
Model And Validation Of Static And Dynamic Behavior Of Passive Diamagnetic Levitation For Energy Harvesting, Chamila Shyamalee Siyambalapitiya
Model And Validation Of Static And Dynamic Behavior Of Passive Diamagnetic Levitation For Energy Harvesting, Chamila Shyamalee Siyambalapitiya
USF Tampa Graduate Theses and Dissertations
This dissertation reports the investigation conducted on the static and dynamic behavior of the passive diamagnetic levitation systems.
Attachment of a device to a substrate hinders the optimum performance ability of vibrating devices by altering the dynamic behavior of the moving part whilst introducing higher overall stiffness. The significance of this effect is prominent especially in vibration based energy harvesters as higher stiffness elevates the resonance frequency of the system, making it difficult to tune into ambient low frequencies. Other advantages of the proposed method are given by the removal of mechanical bending elements, which are often the source of …
Investigation Of Instabilities Affecting Detonations: Improving The Resolution Using Block-Structured Adaptive Mesh Refinement, Prashaanth Ravindran
Investigation Of Instabilities Affecting Detonations: Improving The Resolution Using Block-Structured Adaptive Mesh Refinement, Prashaanth Ravindran
Mechanical and Aerospace Engineering Dissertations - Archive
The unstable nature of detonation waves is a result of the critical relationship between the hydrodynamic shock and the chemical reactions sustaining the shock. A perturbative analysis of the critical point is quite challenging due to the multiple spatio-temporal scales involved along with the non-linear nature of the shock-reaction mechanism. The author's research attempts to provide detailed resolution of the instabilities at the shock front. Another key aspect of the present research is to develop an understanding of the causality between the non-linear dynamics of the front and the eventual breakdown of the sub-structures. An accurate numerical simulation of detonation …
Computational Investigation Of Ethanol And Bifuel Feasibility In Solstice Engine, Adam Michael Blake
Computational Investigation Of Ethanol And Bifuel Feasibility In Solstice Engine, Adam Michael Blake
Browse all Theses and Dissertations
A Gasoline Direct Injection (GDI) engine enables an increased fuel efficiency and higher power output than a conventional Port Fuel Injection (PFI) system. By injecting pressurized fuel straight into each cylinder of an internal-combustion engine, the degree of fuel atomization is increased, as well as the fuel vaporization rate. In order to further harness the effects of direct injection, ethanol is implemented as a fuel. The cooling effect of ethanol fuel droplets changing to vapor inside the combustion chamber facilitates a higher compression ratio, thus increasing engine power and efficiency. Three dimensional computational simulation is used to investigate the feasibility …
Characterization Of Dynamic And Static Mechanical Behavior Of Polyetherimide, Nathan J. Mutter
Characterization Of Dynamic And Static Mechanical Behavior Of Polyetherimide, Nathan J. Mutter
Electronic Theses and Dissertations
Polymers are increasingly being used in engineering designs due to their favorable mechanical properties such as high specific strength, corrosive resistance, manufacturing flexibility. The understanding of the mechanical behavior of these polymers under both static and dynamic loading is critical for their optimal implementation in engineering applications. One such polymer utilized in a wide variety of applications from medical instrumentation to munitions is Polyetherimide, referred to as Ultem. This thesis characterizes both the static and dynamic mechanical behavior of Ultem 1000 through experimental methods and numerical simulations. Standard compression experiments were conducted on and MTS test frame to characterize the …
Development And Validation Of Probabilistic Fatigue Models Containing Out-Life Suspensions, Noel S. Murray
Development And Validation Of Probabilistic Fatigue Models Containing Out-Life Suspensions, Noel S. Murray
College of Graduate Studies: Theses & Dissertations
Author's abstract: In the area of reliability engineering it is necessary to be confident that a component or system of components will not fail under use for safety and cost reasons. One major mechanism of failure to a mechanical component is fatigue. This is the repetitious motion of loading and unloading of the material, typically below the ultimate tensile strength of the material, which ultimately leads to a catastrophic failure. To ensure this does not happen, engineers design components based on tests to determine the life of these components. These tests are typically conducted on a bench type tester in …
Electronic Musical Instrument To Generate Musical Tones To Imitate A Stringed Instrument, M. Nakagawa, Shun Takai, Shun Takai
Electronic Musical Instrument To Generate Musical Tones To Imitate A Stringed Instrument, M. Nakagawa, Shun Takai, Shun Takai
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Provided are an electronic musical instrument, computer Storage device, and method for generating tone. A sound source in an electronic musical instrument generates a first tone at a first pitch in response to a first tone generation instruction received by an input device of the electronic musical instrument. A second tone generation instruction is received to generate a second tone at a second pitch while generating the first tone at the sound source. A determination is made of a pitch difference of the first and the second pitches. The sound source is controlled to generate the second tone and to …
Adjusting A Level At Which To Generate A New Tone With A Current Generated Tone, M. Nakagawa, Shun Takai
Adjusting A Level At Which To Generate A New Tone With A Current Generated Tone, M. Nakagawa, Shun Takai
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Provided are a tone control device and a method for adjusting a volume level at which to generate a new tone and at least one current tone according to a target volume level and a current volume level. A note-on event associated with a received volume level is received from an input device. A current volume level is processed to determine a new volume level in response to receiving the note-on event while generating at least one current tone at the current volume level. The at least one current tone and a new tone associated with the received note-on event …
Electronic Musical Instrument, M. Nakagawa, Shun Takai
Electronic Musical Instrument, M. Nakagawa, Shun Takai
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Provided are an electronic musical instrument, computer storage device, and method generating tones for held notes. Indication is made of held notes having pitches as held in response to receiving note-on information for the held notes from an input device of an electronic musical instrument while receiving hold information from a hold device of the electronic musical instrument. Note-on information is received for a received note having a pitch while generating the pitches for the held notes. Selection is made of one of the held notes to release according to a first selection criteria in response to determining that the …
Design Of Metallic Bipolar Plates For Pem Fuel Cells, Sriram Praneeth Isanaka, Austin Das, Frank W. Liou
Design Of Metallic Bipolar Plates For Pem Fuel Cells, Sriram Praneeth Isanaka, Austin Das, Frank W. Liou
Mechanical and Aerospace Engineering Faculty Research & Creative Works
This project focused on the design and production of metallic bipolar plates for use in PEM fuel cells. Different metals were explored and stainless steel was found out to be best suited to our purpose. Following the selection of metal, it was calculated that to produce 0.7 W of power, the bipolar plate should have an active surface of 25cm2. The bipolar plates were designed with different flow field patterns and manufactured. Different flow field patterns that were used were the straight design, serpentine, multiple serpentine, pintype, interdigitated design and other custom designs. These plates were then assembled along with …
Improving The Efficiency Of Turbocharged Spark Ignition Engines For Passenger Cars Through Waste Heat Recovery, Alberto A. Boretti
Improving The Efficiency Of Turbocharged Spark Ignition Engines For Passenger Cars Through Waste Heat Recovery, Alberto A. Boretti
Mechanical and Aerospace Engineering Faculty Research & Creative Works
The turbocharged direct injection stoichiometric spark ignition gasoline engine has less than Diesel full load brake engine thermal efficiencies and much larger than Diesel penalties in brake engine thermal efficiencies reducing the load by throttling. This engine has however a much better power density, and therefore may operate at much higher BMEP values over driving cycles reducing the fuel economy penalty of the vehicle. This engine also has the advantage of the very well developed three-way catalytic converter after treatment to meet future emission regulations. in these engines the efficiency may be improved recovering the waste heat, but this recovery …
Kers Braking For 2014 F1 Cars, Alberto A. Boretti
Kers Braking For 2014 F1 Cars, Alberto A. Boretti
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Small, high power density turbocharged engines coupled to kinetic energy recovery systems are one of the key areas of development for both passenger and racing cars. in passenger cars, the KERS may reduce the amount of thermal energy needed to reaccelerate the car following a deceleration recovering part of the braking energy. This translates in a first, significant fuel energy saving. Also considering the KERS torque boost increasing the total torque available to accelerate the car, large engines working at very low brake mean effective pressures and efficiencies over driving cycles may also be replaced by small higher power density …
Simulation And Testing Of Polymer Electrolyte Membrane Fuel Cell Bipolar Plates Fabricated By Selective Laser Sintering, M. Wu, Ming-Chuan Leu, N. Guo
Simulation And Testing Of Polymer Electrolyte Membrane Fuel Cell Bipolar Plates Fabricated By Selective Laser Sintering, M. Wu, Ming-Chuan Leu, N. Guo
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Polymer Electrolyte Membrane (PEM) fuel cell converts directly electrochemical energy into electricity. Flow channels in bipolar plates, a critical component of fuel cell, were designed, simulated and tested. the bipolar plate used a mixture of graphite materials and was fabricated using a Selective Laser Sintering (SLS) process. the fabricated green parts were carbonized at high temperatures and converted into brown parts. Infiltration of resin was used to enhance the electric conductivity and strength of the bipolar plate. Finite element simulations were performed to investigate the state of species (hydrogen, oxygen) in the channels and Gas Diffusion Layers (GDLs) for four …
Dynamic Characterization Of Vocal Fold Virbrations, Zhenyi Wei
Dynamic Characterization Of Vocal Fold Virbrations, Zhenyi Wei
LSU Doctoral Dissertations
An emerging trend among voice specialists is the use of quantitative protocols for the diagnosis and treatment of voice disorders. Vocal fold vibrations are directly related to voice quality. This research is devoted to providing an objective means of characterizing these vibrations. Our goal is to develop a dynamic model of vocal fold vibration, and map the parameter space of the model to a class of voice disorders; thus, furthering the assessment and diagnosis of voice disorder in clinical settings.
To this end, this dissertation introduces a new seven-mass biomechanical model for the vibration of vocal folds. The model is …
Numerical Simulation Of Natural Convection In Rectangular Enclosures Of Varying Aspect Ratios And Its Feasibility In Environmental Impact Management Studies, Charles R. Walker
Numerical Simulation Of Natural Convection In Rectangular Enclosures Of Varying Aspect Ratios And Its Feasibility In Environmental Impact Management Studies, Charles R. Walker
College of Graduate Studies: Theses & Dissertations
Author's abstract: Numerical simulation was used to investigate natural convection in horizontal and vertical enclosures with and without an internal heat source. Natural convection in rectangular enclosures is found in many real-world applications. Included in these applications are the energy efficient design of buildings, operation and safety of nuclear reactors, solar collector design, passive energy storage, heat transfer across multi-pane windows, thermo-electric refrigeration and heating devices, and the design-for-mitigation of optical distortion in large-scale laser systems. Considering all these applications, especially controlling heat transfer in nuclear power plants, knowledge and research results of natural convection in enclosure play a vital …
Macro And Microfluidic Flows For Skeletal Regenerative Medicine, Brandon D. Riehl, Jung Yul Lim
Macro And Microfluidic Flows For Skeletal Regenerative Medicine, Brandon D. Riehl, Jung Yul Lim
Department of Mechanical and Materials Engineering: Faculty Publications
Fluid flow has a great potential as a cell stimulatory tool for skeletal regenerative medicine, because fluid flow-induced bone cell mechanotransduction in vivo plays a critical role in maintaining healthy bone homeostasis. Applications of fluid flow for skeletal regenerative medicine are reviewed at macro and microscale. Macroflow in two dimensions (2D), in which flow velocity varies along the normal direction to the flow, has explored molecular mechanisms of bone forming cell mechanotransduction responsible for flow-regulated differentiation, mineralized matrix deposition, and stem cell osteogenesis. Though 2D flow set-ups are useful for mechanistic studies due to easiness in in situ and post-flow …
Shear-Horizontal Vibration Modes Of An Oblate Elliptical Cylinder And Energy Trapping In Contoured Acoustic Wave Resonators, Huijing He, Jiashi Yang, John A. Kosinski
Shear-Horizontal Vibration Modes Of An Oblate Elliptical Cylinder And Energy Trapping In Contoured Acoustic Wave Resonators, Huijing He, Jiashi Yang, John A. Kosinski
Department of Mechanical and Materials Engineering: Faculty Publications
We study shear-horizontal free vibrations of an elastic cylinder with an oblate elliptical cross section and a traction-free surface. Exact vibration modes and frequencies are obtained. The results show the existence of thickness-shear and thickness-twist modes. The energy-trapping behavior of these modes is examined. Trapped modes are found wherein the vibration energy is largely confined to the central portion of the cross section and little vibration energy is found at the edges. It is also shown that face-shear modes are not allowed in such a cylinder. The results are useful for the understanding of the energy trapping phenomenon in contoured …
Simulation Of Heat/Mass Transfer Of A Three-Layer Impingement/Effusion Cooling System, Brandon Smith
Simulation Of Heat/Mass Transfer Of A Three-Layer Impingement/Effusion Cooling System, Brandon Smith
Electronic Theses and Dissertations
Cooling techniques for high density electrical components and electronic devices have been studied heavily in recent years. The advancements in the electrical/electronic industry have required methods of high heat flux removal. Many of the current electrical components and electronic devices produce a range of heat fluxes from 20 W/cm2 – 100 W/cm2 . While parallel flow cooling systems have been used in the past, jet impingement is now more desirable for its potential to have a heat transfer coefficient 3-5 times greater than that of parallel flow at the same flow rate. Problems do arise when the jet impingement is …
Re, Os, Al And Mg Boron Rich Ceramic Compounds For Structural Application, Zhilin Xie
Re, Os, Al And Mg Boron Rich Ceramic Compounds For Structural Application, Zhilin Xie
Electronic Theses and Dissertations
Hard and ultra-incompressible materials are of great interest due to their important applications in industry. A common route to design hard materials is combining transition metals with light and small covalent elements. Light elements such as carbon, oxygen, nitrogen and boron have been considered as good candidates. This study includes the synthesis of ReB2, OsB2 and another higher boride AlMgB14. Most of the techniques used for ReB2 synthesis reported 1:2.5 Re to B ratio because of the loss of the B during high temperature synthesis. However, as a result of B excess, the amorphous boron, located along the grain boundaries …
Negative Effective Mass Density Of Acoustic Metamaterial Using Dual-Resonator Spring-Mass Model, Kwek Tze Tan, H. H. Huang, C. T. Sun
Negative Effective Mass Density Of Acoustic Metamaterial Using Dual-Resonator Spring-Mass Model, Kwek Tze Tan, H. H. Huang, C. T. Sun
Mechanical Engineering Faculty Research
In this paper, we propose an acoustic metamaterial with a microstructure consisting of two internal resonators. The performance of this dual-resonator metamaterial is compared to the original singleresonator metamaterial. Analytical findings show that the dual-resonator metamaterial exhibits its negative effective mass density over a larger frequency spectrum, particularly at two distinctively asymptotic regions. The wave propagation phenomenon in the metamaterial is investigated using finite element simulation. Computational results reveal that the dual-resonator metamaterial is capable of attenuating wave propagation in a larger operating frequency. Practical applications like vibration control and blast mitigation are demonstrated and discussed.
Validation Of Delamination Reduction Trend For Stitched Composites Using Quasi-Static Indentation Test, Kwek Tze Tan, N. Watanabe, A. Yoshimura, Y. Iwahori
Validation Of Delamination Reduction Trend For Stitched Composites Using Quasi-Static Indentation Test, Kwek Tze Tan, N. Watanabe, A. Yoshimura, Y. Iwahori
Mechanical Engineering Faculty Research
A novel empirical-based Delamination Reduction Trend (DRT) for stitched composites has been recently proposed. The DRT is capable of predicting the effective reduction in impact induced delamination area due to the influence of stitching. DRT simply relates two parameters: normalized delamination area and stitch fibre volume fraction, to characterize the effectiveness of stitching in impact damage suppression. This paper seeks to validate the DRT by using quasi-static indentation (QSI) test, which is considered analogous to low velocity impact test, due to similar structural response. Results from QSI test show good agreement with DRT. Furthermore, limitations in DRT have been established.
Process Completing Sequences For Resource Allocation Systems With Synchronization, Song Foh Chew, Shengyong Wang
Process Completing Sequences For Resource Allocation Systems With Synchronization, Song Foh Chew, Shengyong Wang
Mechanical Engineering Faculty Research
This paper considers the problem of establishing live resource allocation in workflows with synchronization stages. Establishing live resource allocation in this class of systems is challenging since deciding whether a given level of resource capacities is sufficient to complete a single process is NP-complete. In this paper, we develop two necessary conditions and one sufficient condition that provide quickly computable tests for the existence of process completing sequences. The necessary conditions are based on the sequence of completions of � subprocesses that merge together at a synchronization. Although the worst case complexity is O(2�), we expect the number of subprocesses …
Energy Recovery In Passenger Cars, Alberto A. Boretti
Energy Recovery In Passenger Cars, Alberto A. Boretti
Mechanical and Aerospace Engineering Faculty Research & Creative Works
The turbocharged direct injection stoichiometric spark ignition gasoline engine has less than diesel full load brake engine thermal efficiencies and much larger than diesel penalties in brake engine thermal efficiencies reducing the load. This engine has, however, a much better power density, and therefore may operate at much higher brake mean effective pressure (BMEP) values over driving cycles thus reducing the fuel economy penalty of the vehicle. This engine also has the advantage of the very well developed three-way catalytic (TWC) converter after treatment to meet future emission regulations. Replacement of fossil gasoline with renewable gasoline-like fuels has major advantages. …
An Integrated Framework For Configurable Product Assortment Planning, Seyed Ali Taghavi Behbahani
An Integrated Framework For Configurable Product Assortment Planning, Seyed Ali Taghavi Behbahani
Wayne State University Dissertations
A manufacturer's assortment is the set of products or product configurations that the company builds and offers to its customers. While the literature on assortment planning is growing in recent years, it is primarily aimed at non-durable retail and grocery products. In this study, we develop an integrated framework for strategic assortment planning of configurable products, with a focus on the highly complex automotive industry. The facts that automobiles are highly configurable (with the number of buildable configurations running into thousands, tens of thousands, and even millions) with relatively low sales volumes and the stock-out rates at individual dealerships (even …
A Front Tracking Model Of The Maxus-8 Microgravity Solidification Experiment On A Ti-45.5at.% Al-8at.%Nb Alloy, Robin Mooney, Shaun Mcfadden, Marek Rebow, David J. Browne
A Front Tracking Model Of The Maxus-8 Microgravity Solidification Experiment On A Ti-45.5at.% Al-8at.%Nb Alloy, Robin Mooney, Shaun Mcfadden, Marek Rebow, David J. Browne
Articles
On 26th March 2010 the MAXUS-8 sounding rocket was launched from the Esrange Space Center in Sweden. As part of the Intermetallic Materials Processing in Relation to Earth and Space Solidification (IMPRESS) project, a solidification experiment was conducted on a Ti-45.5at.%Al-8at.%Nb intermetallic alloy in a module on this rocket. The experiment was designed to investigate columnar and equiaxed microstructures in the alloy. A furnace model of the MAXUS 8 experiment with a Front Tracking Model of solidification has been developed to determine the macrostructure and thermal history of the samples in the experiment. This paper gives details of results of …