Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Materials Science and Engineering (377)
- Energy Systems (340)
- Physical Sciences and Mathematics (326)
- Environmental Sciences (244)
- Structural Materials (243)
-
- Sustainability (231)
- Oil, Gas, and Energy (229)
- Mining Engineering (228)
- Environmental Monitoring (225)
- Environmental Indicators and Impact Assessment (224)
- Manufacturing (154)
- Other Mechanical Engineering (149)
- Aerospace Engineering (137)
- Engineering Science and Materials (119)
- Electrical and Computer Engineering (89)
- Nanoscience and Nanotechnology (79)
- Mechanics of Materials (70)
- Civil and Environmental Engineering (66)
- Computer-Aided Engineering and Design (63)
- Other Engineering Science and Materials (61)
- Electro-Mechanical Systems (56)
- Heat Transfer, Combustion (56)
- Ocean Engineering (55)
- Acoustics, Dynamics, and Controls (54)
- Applied Mechanics (53)
- Chemical Engineering (53)
- Biomechanical Engineering (49)
- Biomedical Engineering and Bioengineering (43)
- Institution
-
- University of Kentucky (257)
- Missouri University of Science and Technology (99)
- University of Nebraska - Lincoln (87)
- California Polytechnic State University, San Luis Obispo (69)
- Michigan Technological University (59)
-
- Brigham Young University (53)
- University of Texas Rio Grande Valley (51)
- University of Texas at Arlington (46)
- University of Central Florida (43)
- Washington University in St. Louis (41)
- University of South Carolina (40)
- University of Alabama at Birmingham (36)
- West Virginia University (30)
- The University of Akron (26)
- Florida Institute of Technology (25)
- Wright State University (25)
- Central Washington University (22)
- Georgia Southern University (22)
- University of Arkansas, Fayetteville (22)
- Old Dominion University (21)
- Universitas Indonesia (21)
- University of Texas at El Paso (21)
- Portland State University (18)
- University of Nevada, Las Vegas (18)
- Purdue University (17)
- Utah State University (17)
- Santa Clara University (16)
- Marquette University (15)
- Technological University Dublin (15)
- City University of New York (CUNY) (14)
- Keyword
-
- Engineering (53)
- ASME (40)
- Conference (36)
- ECTC (36)
- Proceedings (36)
-
- Mechanical Engineering (34)
- Additive manufacturing (31)
- 3D printing (16)
- CFD (16)
- Additive Manufacturing (15)
- Department of Mechanical and Materials Engineering (14)
- Design (14)
- Optimization (14)
- Robotics (14)
- Simulation (13)
- Manufacturing (12)
- Composite (11)
- Department of Mechanical Engineering-Engineering Mechanics (11)
- Heat transfer (11)
- Energy (10)
- Georgia Southern University (10)
- Mechanical Engineering News (10)
- Composites (9)
- Modeling (9)
- Molecular dynamics (9)
- Combustion (8)
- Efficiency (8)
- Heat Transfer (8)
- Biomechanics (7)
- Characterization (7)
- Publication
-
- World of Coal Ash Proceedings (224)
- Theses and Dissertations (109)
- Department of Mechanical and Materials Engineering: Faculty Publications (60)
- Mechanical and Aerospace Engineering Faculty Research & Creative Works (58)
- Electronic Theses and Dissertations (57)
-
- Mechanical Engineering (46)
- Mechanical Engineering Faculty Publications (37)
- Early Career Technical Journal (ECTJ) (36)
- Faculty Publications (33)
- Dissertations, Master's Theses and Master's Reports (31)
- Mechanical and Aerospace Engineering Theses - Archive (27)
- Williams Honors College, Honors Research Projects (26)
- Mechanical Engineering Design Project Class (24)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (22)
- Master's Theses (22)
- All Undergraduate Projects (21)
- Makara Journal of Technology (21)
- Open Access Theses & Dissertations (21)
- Mechanical and Aerospace Engineering Dissertations - Archive (19)
- Doctoral Dissertations (18)
- Masters Theses (16)
- Nebraska Tractor Tests (16)
- Browse all Theses and Dissertations (14)
- Dissertations and Theses (14)
- Theses and Dissertations--Mechanical and Aerospace Engineering (14)
- Mechanical & Aerospace Engineering Theses & Dissertations (13)
- Mechanical Engineering ETDs (13)
- Mechanical Engineering Faculty Research and Publications (13)
- Journal of Mechanical Engineering Science and Technology (JMEST) (12)
- Mechanical Engineering Undergraduate Honors Theses (11)
- Publication Type
- File Type
Articles 931 - 960 of 1647
Full-Text Articles in Mechanical Engineering
The Influence Of Complex Thermal Treatment On Mechanical Properties Of Amorphous Materials, Nikolai V. Priezjev, Qing-Long Liu
The Influence Of Complex Thermal Treatment On Mechanical Properties Of Amorphous Materials, Nikolai V. Priezjev, Qing-Long Liu
Mechanical and Materials Engineering Faculty Publications
We study the effect of periodic, spatially uniform temperature variation on mechanical properties and structural relaxation of amorphous alloys using molecular dynamics simulations. The disordered material is modeled via a non-additive binary mixture, which is annealed from the liquid to the glassy state with various cooling rates and then either aged at constant temperature or subjected to thermal treatment. We found that in comparison to aged samples, thermal cycling with respect to a reference temperature of approximately half the glass transition temperature leads to more relaxed states with lower levels of potential energy. The largest energy decrease was observed for …
Detection And Classification Of Vibrating Objects In Sar Images, Francisco German Perez Venegas
Detection And Classification Of Vibrating Objects In Sar Images, Francisco German Perez Venegas
Electrical and Computer Engineering ETDs
The vibratory response of buildings and machines contains key information that can be exploited to infer their operating conditions and to diagnose failures. Furthermore, since vibration signatures observed from the exterior surfaces of structures are intrinsically linked to the type of machinery operating inside of them, the ability to monitor vibrations remotely can enable the detection and identification of the machinery.
This dissertation focuses on developing novel techniques for the detection and M-ary classification of vibrating objects in SAR images. The work performed in this dissertation is conducted around three central claims. First, the non-linear transformation that the micro-Doppler return …
A Transient Thermal And Structural Analysis Of Fuel In The Annular Core Research Reactor, Elliott Pelfrey
A Transient Thermal And Structural Analysis Of Fuel In The Annular Core Research Reactor, Elliott Pelfrey
Mechanical Engineering ETDs
The health of a nuclear reactor’s fuel is essential to the operational longevity of the reactor. The health of the fuel in the Annular Core Research Reactor (ACRR) is a topic of increased interest due to both a proposed new facility that would include the ACRR and the recent resurfacing of contradictory reports regarding thermal stresses in its fuel pellets. Unlike other reactor fuels, which are widely used and well-characterized, the fuel in the ACRR is unique. The ACRR’s fuel elements consist of UO2-BeO fuel pellets, fluted niobium refractory liners, and stainless-steel cladding. The purpose of this thesis …
Water Walking As A New Mode Of Free Surface Skipping, Randy Craig Hurd, Jesse Belden, Allan F. Bower, Sean Holekamp, Michael A. Jandron, Tadd T. Truscott
Water Walking As A New Mode Of Free Surface Skipping, Randy Craig Hurd, Jesse Belden, Allan F. Bower, Sean Holekamp, Michael A. Jandron, Tadd T. Truscott
Mechanical and Aerospace Engineering Faculty Publications
Deformable elastomeric spheres are evaluated experimentally as they skip multiple times over a lake surface. Some spheres are embedded with small inertial measurement units to measure the acceleration experienced during water surface impact. A model for multiple impact events shows good agreement between measured acceleration, number of skipping events and distanced traveled. The experiment reveals a new mode of skipping, “water walking”, which is observed for relatively soft spheres impacting at low impact angles. The mode occurs when the sphere gains significant angular velocity over the first several impacts, causing the sphere to maintain a deformed, oblong shape. The behavior …
Experimental Study Of Scour Around Monopile And Jacket-Type Offshore Wind Turbine Foundations, Hsin-Hung Chen
Experimental Study Of Scour Around Monopile And Jacket-Type Offshore Wind Turbine Foundations, Hsin-Hung Chen
Journal of Marine Science and Technology–Taiwan
Wind turbines platforms and pillars on offshore wind farms are negatively affected by wave and current action. In Taiwan, the water depth of most planned wind turbine foundations is more than 15 m. At this water depth, scour around offshore wind turbine foundations is mainly subject to the ocean current, which causes damage or collapse of foundations. Therefore, this study focused on the influence of ocean current on the monopile and jacket-type foundations of offshore wind turbines. Hydraulic model experiments were conducted to investigate the maximum scour depth and range around pillars in these foundations. Under the effects of current, …
Direct Numerical Simulation Of Incompressible Spatially Developing Turbulent Mixing Layers, Juan Diego Colmenares Fernandez
Direct Numerical Simulation Of Incompressible Spatially Developing Turbulent Mixing Layers, Juan Diego Colmenares Fernandez
Mechanical Engineering ETDs
Turbulent mixing layers are a canonical free shear flow in which two parallel fluid streams of different velocities mix at their interface. Understanding spatial development of a turbulent mixing layer is essential for various engineering applications. However, multiple factors affect physics of this flow, making it difficult to reproduce results in experiments and simulations. The current study investigates sensitivity of direct numerical simulation (DNS) of such a flow to computational parameters. In particular, effects of the computational domain dimensions, grid refinement, thickness of the splitter plate, and the laminar boundary layer characteristics at the splitter plate trailing edge are considered. …
Restore-L Satellite Servicing Internship Final Report, Giovanni Campos
Restore-L Satellite Servicing Internship Final Report, Giovanni Campos
Publications and Research
This paper reviews the Restore-L mission purpose and the necessary research and simulations to meet mission specification for the Propellant Transfer Subsystem (PTS). It is essential the PTS undergoes functionality testing, environmental testing, and calculations to understand the capabilities of the system. For the testing of components from PTS, a proper test setup is required. It is vital for test hardware, such as hoses and valves, to stay in place while the test is being performed. For the test hardware to operate correctly, positioning, orientation, and alignment are critical as well. In addition to the testing, calculations for pressure drop …
Vibration-Based In-Situ Detection And Quantification Of Delamination In Composite Plates, Hanfei Mei, Asaad Migot, Mohammad Faisal Haider, Roshan Joseph, Md Yeasin Bhuiyan, Victor Giurgiutiu
Vibration-Based In-Situ Detection And Quantification Of Delamination In Composite Plates, Hanfei Mei, Asaad Migot, Mohammad Faisal Haider, Roshan Joseph, Md Yeasin Bhuiyan, Victor Giurgiutiu
Faculty Publications
This paper presents a new methodology for detecting and quantifying delamination in composite plates based on the high-frequency local vibration under the excitation of piezoelectric wafer active sensors. Finite-element-method-based numerical simulations and experimental measurements were performed to quantify the size, shape, and depth of the delaminations. Two composite plates with purpose-built delaminations of different sizes and depths were analyzed. In the experiments, ultrasonic C-scan was applied to visualize the simulated delaminations. In this methodology, piezoelectric wafer active sensors were used for the high-frequency excitation with a linear sine wave chirp from 1 to 500 kHz and a scanning laser Doppler …
Mechanical And Tribological Behaviour Of Treated And Untreated Moringa Oleifera Pods Fiber Reinforced Epoxy Polymer Composite For Packaging Applications, Prakash Sampath, Senthil Kumar V.S Dr
Mechanical And Tribological Behaviour Of Treated And Untreated Moringa Oleifera Pods Fiber Reinforced Epoxy Polymer Composite For Packaging Applications, Prakash Sampath, Senthil Kumar V.S Dr
Journal of Applied Packaging Research
Researchers now focus on the use of natural fiber polymer composites materials for packing applications. This attention is due to their low cost and renewable characteristics. Fabrication of composites with the use of renewable resources has many benefits of alternating from an appropriate management and reduction in industrial wastages, ecofriendly behaviour to cost effectiveness. The artificial fibers in packing industries can be replaced by natural fibers in the areas where stiffness and high strength are not the primary requirement. In the last decade the use of Natural fibers in the place of artificial fibers for reinforcements in epoxy resin matrix …
Development And Validation Of A Vibration-Based Sound Power Measurement Method, Cameron Bennion Jones
Development And Validation Of A Vibration-Based Sound Power Measurement Method, Cameron Bennion Jones
Theses and Dissertations
The International Organization for Standardization (ISO) provides no vibration-based sound power measurement standard that provides Precision (Grade 1) results. Current standards that provide Precision (Grade 1) results require known acoustic environments or complex setups. This thesis details the Vibration Based Radiation Mode (VBRM) method as one approach that could potentially be used to develop a Precision (Grade 1) standard. The VBRM method uses measured surface velocities of a structure and combines them with the radiation resistance matrix to calculate sound power. In this thesis the VBRM method is used to measure the sound power of a single-plate and multiple plate …
The Influence Of Process Variables On Physical And Mechanical Properties In Laser Powder Bed Fusion, Joshua Robert Koepke, Bradley Jared, Yu-Lin Shen
The Influence Of Process Variables On Physical And Mechanical Properties In Laser Powder Bed Fusion, Joshua Robert Koepke, Bradley Jared, Yu-Lin Shen
Mechanical Engineering ETDs
Laser powder bed fusion additive manufacturing consists of a process that incorporates many process variables into fabricating parts. This study investigated several of these process variables and determined their influence on part properties. The process variables investigated include laser power, velocity, focus offsets, layer thickness, and powder particle size. Physical properties will be compared including surface roughness, form, and density. Tensile testing provided mechanical properties including unloading Young’s modulus, ultimate tensile strength, yield strength, uniform elongation, and ductility. Process maps will be developed that will provide recommendations for these process settings. It will be shown that these laser settings can …
Physical Constraints On Accuracy And Persistence During Breast Cancer Cell Chemotaxis, Julien Varennes, Hye-Ran Moon, Soutick Saha, Andrew Mugler, Bumsoo Han
Physical Constraints On Accuracy And Persistence During Breast Cancer Cell Chemotaxis, Julien Varennes, Hye-Ran Moon, Soutick Saha, Andrew Mugler, Bumsoo Han
Purdue University Libraries Open Access Publishing Fund
Directed cell motion in response to an external chemical gradient occurs in many biological phenomena such as wound healing, angiogenesis, and cancer metastasis. Chemotaxis is often characterized by the accuracy, persistence, and speed of cell motion, but whether any of these quantities is physically constrained by the others is poorly understood. Using a combination of theory, simulations, and 3D chemotaxis assays on single metastatic breast cancer cells, we investigate the links among these different aspects of chemotactic performance. In particular, we observe in both experiments and simulations that the chemotactic accuracy, but not the persistence or speed, increases with the …
Biomechanical Foot Guidance Linkage, Carl Nelson, Cale J. Stolle, Judith M. Burnfield
Biomechanical Foot Guidance Linkage, Carl Nelson, Cale J. Stolle, Judith M. Burnfield
Department of Mechanical and Materials Engineering: Faculty Publications
A gait replication apparatus can include a scalable mechanical mechanism configured to replicate different gaits . The scalable mechanical mechanism can include , for example , a four - bar linkage , a pantograph , a cam / Scotch - yoke mechanism , and so forth . In some embodiments , the mechanical mechanism includes a beam rotating about an axis passing proximate to its center , with a foot pedal slidably coupled with the beam , and a timing chain / belt or cable pulley - pair coupled with the foot pedal and looped about the beam . A …
Gaussian Process Regression Applied To Marine Energy Turbulent Source Tuning Via Metamodel Machine Learning Optimization, Sterling Olson
Gaussian Process Regression Applied To Marine Energy Turbulent Source Tuning Via Metamodel Machine Learning Optimization, Sterling Olson
Mechanical Engineering ETDs
Converting energy from the currents found within tidal channels, open ocean, rivers, and canals is a promising yet untapped source of renewable energy. In order to permit current energy converters for installation in the environment, the CECs must be shown to non-negatively impact the environment. While developing these model increased utility may be gained if researchers may optimize mechanical power while constraining environmental effects. Surrogate models have garnered interest as optimization tools because they maximize the utility of expensive information by building predictive models in place of computational or experimentally expensive model runs. Marine hydrokinetic current energy converters require large-domain …
A Discrete Curvature Estimation Based Low-Distortion Adaptive Savitzky-Golay Filter For Ecg Denoising, Hui Huang, Shiyan Hu, Ye Sun
A Discrete Curvature Estimation Based Low-Distortion Adaptive Savitzky-Golay Filter For Ecg Denoising, Hui Huang, Shiyan Hu, Ye Sun
Department of Mechanical and Aerospace Engineering Publications
Electrocardiogram (ECG) sensing is an important application for the diagnosis of cardiovascular diseases. Recently, driven by the emerging technology of wearable electronics, massive wearable ECG sensors are developed, which however brings additional sources of noise contamination on ECG signals from these wearable ECG sensors. In this paper, we propose a new low-distortion adaptive Savitzky-Golay (LDASG) filtering method for ECG denoising based on discrete curvature estimation, which demonstrates better performance than the state of the art of ECG denoising. The standard Savitzky-Golay (SG) filter has a remarkable performance of data smoothing. However, it lacks adaptability to signal variations and thus often …
Enhanced Carbon Dioxide Electrolysis At Redox Manipulated Interfaces, Wenyuan Wang, Lizhen Gan, John P. Lemmon, Fanglin Chen, John T. S. Irvine, Kui Xie
Enhanced Carbon Dioxide Electrolysis At Redox Manipulated Interfaces, Wenyuan Wang, Lizhen Gan, John P. Lemmon, Fanglin Chen, John T. S. Irvine, Kui Xie
Faculty Publications
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global carbon dioxide emissions. Solid oxide electrolysis is a highly efficient, high temperature approach that reduces polarization losses and best utilizes process heat; however, the technology is relatively unrefined for currently carbon dioxide electrolysis. In most electrochemical systems, the interface between active components are usually of great importance in determining the performance and lifetime of any energy materials application. Here we report a generic approach of interface engineering to achieve active interfaces at nanoscale by a synergistic control of materials functions and interface architectures. We show that the …
Synthesis And Characterization Of Molybdenum Disulfide/Conducting Polymer Nanocomposite Materials For Supercapacitor Applications, Turki S. Alamro
Synthesis And Characterization Of Molybdenum Disulfide/Conducting Polymer Nanocomposite Materials For Supercapacitor Applications, Turki S. Alamro
USF Tampa Graduate Theses and Dissertations
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanocomposite materials. Storing energy efficiently, effectively and sustainably are the science and engineering communities’ highest priorities to develop electrochemical energy storage devices. Supercapacitors have become power solution not only because supercapacitors can bridge the gap between the traditional capacitors and rechargeable batteries but also because of many other advantages which include extraordinary electrochemical properties, wide working-temperature range, cost effective, safe operation and long/stable cycle life. They have higher current pules than batteries due to the mechanism of charging and discharging. Batteries charging and discharging via chemical …
Construction Of High-Performance 3d Nanostructured Flower-Like Iron-Nickel Sulfide For Supercapacitor, Chen Zhao, Sanket Bhoyate, Chunyang Zhang, Ram K. Gupta, Pawan K. Kahol
Construction Of High-Performance 3d Nanostructured Flower-Like Iron-Nickel Sulfide For Supercapacitor, Chen Zhao, Sanket Bhoyate, Chunyang Zhang, Ram K. Gupta, Pawan K. Kahol
Posters
The global energy crisis and environmental pollution have stimulated increasing attention to developing clean and renewable alternative energy sources. One of the most efficient and greenest energy storage devices is supercapacitor which could store energy via electrical double layer and redox reactions. Supercapacitors are widely employed for many portable electronics and hybrid electric vehicles due to their high-power density, fast charge-discharge rate, and good cycle stability. In this work, 3D nanostructured flower-like iron-nickel sulfide was synthesized on the nickel foam using a facile hydrothermal method. The iron-nickel sulfide electrode showed outstanding performance for supercapacitor with a high areal capacitance of …
Nanosheets Of Cuco₂O₄ As A High-Performance Electrocatalyst In Urea Oxidation, Camila Zequine, Ram K. Gupta, Pawan K. Kahol
Nanosheets Of Cuco₂O₄ As A High-Performance Electrocatalyst In Urea Oxidation, Camila Zequine, Ram K. Gupta, Pawan K. Kahol
Posters
The urea oxidation reaction (UOR) is a possible solution to solve the world’s energy crisis. Fuel cells have been used in the UOR to generate hydrogen with a lower potential compared to water splitting, decreasing the costs of energy production. Urea is abundantly present in agricultural waste and in industrial and human wastewater. Besides generating hydrogen, this reaction provides a pathway to eliminate urea, which is a hazard in the environment and to people’s health. In this study, nanosheets of CuCo₂O₄ grown on nickel foam were synthesized as an electrocatalyst for urea oxidation to generate hydrogen as a green fuel. …
Civilian Acquirer For Fire Safety (Cafs), Antara Das, Marcus Allen, Clark Shaver
Civilian Acquirer For Fire Safety (Cafs), Antara Das, Marcus Allen, Clark Shaver
Posters
The department of Electronics Engineering Technology (EET) of Pittsburg State University has designed a prototype of an autonomous rover to help firefighters to find lives trapped in a building during an event of fire. The rover prototype has been named CAFS, which is the abbreviated form for Civilian Acquirer for Fire Safety. This device intends to produce the first ever autonomous system to locate, record, and transmit people’s location from within a building to a user outside of the building. According to the National Fire Protection Association (NFPA), on 2017, 72% of the fire that happened in the USA was …
Extrusion Production Of 3d Printer Filament For Additive Manufacturing, Patrick Hardy, Cole Angermayer, Rhett Lokey, Rebeca Book, Jeanne H. Norton
Extrusion Production Of 3d Printer Filament For Additive Manufacturing, Patrick Hardy, Cole Angermayer, Rhett Lokey, Rebeca Book, Jeanne H. Norton
Posters
Additive manufacturing, also known as 3D printing, is becoming a go-to production method for short production runs and rapid prototyping on a commercial scale. The growth of additive manufacturing is due to many factors including development of concept modeling, product designing, prototyping, and customized parts. Pittsburg State University’s College of Technology strives to stay at the cutting edge of processing materials for additive manufacturing. The capability of making our own 3D-printer filament would allow students to work with new and different materials and would allow students to learn at the forefront of 3D printing technology. The Wayne Yellowjacket Extruder and …
Molybdenum Oxides For Energy Generation And Storage Using Efficient Clean Method, Camila Zequine, Pawan K. Kahol, Ram K. Gupta
Molybdenum Oxides For Energy Generation And Storage Using Efficient Clean Method, Camila Zequine, Pawan K. Kahol, Ram K. Gupta
Posters
To solve the growing energy issues, significant efforts have been focused on the search of earth-abundant elements that can provide multifunctional behavior for both energy generation and storage. Due to the low-cost and rich chemical nature, transition metal oxide nanostructures have been used in the fabrication of energy devices, such as fuel cells and lithium batteries. In this work, nickel, cobalt and iron molybdates were synthesized via a simple hydrothermal method in order to fabricate electrodes for oxygen evolution reaction (OER) and a supercapacitor. FeMoO₄ required an overpotential of 294 mV to achieve a current density of 10 mA/cm2 for …
Weighsted, Vince Heyman, Tatianna Schluep, Timothy Jaworski
Weighsted, Vince Heyman, Tatianna Schluep, Timothy Jaworski
Mechanical Engineering Senior Theses
The purpose of this design thesis is to outline and describe the design project; WeighstEd. WeighstEd, is a data collection, storage, and analysis system for food waste to help Santa Clara University’s Sustainability Center reach a quantifiable food waste reduction goal of 10% by 2020 by using data to make informed cafeteria changes. The report will outline the entire engineering design process from ideation to manufacture including analysis techniques and benchmark testing. This report will serve as a written documentation of three mechanical engineers Senior Design Project completed at Santa Clara University. WeighstEd will be implemented at on campus events …
Improved Molding Tool For Plastics Engineering Technology Injection Molder, Caleb Luthi, Tyler Burger, Andrew Huffman, Paul Herring, Jeanne H. Norton
Improved Molding Tool For Plastics Engineering Technology Injection Molder, Caleb Luthi, Tyler Burger, Andrew Huffman, Paul Herring, Jeanne H. Norton
Posters
Plastic injection molding is an extremely versatile, preferred method of producing plastic parts because it is extremely efficient. In the business of injection molding, it is important to have machines and tools that work properly to get the job done. One such tool is the mold, which forms high quality plastic parts. The main objective of this project is to refurbish the current Frisbee mold to create promotional products for PSU’s Department of Engineering Technology. Parts were created with the existing mold to determine what issues needed to be addressed, including: excessive flash on the parts/runner, a poor runner/gate design, …
Electrocatalytic Properties Of Lanthanum-Based Perovskites For Water Splitting And Energy Storage Applications, Xavier R. Martinez, Khamis Siam, Pawan K. Kahol, Ram K. Gupta
Electrocatalytic Properties Of Lanthanum-Based Perovskites For Water Splitting And Energy Storage Applications, Xavier R. Martinez, Khamis Siam, Pawan K. Kahol, Ram K. Gupta
Posters
Recent changes in global weather patterns have punctuated the need for mollification through a cleaner energy option. As part of the plan, hydrogen production for fuel cells offers substantial power without carbon emissions. Overall water splitting, with the aid of a low cost electrocatalyst could prove to be an abundant green fuel source. Utilizing readily available transition metals, three perovskite nanostructures were studied as a multifunctional material for hydrogen production as well as energy storage. LaCoO₃ (LCO), LaFeO₃ (LFO), and LaMnO₃ (LMO) were synthesized and characterized by X-ray diffraction and then dip coated onto nickel foam as electrodes in a …
Metal-Doped Catalysts For Hydrogen Evolution Reaction, Tucker Morey, Ram K. Gupta, Pawan K. Kahol
Metal-Doped Catalysts For Hydrogen Evolution Reaction, Tucker Morey, Ram K. Gupta, Pawan K. Kahol
Posters
The highly efficient electrochemical hydrogen evolution reaction (HER) provides a promising way to solve energy and environment problems. In this work, various transition metals (Fe, Co, Ni, Cu, Ag, and Pt) were selected to support on molybdenum carbides by a simple organic-inorganic precursor carburization process. X-ray diffraction (XRD) analysis results indicated that the ß-MO₂C phase was formed in all metal-doped samples. X-ray photoelectron spectroscopy analysis indicated that the binding energy of MO₂+ species (MO₂C) shifted to a lower value after metal was doped on the molybdenum carbide surface. Comparing with pure ß-MO₂C, the electrocatalytic activity for HER was improved by …
Implementation Of Solar Car Technology, Greg Mccartney, Marcus Allen, Dedrick Cooper, Lelan Delissa, Eric Mayer
Implementation Of Solar Car Technology, Greg Mccartney, Marcus Allen, Dedrick Cooper, Lelan Delissa, Eric Mayer
Posters
Under the leadership of Dr. Erik Mayer, Pittsburg State University hosted the first Kansas Solar Race Competition. The purpose of this competition is to motivate students to learn about different aspects of solar car technology. The competition motivates students by bringing multiple teams together in a friendly competition to test out their uniquely engineered and constructed wireless cars. The cars will compete in different competitions such as an agility competition and a drag race. After the competition, the students are able to learn from the ingenuity of other teams and spark a curiosity to continue to learn about solar car …
Almond Based Electrocatalyst For Fuel Cell Applications, Kinsey Morey, Tucker Morey, Brooks Neria, Khamis Siam, Pawan K. Kahol
Almond Based Electrocatalyst For Fuel Cell Applications, Kinsey Morey, Tucker Morey, Brooks Neria, Khamis Siam, Pawan K. Kahol
Posters
Hydrogen is considered one of the cleanest energy sources. Water spitting is one of the efficient ways to produce hydrogen as a fuel at the industrial level. Water splitting via electrolysis requires an efficient electrocatalyst to reduce the voltage required for water splitting. Currently, precious metals such as platinum are considered as one of the most efficient electrocatalysts for hydrogen production via electrolysis of water. The current challenge is to find a cost-effective alternative for this process. Molybdenum and carbon are low cost and abundant materials which could be used for the synthesis of cost-effective electrocatalysts for hydrogen production. In …
Dmx Controlled Scenic Automation, Hannah Sisney, Tiernan O’Rourke, J. V. Ating
Dmx Controlled Scenic Automation, Hannah Sisney, Tiernan O’Rourke, J. V. Ating
Mechanical Engineering Senior Theses
SwiftScene DMX Control is a safe, simple, and low-cost solution to automated scenery marketed to educational level and low-income theaters. The module is an 18” x 18” electrical enclosure that attaches to the underside of a stage platform and is fully controlled wirelessly via a light board. This is a scaled down prototype meant as a proof of concept and product viability. It is capable of rotational motion and limited linear motion. This prototype meets expectations of traveling at 1 ft/s with acceleration and deceleration at 0.5 ft/s2, but speed and acceleration can be varied based on desired …
2019 Ieee Southeastcon Hardware Competition: A Systems Engineering Approach, Emily Sage
2019 Ieee Southeastcon Hardware Competition: A Systems Engineering Approach, Emily Sage
Mahurin Honors College Capstone Experience/Thesis Projects
The Institute for Electrical and Electronics Engineers (IEEE) Huntsville section invites college students to participate in their annual SoutheastCon Conference. Western Kentucky University sends a team of engineering students to the hardware competition, an opportunity for students to design and build autonomous robots. The 2019 hardware competition called for students to develop a robot that could collect and sort debris by color. This thesis outlines the project lifecycle of the WKU 2019 SoutheastCon robot with an emphasis on implemented systems engineering tools and techniques. Systems Engineering is an interdisciplinary approach to project management that focuses on treating the overall project …