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Articles 1921 - 1950 of 9778
Full-Text Articles in Engineering
Owner-Free Distributed Symmetric Searchable Encryption Supporting Conjunctive Queries, Qiuyun Tong, Xinghua Li, Yinbin Miao, Yunwei Wang, Ximeng Liu, Robert H. Deng
Owner-Free Distributed Symmetric Searchable Encryption Supporting Conjunctive Queries, Qiuyun Tong, Xinghua Li, Yinbin Miao, Yunwei Wang, Ximeng Liu, Robert H. Deng
Research Collection School Of Computing and Information Systems
Symmetric Searchable Encryption (SSE), as an ideal primitive, can ensure data privacy while supporting retrieval over encrypted data. However, existing multi-user SSE schemes require the data owner to share the secret key with all query users or always be online to generate search tokens. While there are some solutions to this problem, they have at least one weakness, such as non-supporting conjunctive query, result decryption assistance of the data owner, and unauthorized access. To solve the above issues, we propose an Owner-free Distributed Symmetric searchable encryption supporting Conjunctive query (ODiSC). Specifically, we first evaluate the Learning-Parity-with-Noise weak Pseudorandom Function (LPN-wPRF) …
Loading Direction Dependence Of Asymmetric Response Of < C+A > Pyramidal Slip In Rolled Az31 Magnesium Alloy, Yuzhi Zhu, Dewen Hou, Kaixuan Chen, Zidong Wang
Loading Direction Dependence Of Asymmetric Response Of < C+A > Pyramidal Slip In Rolled Az31 Magnesium Alloy, Yuzhi Zhu, Dewen Hou, Kaixuan Chen, Zidong Wang
Materials Science and Engineering Faculty Publications and Presentations
No abstract provided.
Mems 411: B2 Striker Group Final Design Report, Jacob Rapoza, Ian M. Veserra, Alex J. Webert, Keaton Porch
Mems 411: B2 Striker Group Final Design Report, Jacob Rapoza, Ian M. Veserra, Alex J. Webert, Keaton Porch
Mechanical Engineering Design Project Class
Design a golf striker that can accomplish all the holes set forth by the ASME 2023 design competition and could be attached to a robot without major design modifications.
Mems 411: Waterproof Enclosure For Smart Shirt Microcontroller, Josh Towns, Eric Montufar-Morales, Jacob Williams
Mems 411: Waterproof Enclosure For Smart Shirt Microcontroller, Josh Towns, Eric Montufar-Morales, Jacob Williams
Mechanical Engineering Design Project Class
The purpose of this project was to create an enclosure for a microcontroller for an electronic shirt, made by Dr. Mary Ruppert-Stroescu. The electronic shirt was made to help people with sleep apnea track their EKG, blood pressure, and heart rate in an easy and non-invasive way.
The current design being used has sharp edges and is not very secure. The goal of our new design was to make the enclosure comfortable to the wearer while also maintaining a water tight seal. This was done through multiple iterations of rounded enclosures with different gaskets. The end design was a two …
Mems 411: Pinskee Ball - A Work-Energy Demo, Kyle Puckett, Helena Teixeira-Dasilva, Seth Kleinberg, Sydney Norstad
Mems 411: Pinskee Ball - A Work-Energy Demo, Kyle Puckett, Helena Teixeira-Dasilva, Seth Kleinberg, Sydney Norstad
Mechanical Engineering Design Project Class
The goal of our project is to develop a fun and engaging Work-Energy Demo for Dr. James Potter of Washington University in St. Louis and a Science Center or Children's Museum. We aim to teach 6 - 10 year old children about Work-Energy and Energy Transfer in a fun, engaging, and competitive way by using an arcade style machine. The following project is intended to be a Pinball-Based Conservation of Energy Demo/Game for a Science Museum. Using both pinball and skeeball characteristics, this device will give kids thorough knowledge of work energy systems in a fun and interactive way. The …
Mems 411: Mini-Golf Robot Vehicle, Catherine Huang, Shicheng Li, Colin Chen, Maximilian Li
Mems 411: Mini-Golf Robot Vehicle, Catherine Huang, Shicheng Li, Colin Chen, Maximilian Li
Mechanical Engineering Design Project Class
The primary objective of the project is to develop a remote-controlled vehicle capable of completing a round of mini golf as part of the ASME Student Design Competition. The vehicle’s functionalities are categorized into driving and golf-ball striking. Our group is specifically responsible for the former aspect.
The remote-controlled vehicle is expected to traverse through the designated competition field and exhibit the ability to maneuver between and over obstacles, including a high wall and a low platform. Our design should adhere to the competition regulations set forth by ASME SDC, which include specific criteria for the vehicle such as size …
Mems 411: Heavy Cart Ramp Assistant, Caelyn Walton-Macaulay, Eniya Jaber, Nashleen Salazar Rodriguez
Mems 411: Heavy Cart Ramp Assistant, Caelyn Walton-Macaulay, Eniya Jaber, Nashleen Salazar Rodriguez
Mechanical Engineering Design Project Class
Some experiments in Prof. Kathy Flores’s lab use argon gas, which is stored in a
big tank. A scale is used to determine how much gas is left in the tank.
To get the tank onto the scale, a person must roll it up a short, fairly steep ramp
onto the scale platform. There is a ramp on the other side of the scale too, so
overshooting the platform causes the ramp to crash into the wall (the lab has taped a foam bumper onto the wall to mitigate this). Once finished, the cart is rolled
back down the ramp, …
Mems 411: Asme Design Challenge Hitting Apparatus, Benjamin Deobald, Curtis Hung, Joseph Kodsi, Andrew Sheen
Mems 411: Asme Design Challenge Hitting Apparatus, Benjamin Deobald, Curtis Hung, Joseph Kodsi, Andrew Sheen
Mechanical Engineering Design Project Class
Develop a specialized hitting mechanism for the modified 2023 ASME Design Competition's mini-golf robot challenge. The mechanism needs to accurately chip and putt golf balls, ensuring compatibility for mounting onto another team's vehicle chassis. Key considerations include weight, form-factor, remote operation ease, and endurance within a $400 budget. The mechanism must adhere to competition rules, stopping before hitting, non-operation during ball contact except for relocation, and transport of the ball to designated areas.
Mems 411: Dialysqueeze, Ranch Kimball, Maeve Lomax, Tyler Carlson
Mems 411: Dialysqueeze, Ranch Kimball, Maeve Lomax, Tyler Carlson
Mechanical Engineering Design Project Class
Design a device to reduce occupational fatigue injuries suffered by nurses who must manually clamp and unclamp tubing for dialysis machines. This device was designed for MEMS 411 Senior Design.
Mems 411: Heavy Cart Ramp Assistant, Ethan Current, Kevin Xiong, Nick Zanchi
Mems 411: Heavy Cart Ramp Assistant, Ethan Current, Kevin Xiong, Nick Zanchi
Mechanical Engineering Design Project Class
Dr. Katharine Flores has a heavy Argon tank that needs to be put on a scale and wants a device that a single person can operate to assist them in that task.
Mems 411: Medical Clamp, Edis Skampo, Rodery Gonzalez, Sokcheatra Samrith, Sean Lucas
Mems 411: Medical Clamp, Edis Skampo, Rodery Gonzalez, Sokcheatra Samrith, Sean Lucas
Mechanical Engineering Design Project Class
The goal of the team was to design a plier that would be able to clamp down a medical clamp used for a dialysis machine. Ideally the plier should be able to clamp down 3 medical clamps on three separate dialysis tubes in less than 5 seconds, reduce the force required to clamp those clamps by 4 times, and weigh less than 113 grams. The product design was broken down into 3 separate concepts, with four options for each component. The most preferable option of each component was chosen and several risk factors were taken in consideration so that the …
Mems 411: Mini-Golf Robot, Matthew J. Sullivan, Jack Nanez, William Urdahl, Eli Cohen
Mems 411: Mini-Golf Robot, Matthew J. Sullivan, Jack Nanez, William Urdahl, Eli Cohen
Mechanical Engineering Design Project Class
The following report details the design and construction of a mini-golf robot over
three months. The robot was designed under the standards provided by the
ASME Fall 2023 Design Challenge. The robot would need to traverse the mini-golf
course, completing it in under 10 minutes with the assistance of an attached striker
mechanism. It was necessary that the robot could position itself precisely with
respect to the goofball, while also staying stationary while striking the object. The
robot design timeline followed the guidelines of the engineering design process, with
concept generation, concept selection, prototype embodiment and design refinement
all playing …
Mems 411: Swing Energy Demo, Joshua Yoon, Owen Culver, Angel Wan, Gabriel Myong
Mems 411: Swing Energy Demo, Joshua Yoon, Owen Culver, Angel Wan, Gabriel Myong
Mechanical Engineering Design Project Class
A device to demonstrate the energy processes of a swing was created with the intention of display at the St. Louis Science Center.
Mems 411: Bamboo Clamping Device, Grace Chen, Anya Gupta, Yosef Weiss
Mems 411: Bamboo Clamping Device, Grace Chen, Anya Gupta, Yosef Weiss
Mechanical Engineering Design Project Class
The objective of this design project was to create an automatic clamping machine to
keep bamboo bundles tight during lashing. Currently, manual clamping and lashing
of bamboo require simultaneous user effort, posing challenges in terms of efficiency
and safety. Our project introduces a mechanical and automatic clamping tool,
designed to significantly alleviate the physical strain on users and enhance overall
safety. This report details two primary designs of solutions to this problem. The
first is a motor-tightened hose clamp controlled via a three-way switch. The second
design is a claw clamp with an inflatable pouch used to pin the bamboo …
Mems 411: Piston Pong, Lauren Faust, Emma Kroll, Natalie Fisher, Caroline Ferry
Mems 411: Piston Pong, Lauren Faust, Emma Kroll, Natalie Fisher, Caroline Ferry
Mechanical Engineering Design Project Class
This report documents the design process of our ”Piston Pong” device. Our device was designed to be an educational demonstration of pneumatics and energy transformations using work and fluids models. The concept is that a bike pump will pump air into a holding container. After enough pressure is built up inside, the air will be released from the holding tank to a pneumatic cylinder. The cylinder will be released, hitting and launching a ball into the air. Additionally, force and pressure sensors would allow the energy to be calculated to fully understand the energy transformation. Our priorities for this design …
Mems 411: Smart Shirt Electronics Housing, Nickolas Allen, Aaron Deleon, Dominic Fulginiti
Mems 411: Smart Shirt Electronics Housing, Nickolas Allen, Aaron Deleon, Dominic Fulginiti
Mechanical Engineering Design Project Class
Millions of Americans suffer from sleep apnea, a chronic condition that can impact the quality of sleep and livelihood of those impacted by it. The sleep tests that are performed to see if a patient has sleep apnea are very invasive to those that undergo them, but the WUSTL Smart Shirt removes the need for such tests. This biometric shirt contains electrodes that measure blood pressure, heart rates, and EKG diagnostics that create reports to determine if the patient has sleep apnea, removing the need for the invasive sleep tests for a diagnosis. We were tasked with making the electronics …
Mems 411: 3d Clay Printer, Nanami Mezaki, Isabelle Sasser, Garrett Radtke, Juliana Bush
Mems 411: 3d Clay Printer, Nanami Mezaki, Isabelle Sasser, Garrett Radtke, Juliana Bush
Mechanical Engineering Design Project Class
The Washington University School of Architecture has a class called Digital Ceramics, that utilizes a 3D Printer that prints clay instead of plastic filament. Students use this device to make art projects. As interesting as this device is, it isn’t without problems. Our team decided to tackle some of the problems involved which we recognized to be: long set-up and tear-down times, and unsuccessful prints due to nozzle falling out.
Mems 411: Pinch Clamp Clipper, Mackenzie Molina, Jaimie Lin, Oliver Avery
Mems 411: Pinch Clamp Clipper, Mackenzie Molina, Jaimie Lin, Oliver Avery
Mechanical Engineering Design Project Class
The purpose of this project was to design a device to take stress off the CMC thumb joint when applying pinch clamps to dialysis tubing. The motivation was to reduce the risk of osteoarthritis in renal care nurses. Sydney Livermore, an OT student at McMaster University, identified that nurses who had to routinely clip pinch clamps on dialysis tubes were at risk of developing osteoarthritis in their CMC joints. She asked us to design a device that could clip the pinch clamps while reducing the force required to do so. The device needed to be able to clip the clamps …
Mems 411: Motorized Striker, Joseph Crossin, Joana Hadzhilazova, Connor Petersen, Vyas Venkataraman
Mems 411: Motorized Striker, Joseph Crossin, Joana Hadzhilazova, Connor Petersen, Vyas Venkataraman
Mechanical Engineering Design Project Class
This report follows the design and prototyping process for Group B5’s Senior Mechanical Engineering Design Project. Group B5 was tasked with designing a motorized golf striker to perform in the ASME design challenge. This report lays out the progression of the design process beginning with Problem Understanding, then Concept Generation, Concept Selection, Concept Embodiment, Design Refinement, and concludes with an assessment of the final prototype.
Mems 411: Vehicle Entry Aid, Sara Wargo, Joshua Doro, Benjamin Swonger, Justin Stohlman
Mems 411: Vehicle Entry Aid, Sara Wargo, Joshua Doro, Benjamin Swonger, Justin Stohlman
Mechanical Engineering Design Project Class
Handicapped individuals such as those with prosthetic legs or diabetes can struggle greatly with entering large vehicles such as trucks. In this struggle, a client uses a rigid step stool with a rope tied through it to lift himself and then the stool into the vehicle. This report outlines an initiative to design and manufacture a better solution to this problem. A collapsible, two-step step stool was fabricated with a spring loaded retraction system. The design process for this solution is outline from start to finish, showing the extensive thought process that was followed to create the final product.
Mems 411: B8-Golf Striker, Theodore Francis Anastasoff, Mitchell Oswald Shannon, Aidan Richard Tierney, Nick Alexander Vazquez
Mems 411: B8-Golf Striker, Theodore Francis Anastasoff, Mitchell Oswald Shannon, Aidan Richard Tierney, Nick Alexander Vazquez
Mechanical Engineering Design Project Class
Robots are useful for a variety of tasks and can be very fun to make. For our design of a golf striker robot, we will use our knowledge of core mechanical engineering principles to achieve our goal of a functional end product. Our research into existing devices of such nature showed us how useful these robots are in the golf industry. Whether it is to see how far technology ad machine learning has evolved or to test how golf equipment will stand under duress, these robots provide useful feedback for companies and players. Seeing devices like Golfi, LDRICK, and the …
Mems 411: In-Beach Pressure Sampler Design Report, Alex Mccormick, Mark Lipkin, Nirvan Patel Masini, Austin Bick
Mems 411: In-Beach Pressure Sampler Design Report, Alex Mccormick, Mark Lipkin, Nirvan Patel Masini, Austin Bick
Mechanical Engineering Design Project Class
Claudio would like a device to put into the beach sand, around nest-depth, to
measure and record data that can determine pressure as waves crash and recede.
Mems 411: Robot Mini Golf - Striker, Jasmine Davy, Maya Charak, Ilias Bouchibti
Mems 411: Robot Mini Golf - Striker, Jasmine Davy, Maya Charak, Ilias Bouchibti
Mechanical Engineering Design Project Class
The goal of this project was to design a remote-controlled device that is able to putt and chip a golf ball to achieve several obstacles. This project was designed using the guidelines for the ASME design challenge. The guidelines for this challenge required that the striker fit in a half-meter box, have the capacity to both putt and chip a ball, and be able to overcome obstacles, such as getting up a half pipe onto an elevated surface, clear a 3” hoop, and traverse an inclined ramp. These guidelines had to be met while maintaining a budget of $400.
A Holistic Approach To Include Sic And Design The Optimal Extrudate Catalyst For Hydrogen Production–Reforming Routes, Ali M. Alkadhem, Fernanda Tavares, Natalia Realpe, Gontzal Lezcano, Arief Yudhanto, Mohammad Subah, Vasco Manaças, Jacek Osinski, Gilles Lubineau, Pedro Castaño
A Holistic Approach To Include Sic And Design The Optimal Extrudate Catalyst For Hydrogen Production–Reforming Routes, Ali M. Alkadhem, Fernanda Tavares, Natalia Realpe, Gontzal Lezcano, Arief Yudhanto, Mohammad Subah, Vasco Manaças, Jacek Osinski, Gilles Lubineau, Pedro Castaño
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Reforming processes are the backbone of hydrogen production routes, given the flexibility of their feedstock, such as methane, carbon dioxide, ammonia, waste plastics, or biomass. Heat transfer is a drawback at the industrial scale, reducing efficiency. We incorporate SiC in the technical composite, extrudate catalyst and develop a holistic approach to optimize and understand the effect of each constituent and its mixtures. We apply Ni-Ce as an active phase, bentonite or kaolin as a binder, alumina as a filler, and carborundum as the heat-transport carrier. We characterize the extrudate catalysts using various techniques, including crushing strength and thermal conductivity. We …
Remote Laboratory For Nuclear Security Education, Anthony R. Galindo, Craig Marianno
Remote Laboratory For Nuclear Security Education, Anthony R. Galindo, Craig Marianno
International Journal of Nuclear Security
Laboratory experiences for online students are very limited. To fill this gap, educators in the Department of Nuclear Engineering at Texas A&M University developed a series of radiation detection experiments for their remote students. Radiation detection is only one piece of nuclear security. The objective of the current research is to describe the development and execution of three online laboratories that investigate the basic application of physical security sensors that use light, ultrasonics, and heat to detect adversaries. This laboratory complements lecture material from the department’s Nuclear Security System and Design course. Using the Remote Desktop Application, students connect to …
2023 Final Report For Databases In The 2022 Traffic Records Improvement Plan: Facilitating The Development Of Projects To Attain The Goals In The Implementation Plan For The 2022-26 Traffic Records Strategic Plan, Lenahan O'Connell, Samantha Wright, Reginald Souleyrette
2023 Final Report For Databases In The 2022 Traffic Records Improvement Plan: Facilitating The Development Of Projects To Attain The Goals In The Implementation Plan For The 2022-26 Traffic Records Strategic Plan, Lenahan O'Connell, Samantha Wright, Reginald Souleyrette
Kentucky Transportation Center Research Report
During fiscal year 2023, with financial support (Grant #M3Da-2022-04) from the Kentucky Office of Highway Safety, the Kentucky Transportation Center (KTC)-continued its work with traffic database officials to facilitate successful attainment of the remaining goals from the 2017-21 Traffic Records Strategic Plan (TRSP), which goals are in the 2022-26 TRSP Transportation Records Improvement Plan (TRIP). For most databases, some new goals were developed; this required further refinement of some projects or strategies to improve database performance. Projects to complete the goals in the TRIP were continued and some completed for the following databases: CRASH, Citation/Adjudication, Injury Surveillance (KIPRC and EMS), …
Enhancing Heat Transfer Performance In Simulated Fischer–Tropsch Fluidized Bed Reactor Through Tubes Ends Modifications, Laith S. Sabri, Abbas J. Sultan, Jamal M. Ali, Hasan Shakir Majdi, Muthanna H. Al-Dahhan
Enhancing Heat Transfer Performance In Simulated Fischer–Tropsch Fluidized Bed Reactor Through Tubes Ends Modifications, Laith S. Sabri, Abbas J. Sultan, Jamal M. Ali, Hasan Shakir Majdi, Muthanna H. Al-Dahhan
Chemical and Biochemical Engineering Faculty Research & Creative Works
Fluidized bed reactors are essential in a wide range of industrial applications, encompassing processes such as Fischer–Tropsch synthesis and catalytic cracking. The optimization of performance and reduction in energy consumption in these reactors necessitate the use of efficient heat transfer mechanisms. The present work examines the considerable impact of tube end geometries, superficial gas velocity, and radial position on heat transfer coefficients within fluidized bed reactors. It was found that the tapered tube end configurations have been empirically proven to improve energy efficiency in fluidized bed reactors significantly. For example, at a superficial gas velocity of 0.4 m/s, the tapered …
Computationally Efficient Design, Diagnosis, And Test Of Analog Integrated Circuit Analysis, Nisharg Shah
Computationally Efficient Design, Diagnosis, And Test Of Analog Integrated Circuit Analysis, Nisharg Shah
Computer Science and Engineering Theses and Dissertations
With the modern trend in chip functionalities and chip size, considerable advancement
has been made in EDA (Electronic Design Automation). EDA algorithms have become
irreplaceable in the semiconductor industry. We use adjoint sensitivity analysis and transient
simulations to render runtimes affordable and responses accurate.
This dissertation presents various advantages of adjoint sensitivity analysis to improve
the design cycle, provide better testing, and make more efficient the diagnosis of analog
circuits. Our motivation for all our applications has been to greatly reduce the computational
resources required while still providing the required result for design diagnosis and test.
Exoskeletons - Designing For Social Justice, Grace Cd Murphy
Exoskeletons - Designing For Social Justice, Grace Cd Murphy
College of Engineering Summer Undergraduate Research Program
Many engineering professionals believe that discussions surrounding diversity, equity, and inclusion (DEI), and social justice do not belong in engineering because engineering is supposed to be a neutral or objective field. Through an extensive review of the literature and a survey sent out to potential users, the need for DEI in engineering was examined. Many current engineering projects do not take into consideration social justice principles which leaves certain groups further marginalized and disempowered while empowering a select few. Engineering has the opportunity to be a field of service, but first risks and benefits must be weighed and the outcome …
Exploring And Operationalizing Inclusive Teaching In Engineering Education, Keith Fouch, Ellie Abundo
Exploring And Operationalizing Inclusive Teaching In Engineering Education, Keith Fouch, Ellie Abundo
College of Engineering Summer Undergraduate Research Program
Inclusive teaching is vital in engineering education because of its potential to enhance learning for all students. The purpose of this research is to explore faculty experiences with inclusive teaching, specifically focused on engineering settings. Our findings highlight dominant beliefs, practices, and challenges that emerged from our preliminary analysis. Future work will corroborate these findings with additional faculty as well as engineering student perspectives and beliefs.