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Articles 301 - 330 of 1825

Full-Text Articles in Engineering

Mems 411: Torsion Tester Design Report, Ethan Bandick, Sean Wong, Jacob Sandler, Matthew Lorberg Oct 2022

Mems 411: Torsion Tester Design Report, Ethan Bandick, Sean Wong, Jacob Sandler, Matthew Lorberg

Mechanical Engineering Design Project Class

The goal of this project is to provide the customer, Dr. James Jackson Potter, with a lightweight, inexpensive, and accurate alternative to modern, professional torsion-testing machines. The torsion tester developed by this team will be used in a classroom setting for design competitions on 3-D printed ABS plastic torsion bars; therefore the design also accommodate a range of functions which might be useful to the customer during testing competitions, potentially including automatic stopping at failure, a reset function, and the ability to create custom functions which can integrate into the existing function library.


Mems 411: Racecar Cruise Control, Jonah Spencer, Jacob Wheelock, Amay Kejriwal Oct 2022

Mems 411: Racecar Cruise Control, Jonah Spencer, Jacob Wheelock, Amay Kejriwal

Mechanical Engineering Design Project Class

The WashU Racing team is a student group at formula student which annually designs, builds, and tests a 1/3rd scale formula racecar. This project explores the use of an electronically actuated throttle to implement cruise control on the WashU Racing formula student racecar. Through the use of new and existing sensors on the car, in depth engine modeling, and vehicle dynamics, our team was able to make the car accelerate up to and maintain a certain speed


Mems 411: Remotely Operated Rock Collecting Vehicle, Perry Brody, Toby Utterback, Annie Mascot, Bianca Lang Oct 2022

Mems 411: Remotely Operated Rock Collecting Vehicle, Perry Brody, Toby Utterback, Annie Mascot, Bianca Lang

Mechanical Engineering Design Project Class

We were tasked with designing a remote-controlled vehicle that is capable of collecting and holding “rocks”. The device had to be battery powered and operated by an RC transmitter/receiver. The physical constraints required the vehicle to fit within the designated 5.25’’ diameter and 8.5’’ long cylinder. The goal was to maximize the number of "rocks" collected in 5 minutes.


Mems 411: Group Q Rock-Collecting Rover, William Pohl, Kieran Conjar, Chris Mabley, Major Kc Oct 2022

Mems 411: Group Q Rock-Collecting Rover, William Pohl, Kieran Conjar, Chris Mabley, Major Kc

Mechanical Engineering Design Project Class

Design a remote controlled Rock-Collecting Rover that can store 35 rocks while moving, can navigate a snake-track without hitting the lines in 5 minutes, and can successfully collect 80% of the rocks it approaches.


Mems 411: Graphene Flake Finder, Calvin Ball, Jonathon Hansen, Ivan Jaramillo Oct 2022

Mems 411: Graphene Flake Finder, Calvin Ball, Jonathon Hansen, Ivan Jaramillo

Mechanical Engineering Design Project Class

Graphene is an allotrope of carbon, a monolayer of carbon atoms arranged in a honeycomb-like structure. It is a zero-gap semiconductor, has a high opacity, has a large thermal conductivity, and has the largest intrinsic tensile strength known to humankind so far. It is not yet utilized in the industry as graphene is not efficient or cost-effective to mass produce. The production of graphene is done by flakes with tape at Dr. Erik Henrikson’s lab. We will make a motorized microscope stage that helps automate the location identification of graphene flakes that have been mechanically exfoliated onto silicon wafer chips. …


Mems 411: Rock Collection Rover, Group, Kyler Schaetzle, Grant Ryals, Griffin Ancipink, Jackson Powell Oct 2022

Mems 411: Rock Collection Rover, Group, Kyler Schaetzle, Grant Ryals, Griffin Ancipink, Jackson Powell

Mechanical Engineering Design Project Class

The following report has been prepared for MEMS 411 Mechanical Engineering Design Project and contains information pertaining to the selected project, the Rocker Collecting Rover Contest project. The project required the team to construct a battery-powered, remote-controlled rover that is operated with a first-person camera and can collect “rocks” and hold them off the ground without damaging them. The rover will compete in a competition against all other groups to see which group can collect the most rocks in a five-minute period.


Mems 411: T-Shirt Strip Dispenser, Christian Alexander, Joseph Goehring, David / Qifeng Tian, Justin / Jingze Zhou Oct 2022

Mems 411: T-Shirt Strip Dispenser, Christian Alexander, Joseph Goehring, David / Qifeng Tian, Justin / Jingze Zhou

Mechanical Engineering Design Project Class

To create a fabric dispenser for Professor Mary Ruppert-Stroescu of the Sam Fox Fashion Design School.


Mems 411: Dog Mobility Aid, Grace Vinson, Amber Griffith, Thomas Liu Oct 2022

Mems 411: Dog Mobility Aid, Grace Vinson, Amber Griffith, Thomas Liu

Mechanical Engineering Design Project Class

Henry, an 8-year-old dog, suffers from an angular limb deformity. We created a mobility aid for Henry to improve his quality of life. This device functions similarly to a crutch attached to the affected arm to eliminate compressive forces on his metacarpals.


Mems 411 - Prosthetic Arm Group W, Spencer Gladstone, Lila Dickstein, Nate Bloedorn, Matthew Riak Oct 2022

Mems 411 - Prosthetic Arm Group W, Spencer Gladstone, Lila Dickstein, Nate Bloedorn, Matthew Riak

Mechanical Engineering Design Project Class

The customer, Ilana, sought to find a prosthetic arm to replace her current static
prosthetic. She has gotten used to using a prosthetic with no variable grips and
a somewhat heavy weight that can be a burden when dealing with her child or
day to day tasks. The design described in this report is an electronically powered
prosthetic that used a button to change between open and closed grips.


Mems411: We Rock N’ Roverin', Amy L. Xue, Ash Caine, Emily Ma Oct 2022

Mems411: We Rock N’ Roverin', Amy L. Xue, Ash Caine, Emily Ma

Mechanical Engineering Design Project Class

The goal of this project is to create a remotely-controlled rover that can reliably collect dice. The customer, Chiamaka Asinugo, requires a device that meets the needs of a potential challenge that the WURocketry Team might face in future “NASA Student Launch” competitions. These needs include the rover being able to fit into a theoretical payload cylinder that is 5.36" in diameter and 8.5" long and the rover weighing less than 3.5 lbs.


Mems 411: Rock-Collecting Rover, Nathan Fetchel, Derek Bivins, Emerson Hatina Oct 2022

Mems 411: Rock-Collecting Rover, Nathan Fetchel, Derek Bivins, Emerson Hatina

Mechanical Engineering Design Project Class

This project was a MEMS 411 Senior Design project completed for a potential future WashU Rocketry Team rover contest. The rover was required to be battery operated, controlled by an RC transmitter/receiver, and utilize micro-servo motors for actuation. The rover was required to be navigated via 1st person camera. The rover needed to weigh less than 3.5 lbs, and able to fit into a 5.36" diameter and 8.5" long cylinder. The "rocks" needed to be stored inside the rover and to be collected without using adhesive.


Mems 411: Asme Student Design Vehicle, Raymond Sullivan, Matthew Spichiger, Daniel Melka Oct 2022

Mems 411: Asme Student Design Vehicle, Raymond Sullivan, Matthew Spichiger, Daniel Melka

Mechanical Engineering Design Project Class

Design a robot to compete in the 2022 ASME Design Competition


Mems 411: Cnc Fabric Dispenser, Hayato Takai, Lizbet Suarez Mendoza, Jp Bermudez, Jeffrey Dai Oct 2022

Mems 411: Cnc Fabric Dispenser, Hayato Takai, Lizbet Suarez Mendoza, Jp Bermudez, Jeffrey Dai

Mechanical Engineering Design Project Class

This project aims to help Mary Ruppert-Stroescu with her zero-waste fashion project. The goal of this tool is to help Mary efficiently lay down fabric across a sheet of sticky paper to make a yard of reused fabric. The goal of our team was to create a machine that can work alongside Mary, rather than having her spend all her time at the machine. We wanted to make a machine that can work independently of Mary, so that she can focus her time on other things.

100s of lbs of fabric waste is part of American today. Mary's mission is …


Mems 411: Softball Pitching Machine, Sebastian Laboy, Molly Mcnamara, Thomas Burke Oct 2022

Mems 411: Softball Pitching Machine, Sebastian Laboy, Molly Mcnamara, Thomas Burke

Mechanical Engineering Design Project Class

This report includes our complete final project for MEMS 411 in the Fall 2022 semester. For this project, we chose to fill the need for a pitching machine solely focused on the needs of softball players. For this project, our customer is a collegiate softball player named McKenna Jablonske.


Mems 411: Best Prosthetic Arm, Zhun Cheng, Finn Witt, Alexander Abdulla, Zhuoqun Wang Oct 2022

Mems 411: Best Prosthetic Arm, Zhun Cheng, Finn Witt, Alexander Abdulla, Zhuoqun Wang

Mechanical Engineering Design Project Class

Prosthetic is generally used to aid people with disabilities and perform tasks otherwise hard for them. As our senior design project, we designed and built a prototype prosthetic partial forearm for a customer to be used in her daily life and work. The important needs of the customer towards the prosthetic were identified, which were: being lightweight, simply actuatable, aesthetically discrete, easily detachable, resilient, easy to clean, safe for children, and easy to carry.


Mems 411: Fire Temperature Gradient Sensor, Anna-Sophia Eberhardt, Dexter Allen, Christopher Allen, Mikayla Jenkins Oct 2022

Mems 411: Fire Temperature Gradient Sensor, Anna-Sophia Eberhardt, Dexter Allen, Christopher Allen, Mikayla Jenkins

Mechanical Engineering Design Project Class

Fire Temperature Gradient Sensor to understand the interaction between prescribed forest floor burns and tick-borne disease ecology.


Validation And Verification Of The Wray-Agarwal Turbulence And Algebraic Transition Models For 2d External Airfoil Flows, Dean Ryan-Simmons Oct 2022

Validation And Verification Of The Wray-Agarwal Turbulence And Algebraic Transition Models For 2d External Airfoil Flows, Dean Ryan-Simmons

McKelvey School of Engineering Graduate Student Theses & Dissertations

Validation and verification benchmark test cases are employed in computational fluid dynamics (CFD) to determine the best practices in application of various CFD tools. These cases focus on the geometry modeling, mesh generation, numerical algorithms, and turbulence models to ensure consistent and accurate numerical simulation of physical phenomena. Assessing model accuracy is essential to identify areas of improvement in various turbulence models. Flow past several symmetric NACA airfoils, namely NACA 0012, NACA 0015 and NACA 0018 are standard test cases for validating and evaluating turbulence models’ accuracy since the experimental data is available for these airfoils. Available wind tunnel data …


Mems 411: T-Shirt Strip Dispenser, Andrei Schwartz, Evan Dorsel, Amy Gong, Rosie Finglass Oct 2022

Mems 411: T-Shirt Strip Dispenser, Andrei Schwartz, Evan Dorsel, Amy Gong, Rosie Finglass

Mechanical Engineering Design Project Class

Develop a device to facilitate the t-shirt strip lay down process for Prof. Mary Ruppert-Stroescu


Mems 411: Group B Prosthetic Arm Design, Gage Fuller, Abby Jaeger, Oliver Reid, Max Gordon Oct 2022

Mems 411: Group B Prosthetic Arm Design, Gage Fuller, Abby Jaeger, Oliver Reid, Max Gordon

Mechanical Engineering Design Project Class

Design a custom prosthetic arm for a customer who is missing her arm two inches past her elbow. Introduce mobility so that she can utilize the arm to perform more everyday tasks than she was able to before with her immobile arm.


Mems 411: The Rock Collecting Rover Design Project, Henry Collins, Sam Mattecheck, Connor Burke Oct 2022

Mems 411: The Rock Collecting Rover Design Project, Henry Collins, Sam Mattecheck, Connor Burke

Mechanical Engineering Design Project Class

The rock collecting over project challenged groups to construct a small,, remote controlled rover that is able to move and collect dice.


Mems 411: Air Capture Dynamic Seal, Erik Truitt, Thomas Rexing, Cole Kelez, Hernan Perez Oct 2022

Mems 411: Air Capture Dynamic Seal, Erik Truitt, Thomas Rexing, Cole Kelez, Hernan Perez

Mechanical Engineering Design Project Class

For the DAC (direct air capture) machine, a CO2 collecting machine, it needs a seal that allows rotation while still being airtight. Currently, a liquid seal is used but is having issues with contamination and evaporation.


Mems 411: Dynamic Seal, Devin Fredericks, Abdul Majeed Lalani, Matthew Schmidt, Edward Tinnemeyer Oct 2022

Mems 411: Dynamic Seal, Devin Fredericks, Abdul Majeed Lalani, Matthew Schmidt, Edward Tinnemeyer

Mechanical Engineering Design Project Class

The purpose of this design project is to design a dynamic seal to be used on AirCapture’s carbon capture machine. The task is to create an air-tight seal between the top and bottom halves of AirCapture’s carbon capture machine. The seal needs to be capable of periodically rotating and must not leak while in operation.


Modeling Solvent Extraction Of Lignin From Hardwoods, Su Pan Aug 2022

Modeling Solvent Extraction Of Lignin From Hardwoods, Su Pan

McKelvey School of Engineering Graduate Student Theses & Dissertations

This study interprets the observed behavior of solvent extraction of lignin from hardwoods by adapting the framework of the FLASHCHAIN theory (Niksa and Kerstein, 1991; Niksa, 2017). A constitution submodel specifies distributions of molecular weight and reactive sites for native lignin. The model simulates delignification as depolymerization of lignin macromolecules into fragments small enough to be soluble. This process competes with intrachain condensation that consumes labile bridges without forming new fragments, and with recombination that forms larger chains and inhibits further depolymerization. After the soluble fragments are transported from the particle into the bulk solvent, all chemistry continues as long …


Parametric Design Of A Manifold For A Hollow Micropillar Evaporator For Use In High Heat Flux Applications, Alex Dutton Aug 2022

Parametric Design Of A Manifold For A Hollow Micropillar Evaporator For Use In High Heat Flux Applications, Alex Dutton

McKelvey School of Engineering Graduate Student Theses & Dissertations

With the failure of Dennard Scaling and changes in electronics packaging leading toward 2.5 and 3D packages, the current methods of thermal management are failing to keep up with rising heat fluxes. In order to manage these rising heat fluxes, engineers and scientists are looking towards two phase cooling and microchannel flows.

Many forms of novel thermal management are currently being investigated as means to address the thermal challenges present in modern microelectronics, including flow boiling, pool boiling, and direct liquid cooling. One technology of interest is evaporative cooling using continuously fed micro-droplets. High evaporation rates can be achieved by …


Speeding Up The Quantification Of Contrast Sensitivity Functions Using Multidimensional Bayesian Active Learning, Shohaib Shaffiey Aug 2022

Speeding Up The Quantification Of Contrast Sensitivity Functions Using Multidimensional Bayesian Active Learning, Shohaib Shaffiey

McKelvey School of Engineering Graduate Student Theses & Dissertations

No abstract provided.


Fabrication And Performance Evaluation Of An Evaporative Hollow Micropillar Module For Data Center Cooling Application, Quan Harry Chau Aug 2022

Fabrication And Performance Evaluation Of An Evaporative Hollow Micropillar Module For Data Center Cooling Application, Quan Harry Chau

McKelvey School of Engineering Graduate Student Theses & Dissertations

With the exponential growth of the Internet in the coming decade, data centers will be one of the largest consumers of electricity in many countries. In many data centers, thermal management systems could be just as power-consuming as IT equipment. Chillers in these thermal management systems are one of the highest power components. Microscale evaporation is a promising approach to dissipating high heat fluxes by minimizing thermal resistance between the junction temperature and ambient temperature, hence eliminating the need for chillers. Previous research has shown that droplets elevated by micropillars can limit the vapor diffusion confinement effect, which improves the …


Machine Learning And Scalable Informatics Methods To Predict Disease Status From Multimodal Biomedical Data, Hossein Mohammadian Foroushani Aug 2022

Machine Learning And Scalable Informatics Methods To Predict Disease Status From Multimodal Biomedical Data, Hossein Mohammadian Foroushani

McKelvey School of Engineering Graduate Student Theses & Dissertations

Biological understanding of complex diseases such as stroke and obesity is critical for the advancement of medicine. Further knowledge discovery can provide effective biomarkers to improve disease diagnosis and prognosis, identify driver mutations, predict individual genetic susceptibility for early prevention and effective disease management, and facilitate development of personalized drugs. Stroke is the second leading cause of death and long-term disability in the world. Thus, stroke management is a time-sensitive emergency. The initial hours after stroke onset map the trajectory of subsequent neurologic complications. Cerebral edema develops hours to days after acute ischemic stroke and may result in midline shift …


Role Of Ligand Architecture On Collective Cell Invasion, Amrit Bagchi Aug 2022

Role Of Ligand Architecture On Collective Cell Invasion, Amrit Bagchi

McKelvey School of Engineering Graduate Student Theses & Dissertations

Epithelial cell collectives utilize extra-cellular matrix (ECM) fibers to undergo collective migration critical in regeneration, repair and cancer metastasis. However, very little is known about the various factors which determine the ability of cellular collectives to utilize ECM fibers to undergo these critical processes in-vivo. First part of the dissertation focusses on understanding how cell collectives exploit specific properties, like stiffness and fiber length to undergo collective streaming. It is also unclear how cellular forces, cell-cell adhesion, and velocities are coordinated within streams. To independently tune stiffness and collagen fiber length, we developed new hydrogels and discovered invasion-like streaming of …


Intrinsic Cardiac Effects Of Severe Acute Respiratory Syndrome Coronavirus 2 In Coronavirus Disease 2019, Brittany Danielle Brumback Aug 2022

Intrinsic Cardiac Effects Of Severe Acute Respiratory Syndrome Coronavirus 2 In Coronavirus Disease 2019, Brittany Danielle Brumback

McKelvey School of Engineering Graduate Student Theses & Dissertations

Cardiac arrhythmias, particularly ventricular arrhythmias, can be life-threatening and caused by both congenital genetic mutations and acquired cardiac injury. My thesis work was originally focused on delineating the effects of genetic mutation-driven dysregulation of a protein called Hey2 in Brugada Syndrome, a complex disease characterized by a predisposition to dangerous arrhythmias originating in the right ventricular outflow tract. In response to the pandemic, my thesis work shifted toward understanding the mechanisms of cardiovascular injury in Coronavirus disease 2019 (COVID-19), which is associated with serious cardiovascular complications, including ventricular arrhythmias and sudden cardiac death as well as endothelial dysfunction and coagulopathies. …


Imaging Techniques For Proton Range Determination In Proton Therapy, Xinyuan Chen Aug 2022

Imaging Techniques For Proton Range Determination In Proton Therapy, Xinyuan Chen

McKelvey School of Engineering Graduate Student Theses & Dissertations

Proton therapy can achieve better sparing of normal tissues than the conventional photon radiation therapy due to proton’s Bragg Peak property. However, to unlock the full potential of protons, accurate prediction of in vivo proton stopping power ratio (SPR) is required for proton therapy treatment planning. The current standard practice is to map SPR from Hounsfield Unit (HU) values of a single-energy computed tomography (SECT) scan through a stoichiometric calibration technique. This technique is subjected to a variety of factors that congregate on the uncertainties in SPR estimation, including the calibration uncertainty (up to 0.5% to 1.8% of the total …