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Articles 511 - 540 of 1308
Full-Text Articles in Mechanical Engineering
Design, Prototyping, And Characterization Of A Micro-Force Sensor Intended For Tissue Assessment In Confined Spaces, Shashank S. Kumat, Panos S. Shiakolas
Design, Prototyping, And Characterization Of A Micro-Force Sensor Intended For Tissue Assessment In Confined Spaces, Shashank S. Kumat, Panos S. Shiakolas
Open Initiatives Grant Funded Publications-Archive
The quantitative characterization of soft tissue viscoelastic properties can aid in disease prognosis and diagnosis. Existing technologies present challenges to measuring localized in vivo tissue relaxation data while meeting load and geometric constraints. This research presents the design, prototype, and characterization of a micro-force sensor that could enable better access to confined spaces of the human body. The novel design of the uniaxial micro-force sensor has an external diameter of less than or equal to 3.5 mm and 1 N load capacity for transurethral palpation of the bladder interior wall. The conceptual design of the micro-force sensor and a finite …
Shape Memory Alloy Capsule Micropump For Drug Delivery Applications, Youssef Mohamed Kotb
Shape Memory Alloy Capsule Micropump For Drug Delivery Applications, Youssef Mohamed Kotb
Theses and Dissertations
Implantable drug delivery devices have many benefits over traditional drug administration techniques and have attracted a lot of attention in recent years. By delivering the medication directly to the tissue, they enable the use of larger localized concentrations, enhancing the efficacy of the treatment. Passive-release drug delivery systems, one of the various ways to provide medication, are great inventions. However, they cannot dispense the medication on demand since they are nonprogrammable. Therefore, active actuators are more advantageous in delivery applications. Smart material actuators, however, have greatly increased in popularity for manufacturing wearable and implantable micropumps due to their high energy …
Patient-Specific Musculoskeletal Modeling Of Total Shoulder Arthroplasty, Brendan M. Curran
Patient-Specific Musculoskeletal Modeling Of Total Shoulder Arthroplasty, Brendan M. Curran
Electronic Theses and Dissertations
Total shoulder arthroplasty (TSA) is often considered a surgery of last resort for patients with debilitating pathologies of the glenohumeral joint such as osteoarthritis, humeral head fracture, and advancing rotator cuff tears. TSA replaces the articulation between the humeral head and the glenoid fossa, with the goals of relieving pain and restoring function. Two types of total shoulder implants are available: Anatomic Total Shoulder Arthroplasty (aTSA) and Reverse Total Shoulder Arthroplasty (rTSA). TSA survivorship is lower than that of the survivorship seen in total knee and hip replacements [1]. Shoulder muscle moment arms and lines of action have been measured …
Statistical Modeling Of Knee Morphology And Material Properties Considering Diverse Populations, Gabrielle Jeannine Kindy
Statistical Modeling Of Knee Morphology And Material Properties Considering Diverse Populations, Gabrielle Jeannine Kindy
Electronic Theses and Dissertations
Total Knee Arthroplasty (TKA) is a widely performed surgical procedure aimed at alleviating pain and restoring function in patients with severe knee osteoarthritis. Despite its general success, disparities in postoperative outcomes have been observed across different racial and ethnic groups, with minority populations often experiencing less favorable results. One potential avenue for improving the generalizability of orthopaedic implants is using Statistical Shape and Intensity Models (SSIMs), which can be used to incorporate patient variability directly into the orthopaedic medical device development workflow through population-based finite element analysis.
This work aimed to construct an SSIM from a diverse subject set, incorporating …
Feature Extraction From Vibration Signature Required From Railroad Bearing Onboard Condition Monitoring Sensor Modules, Kevin Quaye, Ping Xu, Dimah Dera, Heinrich D. Foltz, Constantine Tarawneh, Alberto Diaz
Feature Extraction From Vibration Signature Required From Railroad Bearing Onboard Condition Monitoring Sensor Modules, Kevin Quaye, Ping Xu, Dimah Dera, Heinrich D. Foltz, Constantine Tarawneh, Alberto Diaz
Mechanical Engineering Faculty Publications
From 2013 to 2022, 1671 derailments have been reported by the Federal Railroad Administration (FRA), 8.2% of which were due to journal bearing defects. The University Transportation Center for Railway Safety (UTCRS) designed an onboard monitoring system that tracks vibration waveforms over time to assess bearing health through three analysis levels. However, the speed of the bearing, a fundamental parameter for these analyses, is often acquired from Global Positioning System (GPS) data, which is typically not available at the sensor location. To solve this issue, this paper proposes to employ Machine Learning (ML) algorithms to extract the speed and other …
Experimental Investigation Of Lateral Load Effects On Railway Tapered Roller Bearing Performance, Abel David Sanchez Trinidad, Constantine Tarawneh, Diego Aguila, Arturo A. Fuentes, Santanna Guiterrez, Curtis Pena, Daniel Reyna
Experimental Investigation Of Lateral Load Effects On Railway Tapered Roller Bearing Performance, Abel David Sanchez Trinidad, Constantine Tarawneh, Diego Aguila, Arturo A. Fuentes, Santanna Guiterrez, Curtis Pena, Daniel Reyna
Mechanical Engineering Faculty Publications
In the quest to maintain the reliability and safety of railway systems, vibration signatures emerge as a crucial diagnostic tool for identifying and tracking the progression of railway bearing health. It is important to note that, in the case of spall deterioration, temperature variations may only become noticeable once spalling has spread extensively across the raceway. Hence, a comprehensive understanding of the effects of lateral loading under various train speeds at empty and full railcar loads is important. Surprisingly, limited research has been carried out or made publicly available on the effects of lateral loading on the performance of railroad …
Ai-Based Hazard Detection For Railway Crossings, Darren Espinoza, Gasser G. Ali, Constantine Tarawneh
Ai-Based Hazard Detection For Railway Crossings, Darren Espinoza, Gasser G. Ali, Constantine Tarawneh
Mechanical Engineering Faculty Publications
Grade crossings are critical elements of the railway infrastructure due to the potential risk of vehicle collisions with trains. According to the National Highway Traffic Safety Administration, there were more than 1,600 vehicle-train, and 500 human-train collisions in 2020. Researchers, transportation organizations, and government bodies are constantly exploring practices and technologies to improve safety at crossings. Examples of safety standards include sensors, motion detectors, depth cameras, and many other innovative technologies. The goal of this paper is to investigate the applications of computer vision using Artificial Intelligence (AI) deep learning models to enhance railway safety. Deep learning models can provide …
Kernel Ridge Regression In Predicting Railway Crossing Accidents, Ethan Villalobos, Constantine Tarawneh, Jia Chen, Evangelos E. Papalexakis, Ping Xu
Kernel Ridge Regression In Predicting Railway Crossing Accidents, Ethan Villalobos, Constantine Tarawneh, Jia Chen, Evangelos E. Papalexakis, Ping Xu
Mechanical Engineering Faculty Publications
Expanding on the insights from our initial investigation into railway accident patterns, this paper delves deeper into the predictive capabilities of machine learning to forecast potential accident trends in railway crossings. Focusing on critical factors such as “Highway User Position” and “Equipment Involved,” we integrate Kernel Ridge Regression (KRR) models tailored to distinct clusters, as well as a global model for the entire dataset. These models, trained on historical data, discern patterns and correlations that might elude traditional statistical methods. Our findings are compelling: certain clusters, despite limited data points, showcase remarkably Root Mean Squared Error (RMSE) values between predictions …
Spectral Clustering In Railway Crossing Accidents Analysis, Ethan Villalobos, Hector Lugo Iii, Biqian Cheng, Miguel Gutierrez, Constantine Tarawneh, Ping Xu, Jia Chen, Evangelos E. Papalexakis
Spectral Clustering In Railway Crossing Accidents Analysis, Ethan Villalobos, Hector Lugo Iii, Biqian Cheng, Miguel Gutierrez, Constantine Tarawneh, Ping Xu, Jia Chen, Evangelos E. Papalexakis
Mechanical Engineering Faculty Publications
This study employs graph mining and spectral clustering to analyze patterns in railway crossing accidents, utilizing a comprehensive dataset from the US Department of Transportation. By constructing a graph of implicit relationships between railway companies based on shared accident localities, we apply spectral clustering to identify distinct clusters of companies with similar accident patterns. This offers nuanced insight into the underlying structure of these incidents. Our results indicate that “Highway User Position” and “Equipment Involved” play pivotal roles in accident clustering, while temporal elements like “Date” and “Time” exert a diminished impact. This research not only sheds light on potential …
Development Of Rail Anchor Testing Through Literature Review Of Cwr Buckling Resistance Evaluation, Juan Rodriguez, Siang Zhou, Constantine Tarawneh, Alberto Sanchez, Teresa Salazar-Flores, S. Mustapha Rahmaninezhad, Hameem Gorabi
Development Of Rail Anchor Testing Through Literature Review Of Cwr Buckling Resistance Evaluation, Juan Rodriguez, Siang Zhou, Constantine Tarawneh, Alberto Sanchez, Teresa Salazar-Flores, S. Mustapha Rahmaninezhad, Hameem Gorabi
Mechanical Engineering Faculty Publications
Continuously welded rail (CWR) is among the most used railroad systems worldwide with great improvements compared to jointed tracks, including refined ride quality, increased fatigue life of track and rolling stock, and reduced maintenance costs. Rail buckling is one of the key remaining issues for CWRs to further reduce safety hazards and infrastructure deterioration, and save required track retrofit material and efforts. CWR buckling is induced by combined longitudinal, lateral, and torsional forces on the track that are caused by the synergy of rail components, the loading from moving trains, the interaction between track and substructure, and the effect of …
How Ai And Digitalization Can Help To Improve Managing Projects In Lean Manufacturing & Supply Chain Environment, Abhijeet Hange
How Ai And Digitalization Can Help To Improve Managing Projects In Lean Manufacturing & Supply Chain Environment, Abhijeet Hange
Harrisburg University Dissertations and Theses
This research examines how digitalization and machine learning (ML) revolutionize project management in supply chain and lean manufacturing settings. To improve the efficiency and caliber of their operational procedures, Acuity Brands, Amazon, Walmart, Apple, and other medium-sized businesses—which are at the center of today's competitive markets—are resorting to automation and digitalization. With an emphasis on the fusion of digital and artificial intelligence (AI), the paper explores how successful transformation initiatives are essential to the automation and digitization of manufacturing and distribution hubs. The study uses quantitative methods approach to evaluate the benefits and drawbacks of these technology integrations by integrating …
Nucleation Control System And Method Leading To Enhanced Boiling Based On Electric Cooling, Amitabh Narain, Soroush Sepahyar, Divya Kamlesh Pandya, Vibhu Vivek
Nucleation Control System And Method Leading To Enhanced Boiling Based On Electric Cooling, Amitabh Narain, Soroush Sepahyar, Divya Kamlesh Pandya, Vibhu Vivek
Michigan Tech Patents
A cooling module for an electric devise includes a body having formed therein a plurality of channels, a micro-structured boiling surface, a piezoelectric transducer, an inlet header, and an outlet header. Each channel of the plurality of channels is defined by a first channel surface and opposing lateral channel surfaces cooperatively defining a rectangular cross section normal to a channel axis The micro-structured boiling surface is positioned adjacent the first channel surface of each channel. The piezoelectric transducer is in acoustic communication with one of the opposing lateral channel surfaces of each channel and configured to direct acoustic waves on …
Comparing Life-Cycle Dynamics Of Li-Ion Batteries (Libs) Clustered By Operating Conditions With Sindy, Kristen L. Hallas, Md Shahriar Forhad, Tamer Oraby, Benjamin Peters, Jianzhi Li
Comparing Life-Cycle Dynamics Of Li-Ion Batteries (Libs) Clustered By Operating Conditions With Sindy, Kristen L. Hallas, Md Shahriar Forhad, Tamer Oraby, Benjamin Peters, Jianzhi Li
Manufacturing & Industrial Engineering Faculty Publications
Lithium-ion batteries (LIBs) play a big part in the vision of a net-zero emission economy, yet it is commonly reported that only a small percentage of LIBs are recycled worldwide. An outstanding barrier to making recycling LIBs economical throughout the supply chain pertains to the uncertainty surrounding their remaining useful life (RUL). How do operating conditions impact initial useful life of the battery? We applied sparse identification of nonlinear dynamics method (SINDy) to understand the life-cycle dynamics of LIBs with respect to sensor data observed for current, voltage, internal resistance and temperature. A dataset of 124 commercial lithium iron phosphate/graphite …
3d Printing Filament Producer: A Reverse 3d Printer, Jackson Mar, Adnesh Tondale, Charles Wallace
3d Printing Filament Producer: A Reverse 3d Printer, Jackson Mar, Adnesh Tondale, Charles Wallace
Mechanical Engineering Senior Theses
PLA filament stands out as the most widely utilized material in FDM (Fused Deposition Modeling) 3D Printing. This additive manufacturing process involves the layer-by-layer construction of 3D objects, employing a variety of materials. Commonly used materials in 3D printing include PLA, ABS, and PETG plastics, each with unique characteristics suited to specific project requirements. For example, PLA is known for its high tensile strength, while PETG, with its higher melting point, is suitable for applications requiring greater thermal resistance.
Despite the versatility of these materials, the inherent challenge arises with the accumulation of filament waste, comprising supports, benchmark prints, and …
Performance Evaluation Of A Novel Dual-Bed Gasification Reactor For The Production Of Green Energy, Ogooluwa Philip Ojo
Performance Evaluation Of A Novel Dual-Bed Gasification Reactor For The Production Of Green Energy, Ogooluwa Philip Ojo
Theses and Dissertations
The need to maximize current energy sources and create new ones has increased due to the world's growing energy demand and the depletion of major energy sources. Biomass and solid waste, such as wood, sawdust, plant wastes, paper, cardboard, and plastics, present promising carbon-neutral alternatives, collectively accounting for over 10% of global energy generation. The concept of integrating fixed and fluidized bed reactors in industrial applications needs additional research to ascertain the optimal configuration and interplay between these reactor types. Hence this research focuses on the utilization of a unique hybrid modular gasification system that combines fixed and fluidized bed …
Using Sustainable Technique To Recycle Waste Paper In Academic Institutions, Mustafa M. Mansour
Using Sustainable Technique To Recycle Waste Paper In Academic Institutions, Mustafa M. Mansour
Al-Bahir
It has been clearly demonstrated that it would be feasible to consider recycling paper in an academic institution. This can be achieved through combining specific waste paper baskets, a pulping machine and power supplied by a renewable energy source, with an already established local paper making company. The paper making company would be able to gain a subsidy from the government which pays them to actually recycle paper, to counteract the cost of the pulped paper which is 30% more expensive than raw wood pulp. The academic institution would save money on waste disposal and decrease its carbon footprint by …
Effects Of Periodic Sequential Arrangement Of Subscale Miura-Foldcore Under Quasi-Static Compression, Chase Mortensen, Devin Nielsen, S. Z.H. Shah, Juhyeong Lee
Effects Of Periodic Sequential Arrangement Of Subscale Miura-Foldcore Under Quasi-Static Compression, Chase Mortensen, Devin Nielsen, S. Z.H. Shah, Juhyeong Lee
Mechanical and Aerospace Engineering Faculty Publications
This study presents experimental and numerical investigations on the quasi-static compressive responses of various subscale Miura-foldcore composites. A series of quasi-static compression tests were conducted on standard Miura foldcore specimens fabricated using carbon/epoxy woven fabric prepregs. Representative volume element (RVE) models, incorporating periodic boundary conditions (PBCs), were developed to predict the size-dependent compressive response of subscale Miura foldcores. The effective properties of the carbon/epoxy woven fabric composite used in this study were calculated using the NASA multiscale analysis tool (NASMAT) via two-step homogenization process. The FE model exhibited comparable agreement with experimental results, showcasing variations of less than 7% and …
Assessment Of An Assumed Strain-Based Triangular Membrane Element, Abdelhak Kherfi, Kamel Zouggar, Khelifa Guerraiche, Djemaa Guerraiche, Antar Tahiri
Assessment Of An Assumed Strain-Based Triangular Membrane Element, Abdelhak Kherfi, Kamel Zouggar, Khelifa Guerraiche, Djemaa Guerraiche, Antar Tahiri
Emirates Journal for Engineering Research
This paper presents a novel triangular strain-based element designed to address plane stress and strain, axisymmetric, and dynamic problems. The proposed element has four nodes, three of which are located at the vertices and one of which is located at the midpoint of the diagonal. The corner nodes have three essential external degrees of freedom (u, v, θ), while the central node has two degrees of freedom (u, v) on one of the triangle edges. A static condensation-based treatment of the central node is employed to streamline the model and reduce computational overhead. This triangular element …
Exploring The Impact Of Artificial Intelligence On Project Management Across The Manufacturing, Technology, And Construction Industries, Susie Diaz Ferrera
Exploring The Impact Of Artificial Intelligence On Project Management Across The Manufacturing, Technology, And Construction Industries, Susie Diaz Ferrera
Harrisburg University Dissertations and Theses
This study explores the impact of Artificial Intelligence (AI) on project management across the manufacturing, technology, and construction industries. The research focuses on understanding the benefits, challenges, and long-term implications of AI utilization in these sectors. Key findings indicate that 46% of participants use AI mainly for task automation and enhancing functions like brainstorming and communication, which significantly boosts efficiency and team productivity. Despite these benefits, the research identifies several obstacles, including high initial costs, inadequate training, technical issues, and unclear regulatory guidelines. The study addresses four main questions, revealing that AI not only enhances project management processes but also …
A Screening Life Cycle Analysis Of One-Way And Reusable Crate Designs – Estimating Environmental Impacts Via Lca Software, Nicolas R. Corona
A Screening Life Cycle Analysis Of One-Way And Reusable Crate Designs – Estimating Environmental Impacts Via Lca Software, Nicolas R. Corona
Master's Theses
A comparison analysis conducted via COMPASS life cycle analysis software has indicated that a one-way crate design, rather than a reusable crate design, is in fact the more environmentally friendly packaging system. These results can be interpreted differently, however, as the manufacturer of said crate designs must confirm what impact indicators they would like to reference as environmental goalposts. The conducted analysis provides insight into what the environmental impacts of each packaging system look like as packaging at all three system levels has been identified as a means of reducing environmental impacts globally. As such, the manufacturer of said crate …
Algae: Advanced Lakebed Guardian And Algae Eradicator, Máté Aranyosi, Julien Buist-Thuillier, Victor Calata-Gentil, Elia Döhler, Brian Yeh
Algae: Advanced Lakebed Guardian And Algae Eradicator, Máté Aranyosi, Julien Buist-Thuillier, Victor Calata-Gentil, Elia Döhler, Brian Yeh
Mechanical Engineering Senior Theses
The Advanced Lakebed Guardian and Algae Eradicator (ALGAE) is a benthic rover designed to mitigate algae blooms in Lake Tahoe and similar freshwater environments. The aim is to eliminate the risks of manual algae removal by scuba divers, which is the current solution employed by the UC Davis Tahoe Environmental Research Center (TERC). Serving as a safer and cost-effective robotic solution for algae mitigation, ALGAE will enhance environmental preservation, marine research, and the tourism industry at Lake Tahoe. For the first year of development, differential drive, sensor data streaming, and remote operation were all achieved using a tethered laptop workstation …
Aero Avengers: Aiaa Design, Build, And Fly, Andres Alba Burbano, Chris Berardino, Jill Chandler, Patrick Hudson, Andrew Mahler, Nicholas Smith
Aero Avengers: Aiaa Design, Build, And Fly, Andres Alba Burbano, Chris Berardino, Jill Chandler, Patrick Hudson, Andrew Mahler, Nicholas Smith
Mechanical Engineering Senior Theses
This thesis explores the experience of a Santa Clara University senior design team that created an unmanned aerial vehicle (UAV) intended to compete in the ’Design, Build, Fly!’ competition hosted by the American Institute of Aeronautics and Astronautics (AIAA). The six students worked together to secure funding for the project, formulate a preliminary design, and then manufacture the aircraft. Every step of this process was iterative, allowing the team to learn from their past attempts as the project’s timeline progressed. Upon obtaining competition rules and mission requirements, the team followed a design flow that brought the plane from a sketched …
Dolphin: Drone-Based Oceanic Landing Platform With High-Tech Integrated Navigation, Keanu Dayton, Ethan Hang, Jack Hartline, Jordan Puetz, Tomas Ronderos, Zara Shariff
Dolphin: Drone-Based Oceanic Landing Platform With High-Tech Integrated Navigation, Keanu Dayton, Ethan Hang, Jack Hartline, Jordan Puetz, Tomas Ronderos, Zara Shariff
Mechanical Engineering Senior Theses
The ocean covers 71% of the earth’s surface. With its vast size, it produces almost half of the world’s oxygen, is a source of food, and controls the climate. As humans, it is vital to our way of life. Thus, institutions and organizations have been built in order to study and conserve it; one such organization is the Monterey Bay Aquarium Research Institute (MBARI). A method available to them is the use of drone imaging over the ocean’s surface. However, drones have a limited battery life that restricts the scope of missions they can pursue. A solution that we have …
Autonomous Hydroponic System, Bella Wanebo, Ashley Oh, Jason Slifka
Autonomous Hydroponic System, Bella Wanebo, Ashley Oh, Jason Slifka
Mechanical Engineering Senior Theses
Hydroponics is a potentially useful farming technique for growing food in climates where it is difficult to naturally farm. However, hydroponic systems in harsh climates are usually very large and unable to be easily moved around. The design of a portable, enclosed hydroponic garden using the soilless Nutrient Film Technique (NFT) with a vertical configuration that can grow spinach in Antarctica will be discussed. It will have a reversible flow to evenly distribute nutrients to stacked rows of plants. A tradeoff analysis shows that 3D printing a custom T splitter is the best option for controlling the flow within the …
Using Dft On Ultrasound Measurements To Determine Patient-Specific Blood Flow Boundary Conditions For Computational Hemodynamics Of Intracranial Aneurysms, Hang Yi, Zifeng Yang, Luke Bramlage, Bryan Ludwig
Using Dft On Ultrasound Measurements To Determine Patient-Specific Blood Flow Boundary Conditions For Computational Hemodynamics Of Intracranial Aneurysms, Hang Yi, Zifeng Yang, Luke Bramlage, Bryan Ludwig
Mechanical and Materials Engineering Faculty Publications
Boundary conditions (BCs) is one pivotal factor influencing the accuracy of hemodynamic predictions on intracranial aneurysms (IAs) using computational fluid dynamics (CFD) modeling. Unfortunately, a standard procedure to secure accurate BCs for hemodynamic modeling does not exist. To bridge such a knowledge gap, two representative patient-specific IA models (Case-I and Case-II) were reconstructed and their blood flow velocity waveforms in the internal carotid artery (ICA) were measured by ultrasonic techniques and modeled by discrete Fourier transform (DFT). Then, numerical investigations were conducted to explore the appropriate number of samples (N) for DFT modeling to secure the accurate BC by comparing …
Spring Rate Measurement Of A Pneumatic Mountain Bike Tire, Joseph D. Balderama, Alexandre Kachlakev, Duncan Wyke, Luki Rosen
Spring Rate Measurement Of A Pneumatic Mountain Bike Tire, Joseph D. Balderama, Alexandre Kachlakev, Duncan Wyke, Luki Rosen
Mechanical Engineering
The Final Design Review (FDR) presents a comprehensive overview of the spring rate measurement project for a pneumatic mountain bike tire. This report details the project's design, its implementation, and how it met all specified requirements. It also includes a discussion of the project's findings and recommendations for future work, assuming continuation of the project. The primary goal is to develop a device that allows professional race teams or experienced mountain bike riders to parameterize tires based on their spring rate in addition to internal pressure.
Since the Critical Design Review (CDR), the design has undergone significant changes due to …
Rapid Composter, Cate Seay, Clarisbet De Jesus, Lesley Milena Estrada, Reese Dennett
Rapid Composter, Cate Seay, Clarisbet De Jesus, Lesley Milena Estrada, Reese Dennett
Mechanical Engineering
This Final Design Review documents the efforts of a team of mechanical engineering students from California Polytechnic State University, San Luis Obispo as they work towards completing their assigned senior design project. This team was tasked with designing and developing an onsite rapid composter for the Girl Scouts of California’s Central Coast. The selected design concept that will be explained focuses on creating a composter that is child-safe, portable, weatherproof, solar-powered, and requires minimal manual user input. This report will not only provide a detailed description of the chosen design but will also supply an extensive design justification. This mainly …
Cal Poly Bsae Brake Caliper, Carter Henry Foye, Benjamin Leistiko, Nathan Berger, Colin Williams
Cal Poly Bsae Brake Caliper, Carter Henry Foye, Benjamin Leistiko, Nathan Berger, Colin Williams
Mechanical Engineering
In the past, the Cal Poly Racing Baja SAE team has used off-the-shelf brake calipers for their vehicle. Off the-shelf calipers have been either oversized, resulting in a heavy and hard to package system, or undersized, resulting in an unreliable system that does not provide adequate braking power. The goal of this project was to provide a caliper that meets the requirements of Cal Poly’s Baja SAE team. Our final design consisted of a two piece CNC machined caliper that uses the complex piston seal geometry from an existing mountain bike brake caliper. Using an existing caliper as a reference …
Quarter Car Suspension Model, Jack Miller, Alexander Eckhardt, Jonathan Lam, Max Gardenswartz
Quarter Car Suspension Model, Jack Miller, Alexander Eckhardt, Jonathan Lam, Max Gardenswartz
Mechanical Engineering
Dr. Porumamilla, Professor of Mechanical Engineering at Cal Poly, needs a way to demonstrate the concept of base excitation to the mechanical engineering students in the Mechanical Vibrations (ME 318) Lab. A mass-spring-damper model represented by a quarter-car suspension has been selected to represent this concept. A team of four students was assigned to design such a model as a senior design project. This document will explain the testing procedures, how were the results, and if they achieved our requirements. Furthermore, the document will explain how we assemble our product and manufacturing steps. Additionally, Critical Design Report (CDR) design changes …
F56: Rocket Thrust Vector Control, Ethan Douglas Anderson, Yiming Trent Jia, Sahil Sampat
F56: Rocket Thrust Vector Control, Ethan Douglas Anderson, Yiming Trent Jia, Sahil Sampat
Mechanical Engineering
This Final Design Review (FDR) report compiles relevant information regarding the Rocket Thrust Vector Control senior project as sponsored by Ethan Anderson from Cal Poly Space Systems (CPSS). Documented in this report is our progress from the months following our Critical Design Review (CDR) completion. This consists of a brief overview of the design our thrust vector control (TVC) system and its subassemblies with design changes noted, a thorough walkthrough of our procurement, manufacturing, and assembly process for creating our verification prototype (including software), a breakdown of how we verified each of our specifications through inspection and testing and the …