Director of the Rockwell Automation laboratory at Texas A&M University, a state-of-the-art facility for education and research in the areas of automation, control, and automated system integration. c American Society for Engineering Education, 2016 Research Projects and Lessons Learned from Research Experiences for Undergraduates Program in Automated System DesignAbstractAutomated systems affect the way we do things and impact our daily lives. Designing andbuilding automated systems is complex and requires an integrated skill set. The knowledgeneeded cuts across multiple disciplines of mechanical engineering, control/electrical engineering,and manufacturing engineering. U.S. manufacturers are
“(c) an ability to design asystem, component, or process to meet desired needs within realistic constraints such as economic,environmental, social, political, ethical, health and safety, manufacturability, and sustainability”and (h) “the broad education necessary to understand the impact of engineering solutions in aglobal, economic, environmental, and societal context”). The senior design project can serve as anexcellent culminating experience in the program of study when it focuses on research and designprojects that have practical value to consumers or to industry. For the Engineering Technology(ET) Department at Drexel University, the senior design course is a year-long educational journey(three quarters) that takes an idea generated by a
-melt gluing technology, was to deposit a thinlayer of material onto a build table slowly constructing the desired component layer by layer.This paper is concerned with the design, manufacture, and testing of an open source FDMdesktop machine using a single thread of acrylonitrile butadiene styrene (ABS) material.Commercially available FDM 3-D printers have a wider selection of print material, for examplepolycarbonate (PC), polylactic acid (PLA), high density polyethylene (HDPE),polyphenylsuffine (PPSU), and high impact polystyrene (HIPS) to list just a few . In addition,many commercial machines use a water soluble wax or a very brittle material such aspolyphenylsulfone (PPSF) as a substrate support in the building process.FDM modeling produces
Paper ID #14917Adapting a Freshman Manufacturing Course to Different Learning StylesMr. Aaron Lalley P.E., South Dakota School of Mines and Technology AAaron Lalley P.E. Aaron Lalley is an instructor at the South Dakota School of Mines and Technology (SDSM&T). His current research includes chatter modeling of a machining process with fixture optimiza- tion. Prior to academia Aaron worked for 23 years as an engineer for Hutchinson Technology, Caterpillar, Midwest Precision Tool and Die, Unified Theory Inc. and Manufacturing Works in the areas of machine design, tool design, product design, CNC programming, HVAC, MRP
. He received his Ph.D. in industrial engineering in 1996 from the University of Illinois at Urbana-Champaign, where, as a graduate student, he taught quality and applied statistics and researched machining models for monitoring and control. At Cal Poly, Dr. Waldorf has taught and developed courses in manufacturing process design, computer-aided manufacturing, tool en- gineering, quality engineering, and reliability. He has participated in numerous activities related to the improvement of teaching methods, teaching assessment, and curriculum design. He is currently the fac- ulty advisor for Society of Manufacturing Engineers (SME). His research interests are in metal cutting process modeling, tool wear, cutting tool
Paper ID #15514Intellectual Development for Sustainability in Design and ManufacturingDr. Jaby Mohammed, The Petroleum Institute, Abu Dhabi Jaby Mohammed is a faculty at The Petroleum Institute, Abu Dhabi, UAE. He received his PhD in Indus- trial Engineering from University of Louisville (2006), masters in Industrial Engineering from University of Louisville (2003) and also a master’s in business administration from Indira Gandhi National Open Uni- versity (2001). His research interests include advanced manufacturing, design methodologies, six sigma, lean manufacturing, and engineering education. He previously taught at
proceedings). Dr. Lin’s teaching interests lies in Mechanical Design, Solid Mechanics, and Dynamics. Currently, he is advising 4 Ph.D. students, 3 Master students, and 2 undergraduate students. Since 2011, 5 Master students graduated from his group. He was awarded the Best Paper at SAMPE 2008 fall technical conference, Honorable Mentioned Best Student Paper at SMASIS 2009 fall conference and ASME Best Paper in Materials of 2010 at SPIE Smart Materials/NDE 2011 conference. He is a member of ASME, SPIE, SAMPE and AIAA. ©American Society for Engineering Education, 2016 EVALUATING INDIVIDUAL LEARNING EFFECTIVENESS ON PROJECT-BASED LEARNING METHODOLOGY BY COMPARING TEAM-BASED AND
active member of American Educational Research Association’s Division D (Measurement) Graduate Student Welfare and Mentoring Committee and program chair for AERA’s Professors of Educational Research SIG in 2014-2016. Educational Background: 1979 Bachelor of Science in Mathematics University of Texas-Pan American 1982 Masters of Science in Mathematics Education University of Texas-Pan American 1989 Philosophy Degree in Educational Psychology Texas A&M University Job Experience: 1989-1991 Assistant Professor Texas A&M University 1991-2006 Associate Professor Texas Tech Uni- versity 2006-2008 Professor Texas Tech University 2008 to present Professor University of Texas at El PasoDr. Eric D. Smith
control. His research interest includes sensor based condition monitoring of CNC machining, machine tool accuracy characterization and enhancement, non-invasive surgical tool design, reverse engineering and bio materials.Dr. Warren Rosen, Drexel University (Eng. & Eng. Tech.) Dr. Warren Rosen received his Ph.D. in physics from Temple University. He has served as Assistant Professor of Physics at Colby and Vassar Colleges where he carried out research in solar physics, medical physics, and instrumentation. Following this experience he was a research scientist at the Naval Air Warfare Center in Warminster, PA where he established a laboratory for research in high-performance computer networks and architectures for
developments, best learning theoryimplementations and most effective teaching practices and innovations [14].Due to the fast evolution in electro-mechanical and electronic systems, and the ever-changingaspects involved in modern industry, the maintenance of professional and academic currency isabsolutely essential. An annual faculty professional development plan is proposed in a rotationschedule, in order to provide opportunities to faculty members to stay current. The plan followsthe framework proposed by Odden et al. [15] (where applicable) and it is depicted in Table 2. Table 2. Cost Structure for Professional DevelopmentNKU Existing and Proposed Facilities for the ProgramEngineering Technology Programs occupy 9 rooms on the
systemapproach. Additionally, many colleges and universities are not providing all of their graduates withthe critical thinking, problem-solving, and sustainable practices required to meet the needs ofemployers. In order for companies to compete in the global marketplace, employers in the 21stcentury will require that their engineers couple traditional engineering design skills with newer,modern skills in sustainability, and eco-design as well as the ability to function in multi-disciplinary teams6-10.2. Overview of the Course DevelopmentThis course INDE t280 was offered at Drexel University for the first time as a special-topic courseduring the Fall quarter of 2015-2016. The INDE t280 Clean Energy and Energy Efficiency courseprovides the students with
MAKE Lab (http://themakelab.wp.txstate.edu), she is currently researching how recurring experiences within these design-based technologies impact self-efficacy and positive attitudes toward failure.Dr. Julie S. Linsey, Georgia Institute of Technology Dr. Julie S. Linsey is an Assistant Professor in the George W. Woodruff School of Mechanical Engineering at the Georgia Institute of Technological. Dr. Linsey received her Ph.D. in Mechanical Engineering at The University of Texas. Her research area is design cognition including systematic methods and tools for innovative design with a particular focus on concept generation and design-by-analogy. Her research seeks to understand designers’ cognitive processes with the goal
, Biomedical Device Design and Manufacturing, Automation and Robotics, and CAE in Manufacturing Processes fields. c American Society for Engineering Education, 2016Mapping Professional Performance Metrics into ABET Outcomes Assessment ProcessAbstractIn this manufacturing engineering program, the internship course is mandatory. The benefit ofsuch course is that the permanent placement rates of this program are higher when compared tosimilar institutions. Many of the students are staying in their internship companies as engineersafter graduation. On the contrary, it is becoming harder to place all of the students into industrialinternships due to increasing enrollments in both the domestic
architectural and manufacturing Sciences depart- ment of Western Kentucky University. He was a faculty at Trine University teaching mainly graduate courses as well as undergraduate courses in engineering technology and mechanical engineering depart- ments. He is currently teaching in Engineering Technology Program at Drexel University. His area of expertise is in CAD/CAM, Computer Numerical Control (CNC) machining, rapid prototyping and qual- ity control. His research interest includes sensor based condition monitoring of CNC machining, machine tool accuracy characterization and enhancement, non-invasive surgical tool design, reverse engineering and bio materials.Mr. M. Eric Carr, Drexel University Mr. Eric Carr is an
students can more easilyobtain manufacturing experience while building on their design knowledge and producing theparts that they need for their projects.The Artisan and Fabrication LaboratoryThe Artisan and Fabrication Laboratory (AFL) at a large Midwestern university providesengineering students, faculty, and staff with hands-on access to a state-of-the-art manufacturingfacility in a “maker-space” like environment. The mission of the AFL is multifaceted, but highlyfocused on student learning. Essentially, students are provided the opportunity to manufacturetheir own parts while being overseen by laboratory staff that provide expert training on not onlymachine operation, but also on safety best-practices. The laboratory is designed to mimic