interesting and fun concept to theinstructor and students.Earlier rapid prototyping projects from a decade ago involved toy design and development. Inaddition, students re-engineered existing commercial ZOOB designs for the former InfinitoyCompany. An example Re-engineering Proposal by Martin Pabian, then a BS ManufacturingEngineering major can be found below1: ZOOB Reverse Engineering Project Proposal by Martin Pabian Rapid Prototyping and Reverse EngineeringBackground: Citroid System is the organic technology behind ZOOB brand toys. The open-ended, ergonomic design has the potential for a wide array of applications far beyond toys, fromcomplex mathematical
vehicles, energy storage, and advanced manufacturing.Prof. C. P. Yeh, Wayne State University Chih-Ping Yeh received his BS in Electrical and Electrnoic Engineering from TamKung University in Taiwan, MS and Ph.D. in Electrical Engineering from Texas A&M University in College Station, Texas. He is the Chair of the Division of Engineering Technology at Wayne State University in Detroit, Michigan.Dr. Jimmy Ching-Ming Chen, Wayne State University Assistant Professor 2015-present Division of Engineering Technology Wayne State University Ph.D 2006 Texas A&M University c American Society for Engineering Education, 2017 Direct Ink Writing Extruders for Biomedical
AC 2010-804: CAREERME: ENCOURAGING AN ADVANCEDMANUFACTURING WORKER PIPELINESandy Feola, Sinclair Community College Sandy Feola is the Customer Relations Manager for the NCME (National Center for Manufacturing Education) at Sinclair Community College and a part time instructor for the University of Dayton’s Engineering Technology Department (since 2007) and Sinclair Community College’s Operations Technology Department (since 1995), teaching industrial engineering and quality engineering curriculum. As an independent quality professional in Dayton, Ohio since 2004, She provides consultation and training to manufacturing and service organizations for performance improvement initiatives in the
subsequent engineering education. The two credit lecture, one credit labcourse entitled „Production Engineering‟ now includes significant hands-on work ontraditional machines (lathes and mills), powder metallurgy, plastic injection molding,welding, 3-D co-ordinate measuring machine, and several rapid prototyping / rapidmanufacturing technologies. Appropriate laboratory tasks were designed and applicablesafety and operational instructions were prepared.The laboratory curriculum was implemented since the Fall „06 term. Despite increasedworkload for the students that sometimes required them to work additional hours outside Page 15.39.2of the scheduled class
Capital Consortia. Education: •Ph.D. in Maritime Sciences and Technology, Kobe Maritime University, Japan, 2005 •M.S. in Transportation and Information Systems Engineering, Kobe University, Japan, 2000 •B.A. in Interna- tional Affairs, University of Las Americas, (UDLA), 1995 Page 24.970.1 Contact: Dr. Esther Rodriguez Silva, PhD, CGBP TEES Assistant Research Professor Talent Incubator Director Project Manager, Global Supply Chain Lab Texas A&M University Phone: 979 845 4984 Direct: 979 845 3146 Mobile: 210 454 6618 Email:esther.ersilva@tamu.edu http://id.tamu.edu c
Criterion 3.H and Beyond. Proceedings of the 2005 American Society of Engineering Education Annual Conference and Exposition.4. Dave, J. & Dong, J. (2010). Global Experiential Learning for Engineering Technology Students. American Society for Engineering Education (AC2010-1718).5. Farris, J. & Lane, P.M. (2011). International Co-op Experience at the Base of the Economic Pyramid for Engineering Students. American Society for Engineering Education (AC 2011-418).6. Gattis, C. & Edwards, F. (2007). Lessons Learned: Our First Engineering Study Abroad Program. American Society of Engineering Education (Ac 2007-1449).7. Parkinson, A. (2007). Engineering Study Abroad Programs: Formats, Challenges, Best Practices. American Society
Paper ID #21499Non-Destructive Testing (NDT) and Evaluation Using Ultrasonic Testing Equip-ment to Enhance Workforce Skillset for Modern ManufacturingDr. Aditya Akundi, University of Texas, El Paso Aditya Akundi is currently affiliated to Industrial Manufacturing and Systems Engineering department, and Research Institute for Manufacturing and Engineering Systems at University of Texas, ElPaso. He earned a Bachelor of Technology in Electronics and Communication Engineering from Jawaharlal Nehru Technological University, India. He earned a Master of Science in Electrical and Computer En- gineering at the University of Texas
Paper ID #28722Teaching High-School Students Innovative Topics Related to AdvancedManufacturing and 3D-PrintingDr. Ahmed Cherif Megri, North Carolina A&T State University Dr. Ahmed C. Megri is an Associate Professor of engineering. In 2011, he received his HDR (Dr. Habili- tation) in Engineering Sciences, from Marie and Pierre Curie University, Paris VI (Sorbonne Universities), and in 1995, he received his Ph.D. in Thermal Engineering, from Lyon Institute of Technology. He wrote more than 100 papers in journals and international conferences. His research interests include thermal and mechanical modeling and simulation
Green Fund committee. His research interests are in Systems Engineering & Architecture, Complex systems, Systems testing and Application of Entropy to Complex Systems. Email: sakundi@miners.utep.eduDr. Richard Chiou, Drexel University Dr. Richard Chiou is Associate Professor within the Engineering Technology Department at Drexel Uni- versity, Philadelphia, USA. He received his Ph.D. degree in the G.W. Woodruff School of Mechanical Engineering at Georgia Institute of Technology. His educational background is in manufacturing with an emphasis on mechatronics. In addition to his many years of industrial experience, he has taught many different engineering and technology courses at undergraduate and graduate levels
Paper ID #22318An Outreach Program Focusing on Design Process and 3-D-printingDr. Ahmed Cherif Megri, North Carolina A&T State University Dr. Ahmed C. Megri is an Associate Professor of engineering. He received his HDR (Dr. Habilitation) in Engineering Sciences, from Marie and Pierre Curie University, Paris VI (Sorbonne Universites), in 2011, and his PhD in Thermal Engineering, from Lyon Institute of Technology in 1995. He wrote more than 100 papers in journal and international conferences. His research interests include thermal and mechanical modeling and simulation of materials. He participate in multiple projects
Paper ID #18200Enhancing Additive Manufacturing Education Using Virtual Rapid Proto-typing Simulator ToolDr. Aditya Akundi, University of Texas, El Paso Aditya Akundi is currently affiliated to Industrial Manufacturing and Systems Engineering department, and Research Institute for Manufacturing and Engineering Systems at University of Texas, ElPaso. He earned a Bachelor of Technology in Electronics and Communication Engineering from Jawaharlal Nehru Technological University, India. He earned a Master of Science in Electrical and Computer En- gineering at the University of Texas at El Paso (UTEP). Intrigued by Systems
Paper ID #19478A Workshop for Integration of Internet of Things into Green Energy Manu-facturingDr. Richard Chiou, Drexel University (Eng. & Eng. Tech.) Dr. Richard Chiou is Associate Professor within the Engineering Technology Department at Drexel Uni- versity, Philadelphia, USA. He received his Ph.D. degree in the G.W. Woodruff School of Mechanical Engineering at Georgia Institute of Technology. His educational background is in manufacturing with an emphasis on mechatronics. In addition to his many years of industrial experience, he has taught many different engineering and technology courses at undergraduate and
. Recently, veteran manufacturing employees are retiring fasterthan they can be replaced, taking decades of experience and knowledge with them. It isimperative to continue to train and hire young manufacturing talent to keep the industry strong.For this study, four well-established Pennsylvania foundries and 18 students or alumni whocompleted metalcasting internships were surveyed to begin to establish the best practices forrecruiting and retaining young talent into the foundry industry, with a focus on providinginternships to four-year university engineering or engineering technology students. The surveyincluded 10 directed questions with information typical of establishing a manufacturinginternship, and one open-ended question. An overview of the
AC 2009-2082: RAPID PROTOTYPE TOOLING TO TEACH NET-SHAPEDMANUFACTURINGLouis Reifschneider, Illinois State University Lou Reifschneider is an Associate Professor in the Department of Technology at Illinois State University. He received his BSME in 1983 from the University of Notre Dame, his MSME in 1984 from the University of Minnesota, and his PhD ME in 1990 from the Ohio State University. Prior to joining ISU, Dr. Reifschneider worked in the field of computational engineering analysis software development focusing on plastics processing. His research interests include plastic product design, mold and die design, and the processing of bio-based materials. Since 1998 he has taught
the United Arab Emirates University. He obtained his B.Eng. (Me- chanical Engineering) and M.Sc. (Mechatronics Engineering) from the Federal University of Technology, Yola, Nigeria in 2013 and University of Debrecen, Hungary in 2019 respectively. His research interests include Dynamics, Control, Robotics and Mechatronic Systems. c American Society for Engineering Education, 2020 MAKER: Designing and Building a Two-DOF Inverted Pendulum on Three-DOF Cart Khalifa H. Harib, Sangarappillai Sivaloganathan, Adewale Oseni United Arab Emirates University PO Box 15551
cuttinginserts.IntroductionThe senior design project is a capstone course taken in the final year of the ManufacturingTechnology program at the University of Northern Iowa (UNI). The purposes of a two semesterresearch course, as highly suggested by both ABET and NAIT accrediting bodies is to provide anopportunity for students to work on a team to perform research and develop a project with anindustrial sponsor.Engineering technology and industrial technology programs must offer a relevant and validatedcurriculum that prepares students for post-graduation success. Courses that cover traditional Page 12.700.2subject matter in mathematics, sciences, materials, engineering
describes the process and results to date being undertaken by the Society ofManufacturing Engineers through its Manufacturing Education & Research Community (SME-MER) to move the curricula for manufacturing education forward. The goal is to ensure thatgraduates are well prepared to serve the wide spectrum of industry needs in a high-technology,globally competitive, and rapidly evolving world. The process builds on landmark workcompleted in the 1990s from which a series of publications emerged that defined content,program organization, and differentiation among associate degree, baccalaureate degree, andgraduate degree programs. A variety of methods are being implemented to perform the updatingof recommended curricula and the intended product
Paper ID #18848Best Practices for Working with Non-Technical Project SponsorsDr. John Paul Farris, Grand Valley State University John Farris joined the faculty at Grand Valley State University after a successful tenure as the chief product designer for a medical device manufacturer. His other significant industrial experience includes designing engine components for Caterpillar Inc. and consulting on the design of stationary fuel cell power generation units. His current research interests are design methods and medical technology. He received his Ph.D. from the University of Rhode Island and his Bachelors and masters degrees
Paper ID #16251Microscale Implementation and Image Analysis of Fluid ProcessesDr. Michael G. Mauk, Drexel University Michael Mauk is Assistant Professor in Drexel University’s Engineering Technology program.Dr. Richard Chiou, Drexel University Dr. Richard Chiou is Associate Professor within the Engineering Technology Department at Drexel Uni- versity, Philadelphia, USA. He received his Ph.D. degree in the G.W. Woodruff School of Mechanical Engineering at Georgia Institute of Technology. His educational background is in manufacturing with an emphasis on mechatronics. In addition to his many years of industrial experience, he
AC 2009-1112: UNDERSTANDING AUTOMATED SYSTEM DESIGN PROBLEMSOLVING: CURRENT PROGRESS AND IMPLICATIONS FOR INSTRUCTIONSheng-Jen Hsieh, Texas A&M University Dr. Sheng-Jen (“Tony”) Hsieh is an Associate Professor in the Dwight Look College of Engineering at Texas A&M University. He holds a joint appointment with the Department of Engineering Technology and the Department of Mechanical Engineering. His research interests include engineering education, cognitive task analysis, automation, robotics and control, intelligent manufacturing system design, and micro/nano manufacturing. He is also the Director of the Rockwell Automation laboratory at Texas A&M University, a state-of-the-art
. Page 12.503.1© American Society for Engineering Education, 2007 Development and Implementation of a Junior-Year Design Course in an Interdisciplinary Environment Along with Media Art and Marketing1. BackgroundContemporary thought in engineering education is to provide the students with as muchhands-on, real world experience as possible. Students are expected to hit the groundrunning in the work force immediately after their graduation and be savvy in manydivergent skills such as teamwork, communication, project, people and businessmanagement. ABET (Accreditation Board of Engineering and Technology) has includedthe multidisciplinary team experience as one of the assessable outcomes for studentsenrolled in any accredited engineering program
manufacturing laboratories offered were in the context of an overall practice-basedengineering curriculum that incorporated collaboration with industry and fully developedlaboratories. This curriculum may be considered ideal for a design and manufacturing-orientedprogram. It was developed with comprehensive resource support through grants from the NationalScience Foundation (NSF), Sandia National Laboratories, and the federal Technology ReinvestmentProgram. The Learning Factory model was considered well-conceived and successful, as evidencedby its implementation in the engineering curricula of a number of additional universities, includingUniversity of Missouri-Columbia, and Marquette University.3 Recognizing the limited resources ofintuitions that are
Engineering at Lawrence Technological Institute, MI and Dean of Research at the University of Hartford, CT. At the University of Hartford he was the founding chair-holder of the distinguished Vernon D. Roosa Endowed Professorship. As the Director of the Engineering Applications Center, he had set up partnership with more than 50 industries. He also held positions at the Albert Nerkin School of Engineering at the Cooper Union for the Advancement of Science and Art in New York City. Dr. Shetty is the author of 3 books, and more than 225 scientific articles, and papers. His textbooks on Mechatronics and Product Design are widely used around the world. His work has been cited for contribution to the understanding of surface
Paper ID #11385MAKER: Whack-a-Mole for PLC ProgrammingDr. Sheng-Jen ”Tony” Hsieh, Texas A&M University Dr. Sheng-Jen (”Tony”) Hsieh is Professor in the Dwight Look College of Engineering at Texas A&M University. He holds a joint appointment with the Department of Engineering Technology and the De- partment of Mechanical Engineering. His research interests include engineering education, cognitive task analysis, automation, robotics and control, intelligent manufacturing system design, and micro/nano manufacturing. He is also the Director of the Rockwell Automation laboratory at Texas A&M University, a state
manufacturing systems.Manufacturing engineers need to integrate other technologies with the objective of extractingfrom robots the flexibility they can offer. Vision systems have been introduced and implementedon industrial robots to improve productivity and flexibility of manufacturing systems. Sometypical applications with vision systems are work piece identification, work piece positioning,work piece dimension measurement, position compensation, surface painting, and visiontracking. Therefore, there is a need to introduce vision system technology to students in theManufacturing Engineering Technology program.There are three Robotics courses offered in the Manufacturing Engineering Technology programspanning from 200 level to 400 level to teach
in advancedmanufacturing workforce and how South Korea is preparing workers for the Industry 4.0. Wealso explored Industry 4.0 and its impact on future workforce, and South Korea’s Readiness forthe Future Workforce. Taken together, this paper offers several promising directions for furtherinvestigation into how South Korea can prepare for the impact of automation in advancedmanufacturing workforce.Acknowledgment:This work was supported, in part, by NSF grant 1700581.References[1] H. S. Kang, J. Y. Lee, S. Choi, H. Kim, J. H. Park, J. Y. Son, B. H. Kim, and S. D. Noh,“Smart manufacturing: Past research, present findings, and future directions,” InternationalJournal of Precision Engineering and Manufacturing-Green Technology, vol. 3, no. 1, pp
[1] Garetti, Marco, and Marco Taisch. "Sustainable manufacturing: trends and research challenges." ProductionPlanning & Control, 2012, 83-104.[2] Despeisse, M., et al. "The emergence of sustainable manufacturing practices." Production Planning & Control2012, 354-376.[3] Dornfeld, David Alan. "Moving towards green and sustainable manufacturing." International Journal ofPrecision Engineering and Manufacturing-Green Technology, 2014, 63-66.[4] Haapala, Karl R., et al. "A review of engineering research in sustainable manufacturing." Journal ofManufacturing Science and Engineering, 2013, 041013-1 - 041013-16.[5] Moon, Young B., and Mingtao Wu. "Innovation within the constraints of sustainability: Analysis of productdevelopment projects
Paper ID #23634From Capstone Student-led Project to Experiential Learning Module: Designand Manufacturing of an Integrated System of Pico-Hydroelectric Generatorand Water FiltrationDr. Irina Nicoleta Ciobanescu Husanu, Drexel University (Tech.) Irina Ciobanescu Husanu, Ph. D. is Assistant Clinical Professor with Drexel University, Engineer- ing Technology program. Her area of expertise is in thermo-fluid sciences with applications in micro- combustion, fuel cells, green fuels and plasma assisted combustion. She has prior industrial experience in aerospace engineering that encompasses both theoretical analysis and experimental
on IISE Board of Trustees. He also serves on IISE Technical Operations Board and leads IISE Cup initiative, which is an international competition to recognize organizations for innovative and effective implementation of industrial and systems engineering principles and practices that deliver exemplary business performance improvement.Dr. Qi Dunsworth, Penn State Erie, The Behrend College Qi Dunsworth is the Director of Center for Teaching Initiatives at Penn State Erie, the Behrend Col- lege. She holds a master’s degree in Communication Studies and a Ph.D. in Educational Technology. At Behrend she supports faculty in classroom teaching and the scholarship of teaching and learning. She has created a series of
Paper ID #10379A New Educational Paradigm to Train Skilled Workers With Real WorldPracticeDr. Juan Song, Alamo College Dr. Juan Song is Corporate Account Executive in Alamo College at San Antonio, TX. She oversees secondary and post-secondary training in manufacutring and liaison between Alamo College and man- ufacture partners. She is also the coordinator for Toyota Advanced Manufacturing Technology(AMT) Program and the AMTEC-ATE liaison. Page 24.77.1 c American Society for Engineering Education