AC 2011-190: EMPLOYING ANIMATRONICS IN TEACHING ENGINEER-ING DESIGNArif Sirinterlikci, Robert Morris University ARIF SIRINTERLIKCI received B.S. and M.S. degrees in Mechanical Engineering from Istanbul Tech- nical University, Turkey, and a Ph.D. degree in Industrial and Systems Engineering from the Ohio State University. Currently, he is a Professor of Engineering as well as Co-Head of Research and Outreach Cen- ter at Robert Morris University in Moon Township, Pennsylvania. His teaching and research areas include rapid prototyping and reverse engineering, robotics and automation, bioengineering, and entertainment technology. He has been active in ASEE and SME, serving as an officer of the ASEE Manufacturing
University. He at- tended the Business School of Istanbul University and received an MS degree in Production Management. After working for Chrysler Truck Manufacturing Company in Turkey as a project engineer, he received dual MS degrees in engineering management and mechanical engineering from Missouri University of Science and Technology (MS&T), formerly the University of Missouri-Rolla. He worked for Toyota Mo- tor Corporation as a quality assurance engineer for two years and lived in Toyota City, Japan. He received his Ph.D. in mechanical engineering from MS&T in 1999 while he worked as a quality engineer for Lumbee Enterprises in St. Louis, Missouri. He was a faculty memer at Trine University teaching mainly
questions are common. Penetration of Clicker in science andengineering fields is observed since the latter version of Clicker allows students to respond witheither numerical answers for a work-out problems or alphabetical selections for multiple choicequestions.The role of Clicker as teaching and learning enhancement tool has been discussed in theacademic community since 1980s. There are few published papers on using Clicker onengineering subjects and no report on how Clickers can be used effectively in laboratory. Weimplemented Clicker in manufacturing classes with the following objectives: i) Creating a more dynamic learning environment, ii) Enhancing study outcome, and iii) Reducing tedious paperwork and workload in many repeating
Course, Curriculum, and Laboratory Improvement (CCLI) program (now, called asTUES) seeks to improve the quality of STEM education for all undergraduate students. Theprogram supports efforts to create, adapt, and disseminate new learning materials and teachingstrategies, develop faculty expertise, implement educational innovations, assess learning andevaluate innovations, and conduct research on STEM teaching and learning. The programsupports three types of projects representing three different phases of development, ranging fromsmall, exploratory investigations to large, comprehensive projects. The RET educational researchstudy performed in this paper has been conducted at TTU’s Remotely Accessible RapidPrototyping Laboratory which was
Recommendation: Business topics, automation/controls, product design, and lean manufacturing should be priorities for curriculum changes.5. Education MethodsThe process of delivering a curriculum is addressed in Table 6. There were clear responses thatcooperative education, internships, laboratories, and project work are very high priorities. This isa clear message that ‘hands-on’ education is a very high priority. As would be expected there aremismatches in priorities between academics and manufacturers.Table 6 - Education Method Priorities Top Second Manufacturing Academic Priority Priority Priority PriorityCertifications 7
AC 2011-2565: INTEGRATION OF NANOMANUFACTURING RESEARCHINTO CURRICULAR EDUCATION AND OUTREACHDhananjay Kumar, North Carolina A&T State University (Eng) Dhananjay Kumar is Associate Professor of Mechanical Engineering at North Carolina A&T State Uni- versity. He is the Site Research Director for the NSF Engineering Research Center for Revolutionizing Metallic Biomaterials. His areas of research interest are thin films and nanomaterials, and he teaches classes in materials science, advanced materials and nanotechnology.Devdas M. Pai, North Carolina A&T State University (Eng) Devdas M. Pai is a Professor of Mechanical Engineering and serves as Director for Education and Out- reach for the NSF Engineering
AC 2011-1971: RECONFIGURABLE AND SCALABLE AUTOMATED SYS-TEMS PROJECTS FOR MANUFACTURING AUTOMATION AND CON-TROL EDUCATIONSheng-Jen Hsieh, Texas A&M University Dr. Sheng-Jen (”Tony”) Hsieh is a 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 man- ufacturing. He is also the Director of the Rockwell Automation Laboratory at Texas A&M University, a state-of-the-art facility for education and
AC 2011-1271: VIRTUAL IDEATION PLATFORM AND ENTREPRENEUR-SHIPRobert W Simoneau, Keene State College Robert W. Simoneau has 39 years of academic and industrial experience in manufacturing related dis- ciplines and plastics engineering specifically in the areas of product design and development. He is currently an Associate Professor at Keene State College in the Management Department. He recently served two years as a Program Director in the Division of Undergraduate Education at the National Sci- ence Foundation. Prior to Keene State College he taught in the Manufacturing Engineering Technology department at Wentworth Institute of Technology (WIT). Before teaching at WIT he gained considerable experience in
AC 2011-2270: ACCLIMATING MECHANICAL DESIGNERS TO MANU-FACTURING TOLERANCES IN THE FRESHMAN YEARJulia L Morse, Kansas State University, Salina Julia Morse is Associate Professor and Program Coordinator for Mechanical Engineering Technology at Kansas State University, K-State Salina. She teaches lecture and laboratory courses in the areas of computer-aided design, manufacturing and automation. Ms. Morse earned a B.S.I.E. from the Univer- sity of Tennessee-Knoxville and an M.S. in Manufacturing Systems Engineering from Auburn University, where she also worked with Auburn Industrial Extension Service. Her work in industry includes engi- neering experience in quality control, industrial engineering, and design and
at Vir- tual Reality Center Yokohama, Japan, Associate professor at Tokyo Metropolitan Institute of technology, Japan, Vis. Professor at UCLA and NIST. He has extensive industrial and teaching experience in different countries university research centers and companies. He is considered and expert in CAD/CAM, robotics, and Virtual Reality simulation for industry and nanomanufacturing. Dr. Ikonomov published more than 100 papers in journal, proceedings, a book and severs chapters in books, a patent.Alamgir A. Choudhury, Western Michigan University Alamgir A. Choudhury is an Associate Professor of industrial and manufacturing engineering at Western Michigan University, Kalamazoo, Michigan. His MS and PhD are from
AC 2011-97: LESSONS LEARNED IN IMPLEMENTING AND ACCRED-ITING A MANUFACTURING ENGINEERING PROGRAMVedaraman Sriraman, Texas State University-San Marcos Vedaraman Sriraman is a Professor in the Department of Engineering Technology at Texas State University- San Marocs. In the past, he has served as the Manufacturing Engineering program coordinator. He has received several gramts form the NSF and SME-EF to initiate new curriculum and laboratories. Dr. Sri- raman has received several teaching awards and has served as the faculty advisor to the student chapter of SME.William A Stapleton, Texas State University Dr. William A. Stapleton received his Ph.D. in Electrical Engineering from The University of Alabama in 1997
AC 2011-144: EDUCATING MANUFACTURING LEADERS: CREATINGAN INDUSTRIAL CULTURE FOR A SUSTAINABLE FUTURERonald J. Bennett, Univeristy of Saint Thomas RONALD J. BENNETT PhD is Honeywell Fellow in Global Technology Management in the School of Engineering at the University of St. Thomas after having served as the Founding Dean. He holds a Ph.D. in Metallurgical Engineering and an MBA. With a background of more than 20 years in industry, Bennett teaches and publishes on diverse topics including materials engineering, technical innovation, technology transfer, leadership and engineering education. He is an EAC of ABET commissioner for SME.Elaine R. Millam, Univeristy of St. Thomas Dr. Elaine Millam is a senior consultant
education, although many will also likely completegraduate programs at Peking University. Many of the faculty members have received theireducation or significant experience in the United States. For example, Dean Chen taught in theU.S. for many years and served as a major research manager at Johns Hopkins University inBaltimore, MD. Peking University is not a "typical" Chinese university and it is working to be more likethose in the U.S. They are trying to emulate Stanford and MIT with emphasis onentrepreneurship and a strong focus on teaching. They have the most Ministry of Science(similar to the U.S. Department of Energy) technology grants and a research center withcontinuing funding. Regarding globalization, they collaborate with the