AC 2010-1587: IMPROVING ENGINEERING EDUCATION PEDAGOGY VIADIFFERENTIATED INSTRUCTIONJohn Marshall, University of Southern Maine John Marshall received his Ph.D. from Texas A&M University and is the Internship Coordinator for the Department at the University of Southern Maine. His areas of specialization include Power and Energy Processing, Applied Process Control Engineering, Automation, Fluid Power, and Facility Planning.William Marshall, Alief Independent School District William Marshall is the Director of Instructional Technology and Career & Technical Education for the Alief Independent School District in Texas. He provides supervision of Program Managers in the areas of
Paper ID #17887Evaluation of Undergraduate Summer Research Internships in Various Ad-vanced Manufacturing ProjectsMrs. Perihan Fidan, Tennessee Technological University Perihan is a Ph.D. candidate in the Exceptional Learning Program of Tennessee Technological University. Her current research interests include STEM education and incorporating literacy into STEM classrooms. She is a graduate teaching assistant for Science Methods, Science for the Elementary Teachers, Learning Theories, and Field Experience in Education courses. She also serves as a president of the One World Student Club and a treasurer for the Ph.D. Honor
Laboratory for Computer Integrated Manufacturing CoursesI. IntroductionThis paper describes the development of an online laboratory for students in Computer-Integrated Manufacturing (CIM) courses. Computer-Integrated Manufacturing is acomprehensive topic taught in a 400 level course to senior undergraduate students, and in a 600level online course to graduate students. Teaching computer-integrated manufacturing coursescan be a challenge because of the breadth of topics spanning from manufacturing technology toelectronic technology and computer technology which encompasses concepts frommanufacturing processes such as modeling and milling, to manufacturing automation systemsand manufacturing information management
Paper ID #18758Direct Ink Writing Extruders for Biomedical ApplicationsMr. Tony Fan, Wayne State UniversityDr. Gene Yeau-Jian Liao, Wayne State University GENE LIAO is currently Director of the Electric-drive Vehicle Engineering and Alternative Energy Tech- nology programs and Professor at Wayne State University. He received a M.S. in mechanical engineering from Columbia University, and a doctor of engineering from University of Michigan, Ann Arbor. He has over 17 years of industrial practices in the automotive sector prior to becoming a faculty member. Dr. Liao has research and teaching interests in the areas of hybrid
Paper ID #7015Leveraging Scarce Resources to Preserve an Important, Low Enrollment Man-ufacturing ProgramDr. Bill D. Bailey, Southern Polytechnic State University Dr. Bill Bailey is currently an assistant professor of industrial engineering technology and quality assur- ance at Southern Polytechnic State University. He holds a Ph.D. in Technology Management (Quality Systems Specialization) from Indiana State University. He also holds a Master of Science in Industrial Technology degree from North Carolina A&T State University, and a Baccalaureate degree in Psychol- ogy and English. Dr. Bailey has extensive
AC 2010-586: IT'S THE MANUFACTURING STUPID! THE NEW US INDUSTRIALREVOLUTIONC. Norman, Applied Research Associates, Inc Awards, Professional Activities, Publications Dr. Norman was awarded the Department Of The Army, ACHIEVMENT MEDAL FOR CIVILIAN SERVICE (Jun 1993). He is a graduate of the Department of Defense; National Security Management Course, Maxwell School of Citizenship and Public Affairs, Syracuse University and Paul H. Nitze School of Advanced International Studies, Johns Hopkins University (April – May, 1996). He received a Special Commendation Award from the US General Accounting Office for service on the Independent Review Panel for the Safety of the
Paper ID #7184The Four Pillars of Manufacturing Knowledge Model – Illustrations of Map-ping Curricula into the ModelProf. Robert L. Mott P.E., University of Dayton Robert L. Mott, P.E. is professor emeritus of engineering technology at the University of Dayton. He is a member of ASME, ASEE, and SME. He serves the Society of Manufacturing Engineers through the Manufacturing Education & Research Community and the SME Center for Education and he is a recipient of the SME Education Award. He has authored four textbooks. Applied Fluid Mechanics 6th ed, Applied Strength of Materials 5th ed, Statics and Strength of Materials
the contrary, marrying manufacturing programswith biological and biomedical engineering fields may present a strong alternative. This studywill sketch out a manufacturing engineering curriculum with a minor in bio- or biomedicalengineering as well as a double major opportunity and BS/MS combined integrated programs.Possible course offerings will be included through course descriptions within materials, design,and manufacturing thrust areas and can be found in the appendix. A discussion on ABETimplications of this program development effort and targeted application fields such agriculturaland food processing, energy manufacturing, biological and biomedical, and pharmaceutical willcomplement the argument made by the authors. The paper will
). Page 13.437.1© American Society for Engineering Education, 2008 Digital Manufacturing and Simulation CurriculumIntroductionOhio Northern University is in the tenth year of a curriculum utilizing advanced industrialcomputer simulation software. The virtual simulation classes are offered in a sequence of threequarters, earning four credits per quarter. Students learn specific simulation applications fromtutorials and online course materials. Teams of students then work with local companies to createsimulation models of actual manufacturing operations. Each student team prepares PowerPointmaterials which are presented to representatives of the company. Recent projects included workwith major automotive original equipment
Paper ID #33097Innovative Delivery of 3D PrintingDr. Ismail Fidan, Tennessee Technological University Currently, Dr. Fidan serves as a Professor of the Department of Manufacturing and Engineering Tech- nology at Tennessee Technological University. His research and teaching interests are in additive man- ufacturing, electronics manufacturing, distance learning, and STEM education. Dr. Fidan is a member and active participant of SME, ASEE, ABET, ASME, and IEEE. He is also the Associate Editor of IEEE Transactions on Components, Packaging, and Manufacturing Technology and International Journal of Rapid Manufacturing.Dr
AC 2011-1493: AN APPLICATION-BASED GRADUATE COURSE IN AD-VANCED QUALITY TOOLSCraig T Evers, PhD, PE, Minnesota State University - Mankato Craig T. Evers currently I am an assistant professor at Minnesota State University Mankato teaching un- dergraduate and graduate courses in the Automotive and Manufacturing Engineering department. I have over 30 years experience in the manufacturing industry, mostly in automotive related positions. Some of my past employers include John Deere, Robert Bosch Corporation, Intel and IBM. Previous positions include tooling manager for a Fortune 500 electronics company, production engineer for fuel components line with $125 million annual sales, manufacturing engineering manager, and
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
reform for secondary and post-secondary Career and Technical Education programs; and provides a variety of professional development for SETM and technology secondary and post-secondary educators focused on advanced technologies. She earned a B.A. in Chemistry at Agnes Scott College and both a B.S. in Engineering Science and a Ph.D. in Civil Engineering (Environmental) from the University of South Florida, where her research focused on mem- brane separation science and technologies for water purification. She has over 20 years of experience in developing curricula for engineering and engineering technology for elementary, middle, high school, and post secondary institutions, including colleges of engineering. Dr
as a manufacturing strategy, and who prefer graduates with some levelof practical lean knowledge. Our approach to teaching lean has used experiential learning as amethod of improving student understanding, as many others have done in various disciplines1-4.To this end we have augmented university classroom lectures with industry-based projects,recognizing that lab exercises are useful, but can have limited utility in demonstrating leanprinciples5. We have used this approach for a number of years in two graduate courses. Andmore recently we used this method in the context of an international internship in Cambodia,during the summer of 2004. The experience gained in that internship is the focus of this paper.Five junior and senior level
at undergraduate and graduate levels. His tremendous re- search experience in manufacturing includes environmentally conscious manufacturing, Internet based robotics, and Web based quality. In the past years, he has been involved in sustainable manufacturing for maximizing energy and material recovery while minimizing environmental impact.Prof. Tzu-Liang Bill Tseng, University of Texas at El Paso Dr. Bill Tseng is a Professor and Chair of Department of Industrial, Manufacturing and Systems En- gineering at the UTEP. He is also a Director of Research Institute for Manufacturing & Engineering Systems, the host institute of Texas Manufacturing Assistance Center at UTEP. He received his two MSIE degrees (MFG &
research Interests are Globalized Engineering/Technology Education, EGT innovative curriculum development.Dr. Mauricio Torres, Northern Kentucky University Dr. Torres received a B.S. in Business Administration from City University of Sao Caetano do Sul, B.S. in Mechanical Industrial Engineering from Braz Cubas University, Brazil, M.S. in Engineering Manage- ment and Ph.D. in Industrial and Systems Engineering from Florida International University. He has over 30 years of experience in heavy machinery manufacturing industry and currently he holds the position of Assistant Professor in the Mechanical Manufacturing Engineering Technology Program at Northern Kentucky University. His research interests are manufacturing
Paper ID #13520MAKER: Applications in Do-It-Together, Environmental Monitoring Tech-nologies - Student Projects from an Interdisciplinary, Flipped, Service Learn-ing, Makerspace CourseDr. Charles M Schweik, University of Massachusetts, Amherst Charles M. Schweik is an Associate Professor in the Department of Environmental Conservation and the Center for Public Policy and Administration at the University of Massachusetts, Amherst, USA. Schweik is the author of Internet Success: A Study of Open Source Software Commons (MIT Press, 2012) that examines collaborative principles in open source software projects.Dr. Paula Rees
always been the source ofAmerica’s innovation and our standard of living.” [1] The crisis is the increasing penetration ofglobal competition on the economic output of the United States, now an issue to whichengineering education is paying serious attention. However, it is not a crisis of just technicalissues. What is needed with respect to global learning and experience is more than just technicalcompetence and expertise. Bill Wulf said “…engineering is now practiced in a global, holisticbusiness context, and engineers must design under constraints that reflect that context. In thefuture, understanding other cultures, speaking other languages, and communicating with peoplefrom marketing and finance will be just as fundamental to the practice of
Paper ID #19522Lean Manufacturing Principles Applied to the Engineering ClassroomDr. Eric D. Smith, University of Texas, El Paso Eric D. Smith is currently an Associate Professor at the University of Texas at El Paso (UTEP), a Minor- ity Serving Institution (MSI) and a Hispanic Serving Institution (HSI), He works within the Industrial, Manufacturing and Systems Engineering (IMSE) Department, in particular with the Master of Science in Systems Engineering Program. He earned a B.S. in Physics in 1994, an M.S. in Systems Engineering in 2003, and his Ph.D. in Systems and Industrial Engineering in 2006 from the University of
mandated radio frequency (RF) exposurestandard. However, several non-government organizations, such as the AmericanNational Standards Institute (ANSI), the Institute of Electrical and ElectronicsEngineers, Inc. (IEEE), and the National Council on Radiation Protection andMeasurements (NCRP) have issued recommendations for human exposure to RFelectromagnetic fields.”4 Using these standards, the FCC has created a de factofederal standard under 73CFR1.1310 under which it enforces “maximumpermissible exposure (“MPE”) limits applicable to facilities, operations, ortransmitters.” OSHA specifically recognizes RF hazards in OSHA standard 29CFR §1926.550 (a) (15) (vii), Cranes and Derricks, but fails to set in place anystandards. It also provides a general
Paper ID #19183MAKER: Vehicle Unlocking SystemDr. Hugh Jack P.E., Western Carolina University Dr. Jack is not the author. The abstract has been submitted on behalf of Mrinal D.Kawale, Neha D.Sharma - MACS College, Pune, India. c American Society for Engineering Education, 2017 Vehicle Unlocking SystemAuthorsMrinal D.Kawale, Neha D.SharmaMACS College, Pune, IndiaAbstract In vehicle unlocking system project, we have implemented a new level of security forvehicles based on biometric identification using fingerprint scanner. Whenever a person givesa fingerprint, the
: A Dynamic Framework for DevelopmentAbstract Following up on its 2009 research, the National Center for Manufacturing Education(NCME) continues to explore trends in manufacturing education programs. This paper presents acompilation of results from the “Question(s) of the Week” framework designed to preface the2011 study and move the trends report towards an ongoing, dynamic source of relevantinformation for engineering technology educators engaged in the design and delivery ofmanufacturing education.Introduction The National Center for Manufacturing Education (NCME) housed at SinclairCommunity College, Dayton, Ohio published Trends in Manufacturing Programs1 in 2009. TheNCME acknowledges support from the National Science
AC 2012-4342: GOVERNMENT POLICY AND MANUFACTURING EDU-CATIONMr. Robert W. Simoneau, Keene State CollegeProf. Karen Wosczyna-Birch, CT College of TechnologyDiane Dostie, Central Maine Community College Diane Dostie has served as Dean of Corporate and Community Services at Central Maine Community College since 1999. In that position, she leads a staff that provides training programs for business, gov- ernment, non-profit, and other organizations throughout the central Maine region, as well as non-credit classes and certification programs to individuals in those communities. She is the Principal Investigator for the Virtual Ideation Platform, a National Science Foundation grant. The goal of this project is to create an
Paper ID #32961What’s Next? The Future of Work for Manufacturing TechniciansDr. Marilyn Barger P.E., FLATE, Florida Advanced Technological Education Center Dr. Marilyn Barger is the Director of FLATE, the Florida Advanced Technological Education Center a part of the FloridaMakes Network, and previously funded by the National Science Foundation. FLATE serves the state of Florida as its region and is involved in outreach and recruitment of students into techni- cal career pathways; has produced award-winning curriculum design and reform for secondary and post- secondary Career and Technical Education programs; and
AC 2007-44: RAPID MANUFACTURING VIA METAL CASTINGRobert Creese, West Virginia University ROBERT C CREESE is a professor in the Industrial and Management Systems Engineering Department in the College of Engineering and Mineral Resources at West Virginia University in Morgantown, West Virginia. He obtained his BS, MS, and Ph.D. degrees from The Pennsylvania State University, The University of California-Berkeley, and The Pennsylvania State University. He is a member of ASEE and also a member of AACE International, ASM, AWS, AIST, ISPA, SCEA, AFS, and SME. Page 12.1217.1© American Society for
work teams operating around the world. Schools, students,and companies benefit from opportunities to apply these to actual manufacturingproblems in industrial environments.The technology program at our university has historically included several classes insolid modeling and CAD software. For the past ten years computer simulations have beenincluded to more effectively prepare students for use and application of thesetechnologies. More recently numerous class projects with local manufacturing companieshave been incorporated, and currently a three quarter sequence of courses is required forstudents in our Manufacturing Technology major. The initial course, DigitalManufacturing and Simulation (DMS) introduces students to these advanced design
modeling, visualization and fabrication a“common knowledge” for middle school, high school and community college students.What is nanotechnology?According to the Encyclopædia Britannica¹ (2008), nanotechnology is defined as “themanipulation and manufacture of materials and devices on the scale of atoms or small groups ofatoms.” Nanotechnology is the creation of materials, components, devices and systems at theatomic or nanometer level. Given this structural modification, products designed and createdwith materials at this scale will perform exceptionally. Nanotechnology as a buzz word iscurrently viewed from two major perspectives, science and technology. From the scientificperspective, it concerns a basic understanding of physical, chemical, and
AC 2008-400: MODERN TOOLS AND TECHNIQUES FOR TEACHINGMANUFACTURING ENGINEERING IN THE DIGITAL AGEPriya Manohar, Robert Morris University Dr. Priya Manohar is working currently an Assistant Professor of Manufacturing Engineering at Robert Morris University, Pittsburgh, PA. He has a Ph. D. in Materials Engineering (1998) and Graduate Diploma in Computer Science (1999) from University of Wollongong, Australia and holds Bachelor of Engineering (Metallurgical Engineering) degree from Pune University, India (1985). He has worked as a post-doctoral fellow at Carnegie Mellon University, Pittsburgh (2001 – 2003) and BHP Institute for Steel Processing and Products, Australia (1998 – 2001). Dr. Manohar
plasma assisted combustion. She has prior industrial experience in aerospace engineering that encompasses both theoretical analysis and experimental investigations such as designing and testing of propulsion systems including design and development of pilot testing facility, mechanical instrumentation, and industrial applications of aircraft engines. Also, in the past 10 years she gained experience in teaching ME and ET courses in both quality control and quality assurance areas as well as in thermal-fluid, energy conversion and mechanical areas from various levels of instruction and addressed to a broad spectrum of students, from freshmen to seniors, from high school graduates to adult learners. She also has extended
Paper ID #6281Designing the Future: Integrating cutting-edge design and manufacturingtools into 9th and 10th grade STEM educationIsmail Fidan Ph.D., Tennessee Technological University Dr. Ismail Fidan is a faculty member at the College of Engineering of Tennessee Technological Uni- versity. His research and teaching interests are in additive manufacturing, electronics manufacturing, distance learning, and STEM education. Dr. Fidan is a member and active participant of SME, ASME, IEEE, and ASEE. He is also the Associate Editor of IEEE Transactions on Components, Packaging, and Manufacturing Technology.Julie C Baker Ph.D