scanning systems; remanufacturing core management considering uncertain core quality, quantity, and timing; and integrating design for disassembly and remanufacturing into CAD/CAM tools. He has collaborated in the past with industrial partners on projects involving residual stresses in lightweight aluminum alloy side rails, manufacturing process simulation, and enhancing end-of-life truck acquisition decisions. Dr. Rickli is also actively involved in outreach activities with Athletes for Charity STEM Youth Literacy Program, which provides Detroit Public Schools with STEM educational sessions.Dr. Vukica M. Jovanovic, Old Dominion University Dr. Vukica Jovanovic is an Assistant Professor of Engineering Technology in
AC 2010-511: COMMUNICATION NEEDS IN COLLABORATIVE AUTOMATEDSYSTEM DESIGNSheng-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 facility for education and research in
2006-2133: CAN MUSEUM BE A GOOD VENUE FOR MANUFACTURINGEDUCATION?Zbigniew Pasek, University of Windsor Dr. Pasek is an Associate Professor at the Dept. of Industrial and Manufacturing Systems Engineering at the University of Windsor, Canada. He was previously with University of Michigan. His research interests include manufacturing automation and system design, engineering education, and decision-making processes in organizations. Page 11.305.1© American Society for Engineering Education, 2006 Can Museum Be a Good Venue for Manufacturing Education?AbstractA growing gap between technology use and
AC 2010-105: A BLENDED WEB-BASED LEARNING COLLABORATIVEAPPROACH FOR A SEDM COURSE IN MANUFACTURING ENGINEERINGJanus Liang, Yung-Ta Institute of Technology and Commerce Page 15.7.1© American Society for Engineering Education, 2010A Blended Web-based Learning Collaborative Approach for a SEDM Coursein Manufacturing EngineeringAbstractThis research describes the results and implications of a research into the effectiveness of ablended web-based learning collaborative approach on student’s achievement, attitudes towardsweb-based learning in an SEDM (Sink Electrical Discharge Machining) course. Quantitative andqualitative methodologies are used with participants of this research. Thirty
Paper ID #8514An Investigation of Engineers’ Use of a Virtual Collaborative Environmentfor Automated Assembly System DesignDr. 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
2006-2054: COLLABORATIVE CLASS PROJECTS BETWEEN THEMANUFACTURING ENGINEERING PROGRAM AND THE CHILDDEVELOPMENT PROGRAMDave Kim, Washington State University-VancouverJan Jewett, Washington State University-Vancouver Page 11.329.1© American Society for Engineering Education, 2006 Collaborative Class Projects between the Manufacturing Engineering Program and the Child Development Program Dave Kim1, Jan Jewett21 School of Engineering and Computer Science, Washington State University Vancouver, Vancouver, WA/ 2 Human Development, Washington State University Vancouver, Vancouver, WA
Paper ID #34833An Online Learning Community to Conduct Collaborative Education andInnovation in Renewable Energy, Environment, and ManufacturingDr. 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
2006-225: TECHNOLOGY, CULTURE AND THE MANUFACTURING ENGINEER:HOW STUDYING SME’S IN CAMBODIA CAN TEACH MANUFACTURINGSTUDENTS ABOUT GLOBAL ENTERPRISEVal Hawks, Brigham Young UniversityMichael Miles, Brigham Young University Page 11.1242.1© American Society for Engineering Education, 2006 Technology, Culture and the Manufacturing Engineer: How studying SME’s in Cambodia can help teach manufacturing students about global enterprise IntroductionIn his book “The World is Flat”, Thomas Friedman describes what he calls “the quiet crisis” asthe “erosion of America’s science and engineering base, which has
University, and Nebraska in theUnited States plus others in the United Kingdom, Germany, Australia, Japan, and Russia.Programs include student exchanges, faculty exchanges, research collaboration, and dual-degreeprograms (2+2 and 3+1). Currently 150 students are pursuing a 3+1 dual degree program at XPUand Canterbury Christ Church University in the UK, leading to the BS and MS degrees. XPU was founded in 1912 as the machine weaving facility of the Beijing high school ofindustry. In 1978, it became the Northwest Textile Institute. In 1998, control was transferred tothe Shaanxi Province Ministry of Education and in 2001 the name was changed to Xi'anPolytechnic University. Engineering is now the leading major chosen by its students. From
Engineering Education, 2019 A Unified and Collaborative Approach to Risk Classification for Fabrication and Library SpacesAbstractThis paper describes an effort to redesign risk assessment for tools and equipment across ourcampus. Existing classification schemas for assessing tool risk and safety are often restrictiveand intimidating. The previous risk classification framework at Olin College did not address theaddition of fabrication capabilities in learning spaces outside of the original machine shop,including the library, research labs, and studio classrooms. Furthermore, the old system waslimited to manufacturing equipment located in the machine shop and did not addressnon-powered tools. As a result of these
instrumentation.Mr. CHARLES ZHENG GUAN, MIT-SUTD Collaboration, Massachusetts Institute of Technology Charles Guan is a fabrication shop instructor at the MIT International Design Center, part of the MIT- SUTD Collaboration. He holds a Mechanical Engineering B.S. from MIT (2011) and has been involved in teaching design and manufacturing to the MIT community since. Page 26.12.1 c American Society for Engineering Education, 2015 2.00GoKart Using Electric GoKarts to Teach Introductory Design and Manufacturing at MIT Abstract This paper introduces an
2006-2513: THE DISTRIBUTED RECONFIGURABLE FACTORY TESTBED(DRFT): A COLLABORATIVE CROSS-UNIVERSITY MANUFACTURINGSYSTEM TESTBED.Jonathan Luntz, University of MichiganE. Emanuel Almeida, University of MichiganDawn Tilbury, University of MichiganJames Moyne, University of MichiganKeith Hargrove, Morgan State University Page 11.1274.1© American Society for Engineering Education, 2006 The Distributed Reconfigurable Factory Testbed (DRFT): A Collaborative Cross-University Manufacturing System TestbedAbstract As a collaborative effort between the University of Michigan (UM), and Morgan State Univer-sity (MSU) in Baltimore, a Distributed Reconfigurable Factory Testbed
and processes. In addition, he serves on the Greater Charlotte Region BioFuels Center conducting Life Cycle Assessments on BioFuel production. Page 14.10.1© American Society for Engineering Education, 2009 A Collaborative “How To”: Making Engineering Interesting to Middle and High School StudentsAbstract:The U.S. has seen a recent shortage of engineers and the outlook of those interested in the fieldlooks bleak. The shortage is due in part to the baby-boomer generation of manufacturing andengineering workers retiring. However, the stigma surrounding manufacturing and engineeringas “boring” or “too
Paper ID #33029Design and Evaluation of Collaborative Lab for Robot ProgrammingDr. Sheng-Jen ”Tony” Hsieh, Texas A&M University Dr. Sheng-Jen (”Tony”) Hsieh is a Professor in the 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 manufactur- ing. He is also the Director of the Rockwell Automation laboratory at Texas A&M University
Paper ID #15448MAKER: Collaborative Iteration in the Evolution of 3-D ModelsMs. Jean L. Bossart, University of Florida Jean Bossart is an Associate Engineering Librarian at the University of Florida (UF). She has a BS in chemical engineering and MS in environmental engineering from UF, over 20 years of experience in industry and consulting, and is a licensed professional engineer in Florida. c American Society for Engineering Education, 2016 MAKER: Collaborative Iteration in the Evolution of 3D Models Jean Bossart (University of Florida Libraries
, he investigates best ways to expand cutting edge technologies to the workforce. c American Society for Engineering Education, 2019 Critical Thinking in Manufacturing Engineering Education AbstractAccording to A.B. Steyn, engineering education cannot be solely based on memorization andtechnical calculation. It is imperative that the engineering students develop critical thinking skillsfor better understanding and reasoning of problems they may face professionally in the future.Critical thinking is the process of conceptualizing, applying, analyzing, synthesizing, and/orevaluating information obtained by observation, experience, reflection, reasoning
AC 2011-17: INTEGRATING ENTREPRENEURSHIP INTO MANUFAC-TURING ENGINEERING EDUCATIONNing Fang, Utah State University Ning Fang is an Associate Professor in the College of Engineering at Utah State University, USA. He has taught a variety of engineering courses such as metal machining, design for manufacturing, and engineer- ing dynamics. His areas of interest include computer-assisted instructional technology, curricular reform in engineering education, the modeling and optimization of manufacturing processes, and lean product design. He earned his Ph.D., M.S., and B.S. degrees in mechanical engineering and is the author of more than 60 technical papers published in refereed international journals and conference
was a theme that was used in development of courses. These objectiveswere reflected in the design of the syllabi of the courses and were served through well- definedoutlines.Just- in- time math and science ideas and self- paced learning were introduced in these programsto help interrelations between engineering courses and the math and science prerequisites.The nontraditional approach to education was borrowed by some universities, were self- pacedand one- room math schoolhouse type of classes was introduced.The program incurred many challenges but opened up many opportunities for success forstudents. Despite the success, the program still faced considerable administrative challenges.The experience proved that the collaboration could benefit
System. c American Society for Engineering Education, 2020 Design and Construction of An Aesthetically Pleasing Vertical Axis WindTurbine (APVAWT) – A Case Study of Art and Engineering Collaboration in Engineering Capstone CourseAbstractThis paper proposes an enhanced approach for the capstone design course, as a part of theundergraduate engineering curriculum, through collaboration of art and engineering by designingand building an Aesthetically Pleasing Vertical Axis Wind Turbine (APVAWT). Suchcollaboration brings creativity to art and engineering students through an interdisciplinary projectconsidering both functionality and beauty for wind generation system.In order to assist the capstone
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
thestudent pipeline, strategies to recruit students at the K-12 level,strengthening the involvement of industry, integration of new technologies,increased collaboration with professional societies that are interested inmanufacturing education, and increased attention to accreditation ofmanufacturing education. At this point the work of the group continues inthe areas identified and is expected to become part of the Curriculum 2015document 7.Bibliography1. Arther, A. A., Wells, D., Demers, P.J. (editors), "Ideal Models in Manufacturing Education; Curricula 2000 Workshop Proceedings", Society of Manufacturing Engineers, 1990. (http://www.sme.org/cgi-bin/get-event.pl?--001779-000007-home--SME-)2. Wells, D. (editor), "Manufacturing Education for the
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. Barger has presented at many national
AC 2012-3593: LEADERSHIP EDUCATION FOR ENGINEERS: ENGI-NEERING SCHOOLS INTEREST AND PRACTICEDr. Ronald J. Bennett, Univeristy of Saint Thomas Ronald J. Bennett holds the Honeywell Chair in Global Technology Management in the School of Engi- neering at the University of St. Thomas, after having served as the Founding Dean. He holds a Ph.D. in metallurgical engineering and an M.B.A. With a background of more than 20 years in industry, Bennett teaches and publishes on diverse topics including materials engineering, technical innovation, technology transfer, manufacturing, leadership, and engineering education. He is an EAC of ABET Commissioner for SME and leads the SME Center for Education.Dr. Elaine R. Millam
AC 2009-2502: ELECTROCHEMICAL MICRO MACHINING: A CASE STUDYFOR SYNERGISTIC INTERNATIONAL INDUSTRY-ACADEMIACOLLABORATIONWayne Hung, Texas A&M UniversitySriharsha Sundarram, Texas A&M UniversityFatih Ozkeskin, University of MichiganMike Powers, Agilent TechnologiesJuan Manriquez, CideteqVenkata Vasiraju, Texas A&M University Page 14.524.1© American Society for Engineering Education, 2009 Electrochemical Micro Machining: A Case Study for Synergistic International Industry-Academia CollaborationAbstractMicro fabrication is generally confined to silicon-based processes for microelectronicapplications. The advent of micro electromechanical systems
AC 2011-1008: TRENDS IN MANUFACTURING EDUCATION PROGRAMS:2011 REPORTSteve Wendel, Sinclair Community College Steve Wendel Director, National Center for Manufacturing Education www.ncmeresource.org Director, Project Lead The Way - Ohio Affiliate www.pltwohio.org Sinclair Community College 444 W. Third St. Dayton, Ohio 45402 email: steven.wendel@sinclair.edu phone: 937.512.2841 fax: 937.512.2475 Page 22.1553.1 c American Society for Engineering Education, 2011 TRENDS IN MANUFACTURING EDUCATION PROGRAMS - 2011 REPORT
certified Quality Management Systems (QMS) Lead Auditor by the International Register of Certificated Auditors (IRCA) in London. He was elected a Fellow by ASQ in 2007. c American Society for Engineering Education, 2020 Applying DOE in Performance Optimization of an Automated Position Control System -- A collaborated case study between two engineering technology coursesAbstract Hydraulic systems are widely used in industry, since they can produce large torques, high-speedresponses with fast motions and speed reversals. Automatic control of hydraulic systems has evolvedinto an increasingly superior alternative for many industrial applications
Paper ID #11178Do K12 robotics activities lead to engineering and technology career choices?Dr. Marilyn Barger, Florida Advanced Technological Educaiton Center Dr. Marilyn Barger is the Principal Investigator and Executive Director of FLATE, the Florida Regional Center of Excellence for Advanced Technological Education, funded by the National Science Founda- tion and housed at Hillsborough Community College in Tampa, Florida since 2004. FLATE serves the state of Florida as its region and is involved in outreach and recruitment of students into technical career pathways; has produced award winning curriculum design and
Manufacturing Quality Control. Projectresults on research and education issues in learning for course, curriculum, and laboratorydevelopment program were also discussed. The event was organized by faculty and perspectivestudents interested in pursuing a career within engineering. Further collaboration between studentsand presenters from industry allowed for future communication and interaction of variousmanufacturing facilities. Such collaboration between presenters from industry, faculty, andstudents enhances the mobility for engineering education as modern industrial manufacturingfacilities and technological procedures/methodologies gain exposure to academia. Studentexposure to current techniques and understanding motives for their implementation
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 from Lehigh University. Page 26.628.1 c American Society for Engineering Education, 2015 Engineering Hope: Enhancing Quality of Life through Design EducationIntroduction Providing engineering students with challenging and meaningful design experiences isnecessary to prepare students to function as professional engineers. Engineering
Advanced Materials and Smart Structures. He received his Ph.D. from Lehigh University. He conducts research and teaches courses related to advanced materials. Page 12.970.1© American Society for Engineering Education, 2007 Introducing Nanotechnology Education within Industrial Engineering Curriculum1. IntroductionIndustrial engineering (IE) programs are concerned with the design, improvement andinstallation of integrated systems of people, materials, information, equipment and energy [1]. Animportant part of industrial engineering curriculum focuses on product/process design