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UID:0-5315@eng.ufl.edu
DTSTART;TZID=America/New_York:20220920T150000
DTEND;TZID=America/New_York:20220920T160000
DTSTAMP:20251201T205720Z
URL:https://www.eng.ufl.edu/news-events/events/mse-seminar-advanced-manufa
 cturing-inspired-by-magnetism/
SUMMARY:MSE Seminar: "Advanced Manufacturing Inspired by Magnetism"
DESCRIPTION:Hitomi Greenslet\, Ph.D.\nProfessor\, UF Department of Mechanic
 al Engineering\nDr. Greenslet is a professor and the graduate coordinator 
 in the Department of Mechanical and Aerospace Engineering at the Universit
 y of Florida. Her research interests have evolved throughout her career an
 d now include ultra-precision finishing\, magnetic field-assisted finishin
 g\, surface functionalization\, and medical-device development. Her work h
 as been published in over 100 refereed journal papers\, and she has been g
 ranted 11 patents. She has received many awards\, including Outstanding Yo
 ung Engineer awards from the Japan Society of Mechanical Engineers (JSME) 
 in 1995\, the Society of Manufacturing Engineers (SME) in 2000\, and the J
 apan Society for Abrasive Technology (JSAT) in 2003. In 2018-2019\, she se
 rved as President of the North American Manufacturing Research Institute o
 f SME. She is currently Chair of the Scientific Technical Committee for Ab
 rasive Processes (STC-G) of CIRP (International Academy for Production Eng
 ineering). In recognition of her contributions\, she has been elected a fe
 llow of both ASME and SME.\nAbstract\nA combination of magnetism with tool
  action against a workpiece gives rise to magnetic field-assisted processi
 ng (MAP). The process includes cutting\, polishing\, surface texturing\, a
 nd forming. In a magnetic field\, ferrous or permanent-magnet tools are su
 spended by magnetic force and link together along the lines of magnetic fl
 ux. The tool chains\, connected by magnetic force\, offer the advantage of
  a flexible configuration. Moreover\, it is possible to influence the moti
 on of a tool—even if the tool is not in direct contact with a magnet—b
 y controlling the magnetic field. This unique behavior of the tool enables
  the application of the operation not only to easily accessible surfaces b
 ut also to areas that are hard to reach by means of conventional mechanica
 l techniques. \nThis presentation includes the fusion of magnetism and en
 gineering that led to MAP using a couple of ongoing research topics in Dr.
  Greenslet’s lab at UF: coloration of stainless steel surfaces using mag
 netic abrasive finishing (MAF) and magnetic field-assisted single-point in
 cremental forming (M-SPIF). Identifying and generating desired tool motion
  relative to workpiece surface by means of magnetic field are essential to
  achieve these processes that overcome existing technologies. This present
 ation describes the fundamentals of these processes and resulting processi
 ng characteristics and mechanics.
CATEGORIES:Seminars
LOCATION:Rhines Hall Room 125\, 549 Gale Lemerand Drive\, Gainesville\, FL\
 , 32611\, United States
GEO:29.644403;-82.350403
X-APPLE-STRUCTURED-LOCATION;VALUE=URI;X-ADDRESS=549 Gale Lemerand Drive\, G
 ainesville\, FL\, 32611\, United States;X-APPLE-RADIUS=100;X-TITLE=Rhines 
 Hall Room 125:geo:29.644403,-82.350403
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