Title :
A hybrid nano-probe for precision nanofabrication of complex surfaces
Author :
Gao, W. ; Genda, S. ; Kudo, Y. ; Kiyono, S. ; Patten, J.
Author_Institution :
Dept. of Nanomechanics, Tohoku Univ., Sendai, Japan
Abstract :
This paper describes an intelligent nano-probe for precision nanofabrication of complex surfaces. The probe is a hybrid of a fast controlled diamond cutting unit (FTC-unit) and a highly-sensitive piezoelectric force sensor. The FTC-unit consists of a diamond cutting tool and a PZT actuator. Complex surfaces can be generated through fast controlling the position of the tool, which corresponds to the depth of cut into the surface, by the PZT actuator. The cutting force is detected by the force sensor coupled into the FTC-unit. The information of the cutting force is employed not only for monitoring the complex fabricating process but also for obtaining the fabricated surface profile, which are important for the purpose of precision nanofabrication of complex surfaces. Two structures of coupling the force sensor to the FTC-unit are designed and compared.
Keywords :
cutting tools; diamond; force sensors; nanotechnology; position control; complex surfaces; fast controlled diamond cutting unit; highly-sensitive piezoelectric force sensor; intelligent nano-probe; precision nanofabrication; Actuators; Bandwidth; Cutting tools; Fabrication; Force measurement; Force sensors; Nanofabrication; Probes; Pulp manufacturing; Turning;
Conference_Titel :
Control, Automation, Robotics and Vision Conference, 2004. ICARCV 2004 8th
Print_ISBN :
0-7803-8653-1
DOI :
10.1109/ICARCV.2004.1468818