TY - GEN
T1 - A high efficient variable cross-section compound ultrasonic wiredrawing vibration system
AU - Shan, Xiaobiao
AU - Qi, Naiming
AU - Wang, Lili
AU - Xie, Tao
PY - 2012
Y1 - 2012
N2 - To solve the technical difficult problem of difficult-to-draw materials, this work presented a composite ultrasonic vibration system with variable cross-section rods. The four-terminal network method and the finite element method were used to design the conical, the exponential and the catenary transducers. The finite element results of show that the oval trajectory can effectively improve the friction effect between the wire and the tool head. The experimental result showed that the maximum amplitude was about 60 μm. It was 3 times of that in our previous work. These results demonstrated the design of the composite ultrasonic vibration system was feasible.
AB - To solve the technical difficult problem of difficult-to-draw materials, this work presented a composite ultrasonic vibration system with variable cross-section rods. The four-terminal network method and the finite element method were used to design the conical, the exponential and the catenary transducers. The finite element results of show that the oval trajectory can effectively improve the friction effect between the wire and the tool head. The experimental result showed that the maximum amplitude was about 60 μm. It was 3 times of that in our previous work. These results demonstrated the design of the composite ultrasonic vibration system was feasible.
KW - -Ultrasonic wiredrawing
KW - Composite ultrasonic vibration system
KW - Variable cross-section
UR - https://www.scopus.com/pages/publications/84863271550
U2 - 10.4028/www.scientific.net/AMM.157-158.1689
DO - 10.4028/www.scientific.net/AMM.157-158.1689
M3 - 会议稿件
AN - SCOPUS:84863271550
SN - 9783037853801
T3 - Applied Mechanics and Materials
SP - 1689
EP - 1694
BT - Mechatronics and Applied Mechanics
T2 - Mechatronics and Applied Mechanics
Y2 - 27 December 2011 through 28 December 2011
ER -