[1]
Information on http: /www. rollvis. com.
Google Scholar
[2]
J.D. Albright, L.A. Moore, Development and Implementation of Electromechanical Actuators for the X-38 Atmospheric Test Vehicles. AAIA Atmospheric Flight Mechanics Conference and Exhibit. August (2008) 18-21.
DOI: 10.2514/6.2008-6569
Google Scholar
[3]
P.C. Lemor, The roller- screw, an efficient and reliable mechanical component of electro mechanical actuators, Proceedings of the 31st Intersociety. 1(1996) 215- 220.
DOI: 10.1109/iecec.1996.552873
Google Scholar
[4]
S.A. Velinsky, B. Chu, T.A. Lasky, A Kinematics and Efficiency Analysis of the Planetary Roller Screw Mechanism, Mechanical Design. 131(2009) 1-8.
DOI: 10.1115/1.3042158
Google Scholar
[5]
M. Falkner, T. Nitschko, Roller Screw Lifetime under Oscillatory Motion: From Dry to Liquid Lubrication, The Proceedings of ES-MATS, (2003).
Google Scholar
[6]
W. Karam, Modelling and simulation of mechanical transmission in roller screw electro mechanical actuators, Aircraft Engineering and Aerospace Technology. 81(2009) 288-298.
DOI: 10.1108/00022660910967273
Google Scholar
[7]
Shangjun Ma, Geng Liu, Finite Element Analysis of Axial Elastic Deformation for Planetary Roller Screw, J. Mechanical Transmission. 2012(7) 78-81+98.
Google Scholar
[8]
Binjiang Qian. Handbook of Heat Transfer, Beijing: China Agriculture Press, (1986).
Google Scholar
[9]
Yanhong Xu. Research on Temperature Field of Layered Composites of Steel-Copper-Plastics under End-Face Fricitonal Conditions, (2007).
Google Scholar
[10]
Jianzhong Jin, Jiajun Yann, Jianli Sun. The Research on Friction Mechanism of the Planetary Roller Screw, J. Huazhong University of Science and Technology, 6(1998) 83-84+97.
Google Scholar