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[an error occurred while processing this directive]Journal of Projectiles, Rockets, Missiles and Guidance >
The Analysis and Study of Correction Ability of Canard CorrectionMechanism
Received date: 2016-03-31
Online published: 2025-05-28
In order to study the correction ability of the canard correction mechanism, establishing 3D models of two-dimensional trajectory correction artillery with different heights and different rudder angles and conducting fluid dynamics and kinematics simulation. Using hydrodynamics and kinematics co-simulation, analyzing aerodynamic characteristics, anti-rotation and position-control of rudder specially. Drawing a conclusion: the rudder with 50 mm height makes the correction-result of range best, the rudder with 55 mm height makes the correction-result of deviation best; the bigger rudder angle, the better the correction-result of rang and cross, but the correction-result of deviation is not good and the smaller rudder angle makes the correction-result of deviation better.
SHAO Weiping , WANG Yali , HAO Yongping , HAO Qi , XU Wei . The Analysis and Study of Correction Ability of Canard CorrectionMechanism[J]. Journal of Projectiles, Rockets, Missiles and Guidance, 2017 , 37(3) : 23 -25 . DOI: 10.15892/j.cnki.djzdxb.2017.03.007
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