首页> 美国政府科技报告 >STABILITY AND CONTROL CHARACTERISTICS AT MACH NUMBERS FROM 0.20 TO 4.63 OF A CRUCIFORM AIR-TO-AIR MISSILE WITH TRIANGULAR CANARD CONTROLS AND A TRAPEZOIDAL WING
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STABILITY AND CONTROL CHARACTERISTICS AT MACH NUMBERS FROM 0.20 TO 4.63 OF A CRUCIFORM AIR-TO-AIR MISSILE WITH TRIANGULAR CANARD CONTROLS AND A TRAPEZOIDAL WING

机译:具有三角形控制和梯形翼的CRUCIFORm空对空导弹的机械编号从0.20到4.63的稳定性和控制特性

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Investigations have been conducted in the Langley 8-foot transonic pressure tunnel and the Langley Unitary Plan wind tunnel at Mach numbers from 0.20 to 4.63 to determine the sta¬bility and control characteristics of a cruciform air-to-air missile with triangular canard controls and a trapezoidal wing.nThe results indicate that canards are effective in producing pitching moment throughout most of the test angle-of-attack and Mach number range and that the variations of pitching moment with lift for trim conditions are relatively linear. There is a decrease in canard effectiveness with an increase in angle of attack up to about Mach 2.50 as evidenced by the beginning of coalescence of the pitching-moment curves. At a Mach number above 2.50, there is an increase in effectiveness at moderate to high angles of attack. Simulated launch straps have little effect on the lift and pitch characteristics but do cause an increase in drag, and this increase in drag induces a rolling moment at a zero roll attitude where the straps cause an asymmetric geometric shape. The canards are not suitable devices for roll con¬trol and, at some Mach numbers and roll attitudes, are not effective in producing pure yawing moments.

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