Tests of several modern airplanes indicate that control surfaces with a high degree of aerodynamic balance are likely to possess characteristics which make them unsatisfactory or dangerous in high-speed flight. Dive tests made in the spring of 1940 at the NACA on a naval fighter-type airplane illustrate one form of instability that may be encountered. During a dive at an indicated airspeed of 365 miles per hour, the ailerons suddenly overbalanced. The efforts of the pilot to bring the ailerons back to neutral resulted in a violent oscillation of the control stick from side to side. Fortunately, the force required to return the ailerons to neutral was within the pilot's capabilities. A time history of the maneuver is given in figure1 and typical frames from motion pictures of the cockpit and of the wing, taken during the maneuver, are given in figure 2. In the illustrated case, the occurrence of aerodynamic overbalance was attributed to a slight bulge, approximately 1/16 inch thick, on the lower surface of the leading edges of the ailerons, caused by the installation of additional mass balance ahead of the hinge line. A drawing showing the shape of the bulge is given in figure 3. After this slight protuberance had been eliminated, dives were successfully made at higher speeds.
Control-Surface Instability on High-Speed Airplanes
1942-06-01
Miscellaneous
No indication
English
AERODYNAMICS OF HIGH-SPEED AIRPLANES
SAE Technical Papers | 1949
|Handling qualities of high-speed airplanes
NTRS | 1952
|Windshield design for high-speed airplanes
Engineering Index Backfile | 1943
|Structural Aspects Of High Speed Airplanes
SAE Technical Papers | 1948
|Design of high-speed military airplanes
Engineering Index Backfile | 1941
|