Irregualr23
Airman
- 62
- May 13, 2025
It is indeed a point to check out, 18deg delfection to reach CLmax seems to be excessive. However the control cable on Zero, as quoted by someone else above, was made to be stiff so that no much room to get stretched, which was also an important factor for its large stick force at high speed. There was an entire essay in Japanese explaning how the absence of elasticity in Zero's control cable lead to high control force.Direct comparison of elevator angle deflection of Zero with other planes doesn't make sense since same American reports you use say that the records from the elevator control system's angle sensors are not the actual elevator deflection angle because Zero's control system stretches to change the "transfer torque" from the stick to the elevator at different speeds by stretching the control cables.
The discrepancy in the sensor reading was caused by the fact that it was located near the cockpit and not on the elevator itself. Stretching of the control system cable leads to the actual excess of sensor readings relative to the actual deviation
View attachment 883085
View attachment 883086
WW2 was a point where we see some fighter planes to have loose stability margin, and especially the propeller driven by high-output engine in the front couples with aircraft's longitunal stability, usually distabilize the aircraft. The fact that most late-war Allied fighters had their C.G. placed after the aerodynamic center of wing-fuselage combination, but forward of the neutral point (i.e. the aerodyanmic center for wing-fuselage + empennage), which means they are still static-stable design. In most cases, these airplanes would only require ~5 deg of up elevator deflection to reach CLmax, and at this AoA, most of time the h-tail would generate slightly positive tail lift.Maybe I don't understand what you mean but if plane produce positive lift power on tail horizontal with classic aerodynamic scheme - it means plane made with unstable scheme where center of mass located behind the aerodynamic pressure center. This thing is common for modern jet fighters like Su-27 but not the WW2 props which was made with stable scheme
And because of stable scheme this issue:
The postive tail lift doesn't necessary require an unstable C.G. location, but with mordern fighter having fly-by-wire they can have very small stability margin that the tail plane would deflect down in the manuever to generate significant positive tail lift.