Features to prevent ice accumulation on heated faceplate
A wall for a heated faceplate includes a base and tines protruding from the base and spaced from each another. The tines are configured to accumulate ice in a manner which promotes shedding of small ice formations to prevent large accumulations of ice father aft on the faceplate.
1. A wall for a heated faceplate comprising:
a base configured to connect to an exterior surface of the heated faceplate; and
tines spaced from each another and protruding out and away from the base so that the tines overhang the base in an upstream direction such that the tines are configured to accumulate ice and shed the accumulated ice.
2. The wall of claim 1 , further including grooves positioned between the tines.
3. The wall of claim 1 , wherein the tines protrude out and away from the base at an angle such that the tines are substantially parallel to oncoming airflow when the heated faceplate is installed on an aircraft.
4. The wall of claim 1 , wherein the tines each have a small width such that the tines are configured to accumulate ice in unstable shapes.
5. The wall of claim 1 , wherein the base of the wall is configured to connect to the exterior surface of the heated faceplate at to an upstream portion of the heated faceplate.
6. The wall of claim 1 , wherein the wall is unitary with an upstream portion of the heated faceplate.
7. The wall of claim 1 , wherein the wall is a horse-shoe shape.
8. The wall of claim 1 , wherein the wall is curved.
9. The wall of claim 1 , wherein the wall is straight.
10. The wall of claim 1 , wherein the tines have rounded edges.
11. A faceplate comprising:
an interior surface configured to face toward an interior of an aircraft;
an exterior surface opposite the interior surface; and
a wall connected to the exterior surface of the faceplate at an upstream portion of the faceplate; the wall including:
a base connected to the exterior surface of the faceplate at the upstream portion of the faceplate; and
tines protruding from a top of the base, wherein the tines are substantially parallel to oncoming airflow.
12. The faceplate of claim 11 , wherein the wall further includes grooves positioned between the tines.
13. The faceplate of claim 11 , wherein the tines overhang the base in an upstream direction.
14. The faceplate of claim 11 , wherein the tines are configured to accumulate ice and shed the accumulated ice.
15. A faceplate comprising:
an upstream portion;
a downstream portion adjacent the upstream portion; and
a wall at the upstream portion of the faceplate; the wall including:
a base connected to an exterior surface of the faceplate at the upstream portion of the faceplate; and
tines protruding from the base, wherein the tines are substantially parallel to oncoming airflow;
wherein the faceplate is a faceplate for an angle of attack sensor.
16. A faceplate comprising:
an upstream portion;
a downstream portion adjacent the upstream portion; and
a wall at the upstream portion of the faceplate; the wall including:
a base connected to an exterior surface of the faceplate at the upstream portion of the faceplate; and
tines protruding from the base, wherein the tines are substantially parallel to oncoming airflow;
wherein the faceplate is a faceplate for a flush static plate.
17. A method for preventing significant ice accumulation on a heated faceplate comprising:
accumulating ice fragments on tines protruding from a base of a wall at an upstream portion of the faceplate, wherein the wall is connected to an exterior surface of the faceplate, the exterior surface being opposite an interior surface that is configured to face toward an interior of an aircraft; and
shedding the ice fragments from the tines.
18. The method of claim 17 , further including abrading ice from a downstream portion of the faceplate when the shedding ice fragments impact the downstream portion of the faceplate.