Locking arrangement for wind turbines
A locking arrangement includes at least a rotatable part, a stationary part with respect to the first part, and a locking member having locking protrusions. At least one working plane passing through the locking protrusions is defined in a locking position where compression forces are concentrated which are reaction forces to external forces tending to rotate the parts relative to each other. The parts have locking protrusions defining gaps for receiving the locking protrusions in the locking position for preventing the parts from being rotated to each other.
1. A locking arrangement for preventing a rotatable first part from being rotated relative to a stationary second part around an axis of rotation in a wind turbine when in a locking position, the locking arrangement comprising:
a locking member in which at least one working plane is defined where compression forces are concentrated in the locking position, the compression forces being reaction forces to external forces tending to rotate the first part relative to the second part when in the locking position, the locking member comprising at least one locking protrusion,
the first part comprising at least one locking protrusion, the second part comprising at least one corresponding locking protrusion, wherein a gap is defined between the locking protrusion of the first part and the corresponding locking protrusion of the second part, the gap receiving the locking protrusion of the locking member when in the locking position for preventing the first and second parts from being rotated relative to each other.
2. The locking arrangement of claim 1 , wherein the locking member includes a parallelepiped elongated element.
3. The locking arrangement of claim 1 , wherein the first part comprises at least two locking protrusions on opposing sides thereof, wherein the gap is defined between the at least two locking protrusions of the first part and the corresponding locking protrusion of the second part, the gap receiving the locking protrusion of the locking member when in the locking position for preventing the first and second parts from being rotated relative to each other.
4. The locking arrangement of claim 1 , wherein the working plane is at least substantially parallel to the major dimensions of at least one of the locking protrusions.
5. The locking arrangement of claim 1 , wherein at least one of the locking protrusions has at least one inclined surface.
6. The locking arrangement of claim 1 , wherein the first part comprises a rotor in the wind turbine and the second part comprises a stator in the wind turbine.
7. The locking arrangement as claimed in claim 1 , wherein the locking member is movable in a direction perpendicular to the axis of rotation of the first and second parts.
8. A wind turbine including a rotor having a rotor flange portion and a stator having a stator flange portion, the rotor and stator flange portions being complimentarily shaped such that both define the gap for receiving at least one portion of the locking member according to claim 1 .
9. The wind turbine of claim 8 , wherein the locking member is mounted radially into the rotor and stator flange portions.
10. The wind turbine of claim 8 , wherein the locking member is mounted close to the rotor and/or stator flange portions.
11. The wind turbine of claim 8 , wherein the locking member is mounted axially into the rotor and stator flange portions.