Rotor blade of a wind power plant, method of fabricating a rotor blade and a pair of belts for a rotor blade
View Patent ↗The invention relates to a rotor blade ( 10 ) of a wind power plant and a method for fabricating a rotor blade ( 10 ) of a wind power plant and a manufacturing mold ( 54, 50 ) for a belt ( 28 - 31 ). The invention is characterized by a belt pair ( 28, 29, 30, 31 ) in which two belts ( 28, 29, 30, 31 ) are connected together in a form-fit and/or force-fit and material fit connection, where the belts ( 28 - 31 ) have a complementary shape in a joining area ( 50 ).
1. A rotor blade of a wind power plant, comprising:
a longitudinal extension that extends substantially from a rotor blade root to a rotor blade tip of the rotor blade; and
an aerodynamic airfoil cross section provided in least one area of the rotor blade that has an airfoil leading edge and an airfoil trailing edge which are connected together via a suction side and a pressure side of the airfoil cross section,
wherein in the longitudinally extended section, the rotor blade is divided into a front rotor blade section with the airfoil leading edge and a rear rotor blade section with the airfoil trailing edge,
wherein a rear area of the front rotor blade section and an adjacent front area of the rear rotor blade section are connected by a plurality of belts in a joining area that runs in the longitudinal extension of the rotor blade, the plurality of belts being connected by at least one of a form-fit and material fit connection, and a force-fit and material fit connection,
wherein the plurality of belts includes two belts at the suction side and two other belts at the pressure side of the rotor blade, and
wherein the plurality of belts have areas in the joining area that are only partially overlapping with one another transverse to the longitudinal extension of the rotor blade.
2. The rotor blade according to claim 1 , wherein at least one web connects together respectively the two belts from the pressure side to the suction side.
3. The rotor blade according to claim 1 , wherein the plurality of belts in the joining area have complementary shapes, the complementary shapes including at least one of a dovetail shape, a beveled shape, a tongue and groove shape, and a stepped shape.
4. The rotor blade according to claim 1 , wherein an overlapping element in the joining area reaches transverse to the longitudinal extension at least over a part of the belts.
5. The rotor blade according to claim 4 , wherein the overlapping element is disposed flush with a surface of the joined belts or with an outer shell of the rotor blade, and wherein the surface is disposed transverse to the joining surface of the belts and transverse to the longitudinal extension.
6. The rotor blade according to claim 1 , wherein one of the two belts is connected to the front rotor blade section, and the other of the two belts is connected to the rear rotor blade section.