Soft hub concepts which allow the direct replacement of articulated rotor systems by bearingless types without any change in controllability or need for reinforcement to the drive shaft and/or transmission/fuselage attachments of the helicopter were studied. Two concepts were analyzed and confirmed for functional and structural feasibility against a design criteria and specifications established for this effort. Both systems are gimballed about a thrust carrying universal elastomeric bearing. One concept includes a set of composite flexures for drive torque transmittal from the shaft to the rotor, and another set (which is changeable) to impart hub tilting stiffness to the rotor system as required to meet the helicopter application. The second concept uses a composite bellows flexure to drive the rotor and to augment the hub stiffness provided by the elastomeric bearing. Each concept was assessed for weight, drag, ROM cost, and number of parts and compared with the production BO-105 hub. Dixon, Peter G. C. Unspecified Center BEARINGLESS ROTORS; COMPOSITE STRUCTURES; CONTROLLABILITY; DESIGN ANALYSIS; ELASTOMERS; SPECIFICATIONS; STRUCTURAL DESIGN; TILTING ROTORS; BELLOWS; BO-105 HELICOPTER; DRAG; FEASIBILITY ANALYSIS; FLEXING; SHAFTS (MACHINE ELEMENTS); STIFFNESS; TORQUE...
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