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This paper introduces and investigates a compliant spherical 3R open chain that is obtained by the in-series connection of three identical circularly-curved beam flexures with coincident centers of curvature and mutually orthogonal axes of maximum rotational compliance.
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The rotational compliance of cracked right circular flexure hinge is derived in this paper.
This is achieved by the superposition of the rotational compliance of flexure hinge and the compliance change induced by the crack.
This paper presents the development of a parametric model for the rotational compliance of a cracked right circular flexure hinge.
The maximum rotational angle is ±2° at an operational voltage of 300 V.
The maximum rotational speed of the flywheel is 51,000 rpm at 12 V and 0.68 A.
The maximum rotational speed obtained was 200,000 rpm and a temperature drop of 30 °C.
The maximum rotational motion was about 3.8 × 10−5 rad/sec on the EW component at station T1S3R.
As basic hurricane parameters the maximum rotational velocity and the estimated total energy were used.
The load cases cover a number of operating scenarios such as the normal operational mode, turbine yawing, maximum wind thrust and maximum rotational speed conditions.
The turbocompressors can potentially exceed their operating range defined by the surge, choke and maximum rotational speed margins.
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