2019
DOI: 10.31224/osf.io/kjhbx
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Design of a Flexure Rotational Time Base with Varying Inertia

Abstract: Flexure pivot oscillators have the potential to advantageously replace the traditional balance wheel-spiral spring oscillator used in mechanical watches due to their significantly lower friction. However, they have inherent nonlinear elastic properties that can introduce a variation of their frequency with amplitude called isochronism defect. Previous research has focused on controlling the elastic behavior of flexure pivot oscillators to reach isochronism. We present a new way of minimizing the isochronism de… Show more

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“…Second, this widens the spectrum of potential new flexure time bases by including architectures with significant inertia variations. For instance, we introduce the new Rotation-Dilation Coupled Oscillator (RDCO) family [35] whose symmetry has the advantage of inherently minimizing the influence of linear accelerations on oscillation frequency: the other major obstacle to the implementation of flexure time bases [21,22]. Third, we present a new way of tuning isochronism, by acting on the inertia variation of the oscillator instead of its stiffness variation, as was previously done [9,16].…”
Section: New Concept Of Inertial Isochronism Tuningmentioning
confidence: 99%
“…Second, this widens the spectrum of potential new flexure time bases by including architectures with significant inertia variations. For instance, we introduce the new Rotation-Dilation Coupled Oscillator (RDCO) family [35] whose symmetry has the advantage of inherently minimizing the influence of linear accelerations on oscillation frequency: the other major obstacle to the implementation of flexure time bases [21,22]. Third, we present a new way of tuning isochronism, by acting on the inertia variation of the oscillator instead of its stiffness variation, as was previously done [9,16].…”
Section: New Concept Of Inertial Isochronism Tuningmentioning
confidence: 99%