FIELD: mechanic.
SUBSTANCE: resonator mechanism (100) for a watchwork, comprising a central moving element (30) installed with the possibility of being rotated about the axis (D) of the input movable element (1) subject to the action of a driving torque, continuously rotating and containing multiple inertial elements (2), consisting of N inertia memebers (2), each of which is movable relative to the central moving element (30) and is returned to the axis (D) by elastic return means (4). This resonator mechanism (100) has rotational symmetry of Order N and contains means of kinematic coupling of all the specified inertia members (2), at any time holding the centers of mass of all the specified inertia members (2) at the same distance from the specified axis (D) of rotation, and the specified elastic return means (4) create an elastic potential determined by the following equation:
,
in which Vtot is the elastic potential; Σj - a sum of j value in parentheses; (dα0/dt) - the required speed of rotation; Rj - a position of the center of mass G of inertia member j with mass Mj.
EFFECT: proposed is innovative resonator mechanism for a watchwork.
24 cl, 17 dwg
Title | Year | Author | Number |
---|---|---|---|
MECHANICAL CLOCK MECHANISM WITH ROTARY RESONATOR, WHICH IS ISOCHRONOUS AND IS NOT SENSITIVE TO LOCATION | 2018 |
|
RU2687510C1 |
FLEXIBLE GUIDE AND SET OF SUPERIMPOSED FLEXIBLE GUIDES FOR ROTARY RESONATOR MECHANISM, IN PARTICULAR CLOCK MECHANISM | 2020 |
|
RU2756786C1 |
RESONATOR FOR MECHANICAL WATCHES | 2017 |
|
RU2749943C2 |
MECHANICAL WATCHWORK WITH A RESONATOR HAVING TWO DEGREES OF FREEDOM, AND WITH A SUPPORTING MECHANISM USING A RUNNER MOVING ALONG THE TRACK | 2017 |
|
RU2749944C2 |
VEHICLE | 0 |
|
SU958202A1 |
MANIPULATOR FOR FACING WORK | 1990 |
|
RU2023582C1 |
GEAR TO MOVE SLIDING DOOR | 2002 |
|
RU2211295C1 |
RESONATOR CLOCK MECHANISM WITH A FLEXIBLE GUIDE, EQUIPPED WITH RIGIDITY ADJUSTMENT MEANS | 2021 |
|
RU2783586C1 |
SLIDING DOOR MOVING DEVICE | 2004 |
|
RU2263193C1 |
CLOCK RESONATOR MECHANISM | 2017 |
|
RU2729625C2 |
Authors
Dates
2021-02-15—Published
2017-10-05—Filed