Horological movement comprising a chronograph mechanism, in particular a jumping-second mechanism
US-2024353800-A1 · Oct 24, 2024 · US
US2016357157A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016357157-A1 |
| Application number | US-201615158117-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 18, 2016 |
| Priority date | Jun 2, 2015 |
| Publication date | Dec 8, 2016 |
| Grant date | — |
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Timepiece wheel set ( 1 ) including an arbor ( 3 ) carrying a wheel ( 4 ), and a heart cam ( 2 ) in an angularly indexed position with respect to the wheel ( 4 ), the heart cam ( 2 ) is freely mounted in a radial direction (R) with respect to the axis (D) of the arbor ( 3 ), and is returned in a neutral position towards the axis (D) by at least one flexible element ( 6 ), which is either a strip ( 25; 26 ) incorporated in the heart cam ( 2 ), or a spring ( 60 ) inserted between the wheel ( 4 ) and the heart cam ( 2 ), and the flexible element ( 6 ) is dimensioned to damp impacts applied to a peripheral cam track ( 23 ) comprised in the heart cam ( 2 ).
Opening claim text (preview).
What is claimed is: 1 . A timepiece wheel set including an arbor carrying a wheel, and a heart cam in an angularly indexed position with respect to said wheel, wherein said heart cam is mounted with a clearance in a radial direction with respect to the axis of said arbor of said wheel set, and returned in a neutral position towards said axis by at least one flexible element, said flexible element being either a strip incorporated in said heart cam, or a spring inserted between said wheel and said heart cam, and said at least one flexible element being dimensioned to damp impacts applied to a peripheral cam track of said heart cam. 2 . A wheel set according to claim 1 , wherein said at least one flexible element is a spring inserted between said wheel and said heart cam. 3 . The wheel set according to claim 2 , wherein spring includes at least one distal end arranged to cooperate with a housing comprised in said heart cam, and includes a curved portion arranged to cooperate in abutment with a housing comprised in said wheel in order to push said heart cam back towards said axis of said arbor. 4 . The wheel set according to claim 3 , wherein spring is symmetrical with respect to a spring plane, which, in the operating position of said spring, coincides with a radial plane passing through said axis of said arbor and parallel to said radial direction, and wherein said first curved portion, which has a centre of curvature towards the interior of said wheel, is made of two symmetrical parts on either side of a second curved portion, of reverse curvature to that of said first curved portion and whose centre of curvature lies outside said wheel, which is located in the spring plane and in immediate proximity thereto, to define two symmetrical contact areas between said spring and said wheel, so that the resultant of the elastic return effort exerted by said spring on said heart cam to return the latter towards said axis of said arbor lies on a radial line with respect to said axis in said radial direction. 5 . The wheel set according to claim 1 , wherein said heart cam includes a central oblong opening which has two parallel faces and is arranged to guide said arbor with minimum play, and, aligned parallel with said central oblong opening, an off-centre opening arranged to guide with minimum play an integrally mounted pin of said wheel, so as to allow for the relative mobility of said heart cam with respect to said arbor between two stop positions in said radial direction. 6 . The wheel set according to claim 5 , wherein said heart cam is symmetrical with respect to a plane of symmetry parallel to said central oblong opening and off-centre opening, and wherein said peripheral cam track thereof includes, in proximity to said central oblong opening, an flat section arranged to cooperate with a hammer or a return-to-zero control member. 7 . The wheel set according to claim 6 , wherein said at least one flexible element is a strip incorporated in said heart cam, and includes a portion of said peripheral surface of which at least one flat section is arranged to cooperate with a hammer or a return-to-zero member, said strip being dimensioned to damp the impact effort imparted by a said hammer or return-to-zero control member. 8 . The wheel set according to claim 1 , wherein said at least one flexible element is a strip incorporated in said heart cam, and includes a portion of said peripheral surface of which at least one flat section is arranged to cooperate with a hammer or a return-to-zero member, said strip being dimensioned to damp the impact effort imparted by a said hammer or return-to-zero control member and wherein said wheel set includes at least one said strip incorporated in said heart cam, and at least one said spring inserted between said wheel and said heart cam. 9 . A chronograph mechanism including at least one wheel set according to claim 1 , associated with a hammer or a return-to-zero control member. 10 . A GMT mechanism for indicating the time in several time zones including at least one wheel set according to claim 1 , associated with a hammer or a return-to-zero control member. 11 . A timepiece movement including at least one wheel set according to claim 1 , associated with a hammer or a return-to-zero control member. 12 . A watch including at least one wheel set according to claim 1 , associated with a hammer or a return-to-zero control member.
with single hammers, i.e. one hammer acts on each counter · CPC title
Barrels; Arbors; Barrel axles (arrangements facilitating the removal of the mainspring G04B33/14) · CPC title
Arrangements for indicating different local apparent times; Universal time pieces {(indicating by means of numbers or signs disposed on moving devices G04B19/20; illumination of dials or hands G04B19/30; combination with a terrestial globe in general G04B47/02; electronic time-zone watches G04G9/0076)} · CPC title
with reset mechanisms · CPC title
with reset mechanisms · CPC title
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