This application claims priority from European Patent Application No 15191369.6 filed Oct. 26, 2015 the entire disclosure of which is hereby incorporated herein by reference.
The invention concerns an elementary timepiece mechanism comprising a first structure element carrying a first housing about a theoretical pivot axis, a second structure element carrying a second housing, and a mobile element which comprises, at a first end, a first shoulder arranged to pivot in said first housing and at a second end, a second shoulder arranged to pivot in said second housing, wherein said second housing comprises at least a first abutment surface which is arranged to ensure the alignment of said mobile element on said theoretical pivot axis when said mobile element is in abutment on said first abutment surface, wherein said elementary mechanism comprises at least one elastic return means arranged to return said mobile element to said first abutment surface.
The invention also concerns a chronograph mechanism including at least one such elementary mechanism.
The invention also concerns a watch including such a chronograph mechanism and/or including at least one such elementary mechanism.
The invention concerns the field of timepiece mechanisms, and in particular, mechanisms concerning wheel sets which need to be returned and/or held in position by means other than toothings.
Some timepiece mechanisms, notably but not restricted to chronograph mechanisms, comprise mobile elements associated with cams, in particular heart-pieces, which cooperate with the pane of a hammer to achieve a return to a given position (return to zero), and/or holding in said particular position. These hammers are often made to be flexible, or in several articulated parts, or the mechanism requires a positioning spring.
EP Patent 275746 in the name of MONTRES BREGUET SA discloses a device for pivoting an arbor of a timepiece movement wherein a pivot passes through a jewel fixed in a setting, and an endstone comprising a bearing surface receiving the end of the pivot, and, in the stop position of the pivot on the endstone, the normal to the tangent plane common to the pivot and to the bearing surface is oblique with respect to the axis at an angle of cant, and defines with the axis an endstone plane oriented at a yaw angle with respect to a reference of a plate of the movement. This device includes means for adjusting the yaw angle and/or the angle of cant in order to regulate and adjust the rate of the movement.
The invention proposes to ensure the precise positioning of a chronograph counter when it returns to zero, without requiring a flexible hammer or multi components, or a positioning spring.
To this end, the invention concerns an elementary timepiece mechanism comprising a first structure element carrying a first housing about a theoretical pivot axis, a second structure element carrying a second housing, and a mobile element which comprises, at a first end, a first shoulder arranged to pivot in said first housing and at a second end, a second shoulder arranged to pivot in said second housing, wherein said second housing comprises at least a first abutment surface which is arranged to ensure the alignment of said mobile element on said theoretical pivot axis when said mobile element is in abutment on said first abutment surface, wherein said elementary mechanism comprises at least one elastic return means arranged to return said mobile element to said first abutment surface, characterized in that said mobile element comprises an eccentric heart-piece with respect to the axis of said first shoulder of said mobile element.
The invention also concerns a chronograph mechanism including at least one such elementary mechanism.
The invention also concerns a watch including such a chronograph mechanism and/or including at least one such elementary mechanism.
Other features and advantages of the invention will appear upon reading the following detailed description, with reference to the annexed drawings, in which:
The invention concerns a monolithic articulated structure or flexible bearing for pivoting a mobile timepiece element, in a timepiece mechanism.
The invention more particularly concerns an elementary timepiece mechanism 10, which includes, as seen in
This first housing 20 and second housing 30 may consist of bearings, which may or may not be added, jewels or suchlike, bores machined in first structure element 21 and/or second structure element 31, or even simple orifices made in first structure element 21 and/or second structure element 31.
First housing 20, in a particular variant illustrated by the Figures, is a housing with rotational symmetry; in this particular case it is preferably coaxial to theoretical pivot axis D. First housing 20 could also have a different shape, notably non-circular, for example oblong, or another shape.
Second housing 30 comprises at least a first abutment surface 36.
In a particular and non-limiting variant, illustrated by the Figures, the second housing comprises a second abutment surface 37, which is at a different distance from theoretical pivot axis D, with respect to first abutment surface 36.
However, second housing 30 is not necessarily closed, it may, for example, consist of a simple notch, open on one side.
First abutment surface 36 is arranged to ensure the alignment of mobile element 1 on theoretical pivot axis D, when mobile element 1 is in abutment on first abutment surface 36.
Elementary mechanism 10 comprises at least one elastic return means 5, which is arranged to return mobile element 1 to first abutment surface 36.
When second housing 30 comprises a second abutment surface 37, the latter corresponds to a tilted position of mobile element 1 with respect to theoretical pivot axis D, when mobile element 1 is in abutment on second abutment surface 37. Mobile element 1 is then tilted, and bears at P1 on second housing 30, and at P2 on first housing 20.
Second housing 30 is arranged to guide second shoulder 30, preferably but not restricted to, along a rectilinear trajectory corresponding to a plane trajectory of the pivot axis of mobile element 1.
In a particular non-limiting embodiment, and as seen in
It is understood that the second end 3 of mobile element 1 moves in this second housing 30, whose oblong has a very different function to those known elsewhere (to facilitate the assembly and initial setting of a tourbillon, of an escapement, or other element, prior to immobilisation in a suitable position) In the context of the invention, the arbor of mobile element 1 pivots about first housing 2, preferably in a plane defined by such an oblong.
More specifically, first structure element 21, or second structure element 31, or as illustrated in
First structure element 21, or second structure element 31, or third structure element 50, or as illustrated in
In the particular and non-limiting embodiment of the Figures, elastic return means 5 cooperates with a third shoulder 4 of mobile element 1, which is distinct from first shoulder 2 and from second shoulder 3.
This elastic return means 5 is arranged to exert a force on mobile element 1 substantially perpendicularly to theoretical pivot axis D. In a simple embodiment, it is formed by a flexible strip, which may be in one-piece with first structure element 21, and/or second structure element 31, and/or third structure element 50, and/or fourth structure element 51.
In a variant, first housing 20 and second housing 30 are both oblongs or similar; the resulting force exerted by elastic return means 5 on mobile element 1 is then, preferably, applied in a median area of mobile element 1, between first housing 20 and second housing 30. Preferably, first housing 20 and second housing 30 are oblongs that are parallel to each other.
According to the invention, in a particular application illustrated by
In a particular embodiment, depending on its function, mobile element 1 comprises drive means 7.
Naturally, the function of settings 20 and 30 may be switched.
The invention also concerns a timepiece mechanism comprising several mobile elements, and comprising at least one such elementary mechanism 10.
More specifically, the invention concerns a chronograph mechanism 200 including at least one such elementary mechanism 10.
The invention also concerns a watch 100 including such a chronograph mechanism 200 and/or including at least one such elementary mechanism 10.
The invention makes it possible to ensure compensation with backlash take-up.
It permits a reduction in the production cost of mechanisms, as a result of the possibility of increasing manufacturing tolerances.
The invention also permits the use of one-piece hammers, with no subsequent correction operations
Number | Date | Country | Kind |
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15191369.6 | Oct 2015 | EP | regional |