ASSEMBLY OF ELEMENTS SUCH AS LINKS OF A WRISTLET
20220192326 · 2022-06-23
Assignee
Inventors
- Paulo AREDE (La Chaux-de-Fonds, CH)
- Pierry VUILLE (Les Emibois, CH)
- Johan ROMAND (Mamirolle, FR)
- Maxime DOLE (Loray, FR)
Cpc classification
A44C5/107
HUMAN NECESSITIES
B33Y80/00
PERFORMING OPERATIONS; TRANSPORTING
B29C45/4457
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A part (21), in particular a wristlet, including at least two sets (1) of elements (3, 5, 7), in particular links, assembled together. The securing between the elements (3, 5, 7) within a set and between sets is implemented via a gluing (15) rather than by a screwing. Also, a related method of manufacturing the part (21).
Claims
1. A part (21, 51) comprising at least two sets (1, 31) of elements (3, 5, 7, 33, 35, 35′, 37, 37′) assembled together, each set (1, 31) including a first (3, 33), a second (5, 35′) and a third (7, 37, 37′) element with the first element (3, 33) and the second element (5, 35′) disposed on either side of the third element (7, 37, 37′), the first (3, 33) and the second (5, 35′) elements each including a first (2, 4) and a second blind recess (27, 28) and the third element (7, 37, 37′) including a first (6) and a second (24) through hole, the first through hole (6) of the third element (7, 37, 37′) being placed facing the first blind recess (2, 4) of the first (3, 33) and second (5, 35′) elements in each set (1, 31), the second through hole (24) of the third element (7, 37, 37′) of a set (1, 31) being placed facing the second blind recess (27, 28) of the first (3, 33) and second (5, 35′) elements of another set (1, 31), the attachment within each set (1, 31) and between the two sets (1, 31) being respectively provided by: a first rod (11) mounted in the first through hole (6) of the third element (7, 37, 37′) and secured at its ends in the first blind recess (2, 4) of the first (3, 33) and second (5, 35′) elements, and a second rod (11′) mounted in the second through hole (24) of the third element (7, 37, 37′) and secured at its ends in the second blind recess (27, 28) of the first (3, 33) and second (5, 35′) elements, wherein: said first rod (11) and said second rod (11′) are respectively secured in the first blind recess (2, 4) and in the second blind recess (27, 28) with a glue (15), and said first blind recess (2,4) and said second blind recess (27, 28) form a longitudinal zone (2a, 4a) for respectively housing the ends of the first (11) and of the second (11′) rod, said longitudinal zone (2a, 4a) emerging on at least one cavity (2b, 4b) extending laterally with respect to said longitudinal zone (2a, 4a), said cavity (2b, 4b) accommodating the glue (15) and providing a mechanical attachment of the glue (15) in the first (3, 33) and second (5, 35′) elements, and wherein said longitudinal zone (2a, 4a) emerges on two cavities (2b, 4b) extending laterally with respect to the longitudinal zone (2a, 4a), the two cavities (2b, 4b) being respectively positioned on each side of the longitudinal zone (2a, 4a).
2. The part (21, 51) according to claim 1, wherein the two cavities (2b, 4b) are positioned one facing the other on each side of the longitudinal zone (2a, 4a).
3. The part (21, 51) according to claim 1, wherein the longitudinal zone (2a, 4a) extends on either side of said at least one cavity (2b, 4b).
4. The part (21, 51) according to claim 1, wherein the first rod (11) and the second rod (11′) include, at the ends thereof, a head (11a, 11′a) provided with a notch (11b, 11′b) over the periphery thereof, said notch (11b, 11′b) being filled with the glue (15) and positioned opposite said at least one cavity (2b, 4b).
5. The part (21, 51) according to claim 1, wherein at least one portion of the first and second elements (3, 5, 33, 35′) is produced from an enamel, a stone, a sapphire, a cermet or a ceramic.
6. The part (21, 51) according to claim 1, wherein, in each set, the third element (7, 37, 37′) is formed by a plurality of elements (37, 37′) with an intermediate element (35) disposed between each of said plurality of elements (37, 37′).
7. The part (21, 51) according to claim 1, wherein the first through hole (6) and/or the second through hole (24) of the third element (7, 37, 37′) include a cross section of non-circular shape corresponding to the shape respectively of the first and second rods (11, 11′) in order to prevent any relative pivoting of the first, second and third elements (3, 5, 33, 35′, 7, 37′, 37).
8. The part (21, 51) according to claim 1, wherein the first through hole (6) and the second through hole (24) of the third element (7, 37, 37′) include a cross section with a circular shape corresponding to that of the first and of the second rods (11, 11′) in order to allow the pivoting of the third element (7, 37, 37′) with respect to the first and second elements (3, 5, 33, 35′).
9. The part (21, 51) according to claim 1, wherein the part includes at least five sets (1, 31) connected together.
10. The part (21, 51) according to claim 1, wherein the part is a case of a wristlet, a decorative item or a jewellery item.
11. A method for manufacturing a part (21, 51) comprising at least two sets (1, 31) of elements (3, 5, 7, 33, 35, 35′, 37, 37′) assembled together, each set (1, 31) including a first (3, 33), a second (5, 35′) and a third (7, 37, 37′) element with the first element (3, 33) and the second element (5, 35′) disposed on either side of the third element (7, 37, 37′), the first (3, 33) and the second (5, 35′) elements each including a first (2, 4) and a second blind recess (27, 28) and the third element (7, 37, 37′) including a first (6) and a second (24) through hole, the first through hole (6) of the third element (7, 37, 37′) being placed facing the first blind recess (2, 4) of the first (3, 33) and second (5, 35′) elements in each set (1, 31), the second through hole (24) of the third element (7, 37, 37′) of a set (1, 31) being placed facing the second blind recess (27, 28) of the first (3, 33) and second (5, 35′) elements of another set (1, 31), the attachment within each set (1, 31) and between the two sets (1, 31) being respectively provided by: a first rod (11) mounted in the first through hole (6) of the third element (7, 37, 37′) and secured at its ends in the first blind recess (2, 4) of the first (3, 33) and second (5, 35′) elements, a second rod (11′) mounted in the second through hole (24) of the third element (7, 37, 37′) and secured at its ends in the second blind recess (27, 28) of the first (3, 33) and second (5, 35′) elements, wherein: said first rod (11) and said second rod (11′) are respectively secured in the first blind recess (2, 4) and in the second blind recess (27, 28) with a glue (15), said first blind recess (2,4) and said second blind recess (27, 28) form a longitudinal zone (2a, 4a) for respectively housing the ends of the first (11) and of the second (11′) rod, said longitudinal zone (2a, 4a) emerging on at least one cavity (2b, 4b) extending laterally with respect to said longitudinal zone (2a, 4a), said cavity (2b, 4b) accommodating the glue (15) and providing a mechanical attachment of the glue (15) in the first (3, 33) and second (5, 35′) elements, and wherein said longitudinal zone (2a, 4a) emerges on two cavities (2b, 4b) extending laterally with respect to the longitudinal zone (2a, 4a), the two cavities (2b, 4b) being respectively positioned on each side of the longitudinal zone (2a, 4a), wherein the method includes a step of producing at least one of the first (3, 33), second (5, 35′) and third (7, 37, 37′) elements by additive manufacturing or by injection and sintering, and wherein it includes a step of assembling and securing the first (3, 33), second (5, 35′) and third (7, 37, 37′) elements by gluing.
12. The manufacturing method according to claim 11, wherein the first element (3, 33) and the second element (5, 35′) are produced by injection and sintering in accordance with the following steps: a) a step of producing a precursor (16) from a mixture of at least one material in powder form with a binder, b) a step of producing an insert (9) made from polymer material, the insert (9) having at least partly a negative form of the first (2, 4) and second blind recesses (27, 28), c) a step of overmoulding the precursor (16) on the insert (9) made from polymer material by injection in a mould in order to form an unfired body (14), and d) a step of sintering said unfired body (14) in order to form said first element (3, 33) and second element (5, 35′) in said material.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035] The present invention relates to an assembly of elements that are, for example, links intended to form a wristlet, a decorative item or a jewellery item. The assembly is more specifically adapted for elements produced in whole or in part with hard materials. The term “hard materials” according to the invention designates materials the hardness of which is substantially equal to or greater than 600 HV, or even equal to or greater than 1000 HV, and which accept plastic deformation only a little or not at all before breaking. Mention can be made, by way of in no way limitative example, as hard materials, for example, of enamels, stones, precious or not, such as ruby, sapphire or quartz, ceramics such as a metallic or non-metallic oxide, carbide or nitride, cermets or hard metals.
[0036] The part according to the invention, which is illustrated below for a wristlet, includes at least two sets of elements assembled together. According to the invention, the securing between the elements in a set and between sets is achieved by gluing.
[0037] Each set 1, delimited by broken lines in
[0038] The first and second elements 3, 5 each include a first blind element 2, 4 whereas the third element 7 includes a first through hole 6. As shown in
[0039] Furthermore, preferably, the rod 11 includes at the ends thereof a head 11a with a notch 11b provided over the entire periphery thereof. This notch is filled with the glue and disposed opposite the cavities. The rod 11 includes a main part 10 received in the through hole 6 of the third element 7 (
[0040] In a variant presented in
[0041] The set 1, 31 is assembled with another set and so on so as to form a part such as, for example, a wristlet, a decorative item or a jewellery item. As shown in
[0042] The two sets 1, 31 are also connected together via a rod 11′ mounted in a second through hole 24 in the third element 7 of a set 1. Each end of the rod 11′ is mounted and glued respectively in a second blind recess 27, 28 formed in a first and second element 3, 5 of another adjacent set 1. The rod 11′ intended to be mounted in the second through hole 24 has a configuration similar to the one intended to be mounted in the first through hole 6. Likewise, the blind recesses 27, 38 have the same features as the blind recesses 2, 4.
[0043] It will be understood that, as with the first through hole 6, depending on the clearance left or the respective form of the through hole 24 and of the rod 11′, the central third element 7 will be able to pivot or not with respect to the first and second lateral elements 3, 5 that frame it. Just as with the first through hole 6, the through hole 24 may include a cross section with a non-circular shape corresponding to that of the rod 11′ in order to prevent any relative pivoting between the third element and the first and second lateral elements. On the other hand, it can be envisaged that the through hole 24 may include a cross section with a circular shape corresponding to that of the rod 11′ in order to allow such relative pivoting.
[0044] The method for mounting the sets 1 is explained below. Initially, the elements 3, 5, 7 are manufactured with the various holes or recesses 2, 4, 6, 27, 28, 24. Preferably, at least one of the elements 3, 5 with the blind recesses 2, 4, 27, 28 are produced by additive manufacturing or by injection and sintering in accordance with a method described in further detail below. Secondly, the rods 11, 11′ are mounted and fixed by gluing respectively in the recesses 2 and 27 of the lateral element 3 (
[0045] When there are more than three elements as illustrated in
[0046] As explained above, the lateral elements 3, 5 with the blind recesses can be produced by additive manufacturing or by injection and sintering. The blind recesses can be produced directly during the additive manufacturing. For manufacturing by injection and sintering, the lateral elements with the blind recesses can be produced by overmoulding of the hard material on an insert made from lost plastics material having the form of the recesses in accordance with the application EP 20194714. In accordance with this application and as shown schematically in
[0047] The method 8 comprises a second step of producing b) an insert 9 made from polymer material, the insert having at least partly a form that is a negative of the one required for the recesses of the lateral elements 3, 5 (
A third step c) consists in overmoulding the precursor 16 on the insert 9 made from polymer material in order to form the unfired body 14 (
[0048] In a fourth step d), the unfired body is machined in order to eliminate unnecessary portions of the unfired body produced by the injection. For example, a nozzle or channels formed because of the tube or distribution circuits of the injection system are eliminated. Thus a machined unfired body is obtained.
[0049] In a fifth step e), the polymer insert 9 is eliminated by thermal debinding. Preferably, the unfired body overmoulded on the insert is immersed in a bath of alcohol at 80°. The bath of alcohol dissolves the polymer insert, so that the unfired body is obtained with the required form given by the insert. Alternatively, it is possible to implement thermal debinding to eliminate the polymer insert. The body overmoulded on the insert is thus heated to high temperature to make the polymer disappear. The polymer insert is consequently removed from the unfired body. The insert leaves a positive shape in the unfired body 14, which is that of the blind recess 2, 4, 27, 28 (
[0050] The function of the sixth step f) is to sinter said machined unfired body in order to form a body of the future part in said at least one hard material. The sintering consists in heating the precursor so that the powder grains agglomerate. During the sintering, the unfired body hardens while shrinking so as to result in a hard body with a sintering coefficient. Preferentially, according to the invention, the sintering step may include a pyrolysis. The body of the part obtained is substantially hardened by this step. Thus the body of the part has a definitive form as shown in
[0051] A seventh step g) may also be necessary to proceed with a glazing and/or polishing of the hard material. Thus the aesthetic appearance of the lateral element is improved.
[0052] Next the lateral elements are assembled in each set in accordance with the assembly method described above.
[0053] In a variant, for manufacturing by injection and sintering as well as for additive manufacturing, the blind recesses may be produced by machining in the unfired body or in the hard body after sintering.
[0054] The central element 7 may also be manufactured by additive manufacturing, or by injection and sintering.