ASSEMBLY FORMING A CAP FOR A COSMETIC PRODUCT CONTAINER COMPRISING TWO ELEMENTS AND RELEASE MEANS
20230048650 · 2023-02-16
Inventors
Cpc classification
A45D34/00
HUMAN NECESSITIES
B05B11/0032
PERFORMING OPERATIONS; TRANSPORTING
A45D40/00
HUMAN NECESSITIES
International classification
A45D34/00
HUMAN NECESSITIES
Abstract
A housing for cosmetic product(s), including at least one base to receive a cosmetic product and a mirror-bearing lid which is articulated with respect to the base by means of a hinge. A spacer plate connected to the base and including at least one through-opening passing through the thickness thereof so as to form a compartment directly surrounding the cosmetic product. The hinge includes a first upper pivot that is as one with the mirror-bearing lid, a pivot pin for the hinge, and a second lower pivot that is connected to the spacer plate so as to form the hinge. The pivots and the pivot pin are removably connectable to each other such that the mirror-bearing lid can be detached from the base and repositioned thereon as desired.
Claims
1-12. (canceled)
13. An assembly forming a cap for a container of a cosmetic product, the assembly having a longitudinal axis, comprising: a first element, extending along the longitudinal axis, adapted to be mounted on the container; a second element detachably assembled around the first element; wherein the first element comprises radially elastically deformable tabs configured to assemble the second element on the first element, the radially elastically deformable tabs configured to be radially engaged with notches formed inside the second element in an assembled position; and a release element movable between a rest position in which the radially elastically deformable tabs of the first element are engaged with the notches of the second element to assemble the first element and the second element, and an active position in which the radially elastically deformable tabs are disengaged radially from the notches to disassemble the first element with the second element.
14. The assembly of claim 13, wherein the release element has magnetic properties which is configured to be displaced under an effect of a predetermined external magnetic field, the release element being axially movable between the rest position when it is placed outside the determined external magnetic field and the active position to disengage the radially elastically deformable tabs from the notches when the release element is placed in the predetermined external magnetic field.
15. The assembly of claim 14, wherein the radially elastically deformable tabs comprise peripheral hooks configured to penetrate into the notches of the second element, the radially elastically deformable tabs further comprise central fingers, secured to the radially elastically deformable tabs and wherein the release element is a ring-shaped magnet disposed around the central fingers and having a conical outer surface, the central fingers radially bring together the radially elastically deformable tabs, with respect to the longitudinal axis, when the ring-shaped magnet passes from the rest position to the active position, thereby disengaging the peripheral hooks out from the notches.
16. The assembly of claim 15, further comprising three central fingers, three notches and three radially deformable tabs, all of them being evenly distributed angularly.
17. The assembly of claim 13, wherein the release element is an axially movable tool inside the first element between a rest position and an active position, the release element being configured to disengage the radially elastically deformable tabs from the notches.
18. The assembly of claim 17, wherein the radially elastically deformable tabs comprise at their free ends thereof, peripheral hooks configured to penetrate into the notches of the second element, the radially elastically deformable tabs being secured to an inner wall of the first element, the inner wall being reduced in a direction of the radially elastically deformable tabs; and wherein the axially movable tool is a rod comprising radial pushers at one working end, an axial displacement of the axially movable tool along the inner wall of the first element by the radial pushers causes a radial spacing of the radially elastically deformable tabs and a disengagement of the peripheral hooks out from the notches.
19. The assembly of claim 18, wherein the first element comprises, along the inner wall thereof, grooves to insert and axially guide the radial pushers towards the peripheral hooks.
20. The assembly of claim 18, further comprising three radial pushers, three notches and three radially elastically deformable tabs, all of them being evenly distributed angularly.
21. The assembly of claim 13, wherein the first element comprises an internal thread and wherein the release element is a rod comprising an external thread, the external thread of the rod being configured to engage the internal thread of the first element and be screwed in thereof, between a rest position and an active position to gradually disengage the radially elastically deformable tabs from the notches of the second element as a screwing of the rod progresses into the first element.
22. The assembly of claim 21, wherein the rod further comprises an enlarged end head configured to bear against a conical inner wall of the first element carrying the radially elastically deformable tabs, the radially elastically deformable tabs being radially spaced apart from each other by the enlarged end head bearing against the conical inner wall as the screwing of the rod progresses into the first element.
23. The assembly of claim 13, wherein the notches are blind housings.
24. The assembly of claim 13, wherein the notches are through holes.
Description
BRIEF DESCRIPTION OF FIGURES
[0021] Other advantages, aims and features of the present invention emerge from the following description made, for explanatory and not limiting purposes, with reference to the appended drawings, in which:
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DESCRIPTION OF EMBODIMENTS
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[0048] According to this first mode, this assembly 1 includes an outer decorative cover 2, for example a (recyclable) aluminum cylinder of small thickness and closed by a wall 5 at an upper end 3, which is mounted (preferably with a very small clearance) on an assembly 100 including a first element/insert 110, for example made of recyclable plastic material, preferably bio-sourced, connected to a second element/insert 120, for example made of (recyclable) aluminum, and additional release means 130.
[0049] The cover 2 and the different portions 110, 120 and 130 of the assembly 100 extending along a common longitudinal axis XX′.
[0050] The first element 110 generally includes a main body 111 of essentially cylindrical shape extending along the axis XX′ provided, at an upper rim 112, with three radially elastically deformable tabs 115 each provided with a end hook 116 protruding radially away from the axis XX′. The tabs 115 are evenly distributed (that is to say at 120°) over the periphery of the first element 110 and are spaced from each other by a longitudinal slot allowing the aforementioned elastic radial deformation.
[0051] The second element 120 (see
[0052] More specifically, in the assembled position of the two elements 110 and 120 represented in
[0053] The assembly 100 of
[0054] In the present case, the magnet 131 takes the form of a ring which locally surrounds protrusions 117 belonging to the radially elastically deformable tabs 115 and axially erected away from the upper rim 112 so as to keep the latter close to the main axis of the assembly (assembled position). To this end, these three protrusions 117 each have an outer surface 118 together forming a conical profile which widens as one moves axially away from the rim 112.
[0055] Thus, when the magnet 131 is displaced axially along the arrow F, under the effect of an external magnetic field S of a suitable strength, from its rest position (hooks 116 engaged in the notches 126) moving away from the rim 112 of the first element 110, it gradually radially tightens the protrusions 117 as it travels through the conical outer shape 118 of the latter, which gradually disengages the hooks 116 from the notches 126 of the second element thanks to the radial elasticity of the tabs 115 (more specifically, the hooks 116 approach together the axis XX′). Once the hooks 116 have been completely disengaged, the two elements 110 and 120 can be completely released to be recycled individually according to their construction material, which allows an easy and total recycling of the assembly 1 as a whole.
[0056] The assembly also includes a weight element 140 intended to weigh it down (sensation of perceived quality and better adhesion) disposed between the first element 110 and the second element 120 (see
[0057] A second magnet 150, of the annular type, is also provided (
[0058]
[0059] In this embodiment, the assembly 1 includes a cover 2 and an assembly 200 comprising a first internal element 210, a second external element 220, additional means 230 for releasing the two elements from each other, a weight element 240 and a magnet 250 for removable fastening, these last two portions being similar to their equivalents of the previous embodiment.
[0060] The first element 210 generally includes a main body 211 of an essentially cylindrical shape extending along the axis XX′ provided, at an upper rim 212, with three radially elastically deformable tabs 215 each provided with an end hook 216 protruding radially away from the axis XX′. The tabs 215 are evenly distributed (that is to say at 120°) over the periphery of the first element 210 and are spaced from each other by a longitudinal slot allowing the aforementioned elastic radial deformation.
[0061] The second element 220 (see
[0062] Thus, as in the first embodiment, in the assembled position of the assembly 200, the radially elastically deformable tabs 215 are in an unconstrained rest position such that the hooks 216 penetrate radially into the notches 226. The first and second elements therefore cannot be separated except by forcing them and breaking them.
[0063] The cover 2 comes, in turn, fit around the second element 220.
[0064] In accordance with
[0065] The interior of the first element 210 includes, at each of the radially elastically deformable tabs 215, three of the longitudinal grooves 214 having a conical shape narrowing slightly as approaching the hooks 116, which are intended to receive the radial protuberances 234 of the additional release means 230.
[0066] The operation of this assembly 200 is as follows.
[0067] The rod 231 of the additional release means 230 is inserted axially (manually or mechanically) inside the first element 210, and the radial protrusions 234 gradually penetrate into the internal grooves 214. The inside of the first element 210 being slightly conical at said grooves 214, the protuberances 234 gradually move apart the radially elastically deformable tabs 215 as the rod 231 advances axially (
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[0069] This variant, as in the preceding examples, the assembly 1 includes a cover 2 which is intended to cover an assembly 300 comprising a first element 310 forming a plastic insert intended to be assembled with a second element 320 made of recyclable aluminum.
[0070] As previously, the first element 310 includes a shape of a longitudinal cylinder 311 extending along the axis XX′ and has, at a rim 312, radially elastically deformable tabs 315 (see
[0071] The second element 320 comprises, in turn, (see
[0072] In accordance with
[0073] The additional release means 330 includes, in turn, as illustrated in
[0074] As previously, the assembly 300 also includes a metal weight element 340 and a magnet 350.
[0075] The operation of this third embodiment is as follows.
[0076] Once the cover 2 has been removed, the user or a machine places the additional release means 330 inside the internal element 310, then he rotates said additional release means 330 so as to screw it into said internal element 310 by interpenetration of the external 334 and internal 314 threads.
[0077] During this rotation, the additional release means 330 gradually axially penetrates into the internal element 310 and the cooperation of the threads 334 and 314 cause the radially elastically deformable tabs 315 to be radially spaced apart from each other as the additional release means advances axially such that the hooks 316 are disengaged from the notches 326 of the external element 320 (see
[0078] According to a fourth embodiment illustrated by
[0079] More specifically (see
[0080] The second element 420 (see
[0081] In accordance with
[0082] Unlike the third embodiment, the thread 413 is straight and not conical.
[0083] In this variant of the preceding embodiment, the additional release means 430 also includes, in addition to a rod 431 locally provided with an external thread 434 (2-3 threads for example), an enlarged head 435 located at the level a distal end 432 and intended to cooperate with the conical inner surface 419 of the first element 410.
[0084] Thus, as the external thread 434 is screwed into the internal thread 414 of the first element 410, and the additional release means 430 progresses axially in said first element 410, the enlarged head 435 moves away the radially elastically deformable tabs 415 such that the hooks 416 are gradually disengaged from the notches 426, which ultimately allows releasing the two elements 410 and 420 from each other.
[0085] It is then possible to recover and recycle independently the first element 410 and the additional release means 430 made of plastic material, on the one hand, and the outer cover 2, the second element 420, the weight element 440 and the magnet 450, on the other hand.
[0086] The four embodiments thus described are particularly effective to easily recycle portions which, ordinarily, were thrown away because they could not be released nor sorted depending on their material.
[0087] It should be understood that the detailed description of the subject of the invention, given only by way of illustration, does not, in any way, constitute a limitation, the technical equivalents also being included within the scope of the present invention.
[0088] Thus, the number and the angular distribution of the radially elastically deformable tabs, hooks and notches can vary.
[0089] The notches may open through the wall of the second element.