Support element and method for its realisation
09737152 · 2017-08-22
Assignee
Inventors
Cpc classification
A47C21/046
HUMAN NECESSITIES
International classification
Abstract
A support element, for example a plate, a mattress, a pillow, a seating plane of a chair, of an armchair, a saddle for vehicles and the like, equipped with a resting surface for a user, includes at least one first layer in gel associated with at least one second layer of different material; such a first layer in gel and such a second layer, that are associated, are crossed by through openings that are suitable for the proper circulation of air from one side to the other of the support element, so as to allow the optimal transpiration and thermal regulation of the parts of the body of the user positioned resting on the support element itself.
Claims
1. A support element including a resting surface for a user, comprising at least a first layer made of gel associated to at least a second layer made of different material, said first layer made of gel and said second layer comprising substantially uniform through openings providing suitable direct air circulation (F) from one side to the other of the support element, so as to allow for optimum transpiration and thermoregulation of the user's body parts which are resting on said support element, wherein the support element further comprises a film of non-stick material which covers the whole free surface of said first layer made of gel associated to said second layer, including at least part of the side surface of said through openings, while maintaining the through openings.
2. The support element, according to claim 1, wherein at least said first layer made of gel is associated above said second layer and comprises a distribution of heads for contacting the user's body parts defined between throats for the air circulation.
3. The support element, according to claim 2, wherein said heads comprise slits adapted for air circulation (F) between said heads and the user's body parts resting on them.
4. The support element, according to claim 1, wherein said second layer is made of foam, wherein said first layer made of gel is associated with said second layer so as to make up a single plate.
5. The support element, according to claim 1, wherein said film is made of a thermoformed polymer material and/or silicone and/or wax and/or of a material similar to the material making up said first layer made of gel and/or said second layer and/or of a detaching material.
6. The support element, according to claim 1, comprising at least a base suitable to house at least said first layer made of gel associated to said second layer, said base having a predefined height suitable to attain an optimum comfort for the user.
7. The support element, according to claim 6, wherein said base comprises a sequence of grooves open on the coupling side to at least said second layer, and/or a distribution of channels open on the side opposite to that for coupling with at least said second layer, said grooves intercepting said openings and said channels for optimum air circulation (F) in said support element.
8. The support element, according to claim 6, comprising at least a meshed structure shim interposed between said base and said second layer associated to said first layer made of gel, said meshed structure shim being adapted for air circulation (F).
9. The support element, according to claim 8, wherein said meshed structure shim is made of a three-dimensional fabric and/or a cross-linked foam and/or a polyethylene or polyolefin plate.
10. The support element, according to claim 6, wherein said base is made of at least one of polyurethane foam, latex foam, pocketed springs or continuous coil springs.
11. The support element, according to claim 1, wherein said first layer made of gel and said second layer are combined in a single plate through at least first and second casting steps.
12. The support element according to claim 1, wherein said first layer made of gel is made of polyurethane gel or thermoplastic elastomer (TPE) or of non polyurethane polymers or mineral oil-based thermoplastic elastomers or of other materials suitable for such purpose able to three-dimensionally deform after a force has been applied to them.
13. The support element, according to claim 1, wherein said second layer is made of a polyurethane foam or of another material which can be coupled to the material of said first layer made of gel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The characteristics of the invention shall become clearer to a man skilled in the art from the following description and from the attached drawing tables, given as an example and not for limiting s purposes, in which:
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DETAILED DESCRIPTION
(11) With reference to the attached figures, reference numeral 1 wholly indicates a support element according to the present invention.
(12) The support element 1 according to the present invention can be in the form, for example, of a plate, a mattress, a pillow, a seating plane of a chair, of an armchair, a saddle for vehicles and the like.
(13) In the case in which it is in the form of a plate, the support element 1 according to the present invention can be used on top of other support elements of the aforementioned type, for example mattresses, pillows, seating planes, etcetera.
(14) In the most simple version, the support element 1 is equipped with a resting surface for a user and comprises at least one first layer 2 made from gel associated with at least one second layer 3 made from a different material; such a first layer 2 made from gel and such a second associated layer 3 are passed through by through openings 4 that are suitable for the proper circulation of air from one side of the support element 1 to the other, as illustrated in
(15) The support element 1 can moreover comprise a containment cover 16, which can be made with the common materials used in making mattresses or similar supports for the human body, for example quilted fabrics, with fibre or foam padding, or other filling materials, three-dimensional fabrics, single fabrics, both synthetic and natural, the foam and the gel being made with polyurethane and being also able to contain products derived from processing natural materials.
(16) One important characteristic of the containment cover 16 is that of not generating a masking effect of the elastic, supporting and adaptation capabilities of the underlying layer made from gel 2, another important characteristic is that of allowing the desired air circulation.
(17) For these reasons the cover 16 is preferably thin at least in the area of the gel layer 2 and/or at the openings 4.
(18) Concerning now the first layer 2 made from gel itself, it is associated with the second layer 3 and comprises a distribution of heads 5 in contact with parts of the body of the user defined between air circulation throats 6.
(19) According to one version of the invention, the contact surface for the body of the user can be equal to or greater than 50%.
(20) It should be noted that by suitably varying the geometry of the throats 6, the openings 4 and of other possible channels for ventilation, it is possible to adjust in the desired manner the ratio between the areas of the contact surface and of the surface intended for ventilation.
(21) This is possible due to the fact that the yielding of the part in gel is not due to a particular geometrical shape, intended to deform and to become unstable so as to provide a certain yielding and absorb the load of the user, but only due to the intrinsic characteristics of the gel material.
(22) More in detail the mentioned heads 5 comprise slits 7 that are suitable for allowing air to circulate between the heads 5 themselves and the parts of the body of the user resting on them.
(23) The second layer 3 is made from foam, and the first layer 2 made from gel and the second layer 3 made from foam are associated so as to form a single plate.
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(25) In one version of the invention, the second layer 3 is made from polyurethane foam. In a further version of the invention, the second layer 3 is made from a foam that can be coupled with the material that forms the first layer 2 made from gel.
(26) The support element 1 further comprises a film 20, which is made from non-stick material, which covers the free surface of the first layer 2 in gel associated with the second layer 3.
(27) The film 20 perfectly follows the surface that it must cover, preventing the formation of faults, air bubbles and anything else that could jeopardise its quality.
(28) As indicated above, the support element 1 (
(29) More in detail, according to what is illustrated in
(30) In another embodiment, the support element 1 can comprise a shim having a meshed structure 11 (
(31) The shim 11 can be made with a three-dimensional mesh fabric structure, for example the three-dimensional fabric marketed with the name “3mesh” by the company Mueller Textil Group, and/or with a meshed foam, for example polyurethane, and/or with a polyethylene or polyolefin plate, for example marketed with the name “C-Core” by the company Daewoo, as indicated in U.S. patent U.S. Pat. No. 7,625,629.
(32) The shim 11 can also be made from a perforated foamed lattice, or foamed perforated EVA (ethylene vinyl acetate) or perforated polyurethane foam, and/or from so-called “pocket coils”, i.e. coils that are individually arranged in bags or packets so as to avoid interfering with one another, and/or by “continuous coils”, i.e., coils in which the rows of windings are formed by a single continuous metal wire element.
(33) The shim 11 can moreover comprise blocks of fibre like coconut, natural and synthetic felt, and/or hydrophilic foam/fabrics/film, i.e. with high capability of absorbing the humidity generated by the user.
(34) The base 8 can also define two side portions 8a, between which the first gel layer 2 associated with the second foam layer 3 are housed with the heads 5 substantially arranged flush with the sides 8a themselves.
(35) The support element 1 can also comprise two end elements 12 that are located opposite one another between the sides 8a of the base 8 and laterally with respect to the first gel layer 2 associated with the second foam layer 3; such end elements 12 are arranged flush with the sides 8a of the base 8 and with the heads 5 of the first gel layer 2.
(36) At least the first gel layer 2 and the second foam layer 3 are made in a single plate through a first and a second successive casting, so as to ensure the maximum hold of the reciprocal coupling. Also the base 8 can be made from foam like the second layer 3, like for example from polyurethane foam, or from other types of different foams, such as for example latex foam, and/or “pocket coils,” and/or coils with a continuous wire also called “bonnel inner spring” and/or “continuous coils.”
(37) The method for making the support element 1 according to the present invention comprises the steps of providing at least one mould 13 for casting the support element 1, providing the at least one mould 13 of at least one distribution of projections 14 having a first predetermined height, inserting or spraying, in contact with the at least one mould 13, a film 20 made from non-stick material with a releasing function, casting in the at least one mould 13 the gel so as to obtain a first gel layer 2 to a second predetermined height, the second predetermined height being substantially lower than the first predetermined height of the projections 14, casting in the mould 13 a material other than gel so as to obtain a second layer 3 over said first gel layer 2, obtaining a total height that is equal to or greater than said first predetermined height of said projections 14 of a second layer 3 for a total height that is equal to or greater than the first predetermined height of the projections 14, extracting from the at least one mould 13 the first gel layer 2 associated with the second layer 3 shaped in a single plate.
(38) The method is moreover characterised in that it foresees to cut the plate so as to obtain openings 4 corresponding to the areas made with the projections 14 of the at least one mould 13, so as to obtain through openings 4 for air to circulate in said first gel layer 2 and in said second layer 3 associated in a single plate.
(39) The second layer 3 can comprise an expanding material which is expanded in a further step.
(40) This expansion step can occur so as to completely fill the at least one mould 13, when this is of the closed type, or it can be left to expand freely if the at least one mould 13 is of the open type.
(41) In this case, the second layer will be finished off during the aforementioned cutting step.
(42) The mould 13 can also comprise a distribution of reliefs 15 that are suitable for making, in the first gel layer 2, the heads 5 in contact with the parts of the body of the user defined between corresponding throats 6 for air to circulate, and the aforementioned projections 14 are located substantially at the intersections of the reliefs 15.
(43) The mould 13 can moreover comprise a distribution of crests (not visible in the figures) that are suitable for making, on the heads 5, the corresponding slits 7 for the circulation of air between the heads 5 themselves and the parts of the body of the user resting on them.
(44) In particular, the second layer 3 is cast in the mould 13 after the first gel layer 2.
(45) In such a way, according to what has been indicated above, such first and second casting steps make it possible to associate the first gel layer 2 and the second layer 3 of expanding material other than gel, so as to ensure the maximum hold of the reciprocal coupling, as described in patent U.S. Pat. No. 7,576,137 to Technogel Gmbh & Co K, the text of which is included here as a reference.
(46) The film 20 can be made from thermoformed polymer material, for example TPU of Epurex, and/or from silicone and/or wax; it can be a preformed film or made through coating, i.e. through spraying, of the mould 13, through at least one of the aforementioned materials.
(47) The film 20 is preferably made from a material similar to the material forming the first gel layer 2 and the second foam layer 3. The film 20 acts as a material for releasing the mould 13.
(48) Moreover, the film 20 has an important function of protecting the first gel layer 2, which would otherwise become damaged or torn with use.
(49) The film 20 covers at least part of the side surface of the through holes 4—both in the part belonging to the first gel layer 2 and in the part belonging to the second foam layer 3—preserving their integrity over time, mainly but not exclusively in the part belonging to the first gel layer 2.
(50) In this way the function of effective passage of air from one side to the other of the support element 1 is fully ensured.
(51) The height of the first gel layer 2 can vary from one area to the next of the first layer 2 itself, according to the requirements of the manufacturer or of the user and as a function of the height of the respective projections 14.
(52) The method for making the support element 1 further comprises the step of cutting the plate of the support element 1 according to a plane P that is substantially longitudinal passing through the second layer 3 and intersecting the seats that were previously made through the projections 14 of the mould 13.
(53) In such a way through openings 4 are obtained for the circulation of air in the first gel layer 2 and in the second layer 3 associated in a single plate.
(54) According to another version of the present invention visible in an embodiment given as an example and not for limiting purposes in
(55) Such a cutting step, which as indicated above does not occur according to a longitudinal plane but through notches S, can be made by means of pantograph machines for cutting the polyurethane foam.
(56) The areas that are made previously by the projections 14 can be die cut, so as to obtain the through openings 4, through die cutting machines or any other equipment that is suitable for that purpose.
(57) In this last case, the film 20 only partially covers the side surface of the through openings 4; it is indeed important for the first gel layer 2 to be completely encapsulated by the film 20, whereas there are not the same requirements for the second layer 3.
(58) As mentioned, the first gel layer 2 and the second layer 3 can be coupled to a base 8 with a predefined height and provided with a distribution of grooves 9 and channels 10 for the circulation of air.
(59) Alternatively, the first gel layer 2 and the second layer 3 can also be coupled with a base 8 with a predefined height with the interposition of a shim having a meshed structure 11 that is suitable for allowing air to circulate.
(60) According to one version of the invention, the first gel layer 2 is made with polyurethane gel, preferably with a hardness of 0.5-100 kPa at 40%, according to the ISO standard 3386-1.
(61) Other types of materials that can be used for making the first gel layer 2 are soft thermoplastic elastomers, abbreviated as TPEs, or gels obtained with non polyurethane polymers, or with thermoplastic elastomers with plasticizers, and other materials that are suitable for such a purpose.
(62) In particular, the first layer 2 is made from a material with the mechanical characteristics that allow it to support and distribute the weight of the user, and the comfort of which is related to the capability of deformation in a three-dimensional manner after a force has been applied. The operation of the support element 1, according to the invention is, according to what has been described, completely intuitive.
(63) According to what has been illustrated in
(64) The same occurs in the case in which the support element 1 is for example a mattress, namely, as described previously, comprising a suitable base 8 that is coupled with the first gel layer 2 associated with the second foam layer 3 in a single plate.
(65) Also in this case the foreseen openings 4, throats 6 and slits 7, together with the grooves 9 and the channels 10 of the base 8, as illustrated for example in
(66) Moreover, in the case illustrated in
(67) The invention thus conceived makes it possible to obtain important technical advantages.
(68) One important technical advantage is made up of the fact that the support element 1 makes it possible, as seen, for there to be the optimal circulation of air inside it, ensuring in such a manner that there is the suitable transpiration and thermal regulation of the parts of the body resting on it, all this while keeping characteristics of elasticity, support, pressure distribution, adaptability and three-dimensional relationship between the user and the support element, thus eliminating the faults due to the high heat capacity of the gel that is now reduced having coatings with insulating characteristics, for example quilting, but which preclude the complete comfort provided by the gel layer.
(69) Moreover, the method devised for making the support element makes it possible, as described, to obtain the desired circulation of air through the first gel layer 2 and through the second foam layer 3, effectively associated with successive casting in a single plate, obtaining directly, through the mould 13, the aforementioned openings 4 as well as the throats 6 and the slits 7.
(70) The support element thus obtained has suitable mechanical elasticity, support and strength characteristics: indeed making the openings 4 at a later moment, through direct perforation of the uniform plate (without the presence of recesses determined by the projections of the mould) of the first gel layer 2 and of the second associated foam layer 3, would lead to a tearing of the same first gel layer 2 triggering the breaking of the entire support element.
(71) It is possible to understand how the method described makes it possible to obtain the support element 1 with a low number of simple and effective operations, which—in addition to obtaining the described high elastic, support and three-dimensional adaptability characteristics together with the optimal circulation of air—make it possible to cut down time and relative production costs.
(72) It has thus been seen how the invention achieves the proposed purposes.
(73) The present invention has been described according to preferred embodiments, but equivalent variants can be conceived without for this reason departing from the scope of protection offered by the following claims.