Pillow
12582249 ยท 2026-03-24
Inventors
- Xingjian Zhu (Shanghai, CN)
- Senmiao Yang (Shanghai, CN)
- Qi Wei (Shanghai, CN)
- Hui Wang (Shanghai, CN)
- Minhua Zhao (Shanghai, CN)
Cpc classification
International classification
Abstract
The present invention relates to a pillow and belongs to the technical field of bedding. The pillow comprises an outer pillow cover and a pillow core, wherein the pillow core is detachably filled in the outer pillow cover. The outer pillow cover comprises a first fabric layer and a second fabric layer, and a first phase-change material layer is arranged on an inner surface of the first fabric layer. The pillow core comprises an elastic material layer and a second phase-change material layer arranged on an outer surface of the elastic material layer. When the second phase-change material layer is close to the first phase-change material layer, the pillow can provide an extremely strong cooling effect. When the second phase-change material layer is far away from the first phase-change material layer, the pillow can provide a moderate cooling effect.
Claims
1. A pillow, comprising an outer pillow cover and a pillow core, wherein the pillow core is detachably filled in the outer pillow cover, the outer pillow cover comprises a first fabric layer and a second fabric layer, and a first phase-change material layer is arranged on an inner surface of the first fabric layer, wherein the first phase-change material layer is discontinuous, wherein the first phase-change material layer comprises a plurality of hexagonal structures arranged in a honeycomb shape, wherein an interior of the hexagonal structure is filled with the first phase-change material, and an exterior of the hexagonal structure is not filled with the first phase-change material; and the pillow core comprises an elastic material layer and a second phase-change material layer arranged on an outer surface of the elastic material layer.
2. The pillow according to claim 1, wherein a ratio of an area of a region filled with the first phase-change material to a total area of the inner surface of the first fabric layer is 30-90%.
3. The pillow according to claim 1, wherein the first fabric layer and the second fabric layer are connected by a support layer, the support layer is an annular structure with a thickness, and the first fabric layer, the second fabric layer and the support layer are enclosed to form a cavity adapted to accommodate the pillow core.
4. The pillow according to claim 3, wherein the support layer is made of sandwich mesh cloth, and a top and a bottom of the support layer are both provided with continuous piped edges.
5. The pillow according to claim 1, further comprising an inner pillow cover for accommodating the pillow core, wherein the inner pillow cover is detachably arranged within the outer pillow cover.
6. The pillow according to claim 1, wherein the second fabric layer comprises an elastic material strip that protrudes in a direction away from the outer pillow cover.
7. The pillow according to claim 1, wherein the pillow comprises in sequence: a knitted nylon-spandex fabric layer, the first phase-change material layer, the second phase-change material layer, the elastic material layer and a knitted breathable fabric layer.
8. The pillow according to claim 1, wherein the pillow comprises in sequence: a knitted nylon-spandex fabric layer, the first phase-change material layer, the elastic material layer, the second phase-change material layer and a knitted breathable fabric layer.
9. The pillow according to claim 1, wherein the pillow comprises in sequence: a knitted nylon-spandex fabric layer, the first phase-change material layer, a first mesh fabric layer, the second phase-change material layer, the elastic material layer, a second mesh fabric layer and a knitted breathable fabric layer.
10. The pillow according to claim 1, wherein the pillow comprises in sequence: a knitted nylon-spandex fabric layer, the first phase-change material layer, a first mesh fabric layer, the elastic material layer, the second phase-change material layer, a second mesh fabric layer and a knitted breathable fabric layer.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The embodiments of the present invention may be better understood by describing the implementations of the embodiments of the present invention in conjunction with the accompanying drawings, in which:
(2)
(3)
(4)
(5)
(6) In the drawings, the reference numerals have the following meanings: a first fabric layer 1; a first phase-change material layer 11; a hexagonal structure 110; a second fabric layer 2; an elastic material strip 22; an elastic material layer 3; a second phase-change material layer 31; a support layer 4; and piped edge 41.
DETAILED DESCRIPTION OF EMBODIMENTS
(7) Unless otherwise defined, the technical terms or scientific terms used in this specification and claims shall have the ordinary meaning understood by those of ordinary skill in the art to which the present invention belongs.
(8) All numerical values recited herein as between the lowest value and the highest value are intended to mean all values obtained in increments of one unit between the lowest value and the highest value when there is a difference of more than two units between the lowest value and the highest value.
(9) In the description of the present invention, it should be understood that directions or positional relationships indicated by terms central, longitudinal, lateral, upper, lower, front, rear, left, right, vertical, horizontal, top, bottom, inner, outer, and the like are those shown based on the accompanying drawings, and are merely intended to facilitate and simplify description rather than indicate or imply that the indicated apparatus or element must have a specific direction and must be configured and operated according to the specific direction. Therefore, these directions or positional relationships should not be construed as limiting the present invention.
(10) Furthermore, the terms first and second are merely intended for a purpose of description, and shall not be understood as an indication or implication of relative importance or an implicit indication of a quantity of indicated technical features. Therefore, a feature limited by first, second and the like may explicitly indicate or implicitly include one or more such features. In descriptions of the present invention, unless otherwise stated, a plurality of means two or more than two.
Embodiment 1
(11) This embodiment provides a pillow, which may comprise an outer pillow cover and a pillow core, wherein the pillow core is detachably filled in the outer pillow cover.
(12) In a specific implementation, as shown in
(13) A first phase-change material layer 11 is arranged on an inner surface of the first fabric layer 1. As shown in
(14) In addition, the first phase-change material layer 11 is arranged on the inner surface of the first fabric layer 1, so that damages to the first phase-change material layer 11 caused by friction in the use process of the pillow can be reduced, and the risk that the first phase-change material layer 11 falls off from the first fabric layer 1 is reduced.
(15) In addition, the pillow can be deformed due to long-time squeeze by the head of a user in the use process, the stress concentration can be reduced by arranging the hexagonal structure 110 in the honeycomb shape, the probability that the first phase-change material layer 11 falls off from the outer pillow cover is reduced, and thus the service life of the pillow is prolonged. In addition, a hexagon is the most material-efficient shape when filling a plane. The hexagonal structure has the advantages that the amount of the used first phase-change material is decreased, and the area of the contacting-region for use of the first phase-change material is increased. Meanwhile, enough ventilation channels are reserved, and a dual experience of cooling and breathability is achieved.
(16) In a specific implementation, in the inner surface of the first fabric layer 1, the ratio of the area of the region filled with the first phase-change material to the total area of the inner surface of the first fabric layer 1 is about 30-90%. When the region filled with the first phase-change material is too small, an enhanced cooling experience cannot be provided; and when the region filled with the first phase-change material is too large, the breathability of the outer pillow cover may be reduced. In a preferred implementation, the ratio of the area of the region filled with the first phase-change material to the total area of the inner surface of the first fabric layer is about 30%, 50%, 70%, 90% or a range or subrange therebetween.
(17) The second fabric layer 2 may be a knitted breathable fabric layer. In a specific implementation, the knitted breathable fabric layer may be made of polyester and viscose fiber. Preferably, the knitted breathable fabric layer may be made from 67% polyester and 33% viscose fiber by weight. The second fabric layer 2 has a certain thickness, so that the requirements of the user and seasons with non-strong cool feeling can be met. In addition, the second fabric layer contains viscose fiber, so that the fabric feels softer.
(18) In a specific implementation, as shown in
(19) In an implementation, the pillow core may comprise an elastic material layer 3 and a second phase-change material layer 31 arranged on an outer surface of the elastic material layer 3. The elastic material may be a sponge. The second phase-change material layer 31 may be a layer of blue slurry coating, and is well bonded to the elastic material layer 3.
(20) In a specific implementation, an upper surface and a lower surface of the elastic material layer 3 are curved. The second phase-change material layer 31 is disposed on an outer surface of the elastic material layer 3, so that the slurry coating is bonded to the curved upper surface of the elastic material layer, and the second phase-change material layer 31 is evenly distributed on the upper surface of the elastic material layer 3. The user can contact different regions of the pillow when turning over, and the evenly distributed second phase-change material layer 31 can improve the cooling efficiency of the pillow. In a specific implementation, the second phase-change material layer 31 may be blue, so that the user can visually observe the outer surface of the pillow core provided with the PCM cooling coating, which facilitates confirmation of the upper surface and the lower surface of the pillow core in the use process.
(21) In an implementation, the first fabric layer 1 and the second fabric layer 2 are connected by a support layer 4, the support layer 4 is an annular structure with a certain thickness. The first fabric layer 1, the second fabric layer 2 and the support layer 4 are enclosed to form a cavity adapted to accommodate the pillow core. In an implementation, the support layer 4 is made of sandwich mesh cloth, and a top and a bottom of the support layer 4 are both provided with continuous piped edges 41.
(22) When the pillow is in use, the pillow is squeezed and deformed under the action of the head of the user. In this case, the air originally gathered inside the pillow core is squeezed out of the pillow core under the action of external force, and the air can be smoothly discharged from the pillow through the sandwich mesh cloth 3.
(23) In a specific implementation, the mesh of the sandwich mesh cloth is diamond-shaped. The pillow may be used to support the neck and head of a user. The pillow may be squeezed in the use process, and in this case, the pillow core and the pillow cover may be deformed under the action of external force. The diamond-shaped sandwich mesh fabric has good supporting properties, so that the pillow can maintain sufficient gusset and maintain the three-dimensional shape. Meanwhile, the diamond-shaped sandwich mesh cloth can enable air to freely circulate, and thus good breathability is maintained.
(24) The piped edge 41 is arranged at the top and bottom of the support layer 3, so that the edge of the support layer 3 is not in direct contact with the outside. The edge of the support layer 3 is protected, and the edge of the support layer 3 is prevented from being scattered in daily use. In addition, the piped edge 41 protects the support layer 4 from being directly contacted with the user, which avoids wear and prolongs the service life of the pillow cover. The piped edge 41 may be of a different color to the rest of the pillow cover and has a decorative effect.
(25) In a specific implementation, the pillow may comprise in sequence: a knitted nylon-spandex fabric layer, a first phase-change material layer, a second phase-change material layer, an elastic material layer and a knitted breathable fabric layer. In this case, the first phase-change material layer is close to the second phase-change material layer. If the knitted nylon-spandex fabric layer is positioned close to the user, an extremely strong cooling experience may be provided, which is particularly suitable for use in summer. This cooling experience is from the knitted nylon-spandex fabric layer, the first phase-change material layer, and the second phase-change material layer at the same time. Conversely, if the knitted breathable fabric layer is positioned close to the user, a temperature suitable for all seasons may be provided.
(26) In a specific implementation, the pillow comprises in sequence: a knitted nylon-spandex fabric layer, a first phase-change material layer, an elastic material layer, a second phase-change material layer and a knitted breathable fabric layer. In this case, the first phase-change material layer is far away from the second phase-change material layer. If the knitted nylon-spandex fabric layer is positioned close to the user, a moderate cooling experience may be provided. This cooling experience is from both the knit nylon ammonia fabric layer and the first phase-change material layer. Conversely, if the knitted breathable fabric layer is positioned close to the user, a moderate cooling experience may also be provided. This cooling experience is mainly from the second phase-change material layer.
Embodiment 2
(27) This embodiment relates to a pillow. This embodiment is different from Embodiment 1 in that the pillow of this embodiment further comprises an inner pillow cover. The inner pillow cover is detachably arranged in the outer pillow cover and is used to accommodate the pillow core. In a specific implementation, the inner pillow cover may be made from a first mesh fabric layer and a second mesh fabric layer. The mesh fabric is breathable, and the user can visually see a cooling layer of the elastic material layer through the mesh fabric layer. In addition, the inner pillow cover helps to put the pillow core into the outer pillow cover or take the pillow core out from the outer pillow cover.
(28) In a specific implementation, the pillow may comprise in sequence: a knitted nylon-spandex fabric layer, a first phase-change material layer, a first mesh fabric layer, a second phase-change material layer, an elastic material layer, a second mesh fabric layer and a knitted breathable fabric layer. In this case, the first phase-change material layer is close to the second phase-change material layer. Similarly, the knitted nylon-spandex fabric layer may be positioned close to the user, or the knitted breathable fabric layer may be positioned close to the user, so that a different cooling experience is achieved.
(29) In a specific implementation, the pillow comprises in sequence: a knitted nylon-spandex fabric layer, a first phase-change material layer, a first mesh fabric layer, an elastic material layer, a second phase-change material layer, a second mesh fabric layer and a knitted breathable fabric layer. In this case, the first phase-change material layer is far away from the second phase-change material layer. Similarly, the knitted nylon-spandex fabric layer may be positioned close to the user, or the knitted breathable fabric layer may be positioned close to the user, so that a different cooling experience is achieved.
(30) The objectives, technical solutions and beneficial effects of the present invention are further explained in detail with reference to the specific embodiments described above, and it should be understood that the above-mentioned contents are merely specific embodiments of the present invention, and are not intended to limit the present invention. Any modification, equivalent substitution, improvement, etc., made within the spirit and principle of the present invention shall all fall within the protection scope of the present invention.