The present disclosure generally relates to bedding, and more particularly to pillows adapted to provide ventilation to prevent heat buildup within the pillow.
Sleep is critical for people to feel and perform their best, in every aspect of their lives. Sleep is an essential path to better health and reaching personal goals. Indeed, sleep affects everything from the ability to commit new information to memory to weight gain. It is therefore essential for people to use bedding that is comfortable, in order to achieve restful sleep.
When people sleep or rest, at least part of the person's body, such as, for example, his or her back or neck, contacts a portion of a pillow, causing the pillow to accumulate heat. If unable to escape, the heat will build up within the pillow and will increase the temperature of the portion of the person's body that contacts the pillow, thus leading to discomfort. Such discomfort will often disrupt the person's sleep or rest. This disclosure describes an improvement over these prior art technologies.
In one embodiment, in accordance with the principles of the present disclosure, a pillow is provided. The pillow includes a back section having opposite front and back surfaces that each extend between opposite top and bottom surfaces. The surfaces each extend between opposite first and second side surfaces. The pillow includes spaced apart first and second arms that each extend outwardly from the front surface. The first arm has an inner surface and an opposite outer surface that is continuous with the first side surface. The second arm has an inner surface and an opposite outer surface that is continuous with the second side surface. The inner surfaces are continuous with the front surface. The top surface and the side surfaces each include a first portion comprising a first material and a second portion comprising a second material that is different from the first material.
In one embodiment, in accordance with the principles of the present disclosure, the back section has a height that is greater than that of the arms. The first portion of the top surface is positioned equidistant between the first and second side surfaces and extends into the front surface. The first portions of the side surfaces each extend from the top surface to the bottom surface. The first material includes 3D mesh fabric comprising 100% polyester and the second material includes a 100% polyester fabric. In the alternative, the first material including the 3D mesh fabric and the second material can be made from the same or different materials selected form the group consisting of acrylic, acetate, cotton, linen, silk, polyester, wool, nylon, rayon, spandex, lycra, hemp, manmade materials, natural materials (e.g., hemp) and blends thereof. Particular materials or blends of materials used are selected according the particular characteristics, price point, durability, and appearance to be achieved.
The pillow comprises a first mesh pocket that extends from the first portion of the first side surface to a lateral end surface of the first arm and a second mesh pocket that extends from the first portion of the second side surface to a lateral end surface of the second arm. The lateral end surface of the first arm extends from the inner surface of the first arm to the outer surface of the first arm. The lateral end surface of the second arm extends from the inner surface of the second arm to the outer surface of the second arm. The inner surfaces include the first material. The first material has a porosity that is greater than that of the second material. The pillow is configured such that air moves into an interior cavity of the pillow through the first portions of the top surface and the inner surfaces and exits the cavity through the first portions of the side surfaces.
In one embodiment, in accordance with the principles of the present disclosure, the pillow is a travel pillow wherein the back section is configured to support a user's neck and the arms are configured to rest on the user's shoulders as the back section supports the user's neck. In some embodiments, the travel pillow comprises a flexible band within the travel pillow configured to correct a position of the user's body frame. In some embodiments, the flexible band extends through the back section and each of the arms. In some embodiments, the travel pillow comprises a plurality of interior pockets, at least one of the interior pockets being filled with a first fill material and at least one of the interior pockets being filled with a second fill material that is different from the first material. In some embodiments, the travel pillow comprises a suction cup coupled to the outer surface thereof.
The present disclosure will become more readily apparent from the specific description accompanied by the following drawings, in which:
Like reference numerals indicate similar parts throughout the figures.
The present disclosure may be understood more readily by reference to the following detailed description of the disclosure taken in connection with the accompanying drawing figures, which form a part of this disclosure. It is to be understood that this disclosure is not limited to the specific devices, conditions or parameters described and/or shown herein, and that the terminology used herein is for the purpose of describing particular embodiments by way of example only and is not intended to be limiting of the claimed disclosure.
Also, as used in the specification and including the appended claims, the singular forms “a,” “an,” and “the” include the plural, and reference to a particular numerical value includes at least that particular value, unless the context clearly dictates otherwise. Ranges may be expressed herein as from “about” or “approximately” one particular value and/or to “about” or “approximately” another particular value. When such a range is expressed, another embodiment includes from the one particular value and/or to the other particular value. Similarly, when values are expressed as approximations, by use of the antecedent “about,” it will be understood that the particular value forms another embodiment. It is also understood that all spatial references, such as, for example, horizontal, vertical, top, upper, lower, bottom, left and right, are for illustrative purposes only and can be varied within the scope of the disclosure. For example, the references “upper” and “lower” are relative and used only in the context to the other, and are not necessarily “superior” and “inferior”.
The following discussion includes a description of a pillow in accordance with the principles of the present disclosure. Alternate embodiments are also disclosed. Reference will now be made in detail to the exemplary embodiments of the present disclosure, which are illustrated in the accompanying figures. Turning to
Pillow 10 includes a back section 12 comprising opposite front and back surfaces 14, 16 that each extend between opposite top and bottom surfaces 18, 20. Surfaces 14, 16, 18, 20 each extend between opposite first and second side surfaces 22, 24. Front surface 14 faces away from back surface 16; top surface 18 faces away from bottom surface 20; and first side surface 22 faces away from second side surface 24.
Back section 12 extends along a longitudinal axis L between top and bottom surfaces 18, 20, as shown in
In some embodiments, top and bottom surfaces 18, 20 each extend transverse to longitudinal axis L. In some embodiments, top and bottom surfaces 18, 20 each extend perpendicular to longitudinal axis L such that top and bottom surfaces 18, 20 extend parallel to one another. In some embodiments, first and second side surfaces 22, 24 each extend at an acute angle relative to longitudinal axis L. In some embodiments, first and second side surfaces 22, 24 each extend at an angle between 1° and 89° relative to longitudinal axis L. In some embodiments, surfaces 14, 16, 18, 20, 22, 24 may be disposed at alternate orientations, relative to longitudinal axis L, such as, for example, parallel, transverse, perpendicular and/or other angular orientations such as acute or obtuse, co-axial and/or may be offset or staggered.
Pillow 10 includes spaced apart first and second arms 26, 28 that each extend outwardly from front surface 14. That is, arms 26, 28 face away from back surface 16. First arm 26 comprises an inner surface 26a and an opposite outer surface 26b that is continuous with first side surface 22. Second arm 28 comprises an inner surface 28a and an opposite outer surface 28b that is continuous with second side surface 24. Inner surfaces 26a, 28a are continuous with front surface 14. In some embodiments, inner surface 26a extends continuously from front surface 14 to a lateral end surface 34 of arm 26. Lateral end surface 34 extends continuously from inner surface 26a to outer surface 26b. In some embodiments, inner surface 28a extends continuously from front surface 14 to a lateral end surface 36 of arm 28. Lateral end surface 36 extends continuously from inner surface 28a to outer surface 28b. In some embodiments, back section 12 has a height along longitudinal axis L that is greater than at least one of arms 26, 28. As shown in
Top surface 18 and side surfaces 22, 24 each include a first portion 30 comprising a first material and a second portion 32 comprising a second material that is different from the first material, as best shown in
In some embodiments, pillow 10 is sized and dimensioned for use as a backrest pillow wherein a user rests his or her back upon front surface 14 and rests his or her arms upon arms 26, 28. The user may position his or her neck or head upon portion 30 of top surface 18. As a user rests against pillow 10, heat from the user's body, such as, for example, at least one of the user's back, neck, head and arms, will enter the cavity via first portion 30 of top surface 18. Rather than remain trapped within the cavity, the heat escapes the cavity via first portions 30 of side surfaces 22, 24 to prevent heat from building up within the cavity. In some embodiments, this configuration allows heated air to move continuously through the cavity via first portion 30 of top surface 18 and first portions 30 of side surfaces 22, 24. Constant or continuous airflow through the cavity will prevent heat from building up within the cavity. In some embodiments, the first material has a porosity that is less than that of the second material.
In some embodiments, first portion 30 of the top surface 18 is positioned equidistant between first and second side surfaces 22, 24. In some embodiments, first portion 30 of the top surface 18 extends at least partially into front surface 14. In some embodiments, first portions 30 of side surfaces 22, 24 each extend continuously from top surface 18 to bottom surface 20. In some embodiments, the first material that forms portions 30 includes a mesh material. In some embodiments, the first material that forms portions 30 includes 3D mesh fabric comprising 100% polyester and/or the second material that forms portion 32 includes a 100% polyester fabric.
In some embodiments, inner surfaces 26a, 28a each include the first material. In some embodiments, inner surfaces 26a, 28a each consist of the first material. That is, no portion of either of inner surfaces 26a, 28a includes any material other than the first material. As stated above, in some embodiments, the first material has a porosity that is greater than that of the second material. This allows air, such as, for example, heated air to move into the interior cavity of pillow 10 through first portion 30 of top surface 18 and inner surfaces 26a, 28a and exit the cavity through first portions 30 of side surfaces 22, 24. That is, as a user rests against pillow 10, heat from the user's body will enter the cavity via first portion(s) 30 of top surface 18 and/or inner surfaces 26a, 28a. Rather than remain trapped within the cavity, the heated air escapes the cavity via first portions 30 of side surfaces 22, 24 to prevent heat from building up within the cavity. In some embodiments, this configuration allows heated air to move continuously through the cavity via first portion 30 of top surface 18 and/or inner surfaces 26a, 28a and first portions 30 of side surfaces 22, 24. Constant or continuous airflow through the cavity will prevent heat from building up within the cavity as no heated air will be contained within the cavity for enough time to increase the temperature of the cavity. In some embodiments, the entire outer surface 26b and the entire outer surface 28b each consist of the second material. That is, no portion of outer surface 26b or outer surface 28b includes the first material.
In some embodiments, best shown in
In some embodiments, pillow 10 includes a handle 42 coupled to top surface 18 that is configured for lifting and/or carrying pillow 10. In some embodiments, handle 42 is positioned on portion 32 of top surface 18 and is spaced apart from portion 30 of top surface 18 so as to avoid impeding airflow in and/or out of the cavity of pillow 10 through portion 30 of top surface 18. In some embodiments, handle 42 comprises a mesh material. In some embodiments, handle 42 comprises the first material. In some embodiments, handle 42 comprises a material that is different than the first material and the second material. In some embodiments, handle 42 has a total length between about 10 inches and 13 inches. In some embodiments, handle 42 has a total length of about 11.5 inches.
In some embodiments, the inner cavity of pillow 10 includes a fill material positioned therein. In some embodiments, the fill material comprises a compliant material. In some embodiments, the fill material comprises a gel. In some embodiments, the fill material comprises memory foam, latex, or similar specialty support cushioning, manmade materials and combination thereof.
In one embodiment, shown in
In some embodiments, pillow 10 one or a plurality of suction cups is/are coupled to the outer surface of pillow 10. The suction cup(s) allow(s) pillow 10 to be attached to a surface, such as, for example a vertical surface, such as, for example, a wall or window. In one embodiment, at least one suction cup is coupled to arm 26. In one embodiment, at least one suction cup is coupled to arm 28. In one embodiment, at least one suction cup is coupled to top surface 18. In one embodiment, at least one suction cup is coupled to handle 42.
In some embodiments, pillow 10 includes a seat cushion 46, as shown in
In some embodiments, pillow 10 is sized and dimensioned for use as a travel pillow, such as, for example, a pillow configured for use during an automobile or plane trip. In such embodiments, back section 12 is configured to support a user's neck and/or head and arms 26, 28 are configured to rest on the user's shoulders as back section 12 supports the user's neck and/or head. In some embodiments, at least one of arms 26, 28 has a height that is sufficient to at least partially cover the user's ears as back section 12 supports the user's neck and/or head to dampen ambient sound. In some embodiments, travel pillow 10 comprises a flexible band within travel pillow 10 that is configured to correct a position of the user's body frame. In some embodiments, the flexible band is a bendable wire. In some embodiments, the flexible band extends through back section 12 and at least one of arms 26, 28. In some embodiments, travel pillow 10 comprises a plurality of interior pockets, at least one of the interior pockets being filled with a first fill material and at least one of the interior pockets being filled with a second fill material that is different from the first fill material. In some embodiments, travel pillow 10 comprises a suction cup coupled to the outer surface of travel pillow 10. In some embodiments, the present disclosure includes a cover configured for disposal of travel pillow 10 to keep travel pillow 10 clean when traveling and not in use.
In one embodiment, shown in
Top surface 18 of pillow 10 shown in
Outer surfaces 26b, 28b of arms 26, 28 each include a first portion 30b that is made from the first material. First portions 30b each extend onto lateral end surfaces 34, 36 of arms 26, 28, as shown in
The configuration of first portions 30, 30a, 30b and second sections 32 of pillow shown in
As shown in
Headrest 52 includes a front panel 52a and an opposite back panel 52b. Front panel 52a is perimetrically joined and/or bound to back panel 52b. That is, the perimeter of front panel 52a engages the perimeter of back panel 52b. In some embodiments, front panel 52a is joined and/or attached to back panel 52b by stitching. Inner surfaces of front and back panels 52a, 52b define an interior cavity of headrest 52. The interior cavity of headrest 52 comprises a fill material positioned therein. In some embodiments, the interior cavity of headrest 52 comprises a fill material that is the same as the fill material positioned within the interior cavity of pillow 10. In some embodiments, the interior cavity of headrest 52 comprises a fill material that is different than the fill material positioned within the interior cavity of pillow 10.
In some embodiments, front panel 52a comprises the first material. In some embodiments, front panel 52a comprises the second material. In some embodiments, front panel 52a comprises a third material that is different from the first material and the second material. In some embodiments, back panel 52b comprise a material that is different from the material front panel 52a is made from. In some embodiments, back panel 52b comprises the same material that front panel 52a is made from. In some embodiments, back panel 52b comprises the first material. In some embodiments, back panel 52b comprises the second material. In some embodiments, back panel 52b comprises a third material that is different from the first material and the second material.
As shown in
As shown in
In some embodiments, mat 54 comprises a material configured to prevent items from slipping off of mat 54. For example, mat 54 may comprise rubber and/or silicone. In some embodiments, mat 54 may include one or a plurality of features to prevent items from slipping off of mat 54. For example, mat 54 may include a plurality of bumps or protrusions, as shown in
Mat 54 has a circular configuration. However, all or only a portion of mat 54 may be variously shaped, such as, for example, oval, oblong, triangular, square, polygonal, irregular, uniform, non-uniform, offset, staggered, undulating, arcuate, variable and/or tapered. Mat 54 is shown as covering a portion of the top surface of one of arms 26, 28. However, it is envisioned that mat 54 may cover all or only a portion of the top surface of one of arms 26, 28.
It will be understood that various modifications may be made to the embodiments disclosed herein. For example, features of any one embodiment can be combined with features of any other embodiment. Therefore, the above description should not be construed as limiting, but merely as exemplification of the various embodiments. Those skilled in the art will envision other modifications within the scope and spirit of the claims appended hereto.
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