This application claims priority from Chinese Application CN 202120929513.6 filed Apr. 30, 2021 in China, the disclosure of which is incorporated herein by reference in its entirety.
Apparatuses and methods consistent with example embodiments relate inflatable products, and in particular to an inflatable bed.
Inflatable beds are widely used. When a user touches or presses a surface of an inflatable bed, the surface of the inflatable bed will be in contact with the user, thus limiting heat dissipation therefrom and affecting the comfort of the user. In related art inflatable beds, breathability is not as good as desired, or the structure is sufficiently complex to provide a problem.
Example embodiments may address at least the above problems and/or disadvantages and other disadvantages not described above. Also, example embodiments are not required to overcome the disadvantages described above, and may not overcome any of the problems described above.
According to an aspect of an example embodiment, an inflatable bed comprises: a top sheet having a hole therethrough; a bottom sheet; a lateral confining sheet comprising an upper edge connected to an outer circumferential edge of the top sheet, and a lower edge connected to an outer circumferential edge of the bottom sheet; and at least one tensioning member comprising: an upper tensioning part comprising: an upper edge connected to an inner periphery of the hole through the top sheet, and a bottom surface; and a lower tensioning part, the lower tensioning part connected to the bottom surface of the upper tensioning part and to the bottom sheet; wherein the upper tensioning part, the top sheet, the bottom sheet, and the lateral confining sheet are connected together thereby defining an enclosed inflatable chamber.
The lower tensioning part may comprise: a top connected to the bottom surface of the upper tensioning part, and a lower side wall comprising an upper edge connected to the top and a lower edge connected to the bottom sheet, wherein the lower side wall has an air vent formed therethrough, the air vent in communication with the inflatable chamber.
The lower tensioning part may comprise: a lower side wall having an air vent formed therethrough, the air vent in communication with the inflatable chamber, wherein the upper side wall of the upper tensioning part and the lower side wall of the lower tensioning part, together comprise a single integrated structure.
The lower tensioning part may be a hollow body structure defined by a circumferential wall connected to the bottom surface of the upper tensioning part and to the bottom sheet, the hollow body structure comprising an open end providing communication between the inflatable chamber and an interior of the hollow body structure.
The first tensioning part may comprise: an annular structure having an inner circumference defining the upper edge of the upper tensioning part and an outer circumference; and a flat sheet having an outer, annular area having an outer circumference connected to the outer circumference of the annular structure and an inner area defining the bottom surface of the upper tensioning part.
The hole through the top sheet may be one of circular, quadrilateral, and kidney-shaped.
The inflatable bed may further comprise: an oblique draw sheet comprising a first edge connected to one of the top sheet and the bottom sheet and a second edge connected to the lateral confining sheet, the oblique draw sheet having an air vent formed therethrough, the air vent in communication with the inflatable chamber.
A cross sectional shape of the oblique draw sheet may be one of an I shape, a Y shape, and a V shape.
The inflatable bed may further comprise: a breathable layer substantially covering the top sheet and connected to at least one of the top sheet and the lateral confining sheet, wherein the breathable layer is gas-permeable.
The inflatable bed may further comprise a connecting part connecting the breathable layer to the at least one of the top sheet and the lateral confining sheet.
According to an aspect of another example embodiment, an inflatable structure comprises: a top sheet having a plurality of holes therethrough; a bottom sheet; a lateral confining sheet comprising an upper edge connected to an outer periphery of the top sheet and a bottom edge connected to an outer periphery of the bottom sheet; a plurality of tensioning members, each comprising: a tubular structure comprising an upper edge connected to an inner circumferential edge of one of the plurality of holes through the top sheet and a lower edge connected to the bottom sheet; and a cross-sheet having an outer circumference attached to an inner circumference of the tubular structure, between the upper edge and the lower edge.
The tubular structure of each of the plurality of tensioning members may comprise: a first annular structure comprising: a first upper edge defining the upper edge of the tubular structure and connected to the inner circumferential edge of the one of the plurality of holes through the top sheet, a first lower edge defining the inner circumference of the tubular structure and connected to the outer circumference of the cross-sheet; a second annular structure comprising: a second upper edge connected to the cross-sheet, and a second lower edge defining the lower edge of the tubular structure and connected to the bottom sheet.
An air vent may be formed through the second annular structure.
The inflatable structure may further comprise an oblique draw sheet comprising an annular structure comprising an inner circumferential edge connected to one of the top sheet and the bottom sheet and an outer circumferential edge connected to the lateral confining sheet.
The inflatable structure may further comprise: a breathable layer substantially covering the top sheet and connected to at least one of the top sheet and the lateral confining sheet, wherein the breathable layer is gas permeable.
According to an aspect of another example embodiment, an inflatable structure comprises: a top sheet having a plurality of holes therethrough; a bottom sheet; a lateral confining sheet comprising an upper edge connected to an outer periphery of the top sheet and a bottom edge connected to an outer periphery of the bottom sheet; a plurality of tensioning members, each comprising: an upper tensioning part comprising a tubular structure comprising an upper edge connected to an inner circumferential edge of one of the plurality of holes through the top sheet and a lower edge; a lower tensioning part comprising an upper surface connected to the lower edge of the upper tensioning part, a lower surface connected to the bottom sheet, and at least two side surfaces each connected between the upper surface and the lower surface, wherein an inner space defined by the upper surface, the lower surface, and the at least two side sheets is in communication with an inflatable chamber defined by the top sheet, the bottom sheet, and the lateral confining sheet.
The tubular structure of the upper tensioning part may comprise: an annular structure comprising an upper edge defining the upper edge of the upper tensioning part, and a lower edge; a sheet comprising an outer circumferential edge connected to the lower edge of the annular structure; wherein the lower edge of the upper tensioning part is defined as a ring on the sheet within the outer circumferential edge of the sheet.
The at least two side sheets of the lower tensioning part may comprise three side sheets connected between the upper surface and the lower surface of the lower tensioning part on three sides, respectively.
The inflatable structure may further comprise an oblique draw sheet comprising an oblique annular structure comprising an inner circumferential edge connected to one of the top sheet and the bottom sheet and an outer circumferential edge connected to the lateral confining sheet.
The inflatable structure may further comprise a breathable layer substantially covering the top sheet and connected to at least one of the top sheet and the lateral confining sheet, wherein the breathable layer is gas-permeable.
The above and/or other aspects will become apparent and more readily appreciated from the following description of example embodiments, taken in conjunction with the accompanying drawings, in which: example
Reference will now be made in detail to example embodiments which are illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout. In this regard, the example embodiments may have different forms and may not be construed as being limited to the descriptions set forth herein.
It will be understood that the terms “include,” “including”, “comprise, and/or “comprising,” when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
It will be further understood that, although the terms “first,” “second,” “third,” etc., may be used herein to describe various elements, components, regions, layers and/or sections, these elements, components, regions, layers and/or sections may not be limited by these terms. These terms are only used to distinguish one element, component, region, layer or section from another element, component, region, layer or section.
As used herein, the term “and/or” includes any and all combinations of one or more of the associated listed items. Expressions such as “at least one of,” when preceding a list of elements, modify the entire list of elements and do not modify the individual elements of the list.
Various terms are used to refer to particular system components. Different companies may refer to a component by different names—this document does not intend to distinguish between components that differ in name but not function.
Matters of these example embodiments that are obvious to those of ordinary skill in the technical field to which these example embodiments pertain may not be described here in detail.
As shown in
The inflatable bed further comprises a breathable layer 700 located above the top sheet 100 and connected to the top sheet 100. Convection and airflow can take place through the breathable layer 700. The breathable layer 700 may also be connected to the lateral confining sheet 300 or is connected to a connecting part of the top sheet 100 and the lateral confining sheet 300.
As shown in
In some embodiments, not shown in the accompanying drawings, the upper tensioning part comprises the upper side wall 402 and the bottom 404, and the lower tensioning part comprises a top and a lower side wall. The top is connected to the bottom 404 of the upper tensioning part, and an upper edge and a lower edge of the lower side wall are respectively connected to the top and to the bottom sheet 200. The upper side wall 402, the bottom 404 and the through hole 102 in the top sheet 100 form the recess 500a on the surface of the inflatable bed. The lower side wall is provided with at least one first air vent in communication with the inflatable chamber.
In some embodiments, as shown in
According to one or more example embodiments, the hole 102 in the top sheet 100 may be at least one of a circular hole, a rectangular hole, and a hole having another shape.
According to one or more example embodiments, a plurality of recesses are arranged, each extending in a widthwise direction of the inflatable bed and spaced apart from each other at intervals in a lengthwise direction of the inflatable bed. Alternately, the recesses may extend in the lengthwise direction of the inflatable bed and may be spaced apart from each other at intervals in the widthwise direction of the inflatable bed. In yet another example aspect, the recesses may extend or be arranged obliquely with respect to the inflatable bed, or may extend or be arranged irregularly. There may be one, two, three, four, six or another number of recesses.
As shown with respect to the example embodiments of
According to one or more example embodiments, a size of a top of the lower tensioning part may be equal to a size of the bottom 404 of the upper tensioning part, i.e., the upper edge of the lower side wall 406 may be connected to the bottom 404. Alternately, the size of the top of the lower tensioning part may be greater than a size of the bottom 404 of the upper tensioning part, and an edge of the bottom 404 may be connected to a middle part of the lower side wall 406. The connections of a top of the lower tensioning part to the bottom 404 of the upper tensioning part may be made by welding, which may contribute to production efficiency.
As shown in
A tensioning member 400b shown in
In the embodiments shown in
It should be understood that in the example embodiments shown in
According to one or more example embodiments, the upper tensioning part in
The example arrangement of the upper tensioning part and the lower tensioning part may enhance the strength of the tensioning member, so as to maintain a shape of the recess after inflation, thereby maintaining better breathability. When a user touches or presses the surface of the inflatable bed, the depth and/or the width of the recess may be maintained, so that good convection is enabled inside and outside the recess, and the breathability may be improved. It should be understood that if the inside of the tensioning member is not provided with a bottom, a top or a bottom surface, e.g., the tensioning member is in the shape of a hollow cylinder, then the outside of the tensioning member may be compressed by gas during inflation. If the inside of the tensioning member is not provided with a bottom, a top or a bottom surface, the recess may deform due to compression, which may further affect the breathability and the aesthetics of the inflatable bed. Such a structure may further reduce the strength of the tensioning member, thus weakening the support it provides for the inflatable bed.
In the example embodiments shown in
According to one or more example embodiments, the breathable layer is disposed above the top sheet and is connected to the lateral confining sheet. According to other example embodiments, the top sheet and/or the lateral confining sheet may be provided with a connecting part, such as a buckle, and an edge of the breathable layer may be connected to the top sheet and/or the lateral confining sheet via the connecting part.
According to one or more example embodiments, a shape of a cross section of the oblique draw sheet may be, but is not limited to, an I shape, a Y shape and a V shape.
According to one or more example embodiments, the inflatable bed has a multi-layer structure, i.e., an inflatable bed with a multi-layer structure is formed. Recesses are located on a surface of a first layer of the multi-layer inflatable bed, and the layers of the multi-layer inflatable bed are communicated with each other.
It may be understood that the example embodiments described herein may be considered in a descriptive sense only and not for purposes of limitation. Descriptions of features or aspects within each example embodiment may be considered as available for other similar features or aspects in other example embodiments.
While example embodiments have been described with reference to the figures, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the spirit and scope as defined by the following claims.
Number | Date | Country | Kind |
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202120929513.6 | Apr 2021 | CN | national |
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Number | Date | Country | |
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