Blanket Apparatus for Distributing Conditioned Air Into Zones of a Bed
20170164758 ยท 2017-06-15
Inventors
Cpc classification
A61F7/00
HUMAN NECESSITIES
A47C21/044
HUMAN NECESSITIES
International classification
Abstract
A bed covering or blanket apparatus for accepting and distributing a pressurized flow of conditioned air into a zone around the body of a bed occupant. The apparatus includes an upper layer and lower layer of differing air permeability, joined to form a flow cavity between them for the pressurized air. A plurality of joining methods between the upper and lower layer is provided within the flow area to prevent the blanket from ballooning under the pressurized airflow. The bed covering or blanket apparatus contains means to cover an entire bed while directing pressurized conditioned air to specific zones of the bed. There is connection of two independent supplies of conditioned air into a single top layer of bedding under which multiple bed occupants sleep, to evenly distribute such independent supplies into specific dual zone areas. The apparatus achieves its function by utilizing materials that are ordinarily used in existing bed linens and comforters.
Claims
1. A bed covering apparatus for receiving and distributing a pressurized airflow, the apparatus comprising: a bed covering having multiple regions of different air permeability from each other so that the air permeability is higher for at least one of the regions than for remaining ones of the multiple regions, the bed covering including a plurality of sheet layers in contact with each other in a one over the other relation to form at least one internal air cavity between the plurality of sheet layers; at least one air inlet in connection with one of the remaining regions and in fluid communication with the at least one internal airflow cavity to deliver pressurized air into the at least one internal airflow cavity to inflate the at least one internal airflow cavity to an inflated state with the airflow permeating through the at least one of the regions with the higher air permeability at a higher rate than permeating through the remaining ones of the multiple regions that have a lower air permeability; and a plurality of joining elements arranged throughout the bed covering in a uniform manner to join together the plurality of sheet layers to each other at a plurality of spaced apart locations so as to suppress a ballooning effect that would otherwise arise across an entirety of the bed covering from inflation of the at least one internal cavity to the inflated state as the pressurized air flows throughout the at least one internal airflow cavity.
2. The apparatus in claim 1, further comprising: a middle layer that is of smaller size than the lower one of the sheet layers and arranged between the lower one and an upper one of the sheet layers with the one region that has the higher air permeability being spaced away from the middle layer.
3. The apparatus in claim 2, wherein the middle layer is sewn to the lower one of the sheet layers with the air inlet spaced above the middle layer to create different sections of air permeability for the bed covering.
4. The apparatus in claim 1, wherein the plurality of joining elements include multiple ones of the joining elements within confines of a given area, which is spaced away from the at least one inlet, the blanket having a further area near the at least one inlet that is of identical dimension to that of the given area, the further area lacking any of the plurality of joining elements.
5. The apparatus of claim 1, wherein the bed covering includes a thermal layer that has a higher thermal insulating characteristic than the plurality of sheet layers, at least one of the plurality of sheet layers being sewn onto the thermal layer, the joining elements being thread stitches, the bed covering being a blanket.
6. The apparatus in claim 1, wherein the at least one internal airflow cavities includes two separate internal airflow cavities, the at least one air inlet means includes two separate air inlet means within respective ones of dual zones of the blanket, wherein the two separate air inlet means communicate with respective ones of the two separate access areas for delivery of pressurized air into respective ones of the at least two separate internal airflow cavities.
7. The apparatus in claim 4, wherein the pressurized air within at least one of the two separate internal airflow cavities is in a heated condition at a temperature higher than that of ambient temperature and the pressurized air within a remaining one of the two separate internal airflow cavities is at the ambient or cooled temperature.
8. The apparatus in claim 1, wherein the pressurized air within the at least one internal airflow cavity is in a heated condition that is at a higher temperature than that of ambient temperature.
9. The apparatus in claim 1, wherein the pressurized air within the at least one internal airflow cavity is at ambient or cooled temperature.
10. The apparatus in claim 1, wherein the at least one internal air cavity is within confines of a center area of the blanket spaced from end regions of the blanket, further comprising: means for separating in a sealing manner the center area of the blanket from each of the end regions so that each of the end regions remain in an non-inflated state despite the center area being in an inflated state from the delivery of the pressurized air into the at least one internal airflow cavity.
11. The apparatus in claim 1, wherein the plurality of sheet layers includes two sheet layers with one being upper and the other being lower and each having a weave of material, the lower one of the two sheet layers having no visible holes, slits or apertures that would tend to increase air permeability beyond that of the weave of material of the lower one of the two sheet layers.
12. The apparatus of claim 1, wherein the at least one air inlet is formed from portions of the plurality of sheet layers and bounded by an elastic band and snaps, the snaps being arranged to snap closed so that the elastic band and the snaps become hidden from view within folds of the plurality of sheet layers.
13. The apparatus of claim 1, further comprising: multiple redundant air inlet sections at edges in the bed covering that are configured to be sealed and unsealed as needed.
14. The apparatus of claim 1, wherein the blanket has two sides and two ends, the at least one inlet including two inlets with one of the inlets being at one of the ends of the blanket and another of the inlets being at one of the sides, the two inlets being in fluid communication with the at least one internal airflow cavity.
15. A method for receiving and distributing a pressurized airflow in a bed covering, the method comprising: providing a bed covering that has multiple regions of different air permeability from each other so that the air permeability is higher for at least one of the two regions than for remaining ones of the multiple regions, the bed covering including a plurality of sheet layers in contact with each other in a one over the other relation to form at least one internal air cavity between the plurality of sheet layers; making connection of at least one air inlet with at least one of the remaining regions and in fluid communication with the at least one internal airflow cavity to deliver pressurized air into the at least one internal airflow cavity to inflate the at least one internal airflow cavity to an inflated state with the airflow permeating through the at least one of the regions with the higher air permeability at a higher rate than permeating through the remaining ones of the multiple regions that have a lower air permeability; and arranging a plurality of joining elements throughout the bed covering in a uniform manner to join together the plurality of sheet layers to each other at a plurality of spaced apart locations to suppress a ballooning effect that would otherwise arise across an entirety of the bed covering from inflation of the at least one internal cavity to the inflated state as the pressurized air flows throughout the at least one internal airflow cavity.
16. The method in claim 15, further comprising: a middle layer that is of smaller size than the lower one of the sheet layers and sewn to the lower one of the sheet layers and arranged between the lower one and an upper one of the sheet layers with the air inlet spaced above the middle layer to create different sections of air permeability with the one region having the higher air permeability being spaced away from the middle layer.
17. The method in claim 15, wherein the plurality of joining elements include multiple ones of the joining elements within confines of a given area that is spaced away from the at least one inlet, the blanket having a further area near the at least one inlet that is of identical dimension to that of the given area, the further area lacking any of the plurality of joining elements.
18. The method of claim 15, further comprising: providing the bed covering with a higher thermal insulating characteristic than that of the plurality of sheet layers by including a thermal layer sewn to at least one of the plurality of sheet layers, the joining elements being thread stitches, the bed covering being a blanket.
19. The method in claim 15, further comprising: delivering pressurized air into respective ones of the two separate internal airflow cavities that the at least one internal airflow cavity includes, the two separate air inlets being in fluid communication with respective ones of two separate internal airflow cavities that the at least one internal airflow cavity includes.
20. The method in claim 18, wherein the pressurized air within at least one of the two separate internal airflow cavities is in a heated condition at a higher temperature than that of ambient temperature and the pressurized air within at least another of the two separate internal airflow cavities is at the ambient or cooled temperature.
21. The method in claim 15, wherein the pressurized air within the at least one internal airflow cavity is in a heated condition that is at a higher temperature than that of ambient temperature.
22. The method in claim 15, wherein the pressurized air within the at least one internal airflow cavity is at ambient or cooled temperature.
23. The method in claim 15, wherein the at least one internal air cavity is within confines of a center area of the blanket, the center area being spaced from opposite end regions of the blanket, further comprising: separating the center area of the blanket from each of the opposite end regions in a sealed manner so that each of the opposite end regions remain in an non-inflated state despite the center area being in an inflated state from the delivery of the pressurized air into the at least one internal airflow cavity.
25. The method in claim 15, wherein the plurality of sheet layers includes two sheet layers with one being upper and the other being lower and each having a weave of material, the lower one of the two sheet layers having no visible holes, slits or apertures that would tend to increase air permeability beyond that of the weave of material of the lower one of the two sheet layers.
25. The method of claim 15, further comprising: forming the at least one air inlet from portions of the plurality of sheet layers and bounded by an elastic band and snaps, the snaps being arranged to snap closed so that the elastic band and the snaps become hidden from view within folds of the plurality of sheet layers.
26. The method of claim 15, further comprising: providing multiple redundant air inlet sections at edges in the bed covering that are configured to be sealed and unsealed as needed.
27. The method of claim 15, wherein the blanket has two sides and two ends, the at least one inlet including two inlets with one of the inlets being at one of the ends of the blanket and another of the inlets being at one of the sides, the two inlets being in fluid communication with the at least one internal airflow cavity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] For a better understanding of the present invention, reference is made to the following description and accompanying drawings, while the scope of the invention is set forth in the appended claims.
[0027]
[0028]
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[0036]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0037] Referring now to
[0038] There are plurality of thread stitches 2 between the upper and lower layer sheets allows open flow paths, but prevents a ballooning effect of the joined sheets from arising when under pressurized airflow. Such a ballooning effect is avoided in accordance with the construction of the bed covering or blanket in accordance with the invention because of the placement of the thread stitches 2 in a uniform manner in the central region of the bed covering or blanket. Instead of the thread stitches 2, glue or mechanical fasteners or any form of joining means may be used to join together the upper and lower sheets. The thread stitches 2 may be tack stitches.
[0039] An optional sealing line 3 between the upper and lower layers may be provided to further distinguish a smaller zone in the bed that will not need to be inflated. An additional optional sealing line 5 between the upper and lower layers may be provided to create an independent dual zone flow area. The sealing lines 3, 5 may be in the form of a sealing mechanism such as a conventional hook and loop fastener strip that fastens the hooks and loops to each other in a releasable manner, or ordinary thread stitching
[0040] An additional unsealed area 6 between the upper and lower sheets may be provided for a second independent conditioned flow of air to support the dual zone airflow nature of the apparatus. The unsealed areas 1, 6 constitute ports or access areas for accommodating insertion of ends of air hoses that discharge pressurized conditioned air from a source into the flow area 7.
[0041] Turning to the dual zone embodiment of
[0042] The upper one of the sheet layers 11 is preferably a downproof sateen and and the lower one of the sheet layers 11 as well as the interior layer 12 are preferably of percale. The lower one of the sheet layers 11 are more air permeable than the upper one of the sheet layers 11. The upper portion of the lower sheet layer is more air permeable than the lower portion of the lower sheet layer due to the double layer. As a result, blowing air into the flow area 7 between the upper and lower sheet layers 11 will result in most of the blown air permeating through upper regions of lower sheet layer 11 that are away from the lower regions where the interior layer 12 is present.
[0043] There are two sealing lines 5A, 5B in
[0044] Additional sealing lines 15A, 15B are provided that extend from the bottom edge of each of the side openings 13A, 13B in a direction inwardly and then turn to run adjacent to respective sides of the bottom openings 14A, 14B. In addition, there is an additional sealing line 15C that run from the remaining sides of the bottom openings 14A, 14B inwardly and the across as shown. The purpose is to shrink the total flow area of the sheet system to only those areas of the bed where flow is desired.
[0045] In the case of the bed covering or blanket 10 being for king size, there are five tack stitches per row on each side joining top and bottom layers, evenly spaced apart from each other starting at the center seam. In the case of the bed covering or blanket 10 being for a queen size, there are four tack stitches per row on each side instead of five. In the case of the bed covering or blanket 10 being for double size, there may be three track stitches per row on each side instead of four for the queen size and instead of five for the king size.
[0046] Since the dual zone embodiment of
[0047] The flow areas 7 throughout the bed covering or blanket 10 become inflated around the thread stitches 2. Even though the bottom portion of the bed covering or blanket 10 lacks tack stitches 2, the enhanced reduction in air permeability afforded by the interior layer 12 in effect causes the air to flow or migrate under pressure to the portion of exterior layer 11 that has greater air permeability. The net effect is to allow inlet of air from the lower portion of the bed covering where the feet would commonly be located, and to have much of this air bypassed to the area of the bed covering where the torso would be located.
[0048] In the case of the single zone embodiment of
[0049] The unsealed area 1 and 6 of
[0050]
[0051] That is, the access area is opened to form an opening 21 by unsnapping snaps 22 to gain access to the flow areas 7 of
[0052] The opening 21 may be closed by snapping closed the snaps 22. Once the snaps 22 are closed, the snaps 22 and the elastic band 23 act such that they cannot be seen exteriorly as depicted in
[0053] Indeed, the user is given a choice of using either a side opening (1, 6, 13A, 13B of
[0054] Turning to
[0055] While the foregoing description and drawings represent the preferred embodiments of the present invention, it will be understood that various changes and modifications may be made without departing from the scope of the present invention.