This invention relates in general to a disposable pillow and the respective method of manufacture, more specifically an inflatable, disposable pillow with features for comfort.
The present invention is generally related to a disposable pillow with features specifically designed for comfort.
Pillows are desired for a broad number of applications, including but not limited to airline rides, train rides, car rides, medical applications, and the like. In commercial applications, it would be desirable for a low cost, disposable solution.
It is desirable that the pillows be sanitary.
Airline industry is currently utilizing small polyester filled pillows with disposable pillow covers. The polyester filled pillows dictate volume storage. Volume/space is a critical component in airlines and other industries. Disposable pillow covers require labor for readiness. There is a cost associated with the disposable pillow covers.
Pre-filled pillows are not easily storable.
Pre-filled pillows are not easily shippable.
Pre-filled pillows are not easily vendible.
El-Asir (UK Patent appl GB 2198341) teaches a “C” shaped inflatable pillow comprising a closure member that utilizes a seam allowance positioned external to the gas envelope. El-Asir requires the inclusion of the external seam allowance for the fabrication process taught.
Concerns of sanitary means for inflatable pillows must be considered.
Current inflatable pillows position a seam allowance external to the pillow. The seam allowance then becomes an irritant to the user. This irritation is aggravated when the shape of the pillow positions the seam allowance directly contacting the user, such as a “C” shaped pillow. Valve designs and common assembly processes would direct the designer away from changing this flaw.
Conventional pillows are either “C” shaped or rectangular. The “C” shaped pillows are all designed such where the rear is equal to or larger than the side sections.
Conventional pillows fail to consider specific accupoints.
Novel material has been recently introduced, the material comprising a polyethylene smooth side and a fibrous woven softer side.
Standard manufacturing processes of inflatable plastic objects results in the excess material of the seam remaining on the outside of the inflatable object. This would be consistent with an inflatable pillow.
What is desired is a method to manufacture and apparatus of a low cost, disposable and comfortable disposable pillow.
The present invention addresses the deficiencies in consumer and travel pillow technology.
A first aspect to the present invention is a disposable pillow.
A second aspect to the present invention is an inflatable pillow.
A third aspect to the present invention is an inflation member.
A fourth aspect to the present invention is a self-sealing inflatable member.
A fifth aspect to the present invention is an inflatable pillow with a seam allowance towards an inside of the inflatable pillow.
A sixth aspect to the present invention is a pillow of a gas impermeable material comprising a polyethylene smooth side (inner core side) and a fibrous woven softer side (finished side).
A seventh aspect to the present invention utilizes an assembly process of thermally bonding the seams.
An eighth aspect of the present invention utilizes an assembly process to thermally bonding the seams of the polyethylene smooth side and a fibrous woven softer side.
A ninth aspect to the present invention utilizes the step of bonding with the fibrous woven softer sides contacting each other.
A tenth aspect to the present invention is a design of a “C” shaped pillow with a rear section that has a smaller cross section compared to each of the sides.
An eleventh aspect to the present invention is a “C” shaped pillow with a coupling member positioned between each of the ends of the “C” shaped pillow allowing the user to couple the pillow around the user's neck.
A twelfth aspect to the present invention is a trimmed seam allowance near corners and curves to assist in inverting the inflatable pillow.
A thirteenth aspect to the present invention is the utilization of any of the following bonding techniques:
A fourteenth aspect to the present invention is a method of manufacture utilizing a shaped bonding tool.
A fifteenth aspect to the present invention is a method of manufacture utilizing a steel rule die for trimming/shaping of the inflatable pillow.
A sixteenth aspect to the present invention is the utilization of a bonding wheel.
A seventeenth aspect to the present invention is the utilization of a programmable bonding tool, wherein the programmable bonding tool is automated to create a bond following a predetermined pattern.
An eighteenth aspect to the present invention is the utilization of a cutting tool, wherein the programmable cutting tool is automated to trim the inflatable pillow in a predetermined pattern.
A nineteenth aspect to the present invention is the use of a combination bonding and cutting tool.
A twentieth aspect to the present invention is the step of automating the combination bonding and cutting tool.
A twenty-first aspect to the present invention is the inclusion of a pressure relief valve. This would be desirable for applications with changes in pressure such as air travel.
A twenty-second aspect to the present invention is an alternate embodiment is an inflatable pillow comprising a seam allowance on the exterior of the gas envelope and rolling the seam allowance.
A twenty-third aspect to the present invention is the inclusion of artwork on the inflatable pillow.
A twenty-third aspect to the present invention is wherein the artwork on the inflatable pillow is a logo of the respective party (i.e. an airline company for an airline use).
A twenty-forth aspect to the present invention is wherein the artwork on the inflatable pillow is an advertisement or logo of an advertised company.
A twenty-fifth aspect to the present invention is the inclusion of a vibrating device at least one of capable of being coupled to and coupled to a section of the inflatable pillow.
A twenty-sixth aspect to the present invention is the inclusion of a vibrating device at least one of capable of being coupled to and coupled to an accupoint section of the inflatable pillow.
A twenty-seventh aspect to the present invention is the inclusion of a pocket within the inflatable pillow, the pocket designed to contain a removable vibrating device.
A twenty-eighth aspect to the present invention is the inclusion of a pocket within the accupoint section of the inflatable pillow, the pocket designed to contain a removable vibrating device.
A twenty-ninth aspect to the present invention includes a power source for the vibrating device.
A thirtieth aspect to the present invention includes a power source for the vibrating device, whereby the power source is of a stored power source such as a battery.
A thirty-first aspect to the present invention includes a power source for the vibrating device, whereby the power source is remote such as being provided by a power cable between the vibrating device and a power plug located in an airline seat.
A thirty-second aspect to the present invention includes an amplitude adjusting circuit for the vibrating device.
A thirty-third aspect to the present invention includes a frequency adjusting circuit for the vibrating device.
For the purpose of initially illustrating the invention, there is shown in the flow diagram, an embodiment that is presently preferred. It should be understood, however, that the present invention is not limited to the specific instrumentalities and methods disclosed. It can be recognized that the flow diagram represents a method and the associated apparatuses required to make the method in which persons skilled in the art may make various flow and interface diagrams from therein. In the drawings:
It should be understood that the order or process steps may deviate from each of the flow diagrams provided herein, while maintaining the spirit and intent of the present invention.
It can be recognized that the steps taught herein can be automated for low cost and high throughput assembly processes. Although thermal bonding is taught, other types of gas tight seams can be utilized, such as glue, adhesive, tape, pressure sensitive adhesive, and the like.
a) one of a single sheet of single side textured polyethylene 20 is folded,
b) two sheets of single side textured polyethylene 20 are positioned with the sides desired to result as the exterior of the comfortable, inflatable, disposable pillow 30 contacting each other, and
c) multiple sheets of single side textured polyethylene 20 are positioned with at least a portion of the sides desired to result as the exterior of the comfortable, inflatable, disposable pillow 30 contacting each other.
A second fabrication step 202 is to thermally bond a portion of the perimeter of the comfortable, inflatable, disposable pillow 30, leaving an opening sufficient to invert the partially completed comfortable, inflatable, disposable pillow 30. Although the inventor primarily directs the present disclosure towards a thermal bonding process, the inventor recognizes the present invention can be accomplished with alternate methods of bonding materials to create a gas tight seam. Such alternate methods include adhesive, double sided adhesive tape, bonding agent, bead and seal (such as a zip lock™ closure), pressure sensitive adhesive, and the like.
A third fabrication step 204 is to trim the seam allowance 14 at least near corners and add slits near curves and invert the partially completed comfortable, inflatable, disposable pillow 30. The trimming process removes any bulk near the corners and slits allow curves to invert without any additional tension. This would be accomplished by positioning the bonded section of the comfortable, inflatable, disposable pillow 30 through the unbonded section of the comfortable, inflatable, disposable pillow 30.
A fourth fabrication step 206 is to position at least one filler valve 18 proximate the single side textured polyethylene 20 of the comfortable, inflatable, disposable pillow 30.
A fifth fabrication step 208 is to bond the at least one filler valve 18 to the single side textured polyethylene 20. It is recognized that the fourth fabrication step 206 and the fifth fabrication step 208 can be accomplished at any point in the process prior to the final bonding step.
A sixth fabrication step 210 is to thermally bond the remaining unbonded section(s) of the comfortable, inflatable, disposable pillow 30 completing a gas tight enclosure.
A seventh fabrication step 212 is to inflate the comfortable, inflatable, disposable pillow 30 and inspect for leaks. This step would be optional, but desired for quality control.
An eighth fabrication step 214 is to package the comfortable, inflatable, disposable pillow 30 for shipment. This can be accomplished in many known means, including but not limited to individual packaging for sanitary reasons/vending distribution, stacked in boxes, bulk packaged in predetermined quantities, and the like.
It is recognized that the above taught steps can be automated to reduce fabrication costs as well as increase through put.
a) one of a single sheet of single side textured polyethylene 20 is folded,
b) two sheets of single side textured polyethylene 20 are positioned with the sides desired to result as the exterior of the comfortable, inflatable, disposable pillow 30 contacting each other,
c) multiple sheets of single side textured polyethylene 20 are positioned with at least a portion of the sides desired to result as the exterior of the comfortable, inflatable, disposable pillow 30 contacting each other, and
d) any of the above wherein the sides of the single side textured polyethylene 20 desired to be towards the interior contacting each other.
A second fabrication step 252 is to position at least one finished self sealing valve 60 proximate the single side textured polyethylene 20 of the comfortable, inflatable, disposable pillow 30.
A third fabrication step 254 is to insert a thermally insulated material into the finished self sealing valve 60.
A fourth fabrication step 256 is to thermally bond the perimeter of the formed comfortable, inflatable, disposable pillow 32. Should the manufacturing process prefer to invert the assembly process would comprise a, b or c of the first fabrication step 250 and incorporate the steps taught in the flowchart respective to fabricating comfortable, inflatable, disposable pillow 30. Should the manufacturing process prefer to utilize a rolled edge, the assembly process would comprise d of the first fabrication step 250. The fourth fabrication step 250 would comprise the step of bonding the perimeter of the formed comfortable, inflatable, disposable pillow 32.
A fifth fabrication step 258 is to roll the seam allowance 14 positioned external to the inflatable envelope of the formed comfortable, inflatable, disposable pillow 32.
A sixth fabrication step 260 is to inflate the formed comfortable, inflatable, disposable pillow 32 and inspect for leaks. This step would be optional, but desired for quality control.
A seventh fabrication step 262 is to package the formed comfortable, inflatable, disposable pillow 32 for shipment. This can be accomplished in many known means, including but not limited to individual packaging for sanitary reasons/vending distribution, stacked in boxes, bulk packaged in predetermined quantities, and the like.
It is recognized that the above-taught steps can be automated to reduce fabrication costs as well as increase through put.
A second automated fabrication step 272 is to advance the single side textured polyethylene 20 into the automated equipment, fold the single side textured polyethylene 20 and in a third automated fabrication step 274 to bond the desired shape. Alternately, two rolls of single side textured polyethylene 20 can be presented and the two sides can be bonded in the desired shape. One means of bonding the desired shape would be to present a bonding anvil in the desired shape. A second means of bonding the desired shape would be to guide a bonding wheel along a predetermined path. A third means of bonding the desired shape would be to dispense a bonding agent along a predetermined path. Although several methods are directly taught, it can be recognized that there are many alternate methods of providing an automated bonding process.
A forth automated fabrication step 276 is to singulate the partially assembled comfortable, inflatable, disposable pillow 30.
A fifth automated fabrication step 278 is to invert the partially assembled comfortable, inflatable, disposable pillow 30.
A sixth automated fabrication step 280 is to bond any remaining open seam(s).
A seventh automated fabrication step 282 is to inflate the comfortable, inflatable, disposable pillow 30 and inspect for leaks. This step would be optional, but desired for quality control.
An eighth automated fabrication step 284 is to package the comfortable, inflatable, disposable pillow 30 for shipment. This can be accomplished in many known means, including but not limited to individual packaging for sanitary reasons/vending distribution, stacked in boxes, bulk packaged in predetermined quantities, and the like.
Taught herein is an inflatable pillow. The inflatable pillow taught is one fabricated from very low cost materials and of a very low cost fabrication process resulting in a disposable inflatable pillow. The present invention teaches a user-comforted seam.
It should be recognized that there are many options regarding how and where to place the various interfaces and the variations should not limit the spirit or intent of the present invention.
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2198341 | Jun 1988 | GB |