The disclosed device generally relates to disposal devices for the collection of biologic wastes, and more particularly for the sanitary and convenient entrapment of various human waste materials, including vomit, urine, feces, sputum, etc. for eventual disposal.
While it is preferable to dispose of human waste material into a plumbed waste fixture such as a toilet, urinal, sink, etc., people are often unpleasantly surprised by the need to expel various waste products in an abrupt and urgent manner. For example, people are frequently subjected to stresses, both internal and external, which can cause vomiting, such as motion sickness induced within an automobile, airplane, boat, etc., or resulting from illness, food poisoning and other causes. Even if a lavatory is available, people riding in these conveyances are often unable to reach these facilities in sufficient time to evacuate the waste into the appropriate receptacle. Patients in hospitals may find themselves in a similar predicament, particularly where a particular illness and/or medication induce the need to evacuate the waste product.
The generally used portable and disposable receptacles for vomit and other human wastes are typically simple open-ended containers, subject to being upended and the contents released. Open-ended containers also allow the free release of odors from the waste material. The presently disclosed apparatus provides a superior means for retaining the waste material within the disposable receptacle.
A portable and sealable waste disposal receptacle receives human waste material through an opening in an outer chamber. The waste passes through an inner chamber, which is suspended within the outer chamber, and passes through a one-way valve located at the bottom of the inner chamber into a lower chamber portion of the outer chamber. The one-way valve is fashioned from the bottom edges of the inner chamber, where a biasing strip is mounted in compression along one of the bottom edges, which causes the bottom edges of the inner chamber to be biased closed in sealing contact except when waste enters the inner chamber, the weight of which is sufficient to overcome the closing bias of the biasing strip, allowing the waste to flow into the lower chamber. Once the waste has cleared the inner chamber, the biasing member causes the bottom edges to come together in sealing contact, preventing the flow of waste back through the inner chamber.
The disclosed portable and sealable waste disposal receptacle comprises a flexible outer layer of material which is impervious to water and the various bodily fluids the device may contain. This material forms an outer chamber having an open top and a closed bottom. The outer chamber will typically be fashioned in the shape of a bag, cylinder, or similar shape having a longitudinal axis substantially larger than the cross-wise axis. The apparatus further comprises an inner chamber, which is wholly disposed within the outer chamber. Because the inner chamber primarily transfers waste from the open top of the outer chamber to a lower chamber of the outer chamber, the inner chamber is referred to hereinafter as an “inner conduit.” The inner conduit, fashioned from a flexible material, which depends from the outer chamber, typically on the inside surface near the open top of the outer chamber. The top of the inner conduit is circumferentially attached to the inside surface of the outer chamber, forming a circumferential seal at the point of attachment, such that the inner conduit provides a single pathway for waste material introduced into the top of the outer chamber into a lower chamber located beneath the bottom of the inner conduit. Waste material received into the apparatus is received and maintained in the lower chamber until such time as the receptacle is disposed.
The bottom of the inner conduit is fashioned to have a valve at its bottom end, the valve permitting flow in one direction into the lower chamber. This valve may comprise a flexible extension member compressibly disposed at the bottom of the inner conduit, which applies sufficient biasing force to maintain the valve in a closed position until such time as waste material enters the inner conduit. The valve at the bottom of the inner conduit restricts flow in the other direction, thus preventing the waste material from spilling from the device. The various components of the device are preferably fashioned from biodegradable plastics to facilitate responsible disposal of the waste material and the apparatus.
Referring now to the figures,
The prior device 100 as shown in
With reference to
The apparatus further comprises an inner conduit 18, fashioned from a flexible material, the top of which inner conduit may be flush with the top 14 of the outer chamber or which, alternatively, depends from the inside surface of the outer chamber 12, typically near the open top of the outer chamber. Thus, the inner conduit 18 is suspended within the outer chamber 12. The top 20 of the inner conduit 18 is circumferentially attached to the inside surface of the outer chamber 12, forming a circumferential seal 22 at the point of attachment, such that the inner conduit provides a single pathway for waste material introduced into the top of the outer chamber into a lower chamber 24 located beneath the bottom 26 of the inner conduit 18. Waste material W received into the apparatus 10 is received and maintained in the lower chamber 24 until such time as the receptacle is disposed.
The peripheral edges at the top 20 of the inner conduit 18 define the opening of the inner conduit. The peripheral edges at the top 20 are fused or otherwise attached to the top of the outer chamber 12 or to the inside surface of the outer chamber sufficient to suspend the inner conduit 18 from the top of the outer chamber as shown in the various figures. The attachment means utilized to attach the top 20 of the inner conduit 18 to the inside surface of the outer chamber 12 form a circumferential seal 22, which is a liquid tight seal between the top of the inner conduit and the inside wall of the outer chamber 12, such that material cannot escape from the device between the annulus 39 formed between the inner conduit 18 and the outer chamber 12. The bottom 26 of inner conduit 18 is sufficiently above the bottom of the lower chamber 24 to provide sufficient volume for storage of waste material M.
The bottom 26 of the inner conduit 18 is fashioned to function as a “valve” by the engagement and separation of its side walls 30, 31 with respect to each other, the valve 28 permitting flow in one direction through the inner conduit into the lower chamber 24. The normally closed valve 28 is opened by the weight of waste W exerting a downward and sideways force at the bottom 26 of the inner conduit sufficient to overcome the biasing force keeping the valve closed. The valve 28 restricts flow in the other direction, thus preventing the waste material W from flowing out of the lower chamber 24 back through the inner conduit 18 and spilling from the device.
The inner conduit 18 may be fashioned from the same type of material as the outer chamber 12. The inner conduit 18 may be fashioned from a single piece of material, or may be fashioned from a plurality of sheets 30, 31 of material which are fused together along the longitudinal edges 36 of the material. In one embodiment, the inner conduit 18 may comprise two opposite facing sheets 30, 31 of flexible material, each sheet having generally the same shape and dimensions. The sheets 30,31 may be polygonal, including rectangular or trapezoidal, where the length-wise or longitudinal edges 36 of each sheet are fused to the length-wise edges of the opposing sheet. In order to function as a conduit, the top and bottom edges of each sheet 30,31 will not be attached to each other, such that an opening is defined at the top 20 of the inner conduit 18, and valve 28 is fashioned from the bottom edges of the sheets 30,31 as described below. As shown in
The bottom 26 of the inner conduit 18 comprises a biasing member 38 which attaches to the bottom edges of one of the sheets 31, such that the biasing member is in compression. The biasing member 38 may either be held in place by a pocket fashioned in the bottom edge of the sheet 31 or attached by thermal fusion or adhesive. The biasing member 38 may be attached in such manner that it is removable from the inner conduit, such as by forming a pocket 40 on either side of the bottom edge of sheet 31, as shown in
Embodiments of the apparatus 10′ may further comprise a pair of cruciate strips 42, 44. The end 45 of a first strip 42 may be attached to the outside of the inner conduit member 18′ such as sheet 31′ and the end 47 of a second strip 43 may be attached to the outside of the other sheet 30′ of the inner conduit member 18′, both strips attached in relatively close proximity to the opening at the bottom 26′ of the inner conduit. The opposite end 49 of the first strip 42 and the opposite end 51 of the second strip 44 extend below the bottom 26′ of the inner conduit 18′. The first strip 42 crosses below the bottom 26′ of the inner conduit member 18′ and attaches to the inside wall of the opposite facing sheet of the outer chamber 12′. Likewise, the second strip 44 crosses below the bottom 26′ of the inner conduit member 18′ to the inside wall of the opposite facing sheet of the outer chamber 18′, such that the first and second strips cross below the 26′ bottom of the inner conduit member as shown in
The outer chamber 12, 12′ will typically comprise closure means for sealing the receptacle and its contents and, to some extent, its odors. The closure means may concurrently seal the top edges of the inner conduit, by using closure means 46, which may comprise adhesive tape 46 with removable backing 48, hook and loop fasteners, or other known closure means. The closure means may also comprise a draw string 52 or tie which fits within a peripheral pocket around the perimeter of top 14 of the outer chamber 12.
As shown in
The various components of the device are preferably fashioned from biodegradable plastics to facilitate responsible disposal of the waste material and the apparatus. However, the components may also be fabricated from treated paper, foil or other materials appropriate for the use.
While the above is a description of various embodiments of the present invention, further modifications may be employed without departing from the spirit and scope of the present invention. For example, the size, shape, and/or material of the various components may be changed as desired. Thus the scope of the invention should not be limited by the specific structures disclosed. Instead the true scope of the invention should be determined by the following claims.
This application claims domestic priority to U.S. Provisional Patent Application 61/164,782 filed on Mar. 30, 2009.
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Number | Date | Country | |
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20100278456 A1 | Nov 2010 | US |
Number | Date | Country | |
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61164782 | Mar 2009 | US |