WEIGHTED ARTICLE WITH DUST IMPERVIOUS SEAMING
An article (600) is provided which includes a body (500) having an interior volume (100), and hook (124) and loop (125) features which, when pressed closed in at least one locations (130, 131) location, creates a dynamic hammock dam (132) that retains a fill material (140) that has been inserted into the interior volume. The strength of the hammock dam increases with outward pressure (141) applied on the closure by the fill material. The article is preferably equipped with a large mouth opening (110) which allows rapid filling or emptying of the fill material from the internal volume.
This application is a continuation-in-part of U.S. Ser. No. 14/920,871, entitled “Weighted Article With Quick Fill And Hammock Dam Closure”, filed on Oct. 22, 2015 and having the same inventors, and which is incorporated herein by reference in its entirety; which claims the benefit of U.S. Provisional Application Number 62/066,918, filed Oct. 22, 2014, having the same title, and which is incorporated herein by reference in its entirety.
FIELD OF THE DISCLOSUREThe present disclosure relates generally to weighted articles such as sand bags, and more particularly to weighted and/or sealed articles which provide for quick filling and a secure closure.
BACKGROUND OF THE DISCLOSUREVarious sand bags and other weighted articles are known to the art, and are utilized for various purposes. For example, weighted articles are commonly used to hold down lighting equipment on movie sets, as flood harriers, and as makeshift fortifications for soldiers.
Sand bags and other weighted articles are also commonly used by athletes to develop strength, speed, and stamina. For example, U.S. Pat. No. 8,622,877 (Raines et al.), entitled “Weighted Article With Fill Spout”, and U.S. 2014/0113778 (Raines et al), entitled “Weighted Article With Fill Spout”, describe an article 101 (see
This section provides a general summary of the present disclosure, and is thus not intended to be a comprehensive disclosure of the full scope of the features of the devices and methodologies disclosed herein.
In one aspect, an article is provided which comprises (a) a body having first and second opposing walls and housing an interior volume; (b) a particulate or liquid filler disposed in said interior volume; (c) a dam disposed on an interior surface of said first wall; and (d) a releasable fastener having a first component disposed on a first surface of said dam, and a second component disposed on an interior surface of said second wall opposing said dam. The article is transformable between a first state in which said first and second components of said releasable fastener are spaced apart from each other such that said interior volume is in open communication with the environment external to the article by way of a channel which terminates in an external opening, and a second state in which said first and second components of said releasable fastener are releasably engaged to each other such that said interior volume is closed off from the environment external to said body.
In another aspect, a method is provided for creating a weighted article. The method comprises (a) providing an article having (i) first and second opposing walls and housing an interior volume, (ii) a dam disposed on an interior surface of said first wall; and (iii) a releasable fastener having a first component disposed on a first surface of said dam, and a second component disposed on an interior surface of said second wall opposing said dam, wherein said article is transformable between a first state in which said first and second components of said releasable fastener are spaced apart from each other such that said interior volume is in open communication with the environment external to the article by way of a channel which terminates in an external opening, and a second state in which said first and second components of said releasable fastener are releasably engaged to each other such that said interior volume is closed off from the environment external to said body; (b) positioning the article in the first state; (c) adding a filler to the internal volume by way of the channel and opening; and (d) transforming the article to the second state.
In a further aspect, an article is provided which comprises (a) a body having first and second opposing walls and housing an interior volume; (b) a releasable fastener having first and second components which are disposed in opposing relation on the interior surfaces of said first and second walls, respectively; and (c) a flexible chute having first and second opposing ends; wherein said article is transformable between a first state and a second state; wherein, when said article is in said first state, said flexible chute extends past said first and second components of said releasable fastener and to or through an opening in said body such that (i) the first and second openings of said chute are in open communication with each other, (ii) the first opening of said chute is in open communication with the atmosphere external to said body, and (iii) the second opening of said chute is in open communication with said interior volume; and wherein, when said article is in said second state, said first and second components of said releasable fastener are pressingly engaged with each other.
In still another aspect, a weighted article is provided which comprises (a) a plurality of panels which are joined across at least one seam by stitching; and (b) a coating which is disposed over said stitching.
In yet another aspect, a weighted article is provided which comprises (a) a body which encloses an interior volume, wherein said body is equipped with a wall having an interior surface and an exterior surface, wherein said exterior surface of said wall is in contact with an external environment external to said body, wherein said wall has first and second panels having first and second respective peripheral portions, and wherein said first and second peripheral portions are joined together across a seam; (b) a fill disposed in said interior volume; and (c) a coating which is disposed on said interior surface, wherein said coating covers said seam.
DETAILED DESCRIPTIONWhile the weighted articles disclosed in U.S. Pat. No. 8,622,877 (Raines et al.), U.S. 2014/0113778 (Raines et al.) and U.S. 2011/0287904 (Morris) may have some desirable features, these articles also suffer from some infirmities. In particular, one of the purported advantages of these articles is that the filler can be added to or removed from them as desired. Consequently, these articles may be transported empty and then filled (or refilled) with a suitable filler (such as sand) on site, thus making them very light-weight and both inexpensive and easy to transport and handle.
However, in practice, the efficacy of the foregoing feature is significantly hindered by the speed with which these articles may be filled or emptied. In particular, the foregoing devices utilize relatively narrow fill spouts through which the filler is introduced or emptied. These fill spouts restrict the flow of filler into and out of the article, thus significantly lengthening the amount of time required to fill or empty the article. When it is considered that these articles are designed to be heavy when filled, this infirmity represents a significant handling challenge, since these articles have significant weight during most of the filling or emptying process.
Unfortunately, the foregoing problem cannot be readily solved by simply increasing the diameter of the fill spout. In particular, doing so significantly increases the stress on the fill spout and supporting fabric, and greatly increases the probability of filler leakage. The latter problem is highly objectionable to end users, since it introduces damaging grit into workout areas.
It has now been found that the foregoing issue may be addressed with the weighted articles disclosed herein. In a preferred embodiment, these articles feature a fillable body equipped with a hammock dam closure. Such a closure allows for a wide input/output mouth that is highly resistant to filler leakage, without unduly stressing adjacent portions of the fabric.
In a preferred embodiment, the articles disclosed herein utilize a releasable fastener, and more preferably a hook-and-loop type fastener (such as those sold under the tradename VELCRO™) to seal an aperture in the wall, edge or rim of the fillable body. The releasable fasteners allow for a large aperture, which amplifies the fill rate for both insertion and removal of fill into the body of the article. The hook-and-loop fasteners, which are preferably laminated to a neoprene or nylon sheet, are preferably sewn to the body of the article in such a way that when the aperture is closed, the seal becomes a dam. This dam becomes stronger with the increased shear pressure resulting from the fill material attempting to escape the sealed aperture. A secondary dam along the wall, edge or rim of the article will preferably be provided and may utilize a hook-and-loop fastener on materials connected to opposite sides of the body. This secondary dam preferably serves to keep fill materials inside the body, and to act as a barrier (via peel strength) to accidental opening of the article by an external operator.
Both releasable fastener closures may be quickly and repeatedly attached and detached without significantly compromising the closure. As such, the closures can be convenient and effective means for securing the fill contents.
The devices and methodologies disclosed herein may be further understood with respect to
The first 103 and second 106 protective rims assist in keeping the edges of the first 101 and second 102 portions of material safe from abrasion, tearing, cutting and other damage, while also protecting the thread 105 around the rims and providing a secondary barrier to prevent the escape of fill 140. The first 103 and second 106 protective rims are not necessary to the function of the product, but are helpful in adding strength, In some embodiments, the first 103 and second 106 protective rims may also be utilized to provide grip texture and to implement color coding schemes (e.g., to indicate the total weight of the weighted article when it is filled). In the particular embodiment depicted, the weighted article 600 is equipped with an optional bar tac 104 to provide additional strength and support to the first 103 and second 106 protective rims and to the edge of the weighted article 600.
A dam 125, which is preferably a hammock dam and which preferably comprises a second portion of the first component of a hook-and-loop fastener, is disposed on the interior surface of the first portion 101 of the weighted article 600 adjacent to the first portion of the first component 126. The dam 125 preferably comprises a stretch loop material which is laminated to an elastomeric material such as neoprene. In the particular embodiment depicted, the dam 125 is generally U-shaped in a cross-section taken in the plane of the figures (that is, along a longitudinal axis extending from the aperture 110 to the interior volume 100 and perpendicular to the seam of the weighted article 600).
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As noted above, the body 600 is preferably filled with a fill material 140 while the aperture 110 is completely open. Suitable fill materials may include, for example, sand, gravel, steel shot, pellets, rice, corn, grain, beads, seeds, beans, liquids (such as, for example, water), or the like. Because the aperture 110 (see
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In a preferred embodiment, the side that faces outward from the body 500 of the weighted device 600 is laminated with an abrasion resistant fabric 160. The abrasion resistant fabric 160 increases the mechanical integrity of the weighted article 600, improves its resistance to damage, and requires fewer stitches than, for example, the thin nylon fabric utilized in some prior art devices of this general type.
Without wishing to be bound by theory, it is believed that the internal movement of the fill material 140 toward the escape path 141 (see
The article may be filled by pouring a suitable fill 140 into the mouth 295 of the envelope 290. After a suitable amount of filler has been added, the user 296 rolls the envelope 290 up via multiple rotations (as indicated by arrows 296), effectively closing it like a dry bag. The envelope 290 is then held in place by end tabs 293, which prevent the envelope fabric from unraveling. The end tabs 293 preferably utilize a hook-and-loop type fastener to hold the envelope fabric in place.
Normally, dry bag closures use clips which latch to one another (one from each end of the topmost seam), making a round shape. Such a round shape restricts the closure of the mouth 295. Therefore, a flat roll may be utilized in conjunction with end tabs 293 to prevent the envelope 290 from creating a bulge inside the article. Once the envelope 290 is fully rolled, the hook 291 and loop 292 components hook to the corresponding hook feature 124 (which is preferably made of nylon) and the corresponding loop material 265 allows the article to be free from hard plastic clips which, when used in sandbags and dry bags, either cause damage to the bag, come unclasped or are uncomfortable when using the bag for exercise.
The tabs 293 at the end tips of the envelope 290 preferably contain hook features on one side of the tab, and loop features on the opposing side. Once the envelope 290 has been twisted down, both the hook 291 and loop 292 features on the loop material, as well as, the corresponding hook features 124 and the corresponding loop features 265, engage to seal the mouth 295 of the envelope 290.
The coatings described herein may be applied to various weighted articles, including sandbags, to increase the seam strength and the strength of the fabric body. As As noted above with respect to
Medicine balls commonly have an outer wall of fabric and are often filled with soft foam (and/or other fill), along with some form of weight at the center (this may take the form, for example, of sand, steel shot, rubber pellets, or the like). One common problem with medicine balls (especially those made from fabric) is that they have a tendency to bust open like conventional sandbags. Typically, such failure occurs at the seams or the material adjacent to the seams, since this material may tear under pressure and friction when the ball is being used. In fact, most medicine balls fail within 1-2 years of standard use.
The coating described herein may be applied to the seams of a medicine ball, and is strong enough and flexible enough to strengthen the seam region thereof. This has the effect of increasing the life of the balls via increased fabric durability, seam strength, and impact resistance.
The weighted articles disclosed herein, which may be configured as sandbags, have several advantages over conventional sandbags. In particular, conventional weighted sand bags are known to require a trade-off between being quick/easy to fill but hard to seal (such as, for example, those taking the form of a large bag with one end completely open until the user attempts to seal it), or slow/difficult to fill but easy to seal. Sandbags also tend to bust under pressure, along the seams, and especially at the closure location. If such sandbags are used for exercise, there is generally leakage of fill material, which presents issues for sandbag weight retention, cleanliness and safety. Moreover, some prior art sandbags use vinyl protective rims which crack over time. These cracks may cut users, look shoddy, and can pull threads and tear seams.
In a preferred embodiment, the weighted articles disclosed herein are equipped with protective rims which are designed to keep the seam coating inside the bag while coating is still in liquid state. Once the coating is dry, it provides a foundation for the seams and for any protective rim, whether it is sewn on or a dipped/painted/sprayed protective coating. The protective rims may be made of a suitable coating material (such as, for example, an epoxy, polyurethane, urethane, neoprene, rubber, urea or similar elastic or non-elastic chemical coating) which binds to fibers of the bag and strengthens the bag, rather than being stitched to bag like prior art rims. Exterior rims equipped with a protective coating are found to last longer and look better than the rims commonly found on prior art sandbags.
In some embodiments, the weighted articles described herein use the protective coating along all areas of the inside or outside (or both) of the fabric or material (without coating the releasable fasteners). This has the desirable effect of strengthening the body of the weighted article.
Some prior art sandbags use tubes or collapsible inlets whose design causes them to be forced from the inside of the body to the outside of the body under the pressure of the fill material. This process weakens the sandbag and puts it at risk of catastrophic failure when users grab the tube and use it as a handle.
By contrast, in a preferred embodiment of the weighted articles described herein, the weighted article is both quick and easy to fill, and has the added benefit of being easy to seal and unseal. In such embodiments, there are no parts that can be forced outside of the body of the device or be damaged by the user. The preferred closure itself has a double seal, preventing any fill materials from escaping and keeping external sources from accidentally opening the seals. In some embodiments, a closure having a single seal is utilized as the main seal which similarly and effectively keeps all fill materials sealed inside the body of the article.
The concepts implemented in the weighted articles described herein may also be applied to backpacks and other devices that require easy retrieval and need to keep items from coming dislodged when upside down. Traditional hook-and-loop closures are characterized by a tear strength (caused by peeling the hook and loop components apart from each other from a single pull point) or a static shear strength (where the two parts (hook and loop) are forced to move across each other before release). However, in a preferred embodiment, the weighted articles described herein use the novel approach of dynamic pressure combined with reverse shear strength. This combination is created when the components of the hook and loop fastener are forced to move across each other under pressure, with the pressure increasing the bonding power of the components. Hence, the closure construction utilized in the devices disclosed herein may be used in a wide variety of weight-bearing articles.
The preferred embodiment of the weighted articles described herein is more rugged and durable than similar articles found in the prior art, which frequently suffer from thin walled bodies or laminated fabrics that do not resist cuts or heavy abrasion. Preferably, the bodies of the weighted articles described herein are constructed from a stretchy, resilient or elastomeric material, and more preferably, from a neoprene/abrasion resistant fabric laminate. The use of an abrasion resistant fabric laminated to the outside wall of the body of the article also keeps threads from abrading the neoprene, thereby inhibiting leakage or rupture. The use of an abrasion resistant laminate over neoprene also assists in gripping the articles, which is helpful when they are being used as exercise devices.
If a traditional sandbag is made of an elastomer (like neoprene) and in a non-circular shape, when the bag is picked up, the weight of the contents (or fill) sag to one end, causing stress on the seams, particularly along the corners when carried and the sides when slammed or dropped.
The sandbag described herein, in one embodiment, uses nylon/polyester/polypropylene or elastic webbing to create an internal boning and strengthening structure. The webbing structure strengthens the outer edges of the sandbag, as well as, can create a diagonal structure which provides strength to the bag when holding it via one of the corners. The internal webbing structure also provides a buffer against the pressure of the internal fill, protecting seams, both if used alone or acting in conjunction with the protective interior or exterior coating.
In some embodiments, the weighted articles described herein utilize a protective interior and/or exterior coating which may comprise, for example, an epoxy, polyurethane, urethane, neoprene, rubber, rubber cement, polyurea or similar elastic or non-elastic chemical coating. Such coatings bind to fibers of the weighted article, thereby allowing the weighted article to be constructed of elastic or non-elastic fabrics or materials. Due to the strength of this coating, the base materials of the weighted article may be constructed from materials that might otherwise be inferior, weaker, or non-traditional materials (e.g., materials that are usually unable to withstand the abuse to which the weighted articles described herein are typically subjected). Such inferior materials are frequently less expensive and more readily available.
In some embodiments, the weighted articles described herein utilize a protective interior coating along the rim to act as a glue between the opposite sides of the material being stitched to together, as well as to provide strength in the seam (since the material around the seams will not pull back and forth across the stitches when treated with such a coating). The use of a coating along the rims also provides a buffer against the pressure of the internal fill, thereby protecting seams and the material of the weighted article.
In some embodiments, the weighted articles described herein utilize a protective interior coating along the seams of the releasable fasteners. Such a coating, which may comprise an epoxy, polyurethane, urethane, neoprene, rubber, rubber cement, polyurea or similar elastic or non-elastic chemical coating, binds to fibers of the weighted article, and strengthens the seam when it is under pressure from the fill material and the pushing and pulling of the fabric.
In some embodiments, the weighted articles described herein utilize a non-elastic fabric along with a protective interior and/or exterior coating. Here it is notable that non-elastic fabrics are not typically used in weighted articles of the type described herein, since ruptures in such materials are common along the seams when the article is dropped or slammed.
In some embodiments, the weighted articles described herein utilize sonic welds for the opposite sides of the material, instead of stitching. Such an approach may create a stronger bag with no traditional seam weaknesses.
In some embodiments, the weighted articles described herein utilize nylon/polyester/polypropylene or elastic webbing to create an internal boning and strengthening structure which extends past the boundaries of the article. The webbing that extends past the edges of the article may then be utilized as handles, or as loops for carabineers/dowels/hooks/attachments, or may be combined (temporarily or permanently) with other materials to create an attachment to the article. Such other materials may include, for example, releasable fasteners, plastic, rubber, wood, fabric or metal. The portion of the webbing that extends past the edges of the article may be used in particular locations as handles for particular exercise movements.
In some embodiments, the weighted articles described herein, an envelope closure is utilized in conjunction with a releasable fastener (such as, for example, a hook-and-loop type fastener). The envelope allows for the filling and emptying of fill material without interfering with the releasable fastener of the closure, which could get gummed up with some types of fill materials. In some embodiments, the envelope circumscribes, and is attached to, the fabric at the base of the releasable fastener near the opening of the weighted article. The envelope is preferably sewn to the inside of the article, around the base thereof
Once the envelope is rolled down, the releasable fastener bonds to the envelope fabric to prevent it from unraveling. Normally, dry bag closures use clips which latch to one another (one from each end of the topmost seam), thus creating a round shape. However, such a round shape restricts the closure of the mouth of the article. Therefore, as described above, a flat roll is preferably utilized, along with a releasable fastener, to prevent the envelope from creating a bulge inside of the article.
Preferably, the bottom of envelope has a releasable fastener (and preferably, both components of a hook-and-loop fastener) at the base thereof which, when rolled correctly, causes it to bond to itself around the closure. The end tips of the envelop are preferably equipped with tabs that have the hook component of a hook-and-loop fastener on one side, and the loop component of a hook-and-loop fastener on the other side. Once the envelope has been twisted down, the releasable fastener binds to the outside of the rolled up envelope material, as well as the corresponding sides of the releasable fastener on the mouth closure. The use of a releasable fastener at the base of the envelope and/or the use of tabs equipped with a releasable fastener at the end tips of the envelope avoids the need for hard plastic clips in the weighted article. Such clips, when used in weighted articles of the type described herein, either cause damage to the article, become unclasped or are uncomfortable to the user when the weighted article is used for exercise.
The additional strength of the weighted article due to the webbing, coatings and closures affords the opportunity to add one or more small pockets to the weighted article. Such pockets have many benefits, in addition to acting as storage areas for personal belongings. For example, tech items such as motion tracking devices may be placed in such pockets. Since current tracking devices are typically made out of stiff plastic or similar materials, conventional sandbags are not able to protect the device. Conventional sandbags are also not able to withstand the abuse caused by the presence of such an object, thereby resulting in damage to the bag.
It will be appreciated that various releasable fasteners may be utilized in the devices and methodologies described herein. These include, but are not limited to, hook-and-loop fasteners, book-and-pile fasteners, and touch fasteners. Such releasable fasteners will often feature two components which may take the form, for example, of two lineal fabric strips (or, alternatively, round “dots” or squares) which are attached (sewn or otherwise adhered) to the opposing surfaces to be fastened. These releasable fasteners may be provided with varying strengths as dictated by the contemplated end use and fill materials.
Various fabrics may be utilized in the devices disclosed herein. Preferably, the bulk of these materials comprises a tough, flexible material such as, for example, polyester or nylon. However, other suitable materials, such as canvas or various plastics, rubbers, elastomers, or various polymeric materials, may also be utilized.
The devices disclosed herein may have various shapes or configurations. For example, the devices may be polyhedral, ellipsoidal, toroidal, cylindrical, prismatic, spherical, hemispherical, or polygonal. The devices disclosed herein may also be seamed or unseamed, or may have some sides that are seamed and others that are not. By way of example, but not limitation, the device may be polyhedral in shape, and two faces of the polyhedron may be formed by wrapping material across an edge without creating a seam.
For the devices disclosed herein that have seams, these seams may be fortified with additional material or webbing. In some embodiments, this additional material or webbing may extend beyond the seams and may be utilized as, or take the form of, one or more handles. Similarly, this additional material may be utilized to interface the article with one or more accessories. It will be appreciated that, in some embodiments, multiple layers of such additional material or webbing may be provided along the seams or other portions of the device to improve the strength thereof, and these layers may be applied in the same or different directions. For example, these layers may be applied diagonally along one or more surfaces of the device. In some embodiments, these layers may be uniaxially or biaxially oriented (e.g., stretched) to provide additional tensile strength along a particular axis or direction.
Various stitching may be utilized in the devices disclosed herein, especially along any seams thereof. Such stitching may include, but is not limited to, lock stitching and zig-zag stitching.
Various coatings, layers or materials may be applied to, or may form, the inside or outside surfaces or intermediary layers of the articles disclosed herein. These materials may include, for example, silicone, PVC, polyurethane, polyuria, neoprene, various rubbers, and various elastomers. The foregoing materials may be utilized for various purposes including, for example, strengthening, improving the tear resistance, abrasion resistance or puncture resistance of any seams or other portions of the article; preventing or minimizing the ability of the fill material to interact with or damage any seams in the article; preventing or minimizing the ability of the fill material to over-stretch fabric near the seams or to cause threads to cut through the fabric of the article; preventing or minimizing the ability of the fill material to weaken the fabric of the article or to over-stretch the fabric of the article through impact near seams; or creating an air-tight or water-tight boundary.
Moreover, protective coatings of this type may reduce or eliminate the emission of dust through the stitching of the article. Such dust may be created, for example, as a result of the filler material wearing down during use of the article. In a conventional sand bag filled with sand, for example, dust particles created by abrasion of the sand particles during handling of the sand bag escape along the seam of the sand bag as a fine dust. Such dust is objectionable to users, especially in an exercise or gym setting. In preferred embodiments of the weighted articles disclosed herein, the seam is coated with a suitable coating along its interior surface (and preferably also along its exterior surface), thus creating a physical barrier to dust emission and particle egress.
Protective coatings of this type also enhance the durability of the seam. A typical seam is created by stitching thread through holes created in the fabric of the article. In a preferred embodiment of the methodology disclosed herein for creating a seam, a coating material (which may be a glue, and which is preferably elastomeric) is spread across the interior and exterior surface of the seam. This process not only seals the holes, but also holds the threading in suspension, thereby preventing the threading from sawing back and forth and cutting the fabric as the weighted article is handled.
In a preferred embodiment, a weighted article is created that is coated on the inside with a protective interior coating, and accepts a particulate filler through the closure, the latter of which is preferably equipped with a hook-and-loop fastener. The protective interior coating is preferably E6000 Permanent Craft Adhesive, which is available commercially from The Michaels Companies, Inc., Irving, Tex. This adhesive bonds aggressively to most fabrics, rubbers, plastics, and threading materials, and cures into an elastomeric mass.
Prior to applying the adhesive, the article is inverted to expose the seams and interior surface of the fabric. The adhesive is spread over the seam area such that the adhesive bonds to the fabric on either side of the seam or stitching. The article is un-inverted after the adhesive has cured.
After the particulate filler has been added to the weighted article, and while the mouth is still open, a suitable adhesive (which is preferable the E6000 adhesive noted above) is applied to the hook-and-loop type fastener. Then mouth of the closure is then closed, taking care to ensure that the hook-and-loop type fastener has engaged, and that adhesive has been pushed into all of the areas of the hook-and-loop type fastener. The combination of the adhesive and the hook-and-loop type fastener is found to cerate an especially durable bod which does not allow dust or filler material to escape from the interior of the weighted article.
Various hook-and-loop fasteners may be utilized in the systems and methodologies described herein. Examples of such hook-and-loop fasteners may be found, for example, in the publication entitled “3M Hook And Loop Fasteners”, which may be found online at http://multimedia.3m.com/mws/media/829942O/sj3401-sj3476-sj3522-sj3526n-sj3530-sj3532n-sj3546-sj3571-sj3576.pdf, and which is incorporated herein by reference in its entirety.
For purposes of brevity, a detailed description of some aspects of the devices disclosed herein, such as certain uses or features thereof, has been omitted. However, these details may be found in the following publications produced by the present inventors, all of which are incorporated herein by reference in their entirety:
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- (a) X-Bag Fast Fill—https://youtu.be/DCrvNjk51H8
- (b) X-Bag Fast Empty—https://youtu.be/TzvTovzVuqA
- (c) Pancake Fast Fill—https://youtu.be/1HOmijQUzQk
- (d) Pancake Fast Empty—https://youtu.be/NXrDO_PK1uA
- (e) Lazy Man Sandbag—50 lb—https://youtu.be/gHrJh4_CUB8
The above description of the present invention is illustrative, and is not intended to be limiting. It will thus be appreciated that various additions, substitutions and modifications may be made to the above described embodiments without departing from the scope of the present invention. Accordingly, the scope of the present invention should be construed in reference to the appended claims. One skilled in the art will appreciate that, in the absent of any teaching to the contrary, the subject matter of any of the claims may be combined with the subject matter of any other claims without departing from the teachings herein, regardless of the dependencies set forth in the claims as originally filed.
APPENDIX A: Index of PartsThe following is an index of parts associated with the reference numerals used in the drawings herein. In some cases, the description of these parts includes the preferred materials from which these parts may be made. Accordingly, the following index should be construed as illustrative, but not necessarily limiting, with respect to the description of these parts.
- 100: Interior Volume
- 101: First Portion—Loop Side
- 102: Second Portion—Hook Side
- 103: Protective Rim
- 104: Bar Tac
- 105: Zig-Zag Stitch along Rim
- 106: Protective Rim over Aperture
- 107: Panels
- 110: Open Aperture
- 111: Semi-Closed Aperture (Only Interior Hammock Dam Closure)
- 112: Fully Closed Aperture (Both Peel and Hammock Dam Closures)
- 121: Stitch over Hook Feature
- 122: Zig-Zag Stitch over elastic Loop Neoprene connecting Loop Neoprene to Body
- 123: Stitch connecting Loop Neoprene to Body Neoprene along edge
- 124: Hook Feature made of nylon
- 125: Stretch Loop laminated to Neoprene (or stretch fabric/rubber/other elastic material)
- 126: Non-Stretch Loop material (or Stretch Loop laminated to Neoprene (or stretch fabric/rubber/other elastic material))
- 127: Zig-Zag Stitch over eslatic Loop Neoprene connects Loop Neoprene to Body Neoprene
- 128: Glue Strip
- 129: Stitch connecting Hook Feature Material to Body Neoprene along body or edge
- 130: Peel Hook and Loop Connection of 126 Peel Non-Stretch Loop and 124 Hook Feature made of Nylon
- 131: Hammock Dam Hook and Loop Connection of 125 Non-Stretch Loop and 124 Hook Feature made of Nylon
- 132: Hammock Dam elastic feature changes shape dynamically with pressure from internal fill material and external people or objects.
- 135: Hammock Dam Loop Neoprene sewn to inside of 101 First Portion (when fully sewn on, Loop faces toward inside of body)
- 136: Fabric Side of Hammock Dam Loop Neoprene
- 140: Fill Material
- 141: Fill Material Escape Path puts pressure on Hammock Dam, increasing the Shear Bond
- 150: First Portion Exterior—Hook
- 151: First Portion Interior—Hook
- 154: Second Portion Exterior—Loop neoprene hidden—attached to inside of body
- 155: Second Portion Exterior—Fabric side of Loop neoprene showing—pre-attachment to inside of body
- 156: Second Portion Interior—Loop side of Loop neoprene showing—pre-attachment to inside of body
- 160: Abrasion Resistant Fabric Laminated on one or more sides of neoprene
- 210: Lock Stitch
- 250: First Portion Exterior—Hook
- 251: First Portion Interior—Hook
- 252: Velcro Dam Closure—Open Mouth
- 254: Second Portion Exterior—Loop neoprene
- 255: Second Portion Exterior—Structural Webbing along edge
- 256: Second Portion Interior—Loop neoprene side
- 258: First Portion Exterior—Hook Section Pulled back to Reveal Envelope
- 260: Structural Edge Webbing
- 261: Diagonal Structural Webbing
- 262: Webbing Extensions
- 263: Webbing Loop as Handle
- 264: Small Webbing Loop
- 265: Loop Velcro
- 270: Carabineer
- 271: Dowel Rod
- 272: Gripping Hand
- 265: Handle made from Bag material
- 273: Plastic/Rubber Handle
- 290: Envelope Fabric
- 291: Envelope Hook Velcro
- 292: Envelope Loop Velcro
- 293: Envelope Hook/Loop End Tip Tabs
- 294: Envelope Connection Seam to Body of Bag
- 295: Envelope Open Mouth/Hole
- 296: Rolling of the Envelope Fabric via multiple rotations—to close is like a dry bag
- 297: Envelope sealed and ready to Velcro into place and close Velcro Mouth
- 310: Protective Interior Coating along the rim
- 311: Protective Interior Coating along the Seam
- 315: Protective Interior Coating along the inside of the bag
- 320: Protective Exterior Coating along the rim
- 321: Protective Exterior Coating along the Seam
- 325: Protective Exterior Coating across the body of the bag
- 400: Zipper Closure
- 410: Lacing Closure
- 500: Body
- 600: Weighted Device
Claims
1. A weighted article, comprising:
- a body which encloses an interior volume, wherein said body is equipped with a wall having an interior surface and an exterior surface, wherein said exterior surface of said wall is in contact with an external environment external to said body, wherein said wall has first and second panels having first and second respective peripheral portions, and wherein said first and second peripheral portions are joined together across a seam;
- a fill disposed in said interior volume; and
- a coating which is disposed on said interior surface, wherein said coating covers said seam.
2. The weighted article of claim 1, wherein said coating covers said first and second peripheral portions of said first and second panels.
3. The weighted article of claim 1, wherein said coating binds said first and second panels to each other.
4. The weighted article of claim 1, wherein each of said first and second panels comprises a fabric.
5. The weighted article of claim 4, wherein said fabric is selected from the group consisting of polyester, nylon and vinyl.
6. The weighted article of claim 1, wherein said weighted article is a sand bag.
7. The weighted article of claim 1, wherein said weighted article is a medicine ball.
8. The weighted article of claim 1, wherein said weighted article is ellipsoidal in shape.
9. The weighted article of claim 1, wherein said coating is an elastomeric coating.
10. The weighted article of claim 1, wherein said fill is a particulate material.
11. The weighted article of claim 10, wherein said particulate material is selected from the group consisting of sand, grain, steel shot and rubber pellets.
12. The weighted article of claim 1, wherein said coating is selected from the group consisting of epoxies, polyurethanes, urethanes, neoprene, rubbers and urea.
13. The weighted article of claim 1, further comprising:
- a protective rim disposed over said seam on the exterior surface of said wall.
14. The weighted article of claim 1, further comprising:
- a releasable fastener having first and second components which are disposed in opposing relation on the interior surfaces of said first and second panels, respectively; and
- a flexible chute having first and second opposing ends;
- wherein said article is transformable between a first state and a second state;
- wherein, when said article is in said first state, said flexible chute extends past said first and second components of said releasable fastener and to or through an opening in said body such that (a) the first and second openings of said chute are in open communication with each other, (b) the first opening of said chute is in open communication with the atmosphere external to said body, and (c) the second opening of said chute is in open communication with said interior volume; and
- wherein, when said article is in said second state, said first and second components of said releasable fastener are pressingly engaged with each other.
15. The article of claim 14 wherein, when said article is in said second state, said flexible chute does not extend past said first and second components of said releasable fastener.
16. The article of claim 14 wherein, when said article is in said second state, said flexible chute is in a folded arrangement.
17. The article of claim 14, wherein said releasable fastener is a hook-and-loop fastener.
18. The article of claim 14, wherein said first component of said releasable fastener comprises a plurality of hooks, and wherein said second component of said releasable fastener comprises a plurality of loops.
19. The article of claim 14, wherein said flexible chute has a channel, wherein said channel has a longitudinal axis, and wherein said dam is concave in the direction of a vector extending from said interior volume to said channel.
20. The article of claim 19, wherein said flexible chute has a channel, wherein said channel has a longitudinal axis, and wherein said dam is U-shaped in a cross-section taken in a plane containing said longitudinal axis and perpendicular to said first surface of said dam.
Type: Application
Filed: Feb 23, 2019
Publication Date: Jun 20, 2019
Inventor: Mark T. Raines (Austin, TX)
Application Number: 16/283,769