The present disclosure related to a wearable device that fits on a user's hand and that is used to more easily smooth a material's surface by sanding.
The surfaces of wood, fiberglass and other construction materials often require sanding to function well for constructing objects, structures, and supports. This is most significant for surfaces that need to be painted or sealed or that will be in regular physical contact (with skin, clothing, etc.). Creating a smooth surface is a simpler task when sanding is performed on flat surfaces, such as wooden boards or walls. However, there are many uses of the above materials that involve curved or angled surfaces that are more difficult to sand. With these forms of materials, flat sandpaper or sand blocks may be difficult to employ. The problem is compounded when the sanding work requires pressure from individual fingers or groups of fingers to keep in efficient contact with the surface. This type of usage of sandpaper can stress or abrade a user's fingers and can cause a user's skin to come in contact with rough surfaces or splinters. Fiberglass shards or splinters present a unique concern in this regard.
As a further problem, surfaces, whether curved or flat, may be difficult to reach or otherwise inaccessible by standard sandpaper or sand blocks. For example, in boat construction, all wood surfaces, inside or out, must be fully sanded and sealed to inhibit salt damage and rot. However, given the tight geometries of boat segments or areas, sanding usually requires lengthy, difficult and painful detail work with finger pressure, sometimes without clear view.
To address the foregoing and other related issues of sanding efficiency and safety, disclosed herein is a device that provides protection for, and agile and flexible motion by, a user's hand and fingers, and has a modular design including the use of different inserts and attachments to allow for sanding or other hand motion applications in multiple configurations and for multiple purposes.
The present disclosure relates to a device to facilitate the action of smoothing a material's surface by sanding the surface. The sanding device is in the form of a glove or mitten to be placed over a user's hand and fingers to provide protection to the user's hand and fingers, but is configured so as to allow the user to maintain an agile and flexible range of motion while sanding a material's surface. In some embodiments, the device can further be used to facilitate cleaning of a surface by replacing the abrasive sandpaper sheet used in conjunction with the device with a piece of fabric or other material. In some embodiments, the device is secured around the hand and fingers of the user by way of one or more closure straps. In some embodiments, the device is further secured around the hand and fingers of the user by way of an elastic wristband.
The sanding device disclosed herein is described by reference to the text and figures below. Various embodiments will be described in detail with reference to the drawings, wherein like reference numerals represent like parts and assemblies throughout the several views. Reference to various embodiments does not limit the scope of the claims attached hereto. Additionally, any examples set forth in this specification are not intended to be limiting and merely set forth some of the many possible embodiments for the appended claims. It is understood that various omissions and substitutions of equivalents are contemplated as circumstances may suggest or render expedient, but these are intended to cover applications or embodiments without departing from the spirit or scope of the claims attached hereto. Also, it is to be understood that the phraseology and terminology used herein are for the purpose of description and should not be regarded as limiting.
In one embodiment, a sanding or cleaning device is worn and controlled by a user's left or right hand, providing precise control during sanding or cleaning activities via the use of a combination of rigid and soft inserts, or rather via the natural shape of the hand, for example, when sanding or cleaning hard to see and reach, uniquely shaped surfaces, or performing fine, detailed woodworking. Because the user's whole hand is used to control the sanding device, rather than just the user's fingers, pressure is better spread out, yielding a smoother, flatter surface as the end product. The device is a product that is, in the preferred embodiment, made of water- or salt-resistant materials and treated fabrics. These materials can include spandex, neoprene, treated or untreated nylon, foam, rubber, or plastic. Other materials may work as well in other embodiments. In some embodiments the materials used may be waterproof or water-resistant, while in other embodiments the materials may not be resistant to water. The device may in whole or in part be made of a flexible material, such as elastic fabric, that is stretchable in order to fit the form of a user's hand.
The user's hand is inserted or placed into the device through an open end portion, with the palm of the user's hand lying on top of the lower portion of the device. The lower portion of the device may be of a shape that is roughly rectangular. In one embodiment, the user's hand is positioned under one or more closure straps that are wrapped across the top part of the hand and secured to affix the user's hand within the device and minimize abrasion of the hand against the inside of the device. The securing of the closure straps can be achieved in various ways, including hook and loop straps, a rigid buckle option providing folding, adjustable closure, or by an elastic wrist band to naturally seal around the entire hand at the wrist. Any securing method that causes the glove to fit snugly to the hand will suffice.
In one embodiment, the device itself is an enclosure so that when a user inserts his or her hand, the hand is positioned within the entirety of the device. In one embodiment of the enclosed version of the device, the user's hand may be secure inside the device because the device itself is made of elastic material that fits snuggly onto a user's hand. In one embodiment of the enclosed version of the device, the user's hand may be secure inside the device, or made comfortable, due to a compression-molded base that conforms to the shape of a user's hand. In another embodiment of the enclosed version of the device, the user's hand may be secure inside the device due to an elastic band that wraps around the device and secures it to the user's hand. In another embodiment, the user's hand may be secure inside the device through the use of a laced pull system or a strap in addition to the enclosure that tightens the device, similar to how a shoe may be secured to a foot. In a further embodiment, the device may have a thumbhole on the side to enable a tighter fit of the device to the user's hand. In one embodiment, the device may resemble a fingertip glove and conform to the end of a user's hand instead of the user's entire hand.
Referring to
Adjacent to or beneath the pocket 106 is an aperture or undersleeve 108 configured to receive an optional insert pad 102. The insert pad 102 can be flat, and can have an end portion that is rectilinear to the flat portion or an end portion that is at an angle. In some embodiments, the device does not include the pocket 106 or the aperture/undersleeve 108, but alternatively the insert pad 102 and/or rigid edge insert 104 are sealed within the flexible base of the device and are an integral, non-removable part of the device.
The insert pad 102 may be of varying densities and rigidities to help unify sanding pressures across the desired surface. The insert pad 102 can be rigid or flexible or some combination thereof. The insert pads 102 can be made of various materials depending on desired rigidity. For example, the insert pad 102 may be made of soft, compressible foam or low durometer rubber, 30-60 Shore A. In some embodiments, the insert pad 102 may be made of plastic, metal or wood, or may be made of polyurethane foam.
The aperture or undersleeve 108 may further be configured to receive an optional rigid edge insert 104 to provide a controlled leading sanding edge to the device. The rigid edge insert 104 may be of varying shapes and materials. For example, the rigid edge insert 104 may be made of plastic, metal or wood, and may have an edge that is flat, or may have an edge with a 45 or 90 degree profile, as illustrated in
The device further includes an adjustable folding flap 110 configured at the leading edge of the device, and further configured to wrap the sanding surface of the device fully around the leading edge of the device. As illustrated in
Alternative designs for the device are illustrated in
In one embodiment, the device may exist in a flat mitten form, as illustrated in
In one embodiment, the device may be in the shape of a mitten with at least one thumbhole 3302, as illustrated in
In one embodiment, the device may be made of a rigid plastic that covers the fingertips and part of the palm and may be flat on the bottom, as illustrated in
Once the hand is secured within the device and the optional insert is in place, the user can attach a surface treatment attachment or sanding surface 114 to the lower facing portion of the device 116, as illustrated in
With use of the sanding surface 114, the user can smooth various surfaces, such as flat surfaces, curved surfaces, angled surfaces, tight corners and other surfaces of varying kinds with precise hand and finger control, all with hand and fingers protected from abrasion and splinters. Smoothing or sanding may be done to facilitate application of various coatings, to render a surface safer for human skin contact, or to improve fit or function when attached to other objects or surfaces.
The device may be used with surface treatment attachments other than the sanding surface 114 referenced above. For example, a user could attach a polishing material to treat or buff various kinds of surfaces. As a further example, a layer of semi-porous material could be attached to the lower-facing portion of the device to apply paint or stain to a surface. As a further example, a light abrasive material suitable for manual dermabrasion could be attached to the device for personal use or for use by a skincare specialist. Other attachments that may be used with the device include a sharp edge attachment, such as a knife blade or serrated edge saw-type blade, exposed to allow for cutting, scouring, scraping, or other uses. The device may further use a wire or fiber brush attachment 122, as illustrated in
Referring now to
Referring to
The various embodiments described above are provided by way of illustration only and should not be construed to limit the claims attached hereto. Those skilled in the art will readily recognize various modifications and changes that may be made without following the example embodiments and applications illustrated and described herein and without departing from the true spirit and scope of the following claims.
This application claims the benefit of U.S. Provisional Application Ser. No. 61/815,136, filed on Apr. 23, 2013, titled SURFACE TREATMENT DEVICE.
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Number | Date | Country | |
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20140315474 A1 | Oct 2014 | US |
Number | Date | Country | |
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61815136 | Apr 2013 | US |