The present invention relates to a felting device and, more particularly, to a felting device with a waffle maker pattern on the bottom surface.
Felt is made by a process called wet felting where the natural wool fibers, stimulated by friction and lubricated by moisture (usually soapy water), move at a 90 degree angle towards the friction source and then away again, in effect making little “tacking” stitches. While at any given moment only 5% of the fibers are active, the process is continual, so different ‘sets’ of fibers become activated and then deactivated, thereby building up the cloth. However, the devices used for felting may be difficult to use and may take a long amount time to perform the felting process.
As can be seen, there is a need for a felting device that may be quick and easy to use.
In one aspect of the present invention, a felting device comprises: a top portion comprising a top surface; and a bottom portion comprising a bottom surface, wherein the bottom surface comprises a plurality of intersecting grooves defining a plurality of blocks.
In another aspect of the present invention, a method of felting comprises: providing a felting device comprising: a top portion comprising a top surface; and a bottom portion comprising a bottom surface, wherein the bottom surface comprises a plurality of intersecting grooves defining a plurality of blocks; providing a piece of fabric; and rubbing a piece of fabric with the bottom surface of the felting device.
In another aspect of the present invention, a felting device comprises a rigid body having a bottom surface, an upper surface, and a perimeter surface. The bottom surface includes a plurality of grooves and a plurality of protrusions formed between the plurality of grooves. Each of the plurality of grooves includes a first side and a second side. The first side extends at an acute angle from the second side. The first and second sides define side surfaces of the each of the plurality of protrusions. The upper surface is opposite the bottom surface. The perimeter surface extends between the bottom surface and the upper surface. The perimeter surface defines perimeter sides of a set of protrusions of the plurality of protrusions that abut the perimeter surface.
In another aspect of the present invention, a felting device comprises a rigid monolithic body including a top surface, a bottom surface opposite the top surface, and a side surface extending between the top surface and the bottom surface. The side surface includes perimeter grooves. The bottom surface is patterned to include a plurality of grooves. A first set of the plurality of grooves extends in a first direction and a second set of the plurality of grooves extending in a second direction perpendicular to the first direction. The plurality of grooves forms sides of a plurality of protrusions. A top surface of each of the plurality of protrusions is planar.
These and other features, aspects and advantages of the present invention will become better understood with reference to the following drawings, description and claims.
The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
Broadly, an embodiment of the present invention provides a device used for felting. The felting device may include a top portion and a bottom portion. The bottom portion may include a bottom surface with a waffle maker pattern. The waffle maker pattern may include a plurality of intersecting grooves that form protruding blocks. The top portion may include a handle for easily grasping and using the felting device.
The present invention may include a felting device that combines needle feltings, wet felting roving and silk together. The felting device of the present invention may be a palm wash board. The palm washboard may be hand made out of native hard wood for needle wet felted roving to a silk clothing article, such as a scarf. The felting device of the present invention facilitates a quicker and easier method of felting compared to other devices. There is no rapping or rolling needed.
Referring to the embodiment illustrated in
The bottom surface 22 of the present invention may have a waffle maker pattern. As illustrated in
Various methods of fabricating the felting devices of the present disclosure are suitable. For example, three-dimensional (3D) printing is an additive manufacturing wherein successive layers of material are formed to fabricate the felting devices of the present disclosure. Alternatively, die casting, injection molding, or machine cutting can be used, for example. One exemplary method of fabricating the present invention may include the following. About a 5×5 inch piece of wood, such as maple, cedar, ash, walnut, cherry and the like may be ascertained. The piece of wood may be about 1 and ¾ inches thick. A router and ½ inch groove bit may be used to create the waffle pattern on the bottom surface 22. About a 4 and ¾ to about a 5 inch circle may be cut out of the 5 inch blocks. Then using a lathe, the piece may be designed to include about a 2 to about a 2 and ½ inch handle 16 protruding from the top surface 24. The device may then be coated with a two part epoxy finish.
Another embodiment of the present invention is illustrated in
The bottom portion 103 includes a bottom surface 122. The bottom portion 103 also includes an upper surface 123. The top portion 101 extends away from the upper surface 123 of the bottom portion 101. The bottom portion 103 also includes a side surface(s) 125 that extends between the bottom surface 122 and the upper surface 123 to form a perimeter of the bottom portion 103. In some embodiments, the side surfaces 125 are generally planar in a direction extending between, and perpendicular to, the upper surface 123 and the bottom surface 122. In other embodiments, the side surfaces 125 are curved or rounded along the direction extending between the upper surface 123 and the bottom surface 122. The bottom portion 103 can include a longitudinal ridge 128 that extends generally parallel to the upper surface 123 of the bottom portion 103. The longitudinal ridge 128 can be indented, or recessed into, the perimeter side surface 125. A plurality of perimeter grooves 130, or indents, can be included on the side surfaces 125. The perimeter grooves 130 can extend at least partially between the bottom and upper surfaces 122, 123. In one embodiment, the perimeter grooves 130 are disposed parallel to one another and are aligned to intersect with the grooves 120 disposed on the bottom surface 122. The side surface 125 can provide additional working surface to that provided by the bottom surface 122. The surfaces 122, 125 can be pressed, cut, burned, or otherwise formed through additive or deductive processes to form the desired patterns.
The bottom portion 103, and in particular, the bottom surface 122, can be monolithically formed. As illustrated in the embodiment of
The protrusions 118 can occupy a majority of the bottom surface 122 area, with grooves 120 extending between and separating adjacent protrusions 118 from one another. The grooves 120 are generally V-shaped with sides of the protrusions 118 defined by sides of the grooves 120. The side surface 125 of the bottom portion 103 can form sides of the protrusions 118 along the perimeter of the felting device 100. The protrusions 118 abutting the side surface 125 can be terminated by the side surface 125 and can be partial protrusions. In one example, the protrusions 118 are substantially uniform in depth and cross-sectional size across the bottom surface 122 of the felting device 100. In another example, the cross-sectional size and/or depth of the protrusions 118 can vary from one to another across the bottom surface 122. In one embodiment, a width of each groove 120 at a tip of the V-shape, adjacent a base of each protrusion 118, is smaller/less than a width or length of the protrusion 118 across the base of the protrusion 118. A depth of the protrusions 118 is provided as suitable for working with particular types and/or sizes of material. For example, a shallow depth of the protrusions can be suitable for working in a tight area such as a corner of a fabric material. A deeper depth of the protrusions can provide a working surface that allows a lofty fabric without mashing down the fibers. Deeper protrusions can be suitable for working locks of a curly shawl, for example.
The top portion 101 includes a top surface 124. The top portion 101 can include a handle 116 configured to be grasped in a single hand of a user. The handle 116 can be formed in variety of shapes suitable for grasping and as appropriate to facilitate the appropriate movement of the felting device. Additionally, the handle 116 can be sized and shaped to attach to the upper surface 123 of the bottom portion 103. In some examples, the handle 116 can be rectilinear shaped with a curved top or ends, round, mushroom shaped or other appropriate shape for grasping by the user. In some examples, the handle 116 can be semicircular or semi-elliptical and include a curved portion 140 extending away from the bottom portion 103 and a mounting surface 142 adjacent and coupled to the bottom portion 103. The handle 116 can include opposing first and second ends and opposing first and second sides. In some examples, the handle 116 includes an inset area 144 along opposing first and second sides or around at least a partial perimeter of the handle 116. The inset area 144 can extend parallel to the upper surface 123 of the bottom portion 103 and is configured to partially accommodate the fingers of a user and provide a gripping surface.
With reference to the embodiment illustrated in
A method of using the present invention is illustrated in
It should be understood, of course, that the foregoing relates to exemplary embodiments of the invention and that modifications may be made without departing from the spirit and scope of the invention as set forth in the following claims.
This Continuation-in-Part application claims the benefit of priority of U.S. patent application Ser. No. 13/912,573, filed Jun. 7, 2013, which claims priority to Provisional Application No. 61/690,236, filed Jun. 22, 2012, the contents of which are herein incorporated by reference.
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Number | Date | Country | |
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Parent | 13912573 | Jun 2013 | US |
Child | 15173187 | US |