This invention relates generally to the field of chair technology, and more specifically to cleaning chairs.
An invention has been developed in response to present state of the art and, in particular, in response to problems and needs in the art that have not yet been fully solved by currently available systems and methods. Accordingly, a wheel cleaning chair has been developed. Features and advantages of different embodiments of the invention will become more fully apparent from the following description and appended claims, or may be learned by practice of the invention as set forth hereinafter.
A wheel cleaning chair is disclosed which, in general, includes a chair seat, a chair base, and a column. The column connects the chair seat and the chair base. The chair base includes two or more wheel assemblies. Each wheel assembly includes a wheel casing and a wheel. The wheel assemblies also include a wheel cleaner proximate each wheel.
At least one of the wheel cleaners may include a bristle brush. The bristle brush may extend to a contact patch of the corresponding wheel. At least one of the wheel cleaners may include a scraper. The scraper may have a scraper blade. At least one of the wheel assemblies may include an axle. The axle may connect the wheel to the corresponding casing.
At least one of the wheel assemblies may include a stem. The stem may be pivotally attached to the corresponding casing. At least one of the wheels may be spherical. At least one of the wheels may be connected to the corresponding casing via a ball-and-socket joint.
The axle may include a primary gear. The brush may include gear teeth meshed with the primary gear. The scraper may include a secondary gear meshed with the primary gear.
At least one of the wheels may include and be rotatably coupled to an axle. At least one of the wheel assemblies may include an energy harvester coupled to the axle. The wheel cleaning chair may include an energy storage device electrically connected to the energy harvester. The wheel cleaning chair may include a controller electrically connected to the energy storage device. At least one of the wheel assemblies may include a light sensor electrically connected to the controller. At least one of the wheel assemblies may include an audio sensor electrically connected to the controller. At least one of the wheel assemblies may include a particulate matter (PM) sensor electrically connected to the controller.
A more particular description of the invention briefly described above is made below by reference to specific embodiments. Several embodiments are depicted in drawings included with this application, in which:
A detailed description of the claimed invention is provided below by example, with reference to embodiments in the appended figures. Those of skill in the art will recognize that the components of the invention as described by example in the figures below could be arranged and designed in a wide variety of different configurations. Thus, the detailed description of the embodiments in the figures is merely representative of embodiments of the invention, and is not intended to limit the scope of the invention as claimed.
Wheel assembly 108 may be pivotally connected to base 104. Column 106 may be pivotally connected to seat 102 or base 104. Wheel assembly 108 may include axle 116. Axle 116 may connect wheel 112 to corresponding casing 110. Wheel 112 may include, and be rotatably connected to axle 116. Casing 110 may be rotatably connected to axle 116.
Wheel cleaner 114 may include bristle brush 118 having bristles 120. Bristles 120 may extend to contact patch 122 of wheel 112, where a contact patch is a portion of a wheel that comes in contact with a surface of a floor. Bristles 120 may include any of a variety of materials, such as hair, straw, metallic wire, nylon, or plastic.
Wheel cleaner 114 may clean wheel 112 and/or a surface with which wheel 112 comes in contact. For example, a user may move wheel cleaning chair 100 along a floor. Wheel cleaner 114 may clean the floor as wheel cleaner 114 moves relative to a surface of the floor. Debris such as strands of hair, dirt, rocks, etc. left on the floor may be collected or displaced by wheel cleaner 114 to prevent the debris from jamming wheel 112 (jamming meaning that debris prevent wheel 112 from rolling).
Wheel assembly 208 may include axle 216. Axle 216 may connect wheel 212 to corresponding casing 210. Wheel assembly 208 may include stem 228. Stem 228 may be pivotally attached to corresponding casing 210. For example, casing 210 may pivot around stem 228 such that it may rotate relative to chair base 204. Stem 228 may be made of any of a variety of materials, including plastic, metal, or ceramic.
Scraper blade 226 may include any of a variety of materials, such as plastic, metal, or ceramic.
Brush 518 of wheel assembly 508 may include gear teeth 534. Gear teeth 534 may mesh with primary gear 532. Wheel 512 may be rotatably coupled to axle 516. For example, wheel assembly 508 may be attached to a chair base which may move relative to a floor. Contact patch 522 of wheel 512 may change with translation of wheel assembly 508 with respect to the floor such that wheel 512 rotates. Wheel 512 may cause axle 516 to rotate which, in turn, may cause primary gear 532 to rotate. Gear teeth 534 may rotate due to rotation of primary gear 532 such that brush 518 of wheel cleaner 514 rotates. Bristles 520 of brush 518 may subsequently brush aside debris from the floor around wheel assembly 508.
Scraper 624 of wheel assembly 608 may include secondary gear 635. Scraper 624 may be placed such that scraper blade 626 is positioned adjacent wheel 612. Secondary gear 635 may mesh with corresponding primary gear 632. Wheel 612 may be rotatably coupled to axle 616. For example, wheel assembly 608 may be attached to a chair base which may move relative to a floor. Contact patch 622 of wheel 612 may change with translation of wheel assembly 608 with respect to the floor such that wheel 612 rotates. Wheel 612 may cause axle 616 to rotate which, in turn, may cause primary gear 632 to rotate. Secondary gear 635 may rotate due to rotation of primary gear 632 such that scraper 624 of wheel cleaner 614 rotates. Scraper blade 626 of scraper 624 may subsequently remove debris from wheel 612.
Wheel cleaning chair 700 may include energy storage device 738. Energy storage device 738 may be electrically connected to energy harvester 736 via wiring 740. For example, wheel cleaning chair 700 may be translated relative a surface in contact with wheel 712. Wheel 712 may rotate, subsequently rotating axle 716. Energy harvester 736 may subsequently harvest energy due to rotation of axle 716 and store the energy in energy storage device 738 via wiring 741. The energy storage device may be connected to an LED light for illumination of the wheel assembly.
Wheel cleaning chair 700 may include controller 742. Controller 742 may be electrically connected to energy harvester 736 via wiring 740.
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20190029425 A1 | Jan 2019 | US |