Patent classifications
B60B7/065
SNAP-ON AUTOMOTIVE WHEEL COVER OVERLAY WITH EXTENDED SURROUND AND METHOD FOR MANUFACTURING THE SAME
An improved snap-on automotive wheel cover overlay with extended surround having hook-shaped members for the purpose of securing the wheel cover overlay of the present invention to a damaged manufacturer's wheel cover. The wheel cover overlay of the present invention is further secured by inserting a tension rotation device from the reversed position of a tire into a manufactured in wheel cover overlay tension tabs assembly, and having an extended surround covering the entire rim of a vehicle when installed there on. During manufacturing of the present invention, a three dimensional (3D) scanned imaging of the individual embodiment component parts is generated, after rigorous testing, and is transferred to an injection molding computer to generate the injection molding designed precisely corresponding to each individual component parts of the present invention.
Snap-on automotive wheel cover overlay with extended surround and method for manufacturing the same
An improved snap-on automotive wheel cover overlay with extended surround having hook-shaped members for the purpose of securing the wheel cover overlay of the present invention to a damaged manufacturer's wheel cover. The wheel cover overlay of the present invention is further secured by inserting a tension rotation device from the reversed position of a tire into a manufactured in wheel cover overlay tension tabs assembly, and having an extended surround covering the entire rim of a vehicle when installed there on. During manufacturing of the present invention, a three dimensional (3D) scanned imaging of the individual embodiment component parts is generated, after rigorous testing, and is transferred to an injection molding computer to generate the injection molding designed precisely corresponding to each individual component parts of the present invention.
Wheels for non-motorized vehicles
A wheel for a non-motorized vehicle (e.g., a shopping cart) can include a housing assembly and a tread assembly. The housing assembly can be configured to sealingly house electronics or other components. The tread assembly can removably mate with the housing assembly such that the electronics or other components remain closed and/or sealed within the housing assembly when the tread assembly is mated or unmated with the housing assembly.
Snap-on automotive wheel cover overlay and method for manufacturing same
An improved snap-on automotive wheel cover overlay and method for manufacturing the same, comprising a rigid polymer hook-shaped member extending from an upper end of a flange, wherein said flange is protruding from the rear inward area side of the wheel cover overlay of the present invention and protruding continuously along a right-rigid polymer longitudinal portion and a rigid-right polymer upper arm edge which form a geometric orientation that permits the flanges of the wheel cover overlay of the present invention when inserted into through holes bearing the corresponding shapes of said flanges to firmly attached to a rear surface area of a manufacturer's or aftermarket's wheel cover when snapped into place; and protruding continuously along a left-rigid polymer longitudinal portion and a left-rigid polymer upper arm edge which form a geometric orientation that permits flanges of the wheel cover overlay of the present invention when inserted into through holes bearing the corresponding shapes of said flanges to firmly attach to the rear surface of a manufacturer's or after market's wheel cover when snapped into place. In addition, a three dimensional (3D) scanned imaging of the individual embodiment component parts is generated, after rigorous testing, and is transferred to an injection molding computer to generate the injection molding designed precisely corresponding to each individual component parts of the present invention.
WHEEL, DRIVING WHEEL, AND WHEELCHAIR
Provided is a wheel (6a) in which a disk (62) includes a first rib (62a) extending in a radial direction, and protruding out on one side in a direction of a central axis a1. A hub (61) of the wheel (6a) includes a first blade portion (61d1) extending in the radial direction. At least one of a pair of side surfaces of the first rib (62a) is inclined relative to a plane including the central axis a1 of the disk (62), and the first blade portion (61d1) is fixed to the inclined side surface on one side of the central axis a1.
FLEXIBLE HUBCAP FOR A VEHICLE WHEEL HAVING A FLOATING SEAT, AND WHEEL HAVING A FLOATING SEAT AND A FLEXIBLE HUBCAP
Hubcap (1) for a wheel (2) with a floating tyre seat, the said wheel (2) having a rim comprising a tyre seat (253) extended axially outwards by a flange (254), the tyre seats (253) being radially floating, the said hubcap comprising a central edge (11) and an exterior periphery (12), in which the said central edge (11) comprises fixing elements for attaching to the rigid part of the wheel and in which the said central edge (11) is connected to the said exterior periphery (12) by an intermediate sector that is deformable so that the exterior periphery (12) can be moved at least radially inwards with respect to the central edge (11).
ADAPTIVE WHEEL ASSEMBLY WITH INTERCHANGEABLE DECORATIVE FACES
A wheel assembly that provides a simulated center lock wheel look that also enables exchanging of ornamental face plates with a center hub attachment device that will allow car enthusiasts to easily change the look of their automotive wheels while maintaining a center lock wheel appearance. The assembly includes three components: a base wheel, a plurality of ornamental face plates, and a center hub attachment extending from one of either the hub or the ornamental face plate.
INSERT FOR VEHICLE WHEELS
The insert for vehicle wheels comprises an insert body (1) and fastening means that enable said insert to be fastened to a rim (4) of a wheel, wherein said fastening means comprise at least one retaining element (2) provided with a step (22); and at least one fastening element (3) covering the or each retaining element (2), the or each fastening element (3) comprising at least one tab (33) that is coupled to said step (22).
The invention provides an insert for use thereof in a wheel of a vehicle that is inexpensive and can be easily mounted from the front portion thereof, but which has an anti-theft system that prevents the removal thereof from the front portion and enables most of said insert to be made of a material that does not require high thermal resistance.
WHEEL FOR LAWN MOWER ROBOT AND LAWN MOWER ROBOT INCLUDING THE SAME
Disclosed are a wheel for a lawn mower robot and the lawn mower robot including the same. A wheel for a lawn mower robot according to an embodiment of the present disclosure has a structure in which grass seeds can be discharged during a rotation of the wheel.
Accordingly, grass seeds are sown as the lawn mower robot travels while performing a lawn mowing task. Therefore, a task of mowing the lawn and a task of sowing seeds can be performed in a unified manner. In other words, the lawn can be managed more efficiently.
Drive unit for an electric vehicle and drive axle with a drive unit
A drive unit for an electric vehicle, having an electric machine and a three-speed shift transmission with first, second and third shift elements, and two planetary sets which are coupled with each other. The first planetary set has a first sun gear shaft, first ring gear shaft and a first carrier shaft. The second planetary set has a second sun gear shaft, a second ring gear shaft and second carrier shaft. The first carrier shaft is fixed to the second ring gear shaft. The first sun gear shaft can be driven by an electric machine. The first ring gear shaft is fixed and output takes place via the second carrier shaft. The first shift elements are actuated to engage a first gear, the second shift elements are actuated to engage the second gear and the third shift elements are actuated to engage the third gear.