Abstract:
An automotive product having a plurality of components coated with a refractory interface coating and method for making the same are provided. The automotive product may include at least a first component and a second component configured to interconnect and engage one another. The first component may be composed of a first high-density material. The second component may be formed of a second lower-density material. A refractory interface coating may be applied at the interconnection between the first and second components to provide an enhanced surface finish to limit friction, prevent metallurgical bonding between the first material and second material, provide a barrier against galvanic corrosion, and provide a thermal barrier between the first component and second component to guard against thermal deformation or change in dimension of the second component.
Abstract:
In accordance with exemplary embodiments, a wheel assembly is provided for a vehicle. The wheel assembly includes a knuckle having a tapered inner surface to interface with an outer flange of a bearing. A threaded fastener retains the bearing within the knuckle. A wheel hub couples to an inner flange of the bearing permitting rotation of the wheel hub relative to the knuckle.
Abstract:
A hydroformed drum brake shoe assembly for a vehicle and method of making same includes a hydroformed drum brake shoe. The hydroformed drum brake shoe assembly also includes a friction lining secured to the hydroformed drum brake shoe. The hydroformed drum brake shoe is a monolithic structure being integral, unitary, and one-piece.
Abstract:
A hydroformed steering knuckle assembly for a vehicle and method of making same includes a hydroformed main body. The hydroformed steering knuckle assembly also includes at least one component secured to the hydroformed main body. The hydroformed main body is a hydroformed monolithic structure being integral, unitary, and one-piece.
Abstract:
A method is disclosed for forming a brake rotor including a desired custom marking having a predetermined size and shape. The method includes applying a chemical treatment to a marking portion of a surface of the rotor. The marking portion has a size and shape corresponding to the predetermined size and shape of the desired custom marking. The chemical treatment is configured to affect, in a predetermined manner, an ability of a stimulus, to which the rotor is to be exposed, to alter properties of the rotor. The method also includes exposing the rotor, having the chemical treatment applied thereto, to the stimulus. The stimulus alters properties of the rotor at the marking portion differently than the stimulus alters properties of the rotor at other portions of the rotor adjacent the marking portion, thereby forming physical differences in the rotor, which, being visually perceptible, form the custom marking.
Abstract:
A ferritically nitrocarburized rotational member of a vehicle brake is disclosed, including a rotational member having a friction surface configured for braking engagement with a corresponding friction material. A compound zone is disposed at the friction surface. An exposed surface of the compound zone is exposed to an atmosphere. The area of the exposed surface includes from about 0 percent to about 14 percent graphite.
Abstract:
This invention relates to a method and apparatus for securing a cycle pump. The apparatus consists of a C-shaped holding means adjustably adopted so as to be tightly fitted around the pump body. Lips protrude from the C-shaped holding means and are adaptably fitted to receive a locking means. A cover means is fittingly adapted to permit entry of the lips through the cover means, whereupon the shoulder of the cover is forced against the pump head. This causes the pump body and head to become wedged into the cycle frame pegs. Placing a lock through the lips, which contains holes, prevents the pump from becoming unwedged, thus securing the pump.