Patent classifications
F16B3/00
Seat beam clamp
A beam clamp (124) for a passenger seat includes a keyhole (126) configured to flex outwardly from an un-flexed position to a flexed position. The diameter of the keyhole in the un-flexed position is less than the diameter of the keyhole in the flexed position. A method of assembling the passenger seat includes assembling a seat base and connecting a seat back to the seat base. Assembling the seat base includes flexing the keyhole of the beam clamp outwards from the un-flexed position to the flexed position and inserting a support beam within the keyhole in the flexed position.
Integrated fastener for instrumentation cluster
An integrated fastener for an instrument cluster assembly, where multiple integrated fasteners are used to connect the front cover of the assembly to the back cover. The instrument cluster assembly includes at least one fastener integrated into the back cover, a first recessed portion formed as part of the back cover, and a separation wall formed as part of the back cover in proximity to the first recessed portion. A first mounting aperture is formed as part of the separation wall, and the integrated fastener attached to the back cover and located in the first mounting aperture when the integrated fastener is in a first configuration. The integrated fastener is detached from the back cover and rotated such that the integrated fastener is placed in a second configuration, securing the front cover to the back cover.
Integrated fastener for instrumentation cluster
An integrated fastener for an instrument cluster assembly, where multiple integrated fasteners are used to connect the front cover of the assembly to the back cover. The instrument cluster assembly includes at least one fastener integrated into the back cover, a first recessed portion formed as part of the back cover, and a separation wall formed as part of the back cover in proximity to the first recessed portion. A first mounting aperture is formed as part of the separation wall, and the integrated fastener attached to the back cover and located in the first mounting aperture when the integrated fastener is in a first configuration. The integrated fastener is detached from the back cover and rotated such that the integrated fastener is placed in a second configuration, securing the front cover to the back cover.
CONNECTING DEVICE AND METHOD FOR CONNECTING TWO COMPONENTS
In order to provide a connecting device for connecting two components, which is simple to manufacture and enables a stable and reliable connection of the two components, it is proposed that the connecting device comprises a main body which comprises a receiving channel extending through the main body for accommodating a fixing element, wherein the receiving channel is preferably accessible at one end by way of an insertion opening of the main body and/or preferably at a (further) end by way of a fixing opening of the main body, wherein the main body preferably further comprises an actuating opening that is different from the insertion opening and/or the fixing opening, by way of which in particular the fixing element arranged in the receiving channel is preferably accessible for the actuation thereof.
Mount assembly
A mount assembly has an attachment component and a housing. The housing is hollow and has an interior and an exterior. The housing has a rear plate that is substantially rectangular, a top face, a bottom face, two lateral faces, and a front plate. The front plate is substantially similar to the rear plate and has an opening that has a keyhole and a slot. The housing also has a spring biased actuator and a detent that corresponds with the keyhole and is linearly biased toward the front plate. The attachment component is configured to be releasably coupled to the housing, and has a rear wall that is substantially similar to the front plate of the housing, and a post that extends perpendicularly from the rear wall. The post has a flattened head at a distal end that corresponds to the keyhole of the front plate of the housing.
ROTOR DRIVE KEY ASSEMBLY
In some examples, an assembly includes a vehicle wheel that defines an interior and an exterior surface, where the interior surface defines a first protrusion and a second protrusion. The first protrusion defines a first aperture extending in a substantially axial direction. The assembly further includes a rotor drive key on the interior surface, the drive key defining a first and second feature, and the first feature defines a second aperture extending in the substantially axial direction and is configured to align with the first aperture. The assembly includes a fastener configured to be inserted through the first and second aperture in the substantially axial direction to attach the key to the interior surface of the wheel, where the second aperture is configured to form a threaded connection with an end of the fastener. When the fastener is tightened via the threaded connection, the second feature engages the second protrusion.
ROTOR DRIVE KEY ASSEMBLY
In some examples, an assembly includes a vehicle wheel that defines an interior and an exterior surface, where the interior surface defines a first protrusion and a second protrusion. The first protrusion defines a first aperture extending in a substantially axial direction. The assembly further includes a rotor drive key on the interior surface, the drive key defining a first and second feature, and the first feature defines a second aperture extending in the substantially axial direction and is configured to align with the first aperture. The assembly includes a fastener configured to be inserted through the first and second aperture in the substantially axial direction to attach the key to the interior surface of the wheel, where the second aperture is configured to form a threaded connection with an end of the fastener. When the fastener is tightened via the threaded connection, the second feature engages the second protrusion.
Adapter to attach implements to an actively controlled human tremor cancellation platform
Embodiments are disclosed of an adapter for coupling an implement to a tremor cancellation platform. The adapter includes a first section attached to the tremor cancellation platform, the first section comprising an elongated tapered key having a base and a tip, the base having a greater transverse dimension than the tip and the base being attached to the tremor cancellation platform. The adapter also includes a second section coupled to the implement, the second section including a tapered cavity sized and shaped to receive the first section, and a latch to lock the second section onto the first section.
Anti-walking assembly for vibrating and sliding structures
An assembly configured to limit movement of an apparatus having a base that rests on a surface includes a body member and a gate. The body member is configured to be secured to the surface and has an opening configured to receive the base of the apparatus. The gate is configured to be removably coupled with the body member to open and close the opening. When the gate is coupled with the body member, the gate is configured to cooperate with the body member to limit movement of the base of the apparatus relative to the surface in directions that are parallel to the surface.
Wheel Assembly, Methods, and Applications
A quick release mechanism for a wheel includes a hub and a clip, which interact with a wheel or roller that may or may not be part of the invention per se. The hub is disposable on a drive shaft such that it will rotate with the drive shaft. An optional hub cap is disposable on the wheel and has an opening that is complimentary to the geometry of the hub to allow engagement thereof such that the hub the hub cap rotate together. The clip is disposable on the hub in a closed or an open position so that the hub cap cannot or can be removed from the hub.