Abstract:
Plastic panels for motor vehicles and methods for making plastic panels are provided herein. In one example, a plastic panel for a motor vehicle comprises a first molded microcellular polymeric substrate and a second polymeric substrate. The first molded microcellular polymeric substrate has a first outer skin, a second outer skin, a microcellular structured core that is disposed between the first and second outer skins, and a wall that extends between the first and second outer skins to define a support structure in the microcellular structured core. The second polymeric substrate comprises a weld feature that is aligned with the support structure and that is coupled to the second outer skin of the first molded microcellular polymeric substrate.
Abstract:
A door module of a vehicle includes: a panel of door glass including an upper peripheral edge and a lower peripheral edge; a lift plate coupled to the lower peripheral edge of the door glass such that a regulator may move the door glass between a full-up position and a full-down position within the door module via the lift plate; and a position block movable within the door module to: (i) a first position below the lift plate such that the lift plate rests on the position block and the door glass is at a position above the full-down position when the door glass is inserted into the lift plate during manufacture, and (ii) after such insertion, a second position that permits the lift plate to move further downward such that the door glass is at the full-down position.
Abstract:
An apparatus for locking a door trim panel to a door module includes: at least one hook depending from an inwardly directed surface of said door trim panel; an elongate locking element having a first end and a second end, the first end being connected to an end of the hook by way of a hinge; at least one receiver depending from an opposing surface of said door module and being operable to engage said hook, the receiver including an edge directed toward the opposing surface of the door module; and a cleat depending from the surface of the door trim panel and operable to engage the second end of the locking element when the locking element is a locking position, wherein the edge of the receiver engages the locking element and prevents the hook from disengaging from the receiver once the second end of the locking element engages the cleat.
Abstract:
Interior panels having integrated airbag deployment doors for motor vehicles, and methods for making such interior panels are provided herein. In one example, an interior panel comprises a substrate that comprises a first PP/TPO material. An airbag chute-door assembly comprises a chute portion that has a chute wall. The chute wall at least partially surrounds an interior space that is sized to permit passage of an airbag during deployment. A first door flap portion is disposed adjacent to the interior space. The first door flap portion comprises a first door flap section and at least one first weld feature. The at least one first weld feature comprises a second PP/TPO material and attaches the first door flap section to the substrate. A first hinge pivotally connects the first door flap section to the chute portion. The first hinge comprises a TPE material.
Abstract:
An apparatus for locking a door trim panel to a door module includes: at least one hook depending from an inwardly directed surface of said door trim panel; an elongate locking element having a first end and a second end, the first end being connected to an end of the hook by way of a hinge; at least one receiver depending from an opposing surface of said door module and being operable to engage said hook, the receiver including an edge directed toward the opposing surface of the door module; and a cleat depending from the surface of the door trim panel and operable to engage the second end of the locking element when the locking element is a locking position, wherein the edge of the receiver engages the locking element and prevents the hook from disengaging from the receiver once the second end of the locking element engages the cleat.
Abstract:
Plastic panels for motor vehicles and methods for making plastic panels are provided herein. In one example, a plastic panel for a motor vehicle comprises a first molded microcellular polymeric substrate and a second polymeric substrate. The first molded microcellular polymeric substrate has a first outer skin, a second outer skin, a microcellular structured core that is disposed between the first and second outer skins, and a wall that extends between the first and second outer skins to define a support structure in the microcellular structured core. The second polymeric substrate comprises a weld feature that is aligned with the support structure and that is coupled to the second outer skin of the first molded microcellular polymeric substrate.
Abstract:
A door module of a vehicle includes: a panel of door glass including an upper peripheral edge and a lower peripheral edge; a lift plate coupled to the lower peripheral edge of the door glass such that a regulator may move the door glass between a full-up position and a full-down position within the door module via the lift plate; and a position block movable within the door module to: (i) a first position below the lift plate such that the lift plate rests on the position block and the door glass is at a position above the full-down position when the door glass is inserted into the lift plate during manufacture, and (ii) after such insertion, a second position that permits the lift plate to move further downward such that the door glass is at the full-down position.
Abstract:
A lift plate for holding a window pane is disclosed which may include a clamp operable to grasp a window pane with a grasping force responsive to a force of insertion of the window pane into the clamp; and a reinforcement system operable to follow a movement of at least a portion of the clamp and to prevent retraction of the clamp from a grasping position with respect to the window pane.