Abstract:
A spacer and clip device includes a body including a clip portion and a spacer portion separated by a channel edge defining a channel extending longitudinally through the body, the clip portion and the spacer portion connected by a joining portion. The body includes an attachment edge defining an attachment opening that extends laterally through the body, the spacer portion establishes a standoff height, and the body is compressible to adjust the standoff height.
Abstract:
An energy management system for a vehicle includes a load-bearing component operatively positioned in a wheel cavity rearward of a tire and wheel assembly in the wheel cavity. The load-bearing component is configured to limit movement of the tire and wheel assembly in the wheel cavity under a load applied to the vehicle forward of the tire and wheel assembly and offset from a longitudinal centerline of the vehicle.
Abstract:
An energy management system for a vehicle limits movement of a tire and wheel assembly in a wheel cavity. The vehicle has a wheel well structure that defines the wheel cavity. The energy management system includes a tether attached to the tire and wheel assembly. The tether is configured to limit movement of the tire and wheel assembly within the wheel cavity under a predetermined load that is applied to the vehicle forward of the tire and wheel assembly and offset from a longitudinal centerline of the vehicle.
Abstract:
An energy management system for a vehicle limits movement of a tire and wheel assembly in a wheel cavity. The vehicle has a wheel well structure that defines the wheel cavity. The energy management system includes a tether attached to the tire and wheel assembly. The tether is configured to limit movement of the tire and wheel assembly within the wheel cavity under a predetermined load that is applied to the vehicle forward of the tire and wheel assembly and offset from a longitudinal centerline of the vehicle.
Abstract:
A structural assembly includes a frame and a plurality of panels. The frame includes a wall that at least partially defines an interior region. The plurality of panels is disposed at least partially in the interior region and is coupled to the frame. The plurality of panels includes a first panel and a second panel. The first panel includes a first surface and a second surface opposite the first surface. The first surface defines a first plurality of depressions and the second surface defines a first plurality of protrusions complementary to the first plurality of depressions. The second panel includes a third surface and a fourth surface opposite the third surface. The third surface defines a second plurality of depressions. The fourth surface defines a second plurality of protrusions complementary to the first plurality of depressions. The first panel is coupled to the second panel.
Abstract:
Electric vehicle battery enclosures and methods of assembling electric vehicle battery enclosures involve a base portion to hold one or more batteries that provide motive power to an all-electric or hybrid electric vehicle. An electric vehicle battery enclosure includes a cover portion to mate with the base portion to enclose the one or more batteries, and a sealant to create a bond between the base portion and the cover portion around an entire perimeter of the enclosure and to seal the enclosure based on a uniform height of the sealant around the perimeter of the enclosure.
Abstract:
A battery enclosure, support beam for the battery enclosure and method of providing structural support to the battery enclosure. The battery enclosure includes a base having a first sidewall and a second sidewall opposite the first sidewall. The support beam extends from the first sidewall to the second sidewall. The support beam includes a body having a first beam end and a through passage. An internal stabilizer disposed within the through passage at the first beam end. The internal stabilizer includes a first stabilizer sidewall extending from a first stabilizer end to a second stabilizer end, a second stabilizer sidewall extending from the first stabilizer end to the second stabilizer end, and a bridge connecting the first stabilizer sidewall to the second stabilizer sidewall at the second stabilizer end.
Abstract:
Electric vehicle battery enclosures and methods of assembling electric vehicle battery enclosures involve a base portion to hold one or more batteries that provide motive power to an all-electric or hybrid electric vehicle. An electric vehicle battery enclosure includes a cover portion to mate with the base portion to enclose the one or more batteries, and a sealant to create a bond between the base portion and the cover portion around an entire perimeter of the enclosure and to seal the enclosure based on a uniform height of the sealant around the perimeter of the enclosure.
Abstract:
A battery enclosure, support beam for a battery enclosure and method of manufacturing the support beam. The battery enclosure includes a base and the support beam is securable within the base. The support beam includes a body, a nut channel secured to the body, and a mechanical fastener attached to the nut channel. The nut channel is formed into a u-shaped channel. The mechanical fastener is attached to the nut channel and the nut channel is secured to the body of the support beam.
Abstract:
A body panel that is attachable to a body structure is provided. The body panel has a single thickness portion and a double thickness edge portion where the body panel is hemmed over onto itself and is attachable to the body structure. The body panel may be made of a metal material or a non-metal material. The attachment may be via a weld, a fastener, and/or an adhesive.