Patent classifications
B60R21/13
LATERAL RETENTION MEMBER
A motor vehicle includes a frame, a first pair of wheels connected to the frame, a second pair of wheels connected to the frame, a motor supported by the frame and operatively connected to at least one of the pair of wheels, a cockpit in the frame, a first seat disposed in the cockpit, a bed in the frame longitudinally rearward of the cockpit, the bed having at least one side wall, a second seat disposed in the bed, the second seat having a seat base and a seat back, the seat back having a storage position and a seating position, and a lateral retention member fixed to the at least one side wall of the bed, at least a portion of the lateral retention member being disposed higher than the seat base and forward of the seat back of the second seat when in the seating position.
LATERAL RETENTION MEMBER
A motor vehicle includes a frame, a first pair of wheels connected to the frame, a second pair of wheels connected to the frame, a motor supported by the frame and operatively connected to at least one of the pair of wheels, a cockpit in the frame, a first seat disposed in the cockpit, a bed in the frame longitudinally rearward of the cockpit, the bed having at least one side wall, a second seat disposed in the bed, the second seat having a seat base and a seat back, the seat back having a storage position and a seating position, and a lateral retention member fixed to the at least one side wall of the bed, at least a portion of the lateral retention member being disposed higher than the seat base and forward of the seat back of the second seat when in the seating position.
ROLLOVER DEVICE FOR A PASSENGER COMPARTMENT OF A MOTOR VEHICLE, METHOD OF PRODUCTION THEREOF AND MOTOR VEHICLE
A rollover device for a passenger compartment of a motor vehicle includes a plurality of struts made of fiber-reinforced plastic, and a plurality of fastening feet made of metallic material for connecting the rollover device to a vehicle body. At least one fastening foot made of metallic material is connected to a respective strut made of fiber-reinforced plastic via a material-locking connection on the one hand and via a form-locking connection on the other hand.
ROLLOVER DEVICE FOR A PASSENGER COMPARTMENT OF A MOTOR VEHICLE, METHOD OF PRODUCTION THEREOF AND MOTOR VEHICLE
A rollover device for a passenger compartment of a motor vehicle includes a plurality of struts made of fiber-reinforced plastic, and a plurality of fastening feet made of metallic material for connecting the rollover device to a vehicle body. At least one fastening foot made of metallic material is connected to a respective strut made of fiber-reinforced plastic via a material-locking connection on the one hand and via a form-locking connection on the other hand.
Guide assembly for guiding an airbag of a roof airbag arrangement of a vehicle
A guide assembly for a roof airbag arrangement of a vehicle includes a guide member, at least a first sliding member and a locking member. The first sliding member is carried by the guide member and translatable relative to the guide member along a translation axis. The locking member is carried by the guide member and is operable in a first position to permit the first sliding member to translate past the locking member in a first direction and operable in a second position to prevent translation of the first sliding member past the locking member in a second direction. The second direction being opposite to the first direction.
ADJUSTABLE SAFETY CELL
An adjustable safety cell for adjusting the size of a deformation zone of a vehicle includes a vehicle reinforcement frame; a movable reinforcement member arranged to reinforce at least a portion of said vehicle reinforcement frame; wherein said reinforcement member is arranged to move between a first position and a second position, wherein in said first position, a first portion of said vehicle reinforcement frame is reinforced, and wherein in said second position, a second portion of said vehicle reinforcement frame is reinforced.
ADJUSTABLE SAFETY CELL
An adjustable safety cell for adjusting the size of a deformation zone of a vehicle includes a vehicle reinforcement frame; a movable reinforcement member arranged to reinforce at least a portion of said vehicle reinforcement frame; wherein said reinforcement member is arranged to move between a first position and a second position, wherein in said first position, a first portion of said vehicle reinforcement frame is reinforced, and wherein in said second position, a second portion of said vehicle reinforcement frame is reinforced.
VEHICLE HAVING A PIVOTABLE ROOF
A vehicle includes: a frame including a roll cage, a motor connected to the frame, a driver seat connected to the frame, and a roof extending at least in part above the driver seat. The roof includes an upper surface and a lower surface. At least part of the roof is pivotably connected to the roll cage about a roof pivot axis so that the at least part of the roof is pivotable from a closed position to an open position. In the closed position, the at least part of the roof covers a roof opening defined by the roll cage, and in the open position, the at least part of the roof at least partly exposes the roof opening.
VEHICLE HAVING A PIVOTABLE ROOF
A vehicle includes: a frame including a roll cage, a motor connected to the frame, a driver seat connected to the frame, and a roof extending at least in part above the driver seat. The roof includes an upper surface and a lower surface. At least part of the roof is pivotably connected to the roll cage about a roof pivot axis so that the at least part of the roof is pivotable from a closed position to an open position. In the closed position, the at least part of the roof covers a roof opening defined by the roll cage, and in the open position, the at least part of the roof at least partly exposes the roof opening.
WORK VEHICLE
Provided is a work vehicle in which a safety frame can be easily attached and detached while costs are decreased. The work vehicle according to an embodiment includes: left and right rear axle cases; the safety frame which is attached to upper portions of the left and right rear axle cases and erected behind an operator seat and has an arch shape in a front view of a machine body; and a rear-side floor mount bracket that supports a rear portion of a floor step from below on left and right sides of the machine body. The rear-side floor mount bracket supports the floor step at a position that is different from attachment positions of the safety frame with respect to the left and right rear axle cases.