Abstract:
A liftable independent suspension system which may also be steerable. In a described embodiment, a liftable suspension system for use on a vehicle includes wheel spindles positioned to extend outwardly at each respective lateral side of the vehicle. The spindles are displaceable independent of each other. An actuator is operable to raise at least one of the spindles, so that a tire rotatably connected to the spindle is liftable out of engagement with a road surface when the actuator raises the spindle.
Abstract:
A suspension system includes a laterally extending axle and an arm assembly welded to the axle. The arm assembly includes a longitudinally extending arm body having top and bottom surfaces, an axle connector welded to the axle and an end of the arm body, and a plate extending longitudinally over and welded to the arm body top surface, wrapped rearwardly about and welded to the axle connector, and extending longitudinally over and welded to the arm body bottom surface. A method includes the steps of welding an axle connector to an axle; welding a plate to the axle connector, the plate being wrapped rearwardly about the axle connector; and welding an arm body to the axle connector and to the plate, the arm body having top and bottom surfaces, and the plate being welded to each of the top and bottom surfaces.
Abstract:
A suspension system for a dump truck which is to be connected to a paver using a truck hitch. In one example, a system for connecting a dump truck to a paver includes a liftable and steerable suspension of the truck, the suspension having an adapter with a laterally outwardly facing concave side. A truck hitch of the paver engages the concave side of the adapter to attach the truck hitch to the suspension. In another example, a method of connecting a dump truck to a paver includes the steps of: interconnecting a hydraulic actuator between a frame of the truck and an axle of a suspension of the truck to thereby transmit a load from the frame to the axle; then raising a bed of the truck, the load increasing as the bed is raised; and increasing pressure in the hydraulic actuator in response to the increasing load.
Abstract:
A liftable independent suspension system which may also be steerable. In a described embodiment, a liftable suspension system for use on a vehicle includes wheel spindles positioned to extend outwardly at each respective lateral side of the vehicle. The spindles are displaceable independent of each other. An actuator is operable to raise at least one of the spindles, so that a tire rotatably connected to the spindle is liftable out of engagement with a road surface when the actuator raises the spindle.
Abstract:
An adjustable run height lift axle suspension system includes an axle assembly, an air spring and a lift actuator. A device may be releasably attached to the axle assembly and connected to each of the air spring and the lift actuator, the device spacing the air spring away from the axle assembly. A selected one of multiple devices may be used, the suspension system having one run height when one device is releasably attached to the axle assembly and connected to each of the air spring and the lift actuator, and a different run height when another device is used. The air spring may have approximately the same operational height when the suspension system is at the different run heights.
Abstract:
An adjustable run height lift axle suspension system includes an axle assembly, an air spring and a lift actuator. A device may be releasably attached to the axle assembly and connected to each of the air spring and the lift actuator, the device spacing the air spring away from the axle assembly. A selected one of multiple devices may be used, the suspension system having one run height when one device is releasably attached to the axle assembly and connected to each of the air spring and the lift actuator, and a different run height when another device is used. The air spring may have approximately the same operational height when the suspension system is at the different run heights.
Abstract:
A suspension system having a reduced weight arm construction. In one vehicle suspension system, an axle is constructed at least partially of a metal alloy. An arm assembly of the suspension system includes an axle attachment constructed at least partially of a material which cannot be welded directly to the metal alloy. To interconnect the axle to the axle attachment of the arm assembly, a transition device is permanently secured to the metal alloy and permanently secured to the axle attachment material.
Abstract:
A suspension system having a high strength arm to axle connection. In a described example, a suspension system includes a laterally extending axle and an arm assembly welded to the axle. The arm assembly includes a longitudinally extending arm body having top and bottom surfaces, an axle connector welded to the axle and an end of the arm body, and a plate extending longitudinally over and welded to the arm body top surface, wrapped rearwardly about and welded to the axle connector, and extending longitudinally over and welded to the arm body bottom surface. In a method of constructing a suspension system, the method includes the steps of welding an axle connector to an axle; welding a plate to the axle connector, the plate being wrapped rearwardly about the axle connector; and welding an arm body to the axle connector and to the plate, the arm body having top and bottom surfaces, and the plate being welded to each of the top and bottom surfaces.