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Twin-Traction Beam was invented by John A. Richardson and Donald G. Wheatley of Ford Motor Company covered by US patent 3,948,337 issued April 6, 1976. The patent name was “Independent front suspension for front-wheel drive” which was assigned to Ford Motor Company. [1] [2] The Dana Holding Corporation manufactured
The axles had u-joints to allow for the independent action of the beams. Individual pivot points for the beams at greater than center made each beam longer than half the overall width crossing in the middle. This allowed for an independent front suspension design. Ford TTB Dana 44 axles all utilized locking hubs. The TTB set-up is based on Ford ...
Anti-roll bar (in red) attached to a front axle. The bar must also have its two longitudinal anchor points fastened solidly to transfer forces from side to side. An anti-sway or anti-roll bar is intended to reduce the lateral tilt (roll) of the vehicle on curves, sharp corners, or large bumps.
This is an example of a "dead axle". A "live axle" not only connects two wheels, but also drives them. A beam axle, rigid axle, or solid axle is a dependent suspension design in which a set of wheels is connected laterally by a single beam or shaft. Beam axles were once commonly used at the rear wheels of a vehicle, but historically, they have ...
Automotive suspension design is an aspect of automotive engineering, concerned with designing the suspension for cars and trucks. Suspension design for other vehicles is similar, though the process may not be as well established. The process entails Selecting appropriate vehicle level targets; Selecting a system architecture
Some vehicles with live-axle suspensions cannot use a Watt's linkage due to design or other practical constraints; these often incorporate a Panhard rod as a component of the front suspension. The Mercedes-Benz G-Class was redesigned in 2018 to include a Panhard rod on the rear axle to improve its on-road handling characteristics.