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If the template has a separate documentation page (usually called "Template:template name/doc"), add [[Category:Open-wheel and formula racing templates]] to the <includeonly> section at the bottom of that page. Otherwise, add <noinclude>[[Category:Open-wheel and formula racing templates]]</noinclude>
Simple approximation for designing Ackermann geometry. A simple approximation to perfect Ackermann steering geometry may be generated by moving the steering pivot points [clarification needed] inward so as to lie on a line drawn between the steering kingpins, which is the pivot point, and the centre of the rear axle. [3]
The detailed data provided by 3D systems allows for more intricate adjustments and a more thorough understanding of the vehicle's alignment geometry, particularly suited to 4 wheel drive cars or those needed 4 wheel alignment. Drive-over, Drive-on or Drive Through Wheel Alignment Systems: Next Generation Alignment
No description. Template parameters Parameter Description Type Status name name The article title, e.g. 4-4-0 (The most commonly used name of the wheel arrangement, in brackets) Example 4-8-2 (Mountain) Line optional image (schematic) image Wheel arrangement schematic File optional image size (schematic) imagesize image_size no description Unknown optional alt alt Alternative text for the ...
Tires with large unbalances are downgraded or rejected. When tires are fitted to wheels at the point of sale, they are measured again on a balancing machine, and correction weights are applied to counteract their combined unbalance. Tires may be rebalanced if driver perceives excessive vibration. Tire balancing is distinct from wheel alignment.
In vehicle dynamics, slip angle [1] or sideslip angle [2] is the angle between the direction in which a wheel is pointing and the direction in which it is actually traveling (i.e., the angle between the forward velocity vector and the vector sum of wheel forward velocity and lateral velocity , as defined in the image to the right).
This can be contrasted with steer, which is the antisymmetric angle, i.e. both wheels point to the left or right, in parallel (roughly). Negative toe, or toe out, is the front of the wheel pointing away from the centreline of the vehicle. Positive toe, or toe in, is the front of the wheel pointing towards the centreline of the vehicle. [2]
A coordinate system used for tire analysis by Pacejka and Cossalter. The origin is at the intersection of three planes: the wheel midplane, the ground plane, and a vertical plane aligned with the axle (not pictured).