05 · High-performance tuning: suspension
Tune each motion on its own.
A coil spring gives one stiffness for everything. Linking the pistons through hydraulics lets each way the body moves get its own spring and damping. Race teams have used that to run soft over bumps and still stay flat in corners and under braking.
- Heave
- All four up or down. Soft and progressive, firming up as load builds.
- Roll
- Lean in corners. Stiff and symmetric left to right.
- Pitch
- Dive and squat. Held level under braking and power.
- Warp
- Diagonal twist over rough ground. Left free, with no spring.
AMZ Racing, ETH Zürich · 2017
Their car pilatus linked all four wheels to a central unit with one hydraulic element per motion, running at 120 bar. Warp had no spring at all. They set roll balance by changing lever-arm lengths. The aim was at least 25% lower single-wheel stiffness. In testing, the cross-axle load difference plotted against cornering load held a much tighter band than their 2016 car's. Concept ↗ · Build and test ↗
Creuat with Racing for Holland · Le Mans 2005
Jan Lammers' team ran Creuat's hydropneumatic interconnected suspension. A central device linked front and rear and responded separately to roll, pitch and vertical motion. Roll and pitch rates could be adjusted during the race. Lammers singled out traction and grip over bumps. Racecar ↗
Formula 1 FRIC · 2014
Front-to-rear interconnected hydraulics, used by most of the grid, used braking load at the front to hold the rear down. That kept ride height and rake steady, so teams could run softer springs and a more aggressive underbody. The FIA pushed it out in mid-2014 over cost and concern that it worked as movable aerodynamics. F1.com ↗ · Autosport ↗
Williams active · 1992–93
Hydraulic actuators held ride height within a few millimetres of the optimum, so the aero made steady downforce. The FW15C won 10 races in 1993. The FIA banned the technology after that season. Motor Sport ↗
What this means for CalhounCar: the corner pistons already plumb back to accumulators and height valves in the spine. Tying them into a central unit, one element per motion, gives the same knobs: gas precharge sets spring rate, valve orifices set damping, lever ratio sets roll balance, and oil volume sets ride height. This is a proposed tuning path. The current model shows independent corners.