Business Day - Motor News

Know the diff between LSD, ESC and FCV

TECHNOLOGY/ Our handy guide to vehicle vernacular and geekspeak, writes Denis Droppa

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o you know the difference between a BEV and a PHEV? Or how a limitedsli­p differenti­al compares to torque vectoring?

Here’s our useful guide to understand­ing some of the jargon in the ever-expanding motoring dictionary:

Anti-lock braking system (ABS) One of the most effective safety features on modern cars, ABS sends fast pulses of brake force to the wheels in order to prevent the tyres locking up and skidding. By allowing the wheels to rotate even under hard braking, a vehicle is able to maintain better control when swerving, and it also shortens braking distances, particular­ly on slippery roads.

Traction control This prevents wheel spin by briefly reducing engine torque or applying the brakes. If one wheel begins to lose traction, the computer transfers some force to the non-spinning wheel.

Electronic stability control (ESC) An advanced form of traction control that uses multiple sensors, including an accelerome­ter, steering angle sensor and wheel-speed sensors to help keep vehicles

Dpointed in the right direction. Names include dynamic stability control, electronic stability program and vehicle stability control they’re all the same thing.

All-wheel drive (AWD) Though AWD and 4WD are sometimes used interchang­eably, AWD is more commonly applied to vehicles that have full-time drive to both the front and rear axles (such as Audi’s quattro system), either in a fixed split or one that varies according to driving and road conditions.

4WD Usually applies to offroad-focused vehicles such as 4x4 bakkies and SUVs where the driver can manually select between two- and four-wheel drive. Why not just permanentl­y have four-wheel drive and enjoy the traction benefits? Because sending drive to both axles uses more fuel.

Differenti­al Having the driven wheels turning at the same speed works fine in a straight line, but not in corners where the outside wheel has to travel a greater distance than the inside one. A differenti­al is a set of gears that allows the outside wheel to turn faster than the inside one so the vehicle can go around corners smoothly.

Differenti­al lock Usually used in off-road vehicles, the diff lock provides equal power to the left and right driven wheels so that, even in uneven surface situations where one of the driven wheels loses contact with the ground, the other wheel will propel the car forward (a regular unlocked differenti­al transfers all the power to the wheel in the air). Limited-slip differenti­al (LSD) This allows the left and right driven wheels to turn at different speeds just like a simple differenti­al, but when one wheel starts to spin faster than the other, clutches engage to slow the spinning wheel and transfer power to the other. It’s mostly used in high-performanc­e cars to reduce understeer in corners.

Torque vectoring Like an LSD, it transfers or “vectors” engine torque between the vehicle’s left and right wheels, but it’s a more advanced computer-controlled system that works in conjunctio­n with the electronic stability control to either brake or provide more drive force to individual wheels. By braking the inside wheel (which tends to lift and lose traction during high-speed cornering) and providing more drive to the outside wheel (which is being pressed into the road), it allows the car to corner faster.

Continuous­ly variable transmissi­on (CVT) Instead of gears there are two cone-shaped pulleys connected by a belt. The engine turns one pulley, and the other one is connected to the driveshaft. It provides a stepfree power delivery, but can also lead to engine droning and a “slipping clutch” effect.

Turbo A device that uses the exhaust gas to drive a turbine that pushes more air into the engine cylinders to allow them to burn more fuel each second, much like blowing on a fire. Turbos can significan­tly boost engine power without a major weight increase.

Twin turbo or biturbo The trouble with big turbos is they don’t work well at low engine speeds. They take a long time to spool up, which causes the delayed power response known as turbo lag. Two smaller turbos spool up quicker than a single large one. Sometimes a smaller turbocharg­er is used to reduce lag at lower rpm, while a larger one takes over to boost power at higher revs.

Twin scroll turbo Atwo-inone turbocharg­er that’s less costly and complex than using two turbos and optimises power delivery across the rev range.

Variable geometry turbo This uses movable vanes that change their angle to alter the air flow of the exhaust gases to maximise boost across the entire engine speed range. It essentiall­y acts as a smaller turbo at low engine revs and a big turbo at higher rpm. Battery-electric vehicle (BEV) BEVs such as the Nissan Leaf and Tesla are solely powered by electricit­y, using batteries to power a motor. They’re charged via a cable at wall sockets or fast-charging boxes.

Hybrid vehicle Hybrids such as the Toyota Prius pair an internal-combustion motor with an electric motor as a way of improving performanc­e and fuel economy and reducing emissions. They can draw on both sources separately or at the same time if extra power is needed. The battery is charged by the engine. Plug-in hybrid vehicle (PHEV) Similar to a regular hybrid, except the batteries can also be charged by cable.

Fuel-cell vehicle (FCV) Hydrogen and oxygen are mixed inside a fuel-cell stack to produce electricit­y, which powers a motor. Water vapour is the only emission. A small number of firms are investing in FCVs, including Honda with its FCX Clarity and Toyota with its Mirai.

BEVS SUCH AS THE TESLA ARE POWERED

 ??  ?? By braking the inside wheel (which tends to lift and lose traction during highspeed cornering) and providing more drive to the outside wheel (which is being pressed into the road), torque vectoring allows a car to corner faster.
By braking the inside wheel (which tends to lift and lose traction during highspeed cornering) and providing more drive to the outside wheel (which is being pressed into the road), torque vectoring allows a car to corner faster.
 ??  ?? The Honda FCX Clarity is one of the few fuel-cell vehicles (FCVs) in production. It runs on hydrogen and oxygen that are mixed inside a fuel-cell stack to produce electricit­y, which powers an electric motor. Water vapour is the only emission.
The Honda FCX Clarity is one of the few fuel-cell vehicles (FCVs) in production. It runs on hydrogen and oxygen that are mixed inside a fuel-cell stack to produce electricit­y, which powers an electric motor. Water vapour is the only emission.

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