2026-04-07
Summarize the relationship between tire wear, driving range, and noise in electric vehicles, and describe how differences in weight and efficiency affect these factors.
EV and Tire Load
EVs are heavy. The primary reason is the battery, and even with the same size, weight increases by several hundred kilograms.
As load increases, stress at the contact patch simply increases. In addition, regenerative braking applies torque during deceleration.
Conventionally
Load only during acceleration → deceleration handled by brakes
In EVs
Torque acts during acceleration, cruising, and deceleration
As a result, wear increases.
- Vehicle weight increase: approx. 20 to 30 percent
- Wear increase: approx. 20 percent
- Main factors: weight plus regenerative braking
High acceleration performance is not the main factor. Under normal driving, its impact converges.
Range and Tires
EVs have high powertrain efficiency.
In internal combustion engines, much of the energy is lost within the engine, whereas in EVs this loss is smaller.
As a result, the share of losses attributable to tires increases.
- EV: approx. 80 percent reaches the road
- ICE: approx. 25 percent reaches the road
This difference means that tire performance directly appears in driving range.
A notable aspect is the relationship with wear.
- Tread reduction → deformation loss decreases
- Rolling resistance decreases
Result
- Range: approx. 4 percent improvement
When replaced with new tires, it may appear that range has decreased, but in reality it has simply returned to the initial state.
Noise Changes
EVs are quiet, so tire noise becomes more noticeable.
Main sources of noise:
- Cavity resonance (vibration of internal air)
- Pattern noise (block arrangement)
Countermeasures are as follows.
- Dampen resonance with foam materials
- Disperse block sizes
However, whether this is necessary depends on the driving environment. It is not an issue for all vehicles.
Axes for Tire Selection
Rather than EV-specific tires, the difference lies in performance allocation.
Main axes:
- Low rolling resistance (range)
- Wear life
- Quietness
- Winter performance
Even for the same vehicle, range can vary significantly depending on the tires.
The impact is clearly larger than in ICE vehicles.
Winter Conditions
Increased vehicle weight does not increase grip.
What increases is inertia.
Result:
- Braking distance tends to increase
Therefore, the necessity of winter tires does not change.
Supplement
- Load is supported by air pressure
- EVs tend to have higher tire pressure
- Future direction: larger tire sizes
Not toward thicker sidewalls.
Increasing stiffness raises rolling resistance.
Sources and References
EV Society Webinar “Tires and Electric Vehicles”
Michelin North America technical lecture (Russell Shepard)