Browse Publications Technical Papers 2021-01-1278
2021-10-11

Transfer Film Composition and Characteristics in Copper-Free NAO Brake Pads 2021-01-1278

Copper-free non-asbestos-organic (NAO) brake pads have been developed to satisfy the copper content regulations in North America. Copper-free NAO brake pads are required to have a stable friction coefficient owing to the electrification of the control systems, as well as to exhibit improved wear resistance to reduce brake dust emissions. Our previous study indicated that the transfer film formed on the rotor surface affects both the friction coefficient stability and amount of wear. In this study, we investigated how different types of inorganic fillers affect the transfer film formation and its composition in a wear test controlled by temperature. It was confirmed that the main component of the transfer film was iron oxide derived from the rotor. Furthermore, the contained components changed according to the appearance of the rotor surface after each wear test. When the brake pad contained potassium lithium titanate, a transfer film was formed uniformly and stably, the amount of wear was small, and the friction coefficient was stable. In addition, the iron oxide of the transfer film incorporated components such as titanium and barium that were dispersed uniformly. The hardness of the rotor surface after the test was higher than that of the pure iron oxide. This study characterized the composition and physical properties of the transfer film obtained on the rotor surface when using copper-free NAO brake pads. Increased control of the state of this interface may be used to improve the friction characteristics of these systems in the future. Therefore, controlling the transfer film on the rotor surface, which changes during friction, is an important factor to consider when improving brake pads.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
Special Offer: Download multiple Technical Papers each year? TechSelect is a cost-effective subscription option to select and download 12-100 full-text Technical Papers per year. Find more information here.
We also recommend:
TECHNICAL PAPER

SAFE BRAKES FOR PASSENGER CARS

530256

View Details

TECHNICAL PAPER

Development of Advanced Reinforced Aluminum Brake Rotors

950264

View Details

TECHNICAL PAPER

Ceramic-Metal Joining for Turbine Applications

810206

View Details

X