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Most brake systems lose stopping power as they heat up. Carbon ceramic brakes (CCB) do the opposite — and understanding why reveals a lot about where high-performance braking technology is headed.
17
2026
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From August 19 to 21, 2026, the 11th edition of Auto Aftermarket Guangzhou (AAG) opened its doors at the Poly World Trade Expo Center (PWTC), spanning 85,000 square meters across seven exhibition halls and drawing over 1,800 exhibitors from China and abroad. ATS Automotive, a Qingdao-based source factory specializing in brake discs, brake drums, and brake pads with over 16 years of manufacturing experience, took part in the Replacement Parts Zone at booth B1B03, represented on site by Jonny and Steven.
21
08
From December 9 to December 11, 2025, ATS Automotive traveled to the Middle East to participate in Automechanika Dubai 2025 and connect with clients across the region. Aaron and Jason represented the company at this major automotive aftermarket exhibition, bringing our braking solutions directly to the MEA market.
25
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From November 26 to 29, 2025, the global automotive industry converged at the National Exhibition and Convention Center in Shanghai for the highly anticipated Automechanika Shanghai. As a premier Asian trade fair for automotive parts, equipment, and service suppliers, this year’s event spanned 383,000 square meters and hosted over 7,000 exhibitors from 44 countries and regions. ATS Automotive, a leading Chinese OEM specializing in braking systems with over 16 years of expertise, made a significant impact at the exhibition. Showcasing its comprehensive range of high-performance brake discs and brake drums, ATS demonstrated its manufacturing excellence and commitment to road safety on this world-class stage.
In the long iteration of automotive braking technology, the emergence of carbon ceramic brake discs (C/SiC) is undoubtedly a disruptive breakthrough. As a composite new material product with carbon fiber as reinforcement and silicon carbide ceramic as matrix, it perfectly combines the high strength and toughness of carbon fiber with the high temperature and wear resistance of silicon carbide ceramic, breaking the performance bottleneck of traditional braking materials under extreme working conditions. It has gradually penetrated from the aerospace field to high-end automobiles, rail transit and other scenarios, and has become one of the core symbols for measuring the high performance of equipment.
01
Driven by the dual drive of extreme working conditions and demanding performance, the shortcomings of single metal materials have become increasingly prominent - cast iron is wear-resistant but bulky, aluminum alloy is lightweight but has insufficient heat resistance, and stainless steel is corrosion-resistant but costly. Bimetal composite discs rely on the design logic of "combination on demand" to accurately integrate the advantages of the two metals and achieve complementary performance at the interface. They have become core and key components in the fields of automotive braking, petrochemicals, equipment manufacturing and other fields, interpreting the power of collaborative innovation in materials engineering.
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