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The heat-resistant automotive bearing L90 is an advanced, durable product designed to withstand extreme conditions and high temperatures. It is constructed from stainless steel with a heat-resistant coating, offering exceptional resistance to heat, wear, and corrosion. The bearing complies with international standards such as ISO 9001 and DIN 625, ensuring reliable performance. Its dynamic and static load capacities reach 12 kN and 6.5 kN, respectively, enabling smooth, frictionless operation even under heavy loads.
The L90 bearing features dual nitrile rubber seals that prevent dust and moisture ingress. It operates efficiently within a temperature range of -40°C to +250°C, making it ideal for heavy-duty, industrial, and military vehicles. Pre-lubricated with high-temperature grease, it requires minimal maintenance. Its standard dimensions—45mm inner diameter, 90mm outer diameter, and 20mm thickness—are designed in accordance with global engineering standards for optimal compatibility and performance.
WEBSITE: Automotive refractory bearing L90 Iran
The L90 automotive heat-resistant bearing is an engineered product with advanced design, developed for heavy-duty applications and harsh operating conditions. This bearing is constructed from heat-treated chromium steel and reinforced with a ceramic heat-resistant coating, providing exceptional resistance to high temperatures up to +300°C, wear, and chemical corrosion. Its structure complies with ISO 15242-1 and DIN 628 standards, ensuring high dimensional accuracy.
The dual-seal design, combining metal and fluorocarbon rubber Viton, effectively prevents the ingress of foreign particles and moisture. With a dynamic load capacity of 14 kN and static load capacity of 7.5 kN, this bearing is ideal for commercial vehicles, construction machinery, and industrial systems. Its precise dimensions include an
inner diameter of 45 mm, outer diameter of 90 mm, and thickness of 22 mm. Pre-lubricated with lithium complex-based high-temperature grease, it ensures extended service life even in high-stress environments.