Nylon vs Steel vs Brass: Which Bearing Cage Survives Heat?
Compare Nylon (TN9), Pressed Steel, and Machined Brass (M) bearing cages under high heat. Explore 4 practical case scenarios to prevent premature cage failure.
Read articleCompare leading global bearing brands and explore compatible TFL alternatives by model, product type and application.
View all Brands GuideMatch manufacturer part numbers with interchangeable TFL bearing options and model-selection support.
Browse bearing solutions by equipment, operating environment and industry.
Practical guidance on bearing selection, applications, maintenance and sourcing.
Compare Nylon (TN9), Pressed Steel, and Machined Brass (M) bearing cages under high heat. Explore 4 practical case scenarios to prevent premature cage failure.
Read article
Find answers about quality, orders, technical support and after-sales service.
Use our articles, reference tools and customer resources to support sourcing decisions.
Learn about TFL Bearing, our quality systems and supply capabilities.
View all About & CapabilitiesAccess engineering support and services throughout the purchasing process.
View all Services & SupportExplore customer projects, sourcing partnerships and ways to contact our team.
View all Work With TFL
The 7036 CD/P4ADGB is a super precision angular contact ball bearing with a 180mm bore and 280mm outer diameter, crafted from durable chrome steel. It handles radial loads up to 87,750 lbf and operates smoothly at speeds up to 16,250 RPM.
Its 15° contact angle and universal matching design allow flexible arrangements like back-to-back or face-to-face. The phenolic cage ensures quiet, long-lasting performance even in demanding conditions.
This bearing comes pre-lubricated and works well in temperatures from -30°C to 110°C. It’s part of a matched set of two bearings for enhanced stability.
Ideal for high-precision applications like machine tool spindles or industrial gearboxes where accuracy and reliability are crucial. Weighing 18.2kg, it’s built for heavy-duty performance while maintaining precision standards.
Performance Features of 7036 CD/P4ADGB Bearing
7036 CD/P4ADGB Bearing is crafted with chrome steel rings and balls, ensuring high precision and durability.
Its 15° contact angle and universal matching design allow flexible mounting in back-to-back, face-to-face, or tandem arrangements.
The phenolic cage maintains ball alignment, reducing friction and enhancing performance under dynamic radial loads up to 87,750 lbf.
With a maximum speed of 16,250 rpm, it excels in high-speed applications while maintaining stability.
7036 CD/P4ADGB Bearing operates efficiently in temperatures ranging from -30°C to 110°C, suitable for varied environments.
Its P4A tolerance class guarantees exceptional accuracy, making it ideal for precision machinery.
The open design and preloaded configuration ensure smooth operation with minimal maintenance requirements.
Weighing 18.2 kg, it balances robustness with precision engineering for demanding industrial uses.
Industrial Uses of 7036 CD/P4ADGB Bearing
This bearing is commonly used in high-precision machine tools, where its angular contact design ensures accurate spindle rotation. The universal matching feature allows flexible arrangements for different load requirements.
In aerospace applications, 7036 CD/P4ADGB Bearing handles radial and axial loads in turbine systems, thanks to its phenolic cage and chrome steel construction. Its light preload setting helps maintain stability during high-speed operations.
For robotics, 7036 CD/P4ADGB Bearing provides smooth motion control in articulated arms and joints. The P4A tolerance class ensures minimal vibration, which is crucial for precision tasks.
Medical imaging devices benefit from 7036 CD/P4ADGB Bearing’s consistent performance under varying loads. The open design allows for easy lubrication, extending service life in critical equipment.
Automotive testing equipment often relies on 7036 CD/P4ADGB Bearing for its durability and precision. Its tandem arrangement capability makes it suitable for multi-directional load simulations.