
The 314MFG is a single-row deep groove ball bearing with a 70mm bore and 150mm outer diameter, crafted from sturdy chrome steel. It manages radial loads up to 25628 lbf and operates smoothly at speeds up to 5000 RPM.
Its open design simplifies maintenance, while the chrome steel cage enhances durability. The bearing performs reliably in temperatures ranging from -30°C to 120°C.
This model is interchangeable with SKF bearings, offering a practical replacement option. Suitable for applications like electric motors or pumps where radial loads are prevalent.
Weighing 2.75kg, it balances strength and size effectively. Compliant with RoHS and REACH standards for safe usage.
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Performance Features of 314MFG Bearing
314MFG Bearing is built with chrome steel rings and balls, offering strong resistance to radial loads.
Its dynamic radial load capacity reaches 25628 lbf, making it suitable for demanding applications.
The single-row deep groove design ensures smooth operation and efficient load distribution.
With a maximum speed of 5,000 rpm, it balances performance and durability.
Why Choose 314MFG Bearing for Precision Tasks?
314MFG Bearing features ABEC 1 tolerance class, ensuring reliable precision in various applications.
The chrome steel construction provides excellent wear resistance, extending its service life.
Its open design allows for easy lubrication, reducing maintenance needs.
Operating within a temperature range of -30°C to 120°C, it adapts to diverse environments.
Designed for Durability: 314MFG Bearing
314MFG Bearing’s chrome steel cage keeps the balls aligned, minimising wear and tear.
Its static radial load capacity of 22931 lbf ensures stability under heavy loads.
The deep groove design enhances load distribution, improving overall performance.
With a width of 35 mm, it fits seamlessly into various machinery setups.
How Does 314MFG Bearing Reduce Friction?
314MFG Bearing’s smooth chrome steel surfaces minimise friction during operation.
The deep groove design ensures even load distribution, reducing stress on components.
Its precision engineering allows for quiet and efficient performance.
Weighing 2.75 kg, it offers a sturdy yet manageable solution for industrial use.
Steel vs Ceramic Bearings: Strengths of 314MFG Bearing
314MFG Bearing’s chrome steel construction provides excellent durability and cost-effectiveness.
It handles dynamic radial loads up to 25628 lbf, making it reliable for heavy-duty tasks.
The open seal type allows for easy inspection and maintenance.
With a bore diameter of 70 mm, it accommodates various shaft sizes efficiently.
Industrial Uses of 314MFG Bearing
314MFG Bearing is commonly used in heavy machinery like conveyor systems and industrial fans, where its radial load capacity ensures smooth operation. The open design allows for easy lubrication, making it suitable for high-temperature environments.
In automotive applications, 314MFG Bearing supports components such as wheel hubs and transmissions, providing reliable performance under constant stress. Its metric sizing ensures compatibility with a variety of vehicle models.
For automation equipment, 314MFG Bearing’s chrome steel construction offers durability in robotic arms and assembly lines. The ABEC 1 tolerance class ensures consistent precision in repetitive tasks.
Where Is 314MFG Bearing Used?
You’ll often find 314MFG Bearing in agricultural machinery, where its robust design handles heavy loads in tractors and harvesters. The wide temperature range makes it adaptable to outdoor conditions.
In household appliances like washing machines, 314MFG Bearing reduces noise and vibration for quieter operation. Its static radial load capacity ensures long-term reliability in daily use.
Built for Heavy-Duty Use: 314MFG Bearing
314MFG Bearing excels in construction equipment, such as cranes and excavators, where its dynamic radial load capacity is crucial. The chrome steel cage enhances durability in dusty environments.
For packaging machinery, 314MFG Bearing provides smooth rotation in high-speed bottling lines. Its ISO P0 tolerance ensures consistent performance under continuous operation.
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