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| Bearings Name | New Model | Old Model: | ID(mm) | OD(mm) | Width(mm) | Cr(kN) | Cor(kN) | Grease Lubrication Speed(r/min) | Oil Lubrication Speed(r/min) | Weight(kg) |
| The Truth About IP68 Sealing in Industrial Slewing Ring Bearings | 114.50.3150 | - | 2922 | 3376 | 134 | - | - | - | - | 2150.000 |
| Precision Slewing Bearings for Industrial Robot Arms | 114.28.900 | - | 778 | 1022 | 82 | - | - | - | - | 190.000 |
Industrial bearings are mechanical components used to reduce friction between moving parts and support rotational or linear motion in industrial machinery. They are commonly found in various applications, including manufacturing equipment, automotive systems, aerospace technology, and power generation.
There are several types of industrial bearings, each designed for specific purposes:
Ball Bearings: These bearings use balls to separate the bearing races and minimize friction. They are suitable for high-speed applications and can handle both radial and axial loads.
Roller Bearings: Roller bearings use cylindrical or tapered rollers instead of balls. They distribute loads over a larger surface area, making them ideal for heavy-duty applications with high radial loads.
Thrust Bearings: Thrust bearings are designed to handle axial loads, where the load is parallel to the shaft. They come in various configurations, such as ball thrust bearings and roller thrust bearings.
Plain Bearings: Also known as bushings sleeve bearings, plain bearings consist of a shaft rotating inside a stationary sleeve. They provide low-friction operation but require lubrication.
Needle Bearings: Needle bearings use long, thin rollers (need) with a high length-to-diameter ratio. They are suitable for applications with limited space and high radial loads.
Spherical Bearings: Spherical bearings have an outer ring with a spherical inner surface, allowing for misalignment compensation. They are commonly used in applications where shaft deflection or misalignment occurs.
Ceramic Bearings: Ceramic bearings use ceramic balls or races, offering advantages such as higher speed capabilities, lower friction, and resistance to corrosion and heat. They are often used in demanding applications like high-speed machining and electric motors.
When selecting an industrial bearing, factors to consider include load capacity, speed requirements, operating conditions (temperature, moisture, contaminants), installation space, and maintenance needs. It's essential to consult bearing manufacturers or industry experts to ensure the right bearing type and size for your specific application.