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NSK 6214ZZNR deep groove ball bearing with 70 mm bore and 125 mm OD. Double metal shields (ZZ) protect against contaminants; snap ring groove (NR) provides axial location in the housing. Suitable for electric motors, pumps, fans, and general industrial applications. 6200 Double Shielded Bearing With Snap Ring
6214ZZNR, 6214 ZZNR, and 6214ZZENR
MODEL 6214ZZNR
NTN Bearing
$186.57
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NSK Bearings
$207.74
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Koyo Bearing
$162.16
Nachi Bearing
$85.00
$207.74 Each
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Bearings The NSK 6214ZZNR is a high-performance single row deep groove ball bearing from the renowned 6200 Series by NSK Bearings. Designed for a wide range of applications, this bearing offers superior performance, durability, and reliability, making it an ideal choice for both automotive and industrial applications.
Key Features
- Design: Single row deep groove ball bearing construction for smooth operation and reduced friction.
- Dimensions: Inner diameter of 70 mm, outer diameter of 125 mm, and a width of 24 mm, optimized for versatile fitting.
- Material: High-quality chrome steel for enhanced strength and wear resistance, ensuring long service life.
- Shielded Configuration: Features metal shields (ZZ) on both sides to protect against contamination and retain lubrication, increasing maintenance intervals.
- Load Capacity: Capable of handling both radial and axial loads in both directions, making it suitable for a variety of applications.
Applications
- Automotive: Ideal for use in wheel hubs, transmissions, and electric power steering systems where reliability and performance are critical.
- Industrial Machinery: Suitable for conveyor systems, pumps, and electric motors where smooth and efficient operation is required.
- General Purpose: Can be used in various machinery and equipment that require robust and efficient bearing solutions.
Benefits
- Improved Efficiency: Reduced friction leads to lower energy consumption and enhanced performance in machinery and vehicles.
- Extended Lifespan: High-quality materials and protective shields contribute to longer service life and reduced maintenance costs.
- Versatile Compatibility: Designed to fit a wide range of applications, providing flexibility in manufacturing and repair processes. --- Product information compiled with AI assistance for reference purposes.
How do I choose the right type of bearing for my application?
Start with the load and how it’s applied. You need to know if you’re dealing with radial loads, axial loads, or a mix of both. Then look at speed, operating environment, and space constraints. For example, ball bearings are great for high speed and lighter loads, while roller bearings handle heavier loads but usually at lower speeds. If there’s contamination, moisture, or heat involved, you may need sealed bearings or specific materials. In most cases, the right choice comes down to matching load type, speed, and environment to the bearing design.
What are the dimensions and typical uses of a 6200 series ball bearing?
A standard 6200 ball bearing has: • 10 mm bore • 30 mm outer diameter • 9 mm width The 6200 series sits within the deep groove ball bearing family and is designed for light to moderate loads at relatively high speeds. You’ll typically find them in electric motors, small gearboxes, pumps, and general industrial equipment. They’re popular because they’re compact, widely available, and cost effective. Different variants exist such as sealed, shielded, or high clearance versions, depending on the application.
What is the difference between deep groove and angular contact ball bearings?
Deep groove ball bearings are the most common type. They’re designed to handle mainly radial loads, but they can also take some axial load in both directions. They’re simple, versatile, and used in everything from motors to conveyors. Angular contact ball bearings are built for combined loads, especially where there’s significant axial force in one direction. They’re often used in pairs and are common in higher precision or higher load applications like pumps and gearboxes. If your load is mostly radial, go deep groove. If axial load matters more, angular contact is usually the better choice.
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