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SKF 6308-2RS1NR is a 40mm bore deep groove ball bearing, double sealed with NBR rubber seals on both sides and a snap ring groove for axial location. It features a sheet metal cage and normal internal clearance. Suitable for electric motors, pumps, and general industrial machinery.
MODEL 6308-2RS1NR
$86.44 Each
Prices are subject to change
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Typically Ships in: 1 day
Returnable:No
Basic Dynamic Load Rating
42.3 kN
Basic Static Load Rating
24 kN
Bearing Outer Ring Locating Feature
Snap ring (fitted)
Bore Diameter
40 mm
Bore Type
Cylindrical
Cage
Sheet metal
Clearance
Normal
Coating
Without
Dimension Type
Metric
Filling Slots
Without
I.D.
1.181 in
Inner Diameter (mm)
40.000
Limiting Speed
5000 r/min
Locating Feature Bearing
Snap ring (fitted)
Lubricant
Grease
Lubricant (in Bearing)
Grease
Matched Arrangement
No
Material
Bearing steel
Material/Treatment
Bearing steel
Number of Rows
1
O.D. (in)
2.165
Outer Diameter (mm)
96.500
Pack Height
106 mm
Pack Length
104 mm
Pack Width
29 mm
Radial Internal Clearance
C0
Relubrication Feature
Without
Seal Type
Contact
Sealing
Seal on both sides
Sealing Type
Contact
SKF Performance Class
SKF Explorer
Tolerance Class
Class P6 (P6)
Width
23 mm
Width (mm)
23.000
SKU: 320006
Bearing purchase
Good price and fast delivery!! Also a pleasure doing business with MROSupply.com!!
Read moreSKU: 2069041
Purchase of bearing
exactly what we needed and it showed up in only 1 day thank you so much.
Read moreSKU: 2067505
Skf 6205-2z/gjn
Item is exactly what I was looking for. Like always you get high quality with SKF
Read moreHow long does a 6300 bearing last?
Under normal operating conditions (constant speed, proper lubrication, rated load), a 6300 typically lasts 10,000–50,000 operating hours. This varies widely based on: cleanliness (contamination cuts life drastically), lubrication type (inadequate grease accelerates wear), speed (running at max speed reduces lifespan), and load (light duty extends it). Monitor for unusual noise or vibration—that's your early warning sign. Most MRO pros replace on condition (vibration/noise) rather than by calendar.
When should I use a 6300 bearing vs. other bearing types?
Use 6300 deep groove ball bearings for general industrial applications where you need a compact, low-friction bearing that handles both radial and axial loads. They're ideal for small motors, fans, pumps, and gear drives. Angular contact bearings (like 7300) are better for heavy thrust loads; cylindrical roller bearings handle higher radial loads but don't accommodate axial movement. For most MRO applications—pump shafts, motor spindles, compressor fans—the 6300 is the default choice.
What's the difference between 6300, 6300-ZZ, and 6300-2RS?
6300 (Open): Maximum speed (18,000 RPM, grease-lubricated; 24,000 RPM, oil-lubricated). Best for high-speed applications where heat dissipation matters. Requires manual lubrication. 6300-ZZ: Steel dust shields on both sides, no contact with the bearing. Speed drops to ~16,200 RPM but provides basic debris protection. Good for electronics, cleanroom motors, light industrial work. 6300-2RS: Contact seals on both sides trap grease inside and keep contaminants out. Speed rated ~12,600 RPM. Use in wet, dusty, or outdoor environments where moisture is a concern.
What load can a 6300 bearing handle?
For the standard 6300 (10mm bore): - Dynamic Load Rating (Cr): 7.65 kN (779 kg / 1,720 lbs) — maximum rotating load - Static Load Rating (C0): 3.48 kN (365 kg) — maximum stationary load These ratings are conservative; the bearing can handle brief overloads, but continuous operation above the dynamic rating shortens bearing life. For heavy industrial duty or shock loads, step up to a larger size (6305, 6310) with higher load capacity.
What size 6300 bearing do I need?
6300 is a specific size: 10mm bore × 35mm OD × 11mm width. If your shaft is 10mm, a 6300 fits. The "6300 series" spans multiple sizes (6305 is 25mm bore, 6310 is 50mm bore, etc.), but "6300" alone refers to the 10mm variant. Measure your shaft diameter first—if it's 10mm, you need 6300; if it's 25mm, you need 6305. Most suppliers stock the full range.
What is the difference between single-row and double-row ball bearings?
Single-row ball bearings contain one line of balls and handle radial and light axial loads. Double-row angular contact ball bearings have two parallel rows of balls in a single housing, capable of accommodating heavy radial loads and axial loads in both directions simultaneously. Double-row bearings are used in heavier equipment, high-speed machinery, or applications requiring support in both load directions, such as gearboxes and precision spindles.
What do ABEC ratings mean and which should I use?
ABEC (Annular Bearing Engineering Committee) ratings define five precision classes—ABEC 1, 3, 5, 7, and 9—with progressively tighter tolerances on bearing dimensions and runout. Higher ABEC ratings improve bearing precision and speed capability, but ABEC ratings do NOT specify load capacity, ball quality, material hardness, lubrication, or noise. For most industrial MRO applications, ABEC-1 or ABEC-3 bearings are sufficient.
What are speed ratings for ball bearings and why do they matter?
ABEC precision classes enable ball bearings to operate reliably at higher speeds by reducing internal runout and friction. Speed capability is often expressed using the DN value (bore diameter in mm × RPM). Using a bearing beyond its speed capability causes excessive heat generation, reduced lubricant film, and premature wear.
What is the difference between open, sealed, and shielded ball bearings?
Open Bearings have no seals or shields and require external lubrication. Sealed Bearings have rubber or polymer seals that trap lubricant and block contaminants. Shielded Bearings use non-contact metal shields that exclude large particles while generating minimal friction.
What are ball bearings used for?
Ball bearings are precision rolling-element bearings with balls rolling between inner and outer races. They are used in industrial machinery, motors, pumps, spindles, conveyors, and precision equipment to reduce friction and enable smooth rotation under radial loads (perpendicular to the shaft) and some axial loads (along the shaft). While ball bearings have lower load capacity than roller bearings due to point contact between balls and races, their lower friction and cost make them essential across industrial MRO applications.
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.
How should I maintain and lubricate bearings?
Lubrication Importance — Improper lubrication causes over 40% of bearing failures. Proper bearing lubrication prevents friction damage, dissipates heat, protects against corrosion, and acts as a barrier against contaminants (dust, moisture, debris). Lubrication Selection — Choose between grease and oil based on: - Grease: Suitable for low-to-medium speed, sealed bearings, and applications without continuous circulation. Easier to apply and retain. Common for motors, household appliances, and sealed units. - Oil Mist or Circulating Systems: Better for high-speed applications, high-temperature environments, and heavy-load machinery where heat dissipation is critical. Best Practices: 1. Map all lubrication points and create a maintenance schedule. 2. Use the correct lubricant type and viscosity grade specified by the bearing manufacturer. 3. Store lubricants in sealed, labeled containers away from moisture and contaminants. 4. Monitor bearing temperature and vibration; unusual heat or noise may indicate inadequate lubrication or bearing wear. 5. Replace bearings before reaching L10 life if contamination or lubrication failure is detected.
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 is a bearing and what does it do?
A bearing is a mechanical component that enables smooth rotational or linear motion by reducing friction between moving parts. Bearings support loads and facilitate the transfer of forces between moving elements, preventing direct metal-to-metal contact that would cause wear and heat buildup. Rolling element bearings contain balls or rollers that rotate within races (raceways) to minimize friction. Common types include ball bearings (used for moderate loads and high speeds), roller bearings (used for heavy loads at medium speeds), and angular contact bearings (designed for combined radial and axial loads). Bearings are essential in industrial equipment including motors, pumps, compressors, gearboxes, turbines, and conveyor systems.
What bearing materials are available and which should I use?
Standard bearing materials include: - Chrome Steel — Premium bearing steel used by SKF, NSK, Timken, and most manufacturers. Offers excellent hardness, fatigue resistance, and durability in standard industrial applications. Most common for ball and roller bearings. - Stainless Steel — Provides corrosion resistance for applications in wet, humid, or chemically corrosive environments. Used in food processing, marine, and pharmaceutical equipment. - Ceramic Hybrid Bearings — Combine steel races with ceramic rolling elements. Offer reduced friction, lower heat generation, and higher temperature capability. Used in high-speed, high-precision applications and aerospace. - Polymeric Bearings — Utilize fluoropolymer composites with embedded graphite or PTFE. Provide low friction in high-speed applications where lubrication film breakdown would be problematic. Material selection depends on operating environment (temperature, moisture, chemical exposure), speed, load, and precision requirements. Standard chrome steel bearings suit most industrial MRO applications.
What is bearing life (L10) and how does it affect my equipment maintenance?
L10 Life Definition (ISO 281) — L10 is the basic rating life at which 90% of a large group of identical bearings are statistically expected to survive under constant load and speed. It is calculated in millions of revolutions using the formula: L10 = (C/P)^p, where C is the basic dynamic load rating, P is the equivalent dynamic bearing load, and p is the life exponent (3 for ball bearings). Converting L10 to Operating Hours — To express L10 life in hours: L10h = (L10 × 10^6) / (60 × n), where n is rotational speed in RPM. For example, a bearing with L10 = 1,000 million revolutions operating at 3,600 RPM has approximately L10h ≈ 4,630 hours. Modified Life (L10a) — Actual bearing life also depends on lubrication quality, contamination, speed, temperature, and bearing accuracy. ISO 281 defines a modified life factor (a₁ × aISO) that adjusts the theoretical L10 for these real-world conditions. High-quality lubrication and proper maintenance can extend bearing life significantly; poor lubrication or high contamination reduces it. Why It Matters for Maintenance — L10 life helps you schedule preventive maintenance, budget for bearing replacement, and select bearings adequate for your duty cycle.
What are dynamic and static load ratings, and why do they matter?
Static Load Rating (C₀) — The maximum load a stationary or slowly rotating bearing can support without permanent deformation of its rolling elements or raceways. Defined by ISO 76 as the load producing 0.01% permanent deformation of the rolling element diameter. Static load capacity is the limiting factor when a bearing operates at very low speeds or remains stationary under heavy loads. Dynamic Load Rating (C) — The constant load a bearing can endure for a specified number of revolutions (the L10 life, at which 90% of identical bearings are expected to survive). Dynamic load rating determines how long a bearing will last under rotating or oscillating motion. ISO 281 defines the L10 calculation using the formula: L10 = (C/P)^p, where C is dynamic load rating, P is equivalent dynamic load, and p is the life exponent (3 for ball bearings, 10/3 for roller bearings). Why They Matter — Static load rating determines if a bearing can handle peak loads without permanent damage (even if not rotating). Dynamic load rating determines operational life. For high-speed applications, dynamic rating is critical. For low-speed or stationary loads, static rating may be the limiting factor. Always verify both ratings against your application's load profile.
How do I choose the right bearing for my application?
Bearing selection depends on five key factors: 1. Load Type and Direction — Determine whether your application has radial loads (perpendicular to shaft), axial loads (along the shaft), or combined loads. Deep groove ball bearings suit primarily radial loads; tapered roller bearings excel at combined loads; thrust bearings handle pure axial forces. 2. Rotational Speed — Ball bearings support higher speeds with lower friction. Roller bearings are better for medium-speed, heavy-load applications. Verify bearing speed ratings against your operating RPM. 3. Load Capacity — Select a bearing with adequate load capacity for your application. Basic dynamic load rating (C) and basic static load rating (C₀) determine how much load the bearing can safely carry. 4. Lubrication Requirements — Choose between grease and oil lubrication based on speed, temperature, and load. High-speed or high-temperature applications typically require oil circulation; lower-speed applications can use grease. 5. Precision and Rigidity — Evaluate your application's tolerance for runout deviation. High-precision applications require tighter tolerances and higher-grade bearings.
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| Brand | ABB |
| Model | TA25DU-19 |
SKU: 320006
Bearing purchase
Good price and fast delivery!! Also a pleasure doing business with MROSupply.com!!
Read moreSKU: 2069041
Purchase of bearing
exactly what we needed and it showed up in only 1 day thank you so much.
Read moreSKU: 2067505
Skf 6205-2z/gjn
Item is exactly what I was looking for. Like always you get high quality with SKF
Read moreDisclaimer: The return policy information shown below is merely an excerpt from SKF's General Conditions of Sale.
RETURN OF GOODS FOR CREDIT
Goods will not be accepted for return without prior written approval from SKF. The return freight must be prepaid by the Buyer. Unless return of Goods is due to Supplier error, Goods returned will be subject to a credit service fee of $25.00 or 15% of the credit value, whichever is greater. An additional service fee may apply is further inspection is required at the discretion of SKF