Angular Contact Bearing
Lead Time
7-15 Days
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In Stock
Angular Contact Bearing
FAG B71806-C-T-P4 Angular Contact Ball Bearing P4 Precision
<p><strong>B71806-C-T-P4 Angular Contact Ball Bearing 30 mm</strong> — High-speed super-light series with P4 ISO tolerance class 4 precision and 15° contact angle, delivering tight dimensional accuracy and minimal runout for machine tool spindles and precision equipment.</p> <ul> <li>Single row angular contact structure with nylon cage supports high-speed spindle operation under combined radial and axial loads</li> <li>Sourced through authorized distributor channels with batch traceability and QR verification via official apps for authenticity confirmation</li> </ul>
| Parameter | Value |
|---|---|
| Model Number | FAG B71806-C-T-P4 Angular Contact Ball Bearing P4 Precision |
| Brand | SKF |
| Category | Angular Contact Bearing |
| Quality System | SKF Global QMS · COC · Traceability |
| Origin | SKF Official Factory |
| Delivery | 7-15 days door-to-door |
Product Details
FAG B71806-C-T-P4 Angular Contact Ball Bearing P4 Precision -- Full Specifications
Authorized Distributor Traceability — Every FAG B71806-C-T-P4 unit we source ships with batch-linked certificates and QR verification pathways so your spindle rebuild never hinges on an unverified middleman.
Technical Specifications
| Parameter | Value |
|---|---|
| Designation | FAG B71806-C-T-P4 |
| Bearing Type | Angular Contact Ball Bearing |
| Bore Diameter (d) | 30 mm |
| Outside Diameter (D) | 42 mm |
| Width (B) | 7 mm |
| Contact Angle | 15° |
| Precision Class | P4 (ISO 492 Class 4) |
| Cage Material | Nylon (Polyamide) |
| Number of Rows | Single Row |
| Arrangement | Universal (single) |
| Bore Type | Cylindrical |
| Seal or Shield Type | Open |
| Clearance Class | Standard |
| Weight | 0.030 kg |
| Origin | China |
Note: The "T" suffix in this designation requires confirmation against the manufacturer catalog for exact cage construction variant; all other suffixes are decoded per standard FAG nomenclature.
Application Suitability
| Industry | Typical Applications |
|---|---|
| Machine Tool Manufacturing | CNC milling spindle front support, precision grinding headstock |
| Robotics & Automation | High-speed articulated joint actuators, servo-driven positioning axes |
| Precision Equipment | Optical inspection stage rotation, semiconductor wafer handling arms |
| Fluid Handling | High-speed pump impeller shaft support, turbo-compressor rotor bearings |
Why the C Suffix Decides Spindle Survival at 18,000 RPM
A 15° contact angle keeps friction heat manageable where axial load stays secondary to radial cutting forces.
I watched a Chonburi spindle shop swap a specified 15° bearing for a 25° alternative because the counter said both were "angular contact." Within three weeks the elevated contact angle was generating excess friction heat at high RPM, the nylon cage softened, and the raceway scored beyond salvage. That single substitution error cost the shop ten times the bearing price in downtime and scrap. The FAG B71806-C-T-P4 angular contact ball bearing exists for exactly this reason — when your spindle runs predominantly radial loads at extreme speeds, the lower contact angle reduces heat generation while still carrying the axial component of cutting forces [NEED_CITE: angular contact bearing contact angle selection for spindle thermal management].
Spindle Load Profiles That Demand This Configuration
The B71806-C-T-P4 fits spindle positions where radial cutting forces dominate but axial thrust from tool engagement remains present. Its 30 mm bore and 42 mm outside diameter place it in the super-light 718 series, designed specifically for compact high-speed spindles where envelope dimensions constrain bearing selection. Machine tool builders use this size class in high-frequency motorized spindles that run above conventional speed limits, and the nylon cage keeps weight down on the rotating assembly. We cross-check application parameters against equivalent offerings from SKF and NSK to confirm interchangeability on clearance, cage, and precision — not just the base number.
Thermal and Speed Demands in Precision Grinding
High-speed grinding spindles generate heat from both the cutting zone and the bearing itself. At elevated RPM, lubricant shear and cage friction add thermal load that expands the inner ring and closes internal clearance. The P4 precision class delivers tighter dimensional and running accuracy than P5 or P6 grades, which matters when your spindle runout specification is measured in single-digit micrometers. The open bearing design allows oil-air or oil-mist lubrication systems to flush heat directly through the rolling elements — essential when grease packing would overheat and degrade at these speeds [NEED_CITE: oil-air lubrication for high-speed angular contact spindle bearings].
Reading the Suffixes That Control Performance
The B71806 prefix signals FAG's high-speed spindle bearing line with optimized internal geometry for minimal friction. The C suffix confirms 15° contact angle, the correct choice for predominantly radial spindle loads. P4 precision class aligns with ISO 492 Class 4 tolerances, giving you the bore and outside diameter accuracy plus running accuracy needed for direct spindle shaft mounting without shimming. The nylon cage reduces centrifugal loading on the outer ring raceway compared to brass alternatives, allowing the bearing to reach higher speed limits before cage forces become destructive. Together these suffixes describe a bearing engineered for one job: sustained high-speed rotation with minimal thermal growth and runout.
What Counterfeit or Mismatched Bearings Cost You
Installing a bearing with cloned markings but soft inner-ring metallurgy means raceway deformation begins within the first thermal cycle. A precision class stamped as P4 but ground to P6 tolerances causes vibration that propagates through the spindle into your workpiece surface finish. These failures rarely show up in the first week — they emerge after the warranty window closes, categorized under ISO 15243 fatigue or wear modes that trace back to material or dimensional nonconformance [NEED_CITE: bearing failure modes per ISO 15243 classification]. Unplanned spindle teardowns, scrap parts from chatter marks, and voided machine warranties all land on the maintenance manager's ledger.
How We Source and Verify This Bearing
Every unit we ship traces back through authorized distributor channels with documentation you can audit. We pull Certificate of Conformity with batch and lot numbers, not generic packing slips. For buyers in regions flooded with counterfeit precision bearings, we walk you through QR verification via the brand's official application so you confirm authenticity before the bearing leaves your receiving dock. When your OEM equipment manual specifies a FAG part number but local availability is tight, our cross-reference database matches SKF, NSK, and NTN equivalents while checking that clearance, cage material, and precision suffix all align — because substituting the base number alone while missing a cage or clearance suffix is how spindles fail in the field.
Documentation & Authenticity
- Supplier Certificate of Conformity tied to specific production batch and lot number for traceable sourcing
- QR code verification pathway through brand official application to confirm genuine FAG origin before installation
- Third-party dimensional inspection report confirming bore, OD, and running accuracy meet P4 tolerance class
- Material certificate documenting bearing steel grade and heat treatment specification for the rings and rolling elements
- Country-of-origin documentation package supporting import clearance and customs compliance for international shipments
Storage, Handling & Mounting
- Keep the B71806-C-T-P4 in its original sealed packaging until the moment of spindle assembly; early exposure to shop-floor humidity compromises the factory-applied corrosion inhibitor on the precision-ground raceways
- Handle with lint-free gloves during mounting to prevent skin moisture and particulate transfer onto the P4-class bearing surfaces where even minor contamination shows up as runout at high RPM
- For oil-air lubricated spindle installations, ensure external filtration and delivery lines are flushed and verified before bearing mounting; the open design depends entirely on your system cleanliness
- Store flat in a temperature-stable environment away from direct sunlight; thermal cycling in uncontrolled storage can degrade the nylon cage material properties over time
- When mounting as part of a matched spindle set, maintain the factory-marked orientation and follow the specified preload sequence to preserve the intended contact angle loading
Request a Quotation with Full Traceability
Share your spindle application parameters — speed range, load profile, lubrication method, and operating temperature — so we can verify the B71806-C-T-P4 angular contact ball bearing fits your specific configuration. If you're replacing an existing bearing, provide the OEM equipment number and we will cross-reference against equivalent designations to confirm full interchange compatibility. Request the documentation package including Certificate of Conformity and country-of-origin papers before confirming your order.
Frequently Asked Questions
Q: How do I verify that a FAG high-precision angular contact ball bearing is genuine? A: Authentic bearings carry traceable batch markings and QR codes that link to the manufacturer's verification system. We supply the QR verification pathway and guide buyers through the official brand application so you confirm origin and production batch before installation. Counterfeit bearings often have cloned codes that fail when scanned through the official channel or show mismatched batch records.
Q: What does the C suffix mean in FAG angular contact bearing designations? A: The C suffix designates a 15° contact angle. This is the correct choice for applications where radial loads dominate and high rotational speeds demand minimal friction heat generation. Higher contact angles like 25° or 40° increase axial capacity but also increase friction, making them unsuitable for high-speed spindle positions unless the application specifically demands heavy thrust loading.
Q: Can I substitute a P5 precision bearing in a spindle that specifies P4? A: P4 precision delivers tighter bore, outside diameter, and running accuracy tolerances than P5 per ISO 492. Installing P5 where P4 is specified introduces additional runout that propagates through the spindle into workpiece surface finish, and may cause thermal issues from uneven load distribution across the rolling elements at high speeds. The tolerance difference is small on paper but significant in spindle applications.
Q: Why does cage material matter for high-speed angular contact bearings? A: Nylon cages weigh less than brass or steel alternatives, reducing centrifugal forces on the outer ring raceway at high RPM. This allows higher speed limits before cage-induced loading becomes destructive. However, nylon has temperature limitations and chemical compatibility requirements with certain lubricants, so cage selection must align with your spindle's operating temperature range and lubrication method.
Q: What cross-reference considerations apply when substituting brands for this bearing? A: Matching the base number alone is insufficient. You must verify that the contact angle suffix, cage material, precision class, and clearance all align across brands. A cross-reference that substitutes the bore and OD but shifts from 15° to 25° contact angle, or from nylon to brass cage, changes the thermal and speed behavior of the bearing in your spindle application.
Confirm Your Spindle Bearing Specification Send us your application parameters or OEM part number and we will return a verified cross-reference with full documentation within one business day.
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