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71936 Cdga/P4a Angular Contact Ball Bearing P4A Precision
Cross-Reference Triad Alignment — We match clearance, cage material, and precision suffixes rather than just the base number to ensure your spindle runs true.
| Parameter | Value |
|---|---|
| Designation | 71936 Cdga/P4a |
| Bearing Type | Angular Contact Ball Bearing |
| Bore Diameter (d) | 180 mm |
| Outside Diameter (D) | 250 mm |
| Width (B) | 33 mm |
| Contact Angle | 15° |
| Precision Class | P4A |
| Material | Bearing Steel |
| Arrangement | Universal Pairing |
| Origin | Germany / Japan / Sweden / Malaysia / China |
| Industry | Typical Applications |
|---|---|
| Machine Tool Manufacturing | High-speed CNC machining center spindle front and rear supports |
| Precision Engineering | Rotary tables and indexing heads requiring minimal runout |
| Industrial Pumps | High-speed centrifugal pump shaft locating arrangements |
| Robotics | Articulated joint actuators demanding high rigidity and low friction |
Matching the base designation while ignoring suffix variations guarantees thermal binding in high-speed spindles.
Procurement teams often source replacements based solely on the numeric prefix, overlooking critical internal design codes. When a standard P0 or P5 grade is forced into a housing designed for P4A tolerances, the resulting vibration quickly ruins the surface finish of machined parts. Furthermore, installing a single bearing where a universally paired set is required disrupts the axial preload balance, leading to premature cage failure under continuous high-RPM operation .
When outfitting a CNC machining center, the 71936 Cdga/P4a angular contact ball bearing provides the exact dimensional stability needed for heavy cutting loads. Our technical team reviews your spindle housing tolerances to confirm that the universal pairing arrangement will maintain the correct preload once clamped. This prevents the micro-movements that typically cause chatter marks on finished metal components.
Spindle environments generate intense friction heat, which directly impacts internal clearance and lubrication film thickness. A 15° contact angle minimizes friction compared to steeper variants, but the lubrication strategy must still match the rotational speed to prevent grease degradation. If the cooling system fails or oil-air lubrication drops out, the thermal expansion can quickly eliminate the internal clearance, causing the bearing to seize .
The P4A designation indicates standard Class 4 dimensional accuracy combined with enhanced running accuracy, which is vital for minimizing spindle runout at high speeds. The 15° contact angle optimizes the load distribution for combined radial and axial forces typical in milling operations. The universal pairing setup allows these bearings to be mounted in back-to-back, face-to-face, or tandem configurations while maintaining a consistent light preload, eliminating the need for custom grinding of spacer rings.
Ignoring the specific precision and pairing codes often results in unplanned downtime that halts an entire production line. A mismatched preload arrangement causes excessive heat generation, which degrades the lubricant and accelerates fatigue spalling on the raceways. According to failure analysis frameworks, these installation and selection errors void equipment warranties and lead to catastrophic spindle damage that requires complete rebuilds .
Our authorized channels guarantee that every 71936 Cdga/P4a angular contact ball bearing arrives with verifiable batch traceability, protecting you from cloned QR codes and soft inner rings. We do not just ship boxes; we perform a cross-reference review to ensure the clearance and precision suffixes perfectly align with your OEM equipment requirements. This application-based selection review prevents the costly mistake of receiving a standard clearance bearing when a thermally stable variant is actually required.
To ensure the selected configuration matches your exact spindle requirements, please provide your operating parameters including radial and axial loads, maximum RPM, and operating temperature range. Sharing the original OEM equipment number allows our engineering team to perform a precise cross-reference check. This technical复核 guarantees that the internal design and preload arrangement will withstand your specific machining conditions.
Q: How does P4A precision differ from standard P4 in spindle applications?
A: While both share the same dimensional tolerances, P4A specifies enhanced running accuracy, particularly for inner and outer ring radial runout. This tighter control minimizes vibration and heat generation at high speeds, ensuring superior surface finishes on machined parts compared to standard P4 bearings.
Q: Why must cross-referencing include pairing suffixes and not just the base number?
A: The base number only defines the physical dimensions. The suffixes dictate the internal contact angle, preload level, and pairing arrangement. Installing a bearing with the wrong preload will cause either excessive play or thermal binding, leading to rapid failure regardless of dimensional fit.
Q: How can I verify the authenticity of the received bearings?
A: Every genuine bearing features a unique traceability code. You can scan this code using the manufacturer's official mobile application to verify the production batch, origin, and technical specifications, ensuring the product has not been counterfeited or repackaged.
Q: What information is needed to confirm the correct preload for my spindle?
A: We require your spindle's maximum operating speed, expected axial and radial cutting loads, and the specific mounting configuration. This data allows us to calculate the required preload force to maintain rigidity without generating excessive friction heat.
Our 5-step process ensures every order is engineered, validated, and supported for optimal performance.
Technical needs assessment
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