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6326M/C3VL2071 Electrically Insulated Ball Bearings

6326M/C3VL2071 Electrically Insulated Ball Bearings

Anti-Corrosion 6326M/C3VL2071 - with Full Engineering Support

$ 504 /Each
  • Customized Logo: Min. Order 1 Piece
  • Customized Packaging: Min. Order 1 Piece
  • Inventory: In stock
  • Country of Origin: China
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Product Parameters

  • Model 6326M/C3VL2071
  • Equivalent Interchange 6326M/C3VL2071 (SKF); 6326-M-J20C-C3 (FAG);
  • Product Category Electrically Insulated Ball Bearings
  • Coating Suffix VL2071
  • Insulating Coating Types Inner ring insulation coating
  • Manufacturers TFL
  • Bore Diameter 130.0 mm
  • Outside Diameter 280.0 mm
  • Width 58.0 mm
  • Net Weight 17.3kg
  • Basic Dynamic Load Rating 229.0 kN
  • Basic Static Load Rating 216.0 kN
  • Reference Speed 5000.0 r/min
  • Breakdown Voltage (DC) 1000 ~3000 V
  • Layer Thickness 100~500 µm
  • Electrical Resistance 50~200 MΩ
  • Cage Material Brass cage
  • Radial Internal Clearance C3
  • ROHS Compliant
  • REACH Compliant

6326M/C3VL2071 Equivalent Interchange Brands

TFL 6326M/C3VL2071 is a 100% equivalent and direct replacement for large-size insulated bearings from SKF and FAG in terms of mechanical dimensions (130x280x58mm), solid brass cage design (M), C3 clearance, and VL2071 parameters. Customers do not need to perform any secondary machining on existing motor shafts or housings during equipment maintenance. All outgoing products pass strict voltage resistance testing (>1000V DC) and dimensional precision checks.

SKF FAG
6326M/C3VL2071 6326-M-J20C-C3

Why Choose TFL?

Supplying ultra-heavy-duty inner-ring insulated bearings with a 130mm bore, weighing over 15kg, and equipped with a machined brass cage poses strict demands on plasma-spraying uniformity (coating the inner bore is far more difficult than the outer ring) and precision large-bearing tolerances. Relying on a robust premium industrial transmission supply chain network and an ISO 9001 certified quality control system, TFL seamlessly integrates imported high-density alumina spraying technology with heavy machinery standards. We provide high-reliability anti-erosion solutions rivaling top global brands, backed by a professional engineering team for technical selection and diagnostic support. With rapid-response stock availability and No MOQ, TFL is dedicated to helping global clients eliminate lead-time risks on large specialized parts, achieving significant cost optimization.

Features of 6326M/C3VL2071

Common Applications of Electrically Insulated Bearings

TFL 6326M/C3VL2071 inner-ring insulated heavy-duty bearings are exclusively designed for large-scale VFD equipment with restricted housing assemblies that concurrently face extreme radial loads, severe mechanical vibrations, and high-voltage stray currents. Typical applications encompass AC traction motors in rail transit requiring absolute stator grounding, metallurgy heavy fans with water-cooled jackets demanding tight housing fits, and large mining hoists or centrifugal compressors using split housings. This model provides robust mechanical resilience while acting as an irreplaceable rotor electric-erosion barrier in mechanical or electromagnetic shielding designs.

The picture shows two inner ring coating bearings for motor, and the traction motor on the train.

Heavy-Haul Railway Traction Motors

In AC traction motors of heavy-haul locomotives by CRRC and Alstom, motors experience strong common-mode voltages from high-frequency inverters alongside severe mechanical shocks transmitted from the tracks. To meet strict electromagnetic compatibility (EMC) and grounding specifications, the motor end-shield must maintain direct metallic contact with the bearing’s outer ring. This absolutely prohibits outer-ring insulated bearings. TFL 6326M/C3VL2071’s solid brass cage perfectly resists mechanical vibration, while the VL2071 insulation coating completely cuts off shaft current leakage loops. It is a highly recommended safety upgrade component for traction motor overhauls.

heavy duty centrifugal fans and inner ring coating insulated bearings

Heavy Water-Cooled Exhaust Fans in Metallurgy

In heavy centrifugal exhaust fans by Howden operating under continuous high-temperature metallurgical environments, extreme exhaust heat conducts directly along the shaft. The bearing's outer ring is usually mounted in a tight water-cooling jacket for maximum heat-dissipation transfer. Applying a ceramic coating on the outer ring here would block heat dissipation and make the coating highly vulnerable to damage during tight fits. TFL 6326M/C3VL2071 utilizes its inner-ring VL2071 coating to isolate high-frequency shaft currents on the rotor side. Its solid brass cage resists unbalanced airflow vibrations, while its C3 clearance resolves dangerous differential thermal expansion, thoroughly curing inverter-induced electrical erosion.

inner ring coating bearings for centrifugal compressor

Split-Housing High-Pressure Compressors

For large centrifugal compressors by Atlas Copco used in chemical air separation units, the housing often adopts a “top-bottom split” design to facilitate the lifting of large-shaft rotors. This structure imposes micron-level tolerances on the concentricity and surface parameters of the housing bore, leaving no room for outer coated tolerances. TFL 6326M/C3VL2071 resolves this mechanical assembly contradiction with its inner-ring insulation, eliminating the hazards of high-frequency shaft voltages from VFD drives while avoiding localized stress concentrations that an outer coated surface might cause to the split-housing fit. Its robust brass cage further ensures long-term stability for high-pressure compressors.

*The brands and series mentioned are provided for industry illustration only. Final bearing selection should be confirmed through verification of dimensions, clearance class, insulation type, and operating conditions. For selection assistance or technical consultation, please contact the TFL engineering team for support.

Q&A

For a large heavy-duty bearing like the 6326, why choose TFL 6326M/C3VL2071 (inner-ring insulated) instead of a hybrid bearing with ceramic balls?

The core reasons are the balance of "procurement cost" and "heavy-duty service life." The balls of a 6326 are massive; manufacturing high-precision silicon nitride ceramic balls of this size is extremely expensive. Furthermore, under extreme radial loads or heavy shocks, ceramic balls, due to their high elastic modulus, exert higher Hertzian contact stresses on the steel raceways, which slightly reduces the bearing's dynamic load rating. Using TFL's inner-ring insulated bearing retains the excellent impact toughness of steel balls while achieving perfect electrical insulation at a fraction of the cost of hybrid bearings, making it the most cost-effective choice for high-power VFD motors.

Modern VFDs (IGBTs) generate very sharp dv/dt high-frequency pulses. Can the insulation layer of the TFL 6326M/C3VL2071 really withstand such high-frequency electrical shocks?

Absolutely. In addition to high DC resistance, the thickness of TFL's coating (100-500μm) is precisely controlled to provide excellent "low parasitic capacitance" properties. When facing sharp PWM pulses from VFDs, the high-density ceramic layer acts as a high-impedance barrier, drastically reducing the passage rate of high-frequency AC currents. It provides stable resistance even when facing transient peak discharge voltages up to 3000V.

If the spare 6326M/C3VL2071 insulated bearing is stored in a high-humidity warehouse for a long time, will its insulation coating fail or experience degraded rust prevention due to moisture?

No. The surface of TFL's plasma-sprayed coating is sealed with a special modified resin, blocking the penetration of external moisture into the micro-pores, so the insulation resistance will not drop due to high humidity. Meanwhile, the ceramic itself does not rust, and its surface has excellent adsorption for standard rust-preventative oils. As long as it is kept in the original sealed packaging and stored in a standard warehouse with relative humidity below 60%, it can be stored long-term without any degradation in insulation performance.
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