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6318/C3VL2071 Electrically Insulated Ball Bearings

6318/C3VL2071 Electrically Insulated Ball Bearings

High-Insulation 6318/C3VL2071 - Your Reliable B2B Supplier

$ 300 /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 6318/C3VL2071
  • Equivalent Interchange 6318/C3VL2071 (SKF); 6318-2Z-J20C-C3 (FAG);
  • Product Category Electrically Insulated Ball Bearings
  • Coating Suffix VL2071
  • Insulating Coating Types Inner ring insulation coating
  • Manufacturers TFL
  • Bore Diameter 90.0 mm
  • Outside Diameter 190.0 mm
  • Width 43.0 mm
  • Net Weight 4.9 kg
  • Basic Dynamic Load Rating 151.0 kN
  • Basic Static Load Rating 108.0 kN
  • Reference Speed 7500.0 r/min
  • Breakdown Voltage (DC) 1000 ~3000 V
  • Layer Thickness 100~500 µm
  • Electrical Resistance 50~200 MΩ
  • Cage Material Sheet metal
  • Radial Internal Clearance C3
  • ROHS Compliant
  • REACH Compliant

6318/C3VL2071 Equivalent Interchange Brands

TFL 6318/C3VL2071 is fully compatible with mainstream equivalents from SKF and FAG in all mechanical dimensions (90mm bore, 190mm OD, 43mm width) and the VL2071 inner-ring insulation standard. Every bearing undergoes strict voltage and insulation resistance testing before leaving the factory. Customers can achieve direct replacement during equipment maintenance without modifying existing shafts or housings.

SKF FAG
6318/C3VL2071
6318-2Z-J20C-C3

Why Choose TFL?

TFL has mastered the highly demanding inner-ring plasma spraying process, overcoming technical barriers in coating uniformity for bearing bores. Certified under ISO 9001, every production step adheres to rigorous industrial standards. Compared to the high costs and long lead times of global brands, TFL is dedicated to providing full-cycle support from design to fast delivery, effectively helping clients reduce procurement costs and optimize supply chains without compromising dielectric performance.

the image shows details of 6318/C3VL2071 insulated ball bearing and the inner ring ceramic coating

Features of 6318/C3VL2071

Common Applications of Electrically Insulated Bearings

TFL 6318/C3VL2071 electrically insulated bearings are engineered for specialized applications requiring “inner-ring insulation.” Typical applications include high-power AC VFD motors, generators, industrial compressors, and large fan systems with high-speed rotating shafts. Its inner-ring coating directly blocks stray currents originating from the rotor shaft, making it a crucial anti-erosion component in heavy industry, paper mills, chemical plants, and power facilities.

Inner ring electrically insulated bearing, used for variable frequency motors

Motors & Generators

In high-power explosion-proof or VFD motors like the Siemens 1LE1 or ABB M3GP series, some housing designs require the bearing’s outer ring to be firmly grounded or tightly fitted. In such cases, TFL 6318/C3VL2071’s inner-ring insulation provides the perfect solution to prevent rotor shaft currents from damaging the bearing. It effectively protects the motor and serves as an ideal alternative to SKF INSOCOAT inner-ring insulated types.

Electrically insulated bearing featuring inner ring ceramic coating used in industrial screw air compressors

Industrial Compressors

For the drive ends of large centrifugal and rotary screw compressors by Atlas Copco or Ingersoll Rand, heavy loads and high-frequency harmonics from VFDs are major causes of bearing failure. TFL 6318/C3VL2071’s heavy-duty 63 series structure easily handles mechanical loads, while the VL2071 inner-ring coating cuts off the erosion source at the shaft. It is widely recommended for MRO services in such heavy-duty equipment.

a railway and some insolated bearing used in traction motor

Railway Traction Motors

In the railway sector, TFL 6318/C3VL2071 inner-ring insulated bearings can be used in AC traction motors for brands like Alstom and CRRC. The high-frequency switching of traction inverters generates strong common-mode voltages, and some motor housing designs dictate that insulation must occur at the bearing inner ring. TFL’s VL2071 bore coating blocks leakage currents directly at the shaft interface. Combined with the shock-resistant heavy-duty 63 series structure, it is a highly recommended anti-erosion solution for the overhaul and maintenance of high-speed trains and heavy-haul locomotives.

*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

What is the difference between the VL0241 and VL2071 suffixes, and how should I choose?

They indicate the location of the insulation coating. VL0241 means the coating is on the outer ring (OD and outer faces), while VL2071 means the coating is on the inner ring (bore and inner faces). Usually, outer-ring insulation (VL0241) is chosen for most motors. However, if your equipment has a rotating outer housing, or the housing requires a tight interference fit/grounding, you must select inner-ring insulation (VL2071) like the TFL 6318/C3VL2071.

What special precautions are needed when installing the TFL 6318/C3VL2071 inner-ring insulated bearing?

Because the ceramic coating is on the inner ring, you must use an induction heater for shrink-fitting (typically heated to 80°C - 110°C) to easily slide it onto the shaft via thermal expansion. Never forcefully press or hammer the bearing onto the shaft, as this will crack and peel the insulation coating inside the bore.

What is your delivery lead time for the 6318 series, and do you support small batch orders?

TFL supports orders with no minimum quantity (No MOQ). For the 6318 series, we typically have stock or can complete coating and delivery within 1-2 weeks. This is vastly superior to the multi-month lead times of global brands, making it ideal for urgent maintenance needs.
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