NSK 6914 VV Kugellager (70x100x16)
Product Description
The NSK 6914 VV Kugellager (70x100x16) is a Deep-groove ball bearings measuring 70 x 100 x 16 mm, Seals: non-contact seals on both sides. Manufactured by NSK.
About Deep-groove ball bearings
Deep groove ball bearings are the most widely used bearing type, handling radial and moderate axial loads at high speeds with low friction.
NSK 6914 VV Kugellager (70x100x16)
— 70 x 100 x 16 mm
Response within 4 business hours
Same size — other brands
Bearings of the same type with identical dimensions 70 × 100 × 16 mm — please check sealing, clearance and execution.
multiple variants for this number — please select
This designation exists in several variants. Please pick the matching one.
Same dimensions means the same bearing type and matching main dimensions (d × D × B). Sealing, cage, internal clearance and execution (e.g. material, precision, grease fill) are encoded in the suffix and may differ — please check before ordering.
| Product | Brand | Price | Availability | ||
|---|---|---|---|---|---|
| FAG 61914-2RZ Kugellager (70x100x16) | FAG | €90.94 | In stock | ||
| ZEN 61914 Kugellager (70x100x16) | ZEN | €10.36 | In stock | ||
| ZEN 61914-2RS Kugellager (70x100x16) | ZEN | €11.23 | In stock | ||
| ZEN 61914-2Z Kugellager (70x100x16) | ZEN | €13.60 | In stock | ||
| NACHI 6914 ZZ Kugellager (70x100x16) | NACHI | €28.06 | In stock | ||
Frequently asked questions
What are the dimensions of the NSK 6914 VV Kugellager (70x100x16)?
Who is the manufacturer of the NSK 6914 VV Kugellager (70x100x16)?
How heavy is the NSK 6914 VV Kugellager (70x100x16)?
What seal type does the NSK 6914 VV Kugellager (70x100x16) have?
What bearing type is the NSK 6914 VV Kugellager (70x100x16)?
Guides for this product
- GuideWas bedeutet -2RS / -2RSR / -2Z?2RS, 2RSR und 2Z entschlüsselt: berührende Dichtung gegen Deckscheibe – wann welche Abdichtung für Staub, Feuchte, Drehzahl und Reibung sinnvoll ist.
- GuideRillenkugellager oder Schrägkugellager?Rillenkugellager (DGBB) oder Schrägkugellager (ACBB)? Entscheidung nach Lastrichtung, Steifigkeit, Drehzahl und Kosten – mit klarer Auswahllogik.
