NACHI 5204 ZZ Schrägkugellager (20x47x20,6)
† Catalogue value, not verified
Description
As a double-row angular contact ball bearing, this bearing carries radial loads and axial loads in both directions, and needs no second bearing to oppose it. This NACHI bearing measures 20x47x20.6 mm and weighs 0.16 kg; the specification table carries the supplementary technical details. Two ball rows inclined in opposite directions sit in one common pair of rings — which is why this bearing supports axial force in both directions without an adjacent bearing position to oppose it.
A double row angular contact ball bearing is built like two opposed ball sets in a single bearing: the contact lines of the two raceway pairs are inclined in opposite directions and diverge outwards, which corresponds to a back-to-back arrangement of a paired bearing set. The load behaviour follows from that geometry. Radial force is shared between the two ball rows; axial force in either of the two directions is carried by one of those rows; and because the lines of force action span a wide support base, the bearing also takes tilting moments.
The shaft is therefore located in both directions at a single bearing position — the second position can be a purely floating bearing and carries no axial force. The axial internal clearance follows from the ring geometry and is fixed in the factory, not on mounting. Setting it through an adjacent bearing position, through shaft nuts or through unusually tight fits is therefore neither necessary nor permissible: both rings are supported over their full seat and mounted with the fits normal for the load case, so that the built-in clearance is preserved.
This design tolerates misalignment within narrow limits only, because an angular deviation is distributed unevenly over the two ball rows; the seats in shaft and housing should be aligned and geometrically accurate accordingly. The design is common in gearboxes and worm drives, on pump and fan shafts, in agricultural machinery and in wheel bearing arrangements.
NACHI 5204 ZZ Schrägkugellager (20x47x20,6)
— 20 x 47 x 20.6 mm
Response within 4 business hours
Cross-brand equivalents
Verified equivalents for 20 × 47 × 20.6 mm — live price & availability.
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. Equivalent additionally means the same sealing, internal clearance and tolerance class; the cage and other suffix features (e.g. lubrication groove) may differ.
| Product | Brand | Match | Price | Availability | ||
|---|---|---|---|---|---|---|
| ZEN 3204-B-2Z Schrägkugellager (20x47x20,6)Equivalent | ZEN | Equivalent | €7.46 | In stock | ||
| FAG 3204-BD-XL-2Z-TVH Schrägkugellager (20x47x20,6)Same dimensions | FAG | Same dimensions | €41.38 | In stock | ||
| FAG 3204-BD-XL-2Z Schrägkugellager (20x47x20,6)Same dimensions | FAG | Same dimensions | €54.76 | In stock | ||
| SKF 3204 A-2Z Schrägkugellager (20x47x20,6)Same dimensions | SKF | Same dimensions | €61.90 | In stock | ||
| SKF 3204 A-2ZTN9/MT33 Schrägkugellager (20x47x20,6)Same dimensions | SKF | Same dimensions | €42.23 | In stock | ||
Frequently asked questions
What are the dimensions of the NACHI 5204 ZZ Schrägkugellager (20x47x20,6)?
Who is the manufacturer of the NACHI 5204 ZZ Schrägkugellager (20x47x20,6)?
How heavy is the NACHI 5204 ZZ Schrägkugellager (20x47x20,6)?
What seal type does the NACHI 5204 ZZ Schrägkugellager (20x47x20,6) have?
What bearing type is the NACHI 5204 ZZ Schrägkugellager (20x47x20,6)?
What equivalent bearings are available for the NACHI 5204 ZZ Schrägkugellager (20x47x20,6)?
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.
