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EAN4012801484176
CategoriaRolamento de esferas de contato angular
Peso e dimensões
Interno (d) mm
50
Externo (D) mm
80
Largura (B) mm
16
Interno (d) polegadas
1.9685
Externo (D) polegadas
3.1496
Largura (B) polegadas
0.6299
Peso (kg)
0.27
Características do produto
Vedação
Sem vedação
Tipo de gaiola
TB - gaiola reforçada de fibra
Precisão
Precisão P4S (maior que P4)
Ângulo de contato
15 graus
Pareamento
G - montagem universal
Folga axial interna / pré-carga
UL - execução universal para montagem aos pares, o par de rolamentos tem uma leve pré-carga nas disposições em O ou em X
Lubrificação
Lubrificação standard
Dados da Schaeffler (medias)
Largura (b) mm
16
Fator de carga estática básica, radial (C 0r)
9150
Velocidade limite para lubrificação com graxa (n G Graxa)
24000
Velocidade limite para lubrificação a óleo (n G Óleo)
38000
Número ECLASS
23-05-08-03
Número ECLASS2
23-05-08-03
Descrição do sufixo
C15° Or 17° Contact Angle
TTextile Laminated Phenolic Resin, Outer Ring Guided. The Cage Is Suitable For Long-Term Operation At Temperatures Up To 100°C
P4SBoundary Dimensions ISO 4, Abec-7, Running Accuracy ISO 2, Abec-9
The HC7010-C-T-P4S-UL FAG is a high-speed design hybrid spindle bearing. This bearing type without seals has small ceramic balls. Hybrid spindle bearings can reach very high speeds with very little heat generation and wear. Even at very high speeds, a high degree of rigidity is maintained. This makes the HC7010-C-T-P4S-UL FAG particularly suitable for use in high-speed- or grinding spindles.
FAG spindle bearings are single-row, angular contact ball bearings that cannot be dismantled. They have solid inner and outer rings as well as ball-and-cage assemblies with solid window cages. Due to their extremely tight tolerances, they are particularly suitable for applications that require high guidance accuracy and suitability for high speeds. Spindle bearings are commonly used for main spindles in machine tools.
In addition, FAG spindle bearings are designed as universal bearings. Universal bearings with the same deviation in inner ring bore and outer diameter can be combined for use in different arrangements. For example, when the load capacity of a single bearing is insufficient, two matching bearings can be used in a tandem arrangement to support axial loads in one direction only. In order to support axial loads in both directions as well as moments, O or X arrangements are good solutions.
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