Serie 7400C

Serie 7400C

Serie 7400C

  • Serie 7400C
seleccionarConsultaRodamiento No.Dimensiones límite (mm) Capacidades de carga básicas (kN)Velocidad límite (rpm)Masa
rekDBDinámico(Cr)Estático (Cor)GrasaAceiteKg
7406C 30 90 23 57.5 33.8 6500 8500 0.96
7407C 35 100 25 66.8 41.2 5500 8000 1.14
7408C 40 110 27 80.2 53.3 5200 7000 1.4
7409C 45 120 29 93.1 60.8 5000 6500 1.8
7410C 50 130 31 119.3 81 4500 6000 2.25
7411C 55 140 33 125.3 87 4200 5600 2.75
7412C 60 150 35 136.3 98.2 3800 5200 3.4
7413C 65 160 37 147.4 110.2 3400 4800 4.2
7414C 70 180 42 160.4 126.6 3200 4500 5.8
7415C 75 190 45 171.4 138.9 3000 4200 7
7416C 80 200 48 183.2 152.9 2800 4000 8.4
7417C 85 210 52 195.1 167.6 2600 3700 9.6
7418C 90 225 54 208 184.2 2400 3400 11.2

Requisitos básicos de diseño para rodamientos de bolas de contacto angular de alta velocidad

 

Angular contact ball bearings can be divided into three categories based on application:

1. Maximum dynamic load rating is the design goal.

2. Ultra-high speed is the design goal.

3. Both high speed and dynamic load rating are design goal


When maximum dynamic load rating is the goal: Rolling element diameter Dw = (D-d)/2 x 0.618

When ultra-high speed is the goal: Rolling element diameter Dw = (D-d)/2 x 0.384≈0.4

When both high speed and load capacity are considered: Rolling element diameter Dw = (D-d)/2 x 0.5

The cage retaining rib coefficient is selected from Table 2.


Phenolic laminated fabric cages are very important for high-speed bearings. There are three cage guiding methods - inner land riding, outer land riding, and roller riding. Inner land riding has smaller moment of inertia and saves material but allows fewer rolling elements compared to outer land riding. Outer land riding has higher moment of inertia and can accommodate more rolling elements than inner riding. Roller riding generates less heat and noise at the same speed compared to inner and outer riding, but the structure is complex and difficult to manufacture, only suitable for molded plastic cages. For high-speed bearings, the cage radial wall thickness and width should be minimized, as long as strength permits. This not only reduces moments of inertia, but more importantly benefits heat dissipation and lubrication.


In summary, cage design is critical for high-speed angular contact ball bearings. Structural optimization helps meet strength, guidance, and inertia requirements while enabling heat dissipation, lubrication, and high-speed operation.



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