Серия 4200

  • Серия 4200
выбиратьРасследованиеНомер подшипника.Граничные размеры (мм) Базовая нагрузка (кН)Предельная скорость (об/мин)Масса
дДБрупий минДинамический(Cr)Статический (Кор)СмазкаМасло(Кг)
4200 10 30 14 0.6 7.7 5.9 18000 22000 0.057
4201 12 32 14 0.6 7.75 6.15 17000 20000 0.062
4202 15 35 14 0.6 9.75 9 14000 17000 0.071
4203 17 40 16 0.6 11.7 10.4 12000 15000 0.106
4204 20 47 18 1 16.4 12.5 10000 13000 0.165
4205 25 52 18 1 19 14.6 9000 11000 0.189
4206 30 62 20 1 26 20.8 8000 9500 0.298
4207 35 72 23 1.1 35.1 28.5 6700 8000 0.46
4208 40 80 23 1.1 37.1 32.5 6000 7000 0.558
4209 45 85 23 1.1 39 36 5600 6700 0.605
4210 50 90 23 1.1 41 40 5000 6000 0.651
4211 55 100 25 1.5 44.9 44 4800 5600 0.882
4212 60 110 28 1.5 57.2 55 4500 5300 1.2
4213 65 120 31 1.5 67.6 67 4000 4800 1.45
4214 70 125 31 1.5 70.2 73.5 3600 4300 1.5
4215 75 130 31 1.5 72.8 80 3400 4000 1.6
4216 80 140 33 2 80.6 90 3200 3800 2
4217 85 150 36 2 93.6 102 3000 3600 2.55
4218 90 160 40 2 112 122 2800 3400 3.2
4220 100 180 46 2.1 14 15.6 2400 3000 4.7

Основные требования к конструкции высокоскоростных радиально-упорных шарикоподшипников

Радиально-упорные шарикоподшипники можно разделить на три категории в зависимости от применения:

1. Целью проектирования является максимальная динамическая нагрузка.

2. Целью разработки является сверхвысокая скорость.

3. Целью проектирования является высокая скорость и динамическая нагрузка.


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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