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Interference-Fit Life Factors for Roller Bearings

机译:滚动轴承的干涉配合寿命因数

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The effect of hoop stresses in reducing cylindrical roller bearing fatigue life was determined for various classes of innerring interference fit. Calculations were performed for up to seven fit classes for each of the 10 bearing sizes. The hoop stresses were superimposed on the Hertzian principal stresses created by the applied radial load to calculate roller bearing fatigue life. A method was developed through a series of equations to calculate the life reduction for cylindrical roller bearings. All calculated lives are for zero initial internal clearance. Any reduction in bearing clearance due to interference fit would be compensated by increasing the initial (unmounted) clearance. The results are presented as tables and charts of life factors for bearings with light, moderate, and heavy loads and interference fits ranging from extremely light to extremely heavy for bearing accuracy class RBEC-5 (ISO class 5). Interference fits on the inner ring of a cylindrical roller bearing can significantly reduce bearing fatigue life. In general, life factors are smaller (lower life) for bearings running under a light load where the unfactored life is the highest. The various bearing series within a particular bore size had almost identical interference-fit life factors for a particular fit. The tightest fit at the high end of the tolerance band produces a life factor of approximately 0.40 for an inner-race maximum Hertz stress of 1200 MPa (175 ksi) and a life factor of 0.60 for an inner-race maximum Hertz stress of 2200 MPa (320 ksi). Interference fits also impact the maximum Hertz stress-life relation.
机译:针对各种类型的内圈过盈配合,确定了环向应力在减少圆柱滚子轴承疲劳寿命中的作用。对于10种轴承尺寸中的每一种,最多进行了7个拟合等级的计算。环向应力叠加在由施加的径向载荷产生的赫兹主应力上,以计算滚子轴承的疲劳寿命。通过一系列方程开发了一种方法来计算圆柱滚子轴承的使用寿命。所有计算的寿命均为零初始内部游隙。由于过盈配合而导致的轴承游隙的任何减少都可以通过增加初始(未安装)游隙来补偿。结果以表和图表的形式显示,它们适用于轻,中,重负载的轴承,对于RBEC-5级轴承精度(ISO 5级),过盈配合范围从极轻到极重。圆柱滚子轴承的内圈过盈配合可显着降低轴承的疲劳寿命。通常,在轻负荷下运行的轴承的寿命因数较小(寿命较短),其中无因数寿命最高。特定孔径内的各种轴承系列对于特定配合具有几乎相同的过盈配合寿命因子。在1200 MPa(175 ksi)的内圈最大赫兹应力下,公差带高端的最紧密配合产生大约0.40的寿命系数,在2200 MPa的内圈最大Hertz应力下产生0.60的寿命系数(320 ksi)。干涉配合也会影响最大的Hertz应力-寿命关系。

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