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Case Depth and Static Capacity of Surface Induction-Hardened Rings

机译:表面感应 - 硬化环的外壳深度和静态容量

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Large-size slewing bearings are usually surface hardened by means of induction heating. The load-carrying capacity of the bearing is dependent on, among others, the depth of the hardened layer, i.e., case depth (CD). It is of crucial importance for bearing manufacturers to ensure that sufficient CD is produced to meet the required bearing capacity for the applications. Compared to through-hardened bearings, the calculation method for the load-carrying capacity of surface-hardened bearings, especially the induction-hardened bearings, is not well established. This paper reports on a new calculation method for the static capacity of induction-hardened rings. The method is based on consideration of both the plastic indentation on the raceway and the damage tolerance in the subsurface region. The models for evaluating plastic indentation and subsurface damage have been validated with the standing contact fatigue testing.
机译:大尺寸的回转轴承通常通过感应加热表面硬化。轴承的承载能力取决于硬化层的深度,即案例深度(CD)。对于轴承制造商来说至关重要,以确保生产足够的CD以满足应用所需的轴承能力。与通过硬化轴承相比,表面硬化轴承的承载能力的计算方法,尤其是感应硬化轴承,并不确定。本文报道了一种新的静电静电环静态容量计算方法。该方法基于考虑滚道的塑料压痕和地下区域中的损坏容差。通过站立的接触疲劳测试验证了评估塑料压痕和地下损坏的模型。

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