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Computational model for determination of static load capacity of three-row roller slewing bearings with arbitrary clearances and predefined raceway deformations

机译:确定任意游隙和预定滚道变形的三排滚子回转支承静载荷的计算模型

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摘要

A new computational model for determination of internal contact forces distribution and consequently the determination of acceptable load curves for static load capacity in three-row roller slewing bearings is presented in this paper. The proposed model considers some typical characteristics of large slewing bearings (possible structural ring deformations, non-parallel ring displacements, clearances, surface quenching of the raceway raceways, etc.) and their influence on the bearing static capacity. For practical applicability of the model, vector approach is used for mathematical description of the bearing geometry and relative ring movements, together with the static force and moment equilibrium calculation. The model has been implemented into a computer code and it serves as a convenient engineering tool especially suitable for early stages of slewing bearings' design. The proposed computational model has been used to determine the static load capacity of an actual three-row roller slewing bearing, where different geometric parameters, such as different predefined ring deformations, rollers sizes, roller profile modifications and tilted contact of rollers have been additionally analyzed. Computational analyses have shown that some of the investigated parameters have a significant influence on the static load capacity of analyzed slewing bearing.
机译:本文提出了一种新的计算模型,用于确定内部接触力的分布,从而确定三列滚子回转支承的静载荷能力可接受的载荷曲线。提出的模型考虑了大型回转支承的一些典型特征(可能的结构环变形,非平行的环位移,游隙,滚道滚道的表面淬火等)及其对轴承静载荷的影响。对于模型的实际适用性,矢量方法用于轴承几何形状和相对环运动的数学描述,以及静力和力矩平衡计算。该模型已实现为计算机代码,可作为方便的工程工具,特别适合于回转支承设计的早期阶段。所提出的计算模型已用于确定实际三排滚子回转支承的静载荷能力,其中还另外分析了不同的几何参数,例如不同的预定义环变形,滚子尺寸,滚子轮廓修改和滚子倾斜接触。计算分析表明,某些研究参数对所分析的回转支承的静载荷能力有重大影响。

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