Influence of Housing Material and Geometry on Thermal Stability of Threaded Spindle Bearing Assembly

V. Krstić, D. Milčić, M. Milčić, A. Stoić, Natasa Zdravkovic
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Abstract

: The accuracy of guiding a spindle is greatly influenced by the thermal load of the bearing. Increased thermal load implies deformation of the bearing parts which is directly reflected in the work quality of the machine system. For this reason, the aim of this paper is to analyse the influence of the material and the geometry of the housing on the temperature field of the threaded spindle bearing assembly, which was realised by "radially mounting" of axial angular contact ball bearing ZKLN. This paper represents a new approach for thermal analysis of the special bearings, type ZKLN which are not involved in the relevant standards for the determination of the reference speed. At the same time the value of this paper finds itself in finding of the guideline at engineering practice which is very important at early design phase of the systems with threaded spindle. The analysis was carried out using experimental and numerical methods. Combination of the mentioned methods gave result which was used to define appropriate guideline regarding influence of housing material and geometry on thermal stability of the ZKLN bearing.
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轴承座材料和几何形状对螺纹主轴轴承组件热稳定性的影响
:主轴的导向精度在很大程度上受到轴承热负荷的影响。热负荷的增加意味着轴承部件的变形,这直接反映在机床系统的工作质量上。因此,本文旨在分析轴承座的材料和几何形状对螺纹主轴轴承组件温度场的影响,该组件是通过 "径向安装 "推力角接触球轴承 ZKLN 实现的。本文是对 ZKLN 型特殊轴承进行热分析的一种新方法,相关标准中未涉及参考转速的确定。同时,本文的价值还在于为工程实践提供指导,这在带螺纹主轴系统的早期设计阶段非常重要。本文采用实验和数值方法进行分析。结合上述方法得出的结果可用于确定轴承座材料和几何形状对 ZKLN 轴承热稳定性影响的适当准则。
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