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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Dynamic support stiffness of motorized spindle bearings under high-speed rotation
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Dynamic support stiffness of motorized spindle bearings under high-speed rotation

机译:高速旋转下电主轴轴承的动态支撑刚度

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摘要

The rotor operating stiffness of high-speed motorized spindles (HSMSs) is key to machining accuracy. Because HSMSs are difficult to load due to their high speeds, a contact loading device was developed to test rotor operating stiffness. The dynamic support stiffness of the front/rear bearings (DSSB) is the main factor affecting the rotor operating stiffness. Two novel experimental schemes for measuring the DSSB are proposed: (1) indirect measurement-by analysing deformation displacements at two points on the external loading rod of the HSMS and (2) direct measurement-by eddy current sensors installed near the front/rear bearings. Based on the experimental device and two experimental schemes, the influences of working condition parameters on the DSSB were tested. The results show that the proposed experimental device and two experimental schemes can effectively and accurately measure rotor operating stiffness and DSSB at speeds of up to 30,000 rpm. However, because the tapered connection gap between the loading rod and rotor increases the measured deformation displacement, the DSSB measured by the indirect measurement scheme was relatively small. The DSSB decreases with speed and increases with radial force and working temperature. This study provides a new experimental basis for the quality inspection of finished HSMSs and the verification of theoretical bearing stiffness models.
机译:高速电主轴 (HSMS) 的转子工作刚度是加工精度的关键。由于HSMS由于其高速而难以加载,因此开发了一种接触加载装置来测试转子的工作刚度。前/后轴承的动态支撑刚度(DSSB)是影响转子工作刚度的主要因素。提出了两种测量DSSB的实验方案:(1)间接测量-通过分析HSMS外部加载杆上两个点的变形位移;(2)通过安装在前/后轴承附近的涡流传感器进行直接测量。基于实验装置和两种实验方案,测试了工况参数对DSSB的影响。结果表明,所提出的实验装置和两种实验方案能够有效、准确地测量转子在转速高达30,000 rpm时的工作刚度和DSSB。然而,由于加载杆与转子之间的锥形连接间隙增加了实测变形位移,因此间接测量方案测得的DSSB相对较小。DSSB随速度减小,随径向力和工作温度增大。本研究为成品HSMS的质量检测和理论轴承刚度模型的验证提供了新的实验依据。

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