An Analytical Model for Pitch Moment Stiffness of Bolted Connections and Its Application in Ballscrew Bearing Support Block Selection

Akshay Harlalka, A. Slocum
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Abstract

Bolted joints are commonly used structural connections as they provide a strong secure joint along with ease of assembly/disassembly. While analytical models for the axial stiffness of bolted joints are well developed, models for moment (angular) stiffness of bolted structures, such as ball screw bearing support blocks, are needed to help engineers rapidly design more efficient precision machines. This paper develops a parametric moment stiffness model for bolted connections which is verified via numerical and experimental methods. Application of the model is illustrated with a ball screw system design spreadsheet, available in Supplemental Material on the ASME Digital Collection, applied to two case studies (machine tool linear axis and high-speed 3D printer) to show how predicting the moment stiffness of ball screw support bearing blocks helps in expanding the available design space and enhance the design performance.
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螺栓连接节矩刚度解析模型及其在滚珠丝杠轴承支承块选择中的应用
螺栓连接是常用的结构连接,因为它们提供了牢固的安全连接以及易于组装/拆卸。虽然螺栓连接轴向刚度的分析模型已经发展得很好,但需要螺栓结构(如滚珠丝杠轴承支撑块)的力矩(角)刚度模型来帮助工程师快速设计更高效的精密机械。本文建立了螺栓连接的参数化弯矩刚度模型,并通过数值和实验方法进行了验证。该模型的应用通过一个滚珠丝杠系统设计电子表格进行了说明,该电子表格可在ASME数字集的补充材料中获得,应用于两个案例研究(机床线轴和高速3D打印机),以显示如何预测滚珠丝杠支撑轴承座的力矩刚度有助于扩大可用的设计空间并提高设计性能。
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