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EXPLICIT SOLUTIONS OF THE STEADY-STATE JOURNAL BEARING INVERSE PROBLEM

机译:稳态日记账逆问题的显式解

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摘要

Designers need appropriate tools to effectively design bearings and lubrication systems. One tool required is the ability to solve the Reynolds equation for a given concept and application. Most solution methods require analytical expertise designers usually do not possess, and therefore these solution methods do not provide a straightforward and timely solution. Four exact explicit analytical solutions for the journal bearing eccentricity given the force, the inverse problem, are found for the short bearing theory with full-Sommerfeld (2π film extent) and Guembel or half-Sommerfeld (π film extent) boundary conditions, and the infinite or long bearing theory also with the full-Sommerfeld, and Gumbel boundary conditions are presented in this paper. In addition, a comparison is made between the various alternative solution methods.
机译:设计人员需要适当的工具来有效地设计轴承和润滑系统。所需的一种工具是能够为给定的概念和应用求解雷诺方程。大多数解决方案方法要求设计人员通常不具备分析专业知识,因此这些解决方案方法无法提供直接,及时的解决方案。对于具有全Sommerfeld(2π薄膜范围)和Guembel或Half-Sommerfeld(π薄膜范围)边界条件的短轴承理论,找到了给定力(逆问题)的四个精确的轴颈偏心分析方法。本文还介绍了无穷或长轴承理论以及完整的Sommerfeld,以及Gumbel边界条件。另外,在各种替代解决方法之间进行了比较。

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