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Study on numerical solution of the contact mechanics in gas foil bearings

机译:气箔轴承接触力学的数值解研究

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In spite of the successful application of this oil-free supporting technology in engineering, theoretical researches on static, especially dynamic performances of compliant foil bearing seem rather difficult and far behind experimental investigations because of complexity. One of the most difficult problems to deal with is, odelling of contact mechanics problem between bump foil and top foil. The goal of this study is to find the most suitable numerical solution method for the contact mechanics problems between the bump foil and top foil in gas foil bearing. By comparing the characteristics, Lagrange Multiplier Method, Multi-Point Constraint Method and Direct Constraint Method, Direct Constraint Method is considered the most appropriate numerical algorithm for the contact mechanics in gas foil bearings. In solving the contact problem, this algorithm has a good accuracy, and micro-contact status between the bump foil and top foil in gas foil bearing, it has the important significance Of the elastic for the design of the foil bearing.
机译:尽管这种无油支撑技术在工程中得到了成功的应用,但对柔性箔轴承的静态性能,尤其是动态性能的理论研究似乎相当困难,并且由于复杂性而远远落后于实验研究。要解决的最困难的问题之一是凸点箔和顶部箔之间的接触力学问题的减少。这项研究的目的是找到最合适的数值解决方法,以解决气体箔轴承中凸点箔和顶部箔之间的接触力学问题。通过比较特性,拉格朗日乘数法,多点约束法和直接约束法,直接约束法被认为是气箔轴承接触力学最合适的数值算法。该算法在解决接触问题上具有良好的精度,并且气箔轴承中凸箔与上箔之间的微接触状态,对于箔轴承的设计具有重要的弹性意义。

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