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Equivalent Method of Joint Interface Based on Persson Contact Theory: Virtual Material Method

机译:基于Persson接触理论的关节接口等效方法:虚拟材料方法

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摘要

An accurate equivalent method of metal joint interface is of great significance to optimize the dynamic performance of the whole machine. Therefore, it is necessary to establish an accurate equivalent method of joint interface. The virtual material method is a precise equivalent method of joint interface. The traditional virtual material method is based on the M–B fractal contact theory. By modeling the contact mechanics of the joint interface, the physical properties of the virtual material are obtained separately, such as elastic modulus, Poisson’s ratio and density. In this paper, Persson contact theory is used to establish the interface contact mechanics model to find the physical properties of virtual materials. The virtual material methods constructed by two theories are respectively applied to the modal simulation to obtain the natural frequencies of the joint interface. By comparing the natural frequencies obtained by modal experiment and modal simulation, it is found that the natural frequencies obtained by the virtual material method based on Persson contact theory are closer to the results obtained by the modal experiment, and the error is within 5%. The error of the natural frequencies obtained by the virtual material method based on the M–B fractal contact theory is within 10%. Therefore, the Persson contact theory can establish a more accurate equivalent method of metal’s joint interface.
机译:精确的等效金属连接界面等效方法对于优化整机的动态性能具有重要意义。因此,有必要建立一种精确的等效等效接口方法。虚拟材质方法是关节接口的精确等效方法。传统的虚拟材料方法基于M-B分形接触理论。通过对关节界面的接触力学进行建模,可以分别获得虚拟材料的物理属性,例如弹性模量,泊松比和密度。本文采用Persson接触理论建立界面接触力学模型,以寻找虚拟材料的物理特性。将两种理论构建的虚拟材料方法分别应用于模态仿真,以获得接头界面的固有频率。通过对模态实验和模态仿真获得的固有频率进行比较,发现基于Persson接触理论的虚拟材料方法获得的固有频率更接近模态实验的结果,误差在5%以内。通过基于M–B分形接触理论的虚拟材料方法获得的固有频率误差在10%以内。因此,Persson接触理论可以建立金属接头界面的更精确的等效方法。

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