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A New Dynamic Modeling Method to Fixed Machined Joint Interface

机译:固定机加工接口的动态建模新方法

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The concept of virtual material was developed for the first time when the flexible joint interface may be considered as a virtual material with the same cross area. The virtual material is rigidly connected with two components situated in both sides of flexible joint interface. By adding an element, a complex assembled part including a joint interface could be equaled as a simple component without any joint interface in order to simplify the complicated problem about flexible joint interface. The interaction between normal and tangential characteristics of fixed interface taken into account, a series of exact analytical solutions of elastic modulus, shear modulus, Poisson ratio and density were deduced from virtual material through Hertz contact theory and fractal theory. By using experimental results about a series of test specimens, the exact analytic expressions for virtual material's parameters were verified in terms of qualitative comparison principle of resembling vibration shapes and quantitative comparison principle of the natural frequencies. The virtual material model vibration shapes are in excellent agreement with the experimental results. The relative errors between the virtual material model natural frequencies and the experimental ones are between -3% and 10%.
机译:首次将虚拟材料的概念开发出来时,可以将柔性关节界面视为具有相同横截面积的虚拟材料。虚拟材料与位于柔性接头界面两侧的两个组件刚性连接。通过添加元件,可以将包括关节接口的复杂组装零件等同为没有任何关节接口的简单组件,以简化关于柔性关节接口的复杂问题。考虑到固定界面的法向和切向特性之间的相互作用,通过Hertz接触理论和分形理论从虚拟材料中推导出一系列精确的弹性模量,剪切模量,泊松比和密度解析解。通过对一系列试样的实验结果,根据类似振动形状的定性比较原理和固有频率的定量比较原理,验证了虚拟材料参数的精确解析表达式。虚拟材料模型的振动形状与实验结果非常吻合。虚拟材料模型固有频率和实验频率之间的相对误差在-3%和10%之间。

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