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Normal Contact Damping Predict Model of Joint Surface Based On Unit Area and Fractal Theory with Simulation

机译:基于单位面积和分形理论的常规接触阻尼预测模型和分形理论模拟

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Joint surfaces widely exist in mechanical assembly structures, the local stiffness and damping have important effect on the whole dynamic analysis of the structure. In this study, proposed a normal contact damping forecast model and analyze its damping characteristics, based on the microcosmic mechanism between joint surfaces and citing the domain extension factor and unit area radio, combine with the modified fractal theory and energy dissipation. The simulation results show that the damping characteristic curve appear inflection point when the fractal dimension value D is 1.428. When, the normal contact damping increases with the increase of fractal dimension but decreases with the increase of contact area. When, the normal contact damping increase with the increase of contact area. Since the reaction of real contact area is relate to the change of the load, the relationship between the normal contact damping and the contact area can accurately predict the performance of assembly structure to a certain extent, the existence of the inflection point also provide a reference for the optimization design of assembly structure.
机译:在机械组装结构中广泛存在的关节表面,局部刚度和阻尼对结构的整个动态分析具有重要影响。在该研究中,提出了一种正常接触阻尼预测模型,并根据关节表面之间的微观机制分析其阻尼特性,并引用域延伸因子和单位区域无线电,与改进的分形理论和能量耗散相结合。模拟结果表明,当分形尺寸值​​D为1.428时,阻尼特性曲线显得拐点。当时,正常接触阻尼随着分形尺寸的增加而增加,但随着接触面积的增加而降低。何时,正常接触阻尼随着接触面积的增加而增加。由于实际接触面积的反应涉及负载的变化,因此正常接触阻尼和接触面积之间的关系可以准确地预测组装结构的性能在一定程度上,拐点的存在也提供了参考用于装配结构的优化设计。

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