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STUDY ON DYNAMIC STRENGTH EVALUATION METHOD OF MECHANICAL MEMBERS BASED ON ENERGY BALANCE

机译:基于能量平衡的机械构件动态强度评价方法研究

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This paper describes the dynamic strength evaluation of piping installed in nuclear power plants from a viewpoint of energy balance. Mechanical structures installed in nuclear power plants such as piping and equipment are usually designed statically in elastic region. Although these mechanical structures have sufficient seismic safety margin, comprehending the ultimate strength is very important in order to improve the seismic safety reliability in unexpected severe earthquakes. In this study, ultimate strength of a simple single-degree-of-freedom model is investigated from a viewpoint of energy balance equation that is one of valid methods for structural calculation. The investigation is implemented by forced vibration experiment. In the experiment, colored random wave having predominant frequency that is similar to natural frequency of the experimental model is input. Stainless steel and carbon steel are selected as material of experimental model. Excitation is continued until the experimental model is damaged, and is carried out with various input levels. As a result of the experiment, it is confirmed that input energy for failure increase with an increase of time for failure. Additionally it is confirmed that input energy for failure depend on the material.
机译:本文从能量平衡的角度介绍了在核电厂安装的管道的动态强度评估。安装在核电厂(如管道和设备)的机械结构通常在弹性区域静态设计。虽然这些机械结构具有足够的地震安全保证金,但理解最终的强度是非常重要的,以提高意外严重地震的地震安全可靠性。在本研究中,从能量平衡方程的观点来看,研究了简单的单度自由度模型的最终强度,这是结构计算的有效方法之一。调查由强制振动实验实施。在实验中,输入具有与实验模型的自然频率类似的主要频率的彩色随机波。选择不锈钢和碳钢作为实验模型的材料。继续激发直到实验模型损坏,并以各种输入水平进行。由于实验结果,确认失效的输入能量随着故障的时间而增加。另外,确认失败的输入能量取决于材料。

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