首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.1: Codes and Standards >APPLICABILITY OF THE MODIFIED RATE APPROACH METHOD UNDER VARIOUS CONDITIONS SIMULATING ACTUAL PLANT CONDITIONS
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APPLICABILITY OF THE MODIFIED RATE APPROACH METHOD UNDER VARIOUS CONDITIONS SIMULATING ACTUAL PLANT CONDITIONS

机译:模拟实际工厂条件下各种条件下修正利率法的适用性

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The fatigue life in elevated temperature water is strongly affected by water chemistry, temperature and strain rate. The effects of these parameters on fatigue life reduction have been investigated experimentally. In transient condition in an actual plant, however, such parameters as temperature and strain rate are not constant. In order to evaluate fatigue damage in actual plant on the basis of experimental results under constant temperature and strain rate condition, the modified rate approach method was developed.As a part of the EFT (Environmental Fatigue Tests) project, the study was conducted in order to evaluate the applicability of the modified rate approach to the case where temperature and strain rate varied simultaneously. It was reported in the previous papers that the accuracy of modified rate approach is about factor of 2.Various kinds of transient have to be taken into account of in actual plant fatigue evaluation, and stress cycle of several ranges of amplitude has to be considered in assessing damage from fatigue. Generally, cumulative usage factor is applied in this type of evaluation. In this study, in order to confirm applicability of modified rate approach method together with cumulative usage factor, tests were carried out by combining stress cycle blocks of different strain amplitude levels, in which temperature changes in response to strain change in a simulated PWR environment.
机译:高温水中的疲劳寿命受到水化学性质,温度和应变率的强烈影响。实验研究了这些参数对降低疲劳寿命的影响。然而,在实际工厂的瞬态条件下,诸如温度和应变率之类的参数不是恒定的。为了在恒定温度和应变速率条件下根据实验结果评估实际工厂中的疲劳损伤,开发了改进的速率法。作为EFT(环境疲劳试验)项目的一部分,按顺序进行了研究以评估修正速率法在温度和应变速率同时变化的情况下的适用性。以前的文献报道,修正率法的精度约为2倍。在实际的植物疲劳评估中必须考虑多种瞬态,并且必须考虑多个振幅范围的应力循环。评估疲劳造成的损害。通常,在这种类型的评估中将应用累积使用系数。在这项研究中,为了确认修正率法和累积使用系数的适用性,通过组合不同应变幅度水平的应力循环模块进行了测试,其中温度在模拟PWR环境中响应应变变化而变化。

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