Creep-fatigue life prediction using simple high-temperature low-cycle fatigue testing machines

T. Endo, T. Sakon
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引用次数: 14

Abstract

AbstractSeveral criteria have been proposed for the fracture caused by creep-fatigue interaction and many studies are still being made to verify the validity of these criteria. Most of the studies, however, are based on data obtained by short-time tests. A simple high-temperature low-cycle fatigue testing machine for long-time creep-fatigue tests has been developed and experiments on two kinds of Cr-Mo-V steel forgings and 304 stainless steel plate carried out. The experimental results indicate: (1) the data obtained by long-hold time tests deviate considerably from the linear damage fraction rule; (2) creep-rupture ductility seems to be one of the important factors affecting creep-fatigue life after long times; and (3) in the case of materials whose creep-rupture ductility shows a marked variation with time, Manson's ∆ecp—∆Ncp diagram may not become a single line.
用简单高温低周疲劳试验机预测蠕变疲劳寿命
摘要对于蠕变-疲劳相互作用导致的断裂,已经提出了几种判据,目前仍有许多研究在验证这些判据的有效性。然而,大多数研究都是基于通过短时间测试获得的数据。研制了用于长时间蠕变疲劳试验的简易高温低周疲劳试验机,并对两种Cr-Mo-V钢锻件和304不锈钢板进行了试验。试验结果表明:(1)长时间试验数据与线性损伤分数规律存在较大偏差;(2)蠕变断裂延展性是影响长时间蠕变疲劳寿命的重要因素之一;(3)对于蠕变断裂延性随时间变化明显的材料,曼森∆ecp -∆Ncp图可能不会成为一条单线。
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