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Geometrical size effect in high cycle fatigue strength of heavy-walled Ductile Cast Iron GJS400: Weakest link vs. defect-based approach

机译:几何尺寸对厚壁球墨铸铁GJS400高周疲劳强度的影响:最弱环节与基于缺陷的方法

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Fatigue strength is known to decrease with increasing dimension of the component. This is due to a technological size effect, related to the production process, and to a geometrical size effect, due to a higher probability of finding a large defect. To investigate the latter, an heavy-walled component made of Ductile Cast Iron (DCI) has been trepanned and a fatigue test plan has been carried out using 4 different specimen geometries. An attempt has been made to relate the resulting fatigue strength using a weakest-link approach based on the effective volumes and surfaces. This approach seems to work well only in cases of different specimen's lengths. Some of the fracture surfaces were analyzed by means of SEM and the initiating defects were identified and measured. An approach in which the defects population can be randomly distributed in the specimen has been tried. Virtual fatigue tests have been carried out by considering pure propagation of the worst defect. The resulting fatigue curves showed that this approach is promising but needs further description of the initiation phase.
机译:已知疲劳强度会随着组件尺寸的增加而降低。这是由于与生产过程有关的技术尺寸效应,以及由于发现大缺陷的可能性较高而导致的几何尺寸效应。为了研究后者,对由球墨铸铁(DCI)制成的厚壁部件进行了开裂,并使用4种不同的几何形状进行了疲劳测试计划。已经尝试基于有效体积和表面使用最弱链接方法来关联所得的疲劳强度。这种方法似乎仅在不同标本长度的情况下才有效。通过SEM分析了一些断裂表面,并识别和测量了初始缺陷。已经尝试了一种方法,可以在样本中随机分布缺陷种群。虚拟疲劳测试是通过考虑最严重缺陷的纯传播进行的。由此产生的疲劳曲线表明,这种方法很有希望,但需要进一步描述起始阶段。

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