首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.2: Computer Technology >A PRACTICAL CRITERION ON FATIGUE CRACK GROWTH RATES AT NOTCHES AND ITS APPLICATION TO PART-THROUGH-THICKNESS FATIGUE CRACKS IN NOTCHED PLATES SUBJECTED TO CYCLIC BENDING
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A PRACTICAL CRITERION ON FATIGUE CRACK GROWTH RATES AT NOTCHES AND ITS APPLICATION TO PART-THROUGH-THICKNESS FATIGUE CRACKS IN NOTCHED PLATES SUBJECTED TO CYCLIC BENDING

机译:槽口疲劳裂纹扩展速率的实用标准及其在循环弯曲槽口板的部分厚度疲劳裂纹中的应用

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摘要

In the present paper, an equivalent stress ratio concept, which has hitherto been developed by author [1-3], is applied to problems of part-through-thickness fatigue crack growth in notched plates subjected to cyclic bending loads, and a criterion for estimating fatigue crack growth rates is derived on the basis of the concept. In order to take a great variety of practical notches into consideration, a bending stress field of a notched plate containing a part-through-thickness fatigue crack emanating from a notch root is simplified by the elementary beam theory, and the stress field is characterized in accordance with classification of notch morphology: (a) an unnotch type, (b) a transverse type notch such as a groove, a shoulder, a trapezoidal protuberance, etc., which is disposed along a width of a plate, and ? a through-thickness type notch such as a circular and elliptical hole, a side-groove, etc. Experimental results on part-through-thickness fatigue cracks emanating from artificial flaws at notch roots in plates subjected to cyclic bending loads are analyzed. Growth rates of fatigue cracks in the notches are estimated based on the proposed criterion and the devised convenient method for calculating stress intensity factors, and they are compared with experimental ones.
机译:在本文中,由作者[1-3]提出的等效应力比的概念被应用到承受周期性弯曲载荷的缺口板中的部分厚度厚度疲劳裂纹扩展问题,并提出了一个准则。在此概念的基础上估算疲劳裂纹的增长率。为了考虑到各种实际的缺口,通过基本梁理论简化了包含从缺口根部发出的部分厚度疲劳裂纹的缺口板的弯曲应力场,并对该应力场进行了表征。根据缺口形态的分类:(a)缺口型,(b)沿板的宽度设置的横向型缺口,例如槽,肩,梯形突起等;以及分析了通过周期性弯曲载荷作用的板材的缺口根部的人工缺陷产生的厚度贯穿部分疲劳裂纹的实验结果。该厚度分布的缺口例如为圆形和椭圆形孔,侧面凹槽等。根据提出的判据和所设计的方便的应力强度因子计算方法,估算了缺口中疲劳裂纹的增长率,并将其与实验结果进行了比较。

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