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Evaluation of Precracking Methods for the End-Notched Flexure Test

机译:切口缺口弯曲试验的预裂方法评估

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Results are presented from a study to evaluate and develop static mode-II precracking methods for use with the end-notched flexure test. Precracking followed by fracture toughness testing was performed on specimens from two different materials. Precracking was performed using both the four-point-bend and conventional three-point-bend end-notched flexure geometries. All testing was performed in the latter geometry. There was no difference in the precracks created by the two geometries. However, delamination toughness was observed to strongly depend on the amount of dynamic crack advance that occurs during the precracking process. This was hypothesized to be due to the faster crack speeds that are associated with larger amounts of advance. To address this, various precracking geometries were evaluated to determine those that would produce precracks that were essentially straight, perpendicular to the direction of crack advance, and of sufficient length to produce a precracked toughness at or near the minimum value that occurs with increasing precrack length. This results in a recommended geometry for use with the end-notched flexure test that is appropriate for both precracking and testing, and which therefore allows for nonprecracked and precracked toughnesses to be obtained from the same test specimen.
机译:从一项研究中得出了结果,以评估和开发与缺口缺口挠曲测试一起使用的静态II型预裂纹方法。在两种不同材料的样品上进行了预裂纹和断裂韧性测试。使用四点弯曲和传统的三点弯曲末端凹口弯曲几何形状进行预裂纹。所有测试均在后一种几何形状中进行。两种几何形状产生的预裂纹没有区别。但是,观察到分层韧性在很大程度上取决于在预裂化过程中发生的动态裂纹扩展量。据推测,这是由于与更大的前进量有关的更快的裂纹速度。为了解决这个问题,对各种预裂隙几何形状进行了评估,以确定那些会产生基本上笔直的,垂直于裂纹扩展方向的预裂隙,并且其长度足以在等于或接近随预裂隙长度增加而出现的最小值时产生预裂韧度的几何形状。 。这会导致推荐的几何形状用于端缺口挠曲测试,该几何适用于预裂纹和测试,因此可以从同一试样获得非预裂纹和预裂纹的韧性。

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