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Use of the Master Curve methodology for real three dimensional cracks

机译:使用Master Curve方法处理真实的三维裂纹

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摘要

At VTT, development work has been in progress for 15 years to develop and validate testing and analysis methods applicable for fracture resistance determination from small material samples. The VTT approach is a holistic approach by which to determine static, dynamic and crack arrest fracture toughness properties either directly or by correlations from small material samples. The development work has evolved a testing standard for fracture toughness testing in the transition region. The standard, known as the Master Curve standard is in a way "first of a kind", since it includes guidelines on how to properly treat the test data for use in structural integrity assessment. No standard, so far, has done this. The standard is based on the VTT approach, but presently, the VTT approach goes beyond the standard. Key components in the standard are statistical expressions for describing the data scatter, and for predicting a specimens size (crack front length) effect and an expression (Master Curve) for the fracture toughness temperature dependence. The standard and the approach, it is based upon, can be considered to represent the state of the art of small specimen fracture toughness characterization. Normally, the Master Curve parameters are determined using test specimens with "straight" crack fronts and comparatively uniform stress state along the crack front. This enables the use of a single K_I value and single constraint value to describe the whole specimen. For a real crack in a structure, this is usually not the case. Normally, both K_I and constraint vary along the crack front and in the case of a thermal shock, even the temperature will vary along the crack front. A proper means of applying the Master Curve methodology for such cases is presented here.
机译:在VTT,开发工作已经进行了15年,以开发和验证适用于从小材料样品中确定抗断裂性的测试和分析方法。 VTT方法是一种整体方法,通过该方法可以直接确定静态,动态和止裂断裂的韧性,也可以通过与小材料样本的相关来确定其韧性。开发工作已经发展了过渡区域断裂韧性测试的测试标准。该标准被称为“主曲线标准”,是一种“第一类”,因为它包含有关如何正确处理测试数据以用于结构完整性评估的指南。到目前为止,还没有任何标准可以做到这一点。该标准基于VTT方法,但是目前,VTT方法已超出该标准。标准中的关键组成部分是用于描述数据分散情况和用于预测试样尺寸(裂纹前长度)效应的统计表达式,以及用于表示断裂韧性温度依赖性的表达式(主曲线)。它所基于的标准和方法可以被认为代表了小试样断裂韧性表征的最新技术水平。通常,主曲线参数是使用具有“直”裂纹前沿和沿裂纹前沿相对均匀的应力状态的试样确定的。这样就可以使用单个K_I值和单个约束值来描述整个样本。对于结构中的真正裂缝,通常不是这种情况。通常,K_I和约束都沿着裂纹前沿变化,在热冲击的情况下,甚至温度也会沿着裂纹前沿变化。本文介绍了在这种情况下应用Master Curve方法的正确方法。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2007年第13期|p.1388-1394|共7页
  • 作者

    Kim Wallin;

  • 作者单位

    Finnish Academy, P.O. Box 1000, FIN-02044VTT, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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