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Effects of finite notch width on the fracture of chevron-notched specimens

机译:有限的缺口宽度对人字形缺口试样断裂的影响

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The chevron notched three-point bend test specimen is often used for measuring the fracture toughness of brittle materials such as ceramics. Specimen sizes are often very restricted when testing advanced materials due to limited volume of material available or high material costs. Since the minimum chevron notch width is limited by the size of the cutting wheels or wire saw used to produce it, as the sample size gets small enough, the notch width becomes large in relation to the sample size. It is shown via finite element analysis that the notch width has an important effect on the stress intensity factors of short cracks. The minimum in the normalized stress intensity factor versus crack length is lost, rendering the usual analysis of the experimental results invalid and contributing greatly to decreased fracture stability of such specimens. Previous analytical and numerical studies do not take into account the width of the chevron notch. Based on the calculations, a guideline to permissible notch widths is introduced. [References: 12]
机译:人字形缺口三点弯曲试样通常用于测量脆性材料(如陶瓷)的断裂韧性。由于可用材料的数量有限或材料成本高昂,因此在测试高级材料时,样品尺寸通常非常受限制。由于最小的V形槽口宽度受制于其使用的切割轮或线锯的尺寸的限制,因此,当样品尺寸变得足够小时,相对于样品尺寸,槽口宽度就会变大。通过有限元分析表明,缺口宽度对短裂纹的应力强度因子有重要影响。标准化应力强度因子与裂纹长度的最小值丢失了,从而使对实验结果的常规分析无效,并极大地降低了此类试样的断裂稳定性。先前的分析和数值研究并未考虑人字形切口的宽度。基于这些计算,引入了允许的切口宽度的准则。 [参考:12]

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