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Experimental and numerical survey on tensile fracture of polycrystalline graphite using design of experiments

机译:实验设计的多晶石墨拉伸断裂实验与数值研究

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摘要

A new test specimen for a tensile test of industrial graphite is introduced using experiment and finite element results. The most influencing factors on the tensile strength of the test specimens are considered and the number of tests, which are necessary to optimize the tensile strengths are reduced based on the design of experiment using the Taguchi method and the effects of all factors on strength of test samples are studied. Comparison of the predicted strengths based on the Taguchi approach with the measured experimental results and finite element analysis shows a good correlation between them. In addition, results show that the new introduced specimen makes a 33% increase in the probability of fracture of the test specimens in gage length and the measured tensile strengths are 20% higher than those measured using the standard of the American Society for Testing and Materials.
机译:利用实验和有限元结果介绍了一种用于工业石墨拉伸试验的新试样。考虑了使用Taguchi方法进行的实验设计以及所有因素对测试强度的影响,考虑了影响试样拉伸强度的最大因素,并减少了优化拉伸强度所需的测试次数。研究样本。基于田口方法的预测强度与实测实验结果和有限元分析的比较表明,两者之间具有良好的相关性。此外,结果表明,新引入的试样使测试试样的标距长度断裂概率增加了33%,并且测得的拉伸强度比使用美国材料与试验学会标准测得的拉伸强度高20%。 。

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