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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Static strength of brittle materials under multiaxial nonuniform stress states: A novel statistical model for assessing size effects
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Static strength of brittle materials under multiaxial nonuniform stress states: A novel statistical model for assessing size effects

机译:多轴非均匀应力下脆性材料的静态强度:评估尺寸效应的新型统计模型

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摘要

In this paper, a model for the assessment of size effects on quasi-static strength of brittle materials subjected to applied load inducing a nonuniform stress distribution within the material volume is proposed. An equivalent stress computed through finite element analysis is introduced in the model to account for the effect of the stress gradient within the loaded volume. The defect size distribution is modelled, differently from the literature, with the largest extreme value distribution. The proposed model has been validated with datasets available in the literature and obtained through bending tests on concrete specimens. For each type of test, the model permits to properly assess size effects. Due to its general formulation, a model for the strength variation with respect to the loaded volume, regardless of the testing type, was also obtained, further proving its effectiveness.
机译:在本文中,提出了一种用于评估施加施加负载的脆性材料的拟脆性材料的尺寸效应的模型,诱导诱导材料体积内的不均匀应力分布。在模型中引入了通过有限元分析计算的等效应力,以解释应力梯度在负载体积内的效果。缺陷大小分布与文献不同,具有最大的极值分布。所提出的模型已通过文献中提供的数据集进行验证,并通过在混凝土样本上弯曲测试获得。对于每种类型的测试,模型允许正确评估大小效应。由于其通用配方,还获得了对负载体积的强度变化的模型,无论检测型如何,进一步证明其有效性。

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