Diametral compression of short cylinders with a central hole as a method for assessing the tear resistance of brittle materials

V. Y. Goltsev, A. Osintsev, A. Plotnikov, V. I. Polskij
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Abstract

The possibility of evaluating the tear resistance of brittle materials by diametral compression test of short cylinders (solid and central with a central hole) has been analyzed. The computational analysis was performed by the finite element method using the ANSYS program. It is shown that the stress distribution in a disk with a hole is similar that without a hole but contains disturbances introduced by a stress concentrator in the form of a hole. The normalized values of the maximum first principal stresses for a disk with a hole exceed the values for a disk without a hole by more than 5 times. The experimental analysis was carried out by testing short cylinders, both solid and with a central hole, made of brittle materials: cast iron and graphite. It is noted that the fracture resistance, determined by the formula recommended by the ASTM D3967 – 95a standard, practically does not differ for solid cast iron samples, and for graphite differs by 1.5 times from the true tear resistance of materials; when testing samples with a central hole, the tear resistance differs from the standard values by a factor of 1.5 and almost 2.5, respectively. The different nature of the sample destruction is also noted: slow controlled rupture of cast iron and dynamic destruction of graphite with the corresponding deformation diagrams. The results of testing fuel pellets of uranium dioxide are given as an example of testing real cylindrical samples with a central hole. It is shown that the test results of ARV-1 graphite samples are in good agreement with the test results of fuel samples. Thus, the possibility of testing small-sized short cylinders according to the diametral compression scheme for indirect assessment of the tensile strength of brittle materials has been confirmed. A calculation formula is proposed for an indirect assessment of the tensile strength of brittle materials based on the results of testing small-sized short cylinders, both with and without a central hole according to the diametral compression scheme.
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带中心孔的短圆柱体的直径压缩作为评估脆性材料抗撕裂性的方法
分析了用短圆柱(实心圆柱和带中心孔圆柱)直径压缩试验评价脆性材料抗撕裂性能的可能性。利用ANSYS软件进行有限元计算分析。结果表明,有孔圆盘的应力分布与无孔圆盘相似,但存在以孔形式存在的应力集中器所引入的扰动。有孔磁盘的最大第一主应力归一化值比无孔磁盘的最大第一主应力归一化值高出5倍以上。实验分析是通过测试短圆柱体来进行的,这些圆柱体有实心的,也有中心有孔的,由易碎的材料:铸铁和石墨制成。值得注意的是,根据ASTM D3967 - 95a标准推荐的公式确定的抗断裂性,对于固体铸铁样品实际上没有差异,而对于石墨样品,其抗撕裂性与材料的真实抗撕裂性相差1.5倍;当测试具有中心孔的样品时,抗撕裂性分别与标准值相差1.5和近2.5倍。试样破坏的不同性质也被注意到:铸铁的缓慢控制破裂和石墨的动态破坏,并附有相应的变形图。给出了二氧化铀燃料球团的测试结果,并以具有中心孔的圆柱形样品为例进行了测试。结果表明,ARV-1石墨样品的测试结果与燃料样品的测试结果吻合较好。由此,证实了用直径压缩法测试小尺寸短圆筒间接评价脆性材料抗拉强度的可能性。根据直径压缩方案对带中心孔和不带中心孔的小型短圆筒的试验结果,提出了间接评价脆性材料抗拉强度的计算公式。
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