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首页> 外文期刊>International Journal of Solids and Structures >Failure mechanism of S-shaped fissure in brittle materials under uniaxial tension: Experimental and numerical analyses
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Failure mechanism of S-shaped fissure in brittle materials under uniaxial tension: Experimental and numerical analyses

机译:单轴张力下脆性S形裂缝的破裂机理:实验和数值分析

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The behavior and mechanism of crack initiation and coalescence of S-shaped fissure are investigated in the study to shed more light on the failure characteristics of non-straight fissures. The uniaxial tensile tests with 3D-printed samples and numerical simulations are carried out to study the influence of different geometric parameters of S-shaped fissure, including the inclination angle beta and effective curvature A/c. The crack coalescence of an S-shaped fissure is observed to occur exclusively through tensile cracks, while the tip cracking and non-tip cracking patterns of S-shaped fissures can be identified based on the crack initiation position. It is found that the inclination angle and effective curvature have a substantial influence on the failure mode of the S-shaped fissure. Based on experimental results, extensive numerical simulations are performed to predict the cracking patterns, e.g., tip cracking/non-tip cracking. A reasonably effective, quick criteria approach for identifying the coalescence patterns in terms of parameters A/c-beta for S-shaped fissures under uniaxial tension is derived based on vast numerical calculations. The current study yields a favorable demonstration of the application of 3D printing technology in adept arbitrary geometry formation. (C) 2020 Published by Elsevier Ltd.
机译:研究了S形裂缝的裂纹启动和聚结的行为和机制在研究中对非直接裂缝的失效特性进行了更轻的阐明。进行了具有3D印刷样品和数值模拟的单轴拉伸试验,以研究S形裂缝的不同几何参数的影响,包括倾斜角β和有效曲率A / C.观察到S形裂缝的裂缝结合仅通过拉伸裂缝发生,而S形裂解的尖端开裂和非尖端开裂图案可以基于裂纹引发位置鉴定。发现倾斜角度和有效曲率对S形裂缝的故障模式具有显着影响。基于实验结果,进行广泛的数值模拟以预测裂缝图案,例如尖端开裂/非尖端开裂。基于巨大数值计算,导出了在单轴张力下的参数A / C-Beta方面识别聚结模式的合理有效的快速标准方法。目前的研究在擅长的任意几何形状形成中产生了3D印刷技术的应用。 (c)2020年由elestvier有限公司发布

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