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Investigation of Mixed-Mode I/II Fracture under Impact Loading Using Split-Hopkinson Pressure Bar

机译:用分裂 - 霍普金森压棒对冲击载荷混合模式I / II裂缝的研究

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摘要

Mixed-mode fracture of construction building materials under impact loading is quite common in civil engineering. The investigation of mixed-mode crack propagation behavior is an essential work for fundamental research and engineering application. A variable angle single cleavage semi-circle (VASCSC) specimen was proposed with which the dynamic fracture test was conducted by using a Split-Hopkinson pressure bar (SHPB). Notably, the mixed-mode crack propagation velocity could be detected by the synchronized crack velocity measuring system. With experimental results, the dynamic initiation stress intensity factors KI and KII were calculated by the experimental-numerical method. Additionally, the crack path of mixed-mode I/II fracture can be predicated precisely by using numerical method. Thus, a comprehensive approach of investigation on mixed-mode I/II fracture under impact loading was illustrated in this paper. The study demonstrates that the mixed-mode I/II crack would transform from complicated mode I/II to pure mode I during crack propagation, and several velocity decelerations induced crack deflection. The dynamic initiation fracture toughness of mixed-mode crack was determined by the experimental-numerical method. The VASCSC specimen has a great potential in investigating mixed-mode fracture problems with the SHPB device.
机译:冲击载荷下建筑建筑材料的混合模式骨折在土木工程中很常见。混合模式裂纹传播行为的调查是基本研究和工程应用的重要工作。提出了一种可变角度单裂解半圆(Vascsc)样本,通过使用分裂霍普金森压棒(SHPB)进行动态断裂试验。值得注意的是,可以通过同步裂缝速度测量系统检测混合模式裂缝传播速度。利用实验结果,通过实验 - 数值方法计算动态启动应力强度因子Ki和Kii。另外,通过使用数值方法可以精确地追踪混合模式I / II裂缝的裂纹路径。因此,本文说明了在冲击载荷下对混合模式I / II裂缝进行综合性研究。该研究表明,在裂纹传播期间,混合模式I / II裂缝将从复杂模式I / II转换为纯模式I,以及几个速度减速诱导裂缝偏转。混合模式裂纹的动态引发断裂韧性通过实验 - 数值方法测定。 Vascsc样本在调查与SHPB装置的混合模式骨折问题方面具有很大的潜力。

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