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Experimental study on dynamic fracturing behavior under blasting loading in PMMA

机译:PMMA爆破负荷下动态压裂行为的实验研究

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This study experimentally investigated dynamic fracturing behavior of brittle material under blasting loading, In the test, a detonator charged with DDNP (Diazodinitrophenol) and a PMMA (Poly methyl methacrylate) specimen, a transparent and homogeneous material, were used. A high speed camera was employed to observe the cracking behavior, and it successfully provided obvious evidences to understand the crack propagation of brittle material under blasting loading. Two kinds of crack, namely shock-wave driven and gas-driven crack, were observed during the test. We qualitatively identified the initiation and propagation processes of the cracks. The results show that the gas-driven fracture in an ear-like shape was more predominant than shock-wave-driven fractures. Experimental results (i.e., crack length and the number of cracks) reasonably matched with the analytical solution based on fracture mechanics.
机译:本研究使用爆破载荷下的脆性材料的实验研究的动态压裂行为,在试验中,使用用DDNP(二氮二硫苯酚)和PMMA(聚甲基丙烯酸甲酯)样本,透明和均质材料负载的雷管。采用高速相机观察裂缝行为,并成功提供了明显的证据,以了解爆破载荷下脆性材料的裂纹繁殖。在测试期间观察到两种裂缝,即冲击波驱动和气体驱动的裂缝。我们定性地确定了裂缝的起始和传播过程。结果表明,耳状形状的气体驱动的断裂比冲击波驱动的骨折更为偏向。基于骨折力学的分析解决方案,实验结果(即裂缝长度和裂缝数量)。

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