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A novel method to determine the mixed mode (I/III) dynamic fracture initiation toughness of materials

机译:一种确定混合模式(I / III)动态断裂起始韧性的新方法

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摘要

A novel hybrid experimental-numerical approach is proposed to determine the mixed-mode (I/III) dynamic fracture initiation toughness of engineering materials. To demonstrate the methodology, cylindrical aluminum alloy specimens with V-notch spiral cracks on the surface at spiral inclined angles of beta sp=0 circle,11.25 circle,22.5 circle,33.75 circle and 45 circle are subjected to dynamic torsion load using a torsional Hopkinson bar apparatus. The torque applied at the onset of fracture is measured through strain gages attached to the incident and transmitter bars. Stereo digital image correlation (StereoDIC) is performed to measure the full field deformation and crack mouth opening displacement (CMOD) as a function of loading time. Results are used to estimate the crack initiation time. The dynamic stress intensity factors are extracted numerically based on the dynamic interaction integral method using ABAQUS. The mode-I (KId), mode-III (KIIId), and mixed-Mode (K(I/III)d) dynamic initiation toughness data as a function of spiral angles are presented and discussed.
机译:提出了一种新型混合实验 - 数值方法,用于确定工程材料的混合模式(I / III)动态断裂起始韧性。为了证明方法,圆柱形铝合金标本,表面上具有V-Notch螺旋裂缝的螺旋倾斜角度,螺旋倾斜角度= 0圈,11.25圈,22.5圈,33.75圈和45个圆圈使用扭转霍普金森进行动态扭转载荷酒吧设备。在裂缝开始时施加的扭矩通过附着在入射和发射器条附着的应变计来测量。执行立体数字图像相关(立体码)以测量全场变形和裂缝口开口位移(CMOD)作为加载时间的函数。结果用于估计裂纹启动时间。基于使用ABAQU的动态相互作用积分方法,数值上提取动态应力强度因子。呈现和讨论了作为螺旋角度的函数的模式-i(KID),模式-III(KIIID)和混合模式(K(I / III)D)动态发起韧性数据。

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