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Experimental impact analysis on ultra-high performance concrete (UHPC) for achieving stress equilibrium (SE) and constant strain rate (CSR) in Split Hopkinson pressure bar (SHPB) using pulse shaping technique

机译:利用脉冲整形技术对超高性能混凝土(UHPC)进行应力平衡(SE)和恒定应变率(CSR)在Split Hopkinson压杆(SHPB)中的实验影响分析

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This work emphasizes obtaining and validating experimental test results of ultra-high performance concrete (UHPC) under compressive impact loading at high strain rates (30-200 S-1). Cylindrical specimens of 9.2 mm in height and 23.8 mm in diameter were used for compression tests under dynamic and static conditions. Quality of stress equilibrium and constant strain rate were investigated using pulse shapers made of Copper and Aluminum with various geometries. Digital image correlation (DIC) was used to monitor the strains of some samples using a high speed camera at 186,000 frames per second and thus to compliment the calculated strain values obtained by the split Hopkinson pressure bar (SHBP) equations. The results showed that nearly constant strain rate and dynamic stress equilibrium over an effective duration of the test can be achieved for UHPC with a compressive strength of about 200 MPa. This validated the experimental test setup and allowed for the determination of the UHPC's dynamic impact factor based on the results obtained. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作着重于在高应变率(30-200 S-1)的压缩冲击载荷下获得和验证超高性能混凝土(UHPC)的实验测试结果。在动态和静态条件下,将高度为9.2毫米,直径为23.8毫米的圆柱试样用于压缩测试。使用由具有各种几何形状的铜和铝制成的脉冲整形器,研究了应力平衡和恒定应变率的质量。数字图像相关性(DIC)用于通过高速摄像头以每秒186,000帧的速度监视某些样品的应变,从而补充通过分裂的霍普金森压力杆(SHBP)方程获得的计算出的应变值。结果表明,对于抗压强度约为200 MPa的UHPC,在测试的有效时间内可以实现几乎恒定的应变速率和动应力平衡。这验证了实验测试设置,并允许根据获得的结果确定UHPC的动态影响因子。 (C)2017 Elsevier Ltd.保留所有权利。

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