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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Load-Inversion Device for the High Strain Rate Tensile Testing of Sheet Materials with Hopkinson Pressure Bars
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Load-Inversion Device for the High Strain Rate Tensile Testing of Sheet Materials with Hopkinson Pressure Bars

机译:Load-Inversion装置高应变率与霍普金森薄板材料的拉伸测试压力棒

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摘要

A high strain rate tensile testing technique for sheet materials is presented which makes use of a split Hopkinson pressure bar system in conjunction with a load inversion device. With compressive loads applied to its boundaries, the load inversion device introduces tension into a sheet specimen. Two output bars are used to minimize the effect of bending waves on the output force measurement. A Digital Image Correlation (DIC) algorithm is used to determine the strain history in the specimen gage section based on high speed video imaging. Detailed finite element analysis of the experimental set-up is performed to validate the design of the load inversion device. It is shown that under the assumption of perfect alignment and slip-free attachment of the specimen, the measured stress-strain curve is free from spurious oscillations at a strain rate of 1,000 s~(-1). Validation experiments are carried out using tensile specimens extracted from 1.4 thick TRIP780 steel sheets. The experimental results for uniaxial tension at strain rates ranging from 200 s~(-1) to 1,000 s~(-1) confirm the oscillation-free numerical results in an approximate manner. Dynamic tension experiments are also performed on notched specimens to illustrate the validity of the proposed experimental technique for characterizing the effect of strain rate on the onset of ductile fracture in sheet materials.
机译:高应变率拉伸试验技术薄板材料提出了使使用分离式霍普金森压杆系统结合载荷反演设备。压缩负载应用到其边界反转装置介绍张力加载到一个表样本。减少弯曲波浪的效果输出的力测量。相关性(DIC)算法用于确定试样的应变历史计部分基于高速视频成像。有限元分析的实验设置执行验证的设计设备荷载反演。假设完美的校准和slip-free附件的样品,测量从虚假的应力-应变曲线是免费的振动的应变率1000年代~(1)。验证实验进行使用拉伸标本提取1.4厚TRIP780钢板。单轴拉伸的应变率从200年代~ 1000年代(1)~(1)确认在一个oscillation-free数值结果近似的方式。也表现在取得标本说明提出的有效性实验技术的描述塑性应变率对发病的影响骨折在薄板材料。

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