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A study of the mechanical response of polycrystalline ice subjected to dynamic tension loading using the spalling test technique

机译:使用散裂测试技术研究多晶冰在动态拉伸载荷下的力学响应

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摘要

Polycrystalline ice has been extensively investigated during the last decades regarding its mechanical behaviour for quasi-static loadings. Conversely, only few studies can be found on its dynamic behaviour and scientists suffer from a lack of experimental observation to develop relevant modelling at high strain-rate ranges. Dynamic experiments have already been conducted in compression mode using Hopkinson bar set-up. Regarding tension, experimental observations and measurements are scarce. The literature gives only approximated strength values. The knowledge of the latter is essential to design structures that may experience ice impact. The present study aims at providing the first reproducible experimental data of the tensile strength of polycrystalline ice subjected to dynamic tensile loading. To do so, a spalling test technique has been used for the first time on ice to apply tensile loading at strain-rates from 41 s(-1) to 271 s(-1). The experimental results show that the tensile strength is sensitive to the applied strain-rate, evolving from 1.9 MPa to 16.3 MPa for the highest applied loading rate.
机译:在过去的几十年中,对多晶冰在准静态载荷下的力学行为进行了广泛的研究。相反,关于其动态行为的研究很少,而科学家则缺乏实验观察来开发高应变率范围内的相关模型。已经使用Hopkinson条设置在压缩模式下进行了动态实验。关于张力,缺乏实验观察和测量。文献只给出了近似的强度值。后者的知识对于设计可能会遇到冰冲击的结构至关重要。本研究旨在提供多晶冰在动态拉伸载荷作用下的拉伸强度的第一个可再现的实验数据。为此,首次在冰上使用剥落测试技术,以41 s(-1)至271 s(-1)的应变速率施加拉伸载荷。实验结果表明,拉伸强度对施加的应变速率敏感,从1.9 MPa升高到16.3 MPa,以获得最高的施加载荷速率。

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