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首页> 外文期刊>Fire Safety Journal >Mechanical behaviour of a very-high strength steel (S960QL) under extreme conditions of high strain rates and elevated temperatures
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Mechanical behaviour of a very-high strength steel (S960QL) under extreme conditions of high strain rates and elevated temperatures

机译:超高强度钢(S960QL)在高应变率和高温的极端条件下的机械性能

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The lack of full stress-strain data sets under the coupled effect of high strain rates and elevated temperatures is one of the main concerns in a multi-hazard (blast and fire) approach of very-high strength steel (VHSS) structures. The main research challenge is represented by the assessment of the strain rate behaviour in tension and in a wide range of temperatures of a very-high strength steel (S960QL). For this purpose a split Hopkinson tensile bar equipped with a water-cooled induction heating system is used for the mechanical characterisation at high strain rates (250 s(-1), 500 s(-1) and 950 s(-1)) and in a wide range of temperatures (20 degrees C, 400 degrees C, 550 degrees C, 700 degrees C and 900 degrees C). A special focus on the influence of the relative sample position in thickness such as core and peripheral material was examined. A comparison between reduction factors of main mechanical properties, in both dynamic and quasi-static conditions, is presented.In addition, some predictive equations were developed to define the dynamic strength decrease with increasing temperatures. Finally, the constitutive parameters of the Johnson-Cook strength model for both core and peripheral materials were reported.
机译:在高应变率和高温的耦合作用下缺乏完整的应力应变数据集是超高强度钢(VHSS)结构的多危害(爆炸和着火)方法中的主要问题之一。主要研究挑战是通过评估超高强度钢(S960QL)在拉伸和宽温度范围内的应变率行为来进行的。为此目的,配备有水冷感应加热系统的剖分式霍普金森拉伸杆用于高应变率(250 s(-1),500 s(-1)和950 s(-1))的机械表征。在各种温度下(20摄氏度,400摄氏度,550摄氏度,700摄氏度和900摄氏度)。特别关注了相对样品位置对厚度的影响,例如芯和外围材料。在动态和准静态条件下,对主要力学性能的降低因子进行了比较。此外,建立了一些预测方程式来定义随着温度升高动态强度的降低。最后,报告了核心和外围材料的Johnson-Cook强度模型的本构参数。

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