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首页> 外文期刊>Strain >High-Temperature Split-Hopkinson Pressure Bar with a Momentum Trap for Obtaining Flow Stress Behaviour and Dynamic Recrystallisation
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High-Temperature Split-Hopkinson Pressure Bar with a Momentum Trap for Obtaining Flow Stress Behaviour and Dynamic Recrystallisation

机译:带有动量阱的高温分体霍普金森压力棒,用于获得流动应力行为和动态重结晶

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摘要

In hot forming processes at elevated temperatures like wire rolling, microstructural changes such as repeated dynamic recrystallisation and grain growth occur. An experimental method to obtain the flow stress behaviour and to capture the recrystallised microstructure for materials subjected to large deformations, high temperatures between 900 and 1200 degrees C and high strain rates around 5000s(-1) is presented. The method is based on the split-Hopkinson pressure bar arrangement complemented with an inductive heat source. Furthermore, a momentum trap is added to ensure that the specimen is loaded only once. By quenching the specimen directly after the single loading, the dynamically recrystallised microstructure is preserved. The quenching is performed within 0.1s of loading by dropping the specimen into a water bath. By applying the momentum trap technique, the compressive loading of the specimen could be interrupted at a strain level slightly above the strain level corresponding to the peak stress, which is a good estimation for the onset of dynamic recrystallisation.
机译:在高温下的热成型过程中(例如,金属丝轧制),会发生微观结构变化,例如反复的动态再结晶和晶粒长大。提出了一种获得流动应力行为并捕获材料的重结晶组织的实验方法,该材料经受了大变形,900至1200摄氏度的高温和大约5000s(-1)的高应变速率。该方法基于分叉式霍普金森压力杆装置,并辅以感应热源。此外,添加了动量陷阱以确保样品仅加载一次。通过在单次加载后直接淬火样品,可以保留动态重结晶的微观结构。通过将样本滴入水浴中,在负载的0.1s内进行淬灭。通过应用动量陷阱技术,可以在略高于对应于峰值应力的应变水平的应变水平下中断试样的压缩载荷,这对于动态再结晶的开始是一个很好的估计。

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