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Effects of Grain Size on Ultrasonic Attenuation in Type 316L Stainless Steel

机译:晶粒尺寸对316L不锈钢的超声衰减的影响

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摘要

A lead bismuth eutectic (LBE) spallation target will be installed in the Target Test Facility (TEF-T) in the Japan Proton Accelerator Research Complex (J-PARC). The spallation target vessel filled with LBE is made of type 316L stainless steel. However, various damages, such as erosion/corrosion damage and liquid metal embrittlement caused by contact with flowing LBE at high temperature, and irradiation hardening caused by protons and neutrons, may be inflicted on the target vessel, which will deteriorate the steel and might break the vessel. To monitor the target vessel for prevention of an accident, an ultrasonic technique has been proposed to establish off-line evaluation for estimating vessel material status during the target maintenance period. Basic R&D must be carried out to clarify the dependency of ultrasonic wave propagation behavior on material microstructures and obtain fundamental knowledge. As a first step, ultrasonic waves scattered by the grains of type 316L stainless steel are investigated using new experimental and numerical approaches in the present study. The results show that the grain size can be evaluated exactly and quantitatively by calculating the attenuation coefficient of the ultrasonic waves scattered by the grains. The results also show that the scattering regimes of ultrasonic waves depend heavily on the ratio of wavelength to average grain size, and are dominated by grains of extraordinarily large size along the wave propagation path.
机译:铅铋共晶(LBE)散裂靶材将安装在日本质子加速器研究中心(J-PARC)的靶材试验设施(TEF-T)中。装有LBE的散裂靶船由316L不锈钢制成。但是,目标容器可能遭受各种损害,例如,高温下与流动的LBE接触引起的腐蚀/腐蚀损害和液态金属脆化,以及质子和中子引起的辐照硬化,这将使钢变质并可能破裂。血管。为了监视目标船舶以防止事故发生,已经提出了一种超声技术来建立离线评估,以估计目标维护期间的船舶材料状态。必须进行基础研发,以阐明超声波传播行为对材料微结构的依赖性,并获得基础知识。第一步,使用新的实验和数值方法研究由316L型不锈钢晶粒散射的超声波。结果表明,通过计算颗粒散射的超声波的衰减系数,可以准确,定量地评估晶粒尺寸。结果还表明,超声波的散射方式在很大程度上取决于波长与平均晶粒尺寸的比率,并且在沿波传播路径的方向上具有超大尺寸的晶粒。

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