首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Cavitation-induced erosion in liquid metal spallation targets - A comparison between a predictive method and measured erosion damage to stainless steel target modules at the Spallation Neutron Source
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Cavitation-induced erosion in liquid metal spallation targets - A comparison between a predictive method and measured erosion damage to stainless steel target modules at the Spallation Neutron Source

机译:液态金属介质靶标中的空化引起的腐蚀 - 介质中子源在不锈钢靶模块的预测方法与测量侵蚀损伤的比较

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摘要

Neutrons are produced for neutron scattering instruments at the Spallation Neutron Source by bombarding liquid mercury with a pulsed high-energy proton beam. The liquid mercury target material flows through a replaceable stainless-steel target vessel and cavitates during operation due to the extremely high heating rate caused by each proton pulse. Cavitation-induced erosion damage to the mercury-facing surfaces of target vessels is a key concern for target lifetime and has been the subject of considerable research. While numerous experiments have studied and modeled the progression of cavitation erosion damage to liquid metal target containers, direct quantitative measurements of actual erosion of a spallation target vessel were previously not available. Recently, the erosion damage to multiple target vessels operated at the Spallation Neutron Source was measured using a high-resolution laser scanning system, which provided an opportunity to study the efficacy of a cavitation damage progression model. In this paper, a cavitation progression modeling procedure developed using empirical observations is compared to measurements of samples from target vessels after operation. The strengths and limitations of the technique are discussed and methods for improving future modeling and predictive accuracy are proposed.
机译:通过用脉冲高能质子束轰击液态汞,为中子散射仪器生产中子散射仪器生产。由于每个质子脉冲引起的极高的加热速率,液体汞靶材料流过可更换的不锈钢靶容器并在操作期间空分。对目标船只的面向汞表面的空化引起的侵蚀损坏是目标寿命的关键问题,并且已经是大量研究的主题。虽然已经研究了许多实验并建模了对液态金属靶容器的空化腐蚀损坏的进展,但是先前不可用的直接定量测量介质靶血管的实际腐蚀。最近,使用高分辨率激光扫描系统测量在介质中子源上操作的多个目标容器的侵蚀损坏,该系统提供了研究空化损伤进展模型的功效的机会。在本文中,将使用经验观察结果开发的空化进展建模程序与操作血管后的样品的测量相比。讨论了该技术的强度和局限性,提出了提高未来建模和预测准确性的方法。

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