在中国开发和制造铍铠装热核聚变实验堆增强热通量 FW,并实现批量生产

IF 3.5 1区 物理与天体物理 Q1 PHYSICS, FLUIDS & PLASMAS
J.M. Chen, P.H. Wang, Y. Zhou, Q. Li, J.L. Li, J. Wu, J. Du, B. Yang, X.B. Zhu, H. Gao, D. Hu, Y.Y. Chen, Q.M. Wang, Z.H. Liu, K. Wang, S. Liu, L.M. Bao and R. Hunt
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引用次数: 0

摘要

热核实验堆的增强热通量(EHF)第一壁(FW)为其后面的其他组件提供热屏蔽,并限制其等离子体边界,从而承受高达 4.7 MW m-2 的高表面热负荷。中国通过制作小型模型、半原型和全尺寸原型(FSP),分阶段稳步发展 EHF FW 技术,并在西南物理研究院进行批量生产。双金属扩散粘接、焊接和装配的所有关键技术都已完全合格。利用 EMS-400 电子束设备进行的脉冲高热通量试验评估了铍铠装瓦尺寸对热疲劳性能的影响。结果发现,Be/CuCrZr 的粘接及其热疲劳寿命与瓦片尺寸有很大关系,12 × 12 平方毫米的 Be 瓦片可满足所需的性能要求,无论是单个瓦片还是通过切割较大的瓦片来浇铸。使用这种 Be 瓷砖的小规模模型在 4.7 MW m-2 的条件下可承受 16 000 次热循环,而使用 16 × 16 平方毫米 Be 瓷砖的 EHF FW 手指则表现出不稳定的性能。相比之下,只有大于 24 × 12 平方毫米的 Be 瓷砖才能通过热等静压与 CuCrZr 散热器可靠地扩散结合,因此应将其铸成更小的瓷砖。制造 FSP 手指需要经过复杂的热循环,在时效强化和冷轧状态下使用 CuCrZr 合金,使其抗拉强度保持在 285 兆帕的水平,平均晶粒尺寸小于 100 微米。此外,还展示了用于手指配对的管道焊接及其与中心梁的装配,包括在狭窄空间内进行两次焊接以进行修复。FSP 显示了良好的手指对准、尺寸控制和可靠的真空密封性,冷却通道没有任何堵塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and manufacturing of beryllium-armoring ITER enhanced heat flux FW toward series production in China
ITER’s enhanced heat flux (EHF) first wall (FW) provides thermal shielding to the other components behind it and limits its plasma boundary, consequently bearing high surface heat loads up to 4.7 MW m−2. China developed the EHF FW technologies in steady stages by making small mock-ups, semi-prototypes and a full-scale prototype (FSP), working toward series production at the Southwestern Institute of Physics. All the key technologies for bimetallic diffusion bonding, welding and assembly have been fully qualified. The Be armor tile size effects on thermal-fatigue performance have been evaluated using a pulsed high heat flux test with an EMS-400 electron beam facility. It was found that both the Be/CuCrZr bonding and its thermal-fatigue life are highly dependent on the tile size, and 12 × 12 mm2 Be tiles are acceptable for the required performance, either as individual tiles or in castellation by cutting larger ones. Small-scale mock-ups with such Be tiles survived 16 000 thermal cycles at 4.7 MW m−2, while EHF FW fingers with 16 × 16 mm2 Be tiles demonstrated unstable performance. In contrast, only BE tiles larger than 24 × 12 mm2 showed reliable diffusion bonding with the CuCrZr heat sink by hot isostatic pressing and consequently should be castellated into smaller ones. The manufacturing of the FSP finger goes through complex thermal cycles, using CuCrZr alloys in age-strengthening plus cold-rolling states, enabling it to maintain its tensile strength to the level of 285 MPa and its mean grain size less than 100 µm. The pipe welding for finger pairing and its assembly with the central beam are demonstrated, including enabling welding to be carried out twice for repair in a narrow space. The FSP showed good finger alignment, dimensional control and reliable vacuum tightness without any blockage of cooling channels.
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来源期刊
Nuclear Fusion
Nuclear Fusion 物理-物理:核物理
CiteScore
6.30
自引率
39.40%
发文量
411
审稿时长
2.6 months
期刊介绍: Nuclear Fusion publishes articles making significant advances to the field of controlled thermonuclear fusion. The journal scope includes: -the production, heating and confinement of high temperature plasmas; -the physical properties of such plasmas; -the experimental or theoretical methods of exploring or explaining them; -fusion reactor physics; -reactor concepts; and -fusion technologies. The journal has a dedicated Associate Editor for inertial confinement fusion.
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