首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Deposition of lithium on a plasma edge probe in TFTR. Behavior of lithium-painted walls interacting with edge plasmas
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Deposition of lithium on a plasma edge probe in TFTR. Behavior of lithium-painted walls interacting with edge plasmas

机译:TFTR中的等离子体边缘探针上的锂沉积。锂涂壁与边缘等离子体相互作用的行为

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Recent observations have indicated that lithium pellet injection wall conditioning plays an important role in achieving the enhanced supershot regime in TFTR (the tokamak test fusion reactor). However, little is understood about the behavior of lithium-coated limiter walls, interacting with edge plasmas. In the final campaing of TFTR, a cylindrical carbon fiber composite probe was inserted into the boundary plasma region and exposed to ohmically heated deuterium discharges with lithium pellet injection. The ion-drift side probe surface exhibits a sign of codeposition of lithium, carbon, oxygen, and deuterium, whereas the electron side essentially indicates high-temperature erosion. It is found that lithium is incorporated in these codeposits in the form of oxide at the concentration of a few percent. In the electron side, lithium has been found to penetrate deeply into the probe material, presumably via rapid diffusion through interphane spaces in the graphite crystalline. Though it is not conclusive, materials mixing in the carbon and lithium system appears to be a key process to successful lithium wall conditioning.
机译:最近的观察表明,锂颗粒注入壁调节在实现TFTR(托卡马克试验聚变反应堆)中增强的超强射态方面起着重要作用。然而,对于与边缘等离子体相互作用的锂涂覆的限流器壁的行为知之甚少。在TFTR的最后一次野营中,将圆柱形碳纤维复合材料探针插入边界等离子体区域,并通过注入锂颗粒注入暴露于欧姆加热的氘放电。离子漂移侧探针表面显示出锂,碳,氧和氘的共沉积迹象,而电子侧本质上表明高温腐蚀。已发现锂以百分之几的浓度以氧化物的形式掺入这些共沉积物中。在电子方面,已发现锂可能深深地渗透到探针材料中,大概是通过在石墨晶体中的中间间隙迅速扩散。尽管不是确定性的,但碳和锂系统中的材料混合似乎是成功进行锂壁调节的关键过程。

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