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High-heat flux tests of fusion materials with stationary plasma in the PLM device

机译:PLM设备中具有固定等离子体的融合材料的高热通量试验

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摘要

The PLM plasma device was constructed for high heat flux tests of fusion plasma-facing materials and in-vessel components of a fusion reactor. The ITER-grade tungsten samples were irradiated with steady-state plasma in PLM. The combined tests of ITER-grade tungsten samples with an e-beam load of 40MW/m(2) and stationary steady-state plasma load of similar to 1 MW/m(2) led to erosion, cracking, and nanostructured "fuzz" structure growth on the material surface. The capillary porous system of liquid tin was tested with steady-state plasma in PLM during similar to 200 min demonstrating sustainability under high heat plasma load. Lithium materials deposited in the T-10 tokamak during experiments with lithium capillary-porous system have been irradiated with stationary steady-state plasma in PLM to test the evolution of the deposits under long-term plasma load.
机译:PLM等离子体器件被构造用于融合等离子体面向融合等离子体材料的高热通量试验和融合反应器的容器组分。用PLM中的稳态等离子体照射浸渍液晶样品。具有40mW / m(2)的电子束载荷的浸入钨样品的综合测试和类似于1 mw / m(2)的固定稳态等离子体负荷导致侵蚀,开裂和纳米结构“模糊”材料表面上的结构生长。在类似于200分钟的PLM中,用稳态等离子体在高温等离子体负载下证明可持续性的可持续性,在PLM中用稳态等离子体测试毛细管多孔系统。在PLM中用静态稳态等离子体照射锂毛细管多孔系统的T-10 Tokamak中的锂材料,以测试在长期等离子体负载下沉积物的演变。

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