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Observation of the Tungsten Surface Damage under ITER-relevant Transient Heat Loads during and after Electron Beam Pulse

机译:在电子束脉冲期间和之后观察液体相关瞬态热负荷下的钨表面损伤

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Wide-area (2 cm~2) high-power (up to 7 MW) submillisecond electron beam source was applied for generation of intense pulsed heat loads on tungsten sample. Various diagnostics sets were used for in-situ research of the surface damage: IR imaging of the front view of the target, capturing of the reflection pattern of continuous wave laser radiation, recording of intensity of thermal radiation from several spots of the surface. Sample was exposed to a various heat loads near and above melting threshold. Formation of the crack network on the surface and its development with successive pulses was observed. Two-dimensional temperature distribution was obtained after heating at the cooling stage. Melting and spalling of material were shown on severe damaged target. Propagation of the cracks along the surface at a depth of 0.1 - 0.2 mm was revealed with transverse microsections. Circular motion of the molten layer was found with subsequent exposures.
机译:宽面积(2厘米〜2)大功率(最多7兆瓦)亚壳倍频电子束源应用于钨样品上的强烈脉冲热负荷。各种诊断集用于表面损伤的原位研究:目标的前视图的IR成像,连续波激光辐射的反射模式的捕获,从表面的几个斑点记录热辐射强度。将样品暴露于近似熔化阈值的各种热负荷。观察到地面上的裂缝网络及其连续脉冲的发展。在冷却阶段加热后获得二维温度分布。物质的熔化和剥落显示在严重受损的目标上。用横向的微观切割露,揭示了沿表面沿表面的裂缝沿着0.1-0.2mm的深度的传播。用随后的曝光发现熔融层的圆形运动。

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