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Preparation of hot-rolled potassium doped tungsten (KW) thick plate and performance of KW-Cu monoblock mock-ups under high heat flux testing

机译:掺杂钨(kW)厚板的制备及kW-Cu单块模拟的高热通量试验性能

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A 10-kg thick potassium doped tungsten (KW) plate with 70% deformation was prepared by hot rolling. After annealing (1800?°C, 1?h), the typical dovetail splicing morphology was formed which was related to the clustered potassium bubbles in the matrix. Both the as-received KW and annealed KW had the ductile brittle transition temperature (DBTT) less than 250?°C. Taken from this plate, KW-Cu monoblock mock-ups for divertor were manufactured by hot isostatic pressing (HIP) method. High heat flux (HHF) test (1000 cycles at 15?MW/m2) was carried out on the KW-Cu monoblock mock-up by the electron beam thermal shock equipment. The surface damage and recrystallization behavior of the KW-Cu monoblock mock-up were investigated by metallographic means. After HHF test, no debonding at the KW-Cu interface or penetrating cracks of the KW block was found. The tested KW-Cu monoblock mock-up had similar microstructure to annealed KW. Potassium bubbles promoted the unique recrystallization morphology, which was the key to ensuring good high temperature performance of KW.
机译:通过热轧制备10千克厚的掺杂钨(KW)板,具有70%变形。退火后(1800?°C,1?H),形成典型的燕尾剪接形态,其与基质中的聚集钾泡有关。接收的KW和退火的KW都具有小于250Ω°C的韧性脆性转变温度(DBTT)。取自该板,通过热等静压(臀部)方法制造了转栓的KW-Cu单块模型。通过电子束热冲击设备对高热量(HHF)测试(15μm/ m2)的测试(15μm/ m2)进行了kw-cu单块模拟。通过金相装置研究了KW-Cu单块模拟的表面损伤和再结晶行为。在HHF测试之后,发现在KW-Cu接口或KW块的穿透裂缝中没有剥离。测试的kw-cu单嵌段模型具有类似的微观结构以退火kw。泡沫促进了独特的重结晶形态,这是确保kW良好高温性能的关键。

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