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Development of Functionally Graded Coating based Plasma Facing Materials for Fusion Reactor

机译:基于功能梯度涂层的聚变堆等离子堆焊材料的开发

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Different coating technologies, such as plasma spray (PS), physical vapor deposition (PVD) and chemical vapor deposition (CVD), which can fabricate the PFM and join it to heat sink materials simultaneously, were applied for the fabrication of plasma facing materials (PFM) in fusion reactor. In the Institute of Nuclear Materials, University of Science and Technology Beijing (USTB), the concept of functionally graded materials (FGM) was adopted to fabricate coatings for effectively alleviating the thermal stress generated between coatings and the substrate materials under high heat flux loading (5~20 MW/m~2). In the last several years, functionally graded coatings, including B4C/CU, W/Cu and Mo/Cu systems were successfully fabricated by atmospheric plasma spray (APS). Characterization of coatings was performed in order to assess microstructure, mechanical properties and high heat flux properties of the FGM coatings. Furthermore, a high thick tungsten coating with 4 mm on copper - chromium - zirconium (Cu, Cr, Zr) alloy substrates was fabricated by APS. The porosity of the coating is less than 2% while mean tensile strength of the coating is about 7 MPa. However, the content of oxygen in the coating is about 6 wt% by energy dispersive spectrum (EDS) analysis, thus further optimization is necessary.
机译:等离子喷涂(PS),物理气相沉积(PVD)和化学气相沉积(CVD)等不同的涂层技术可以制造PFM并将其同时连接到散热片材料上,这些涂层技术被用于制造面向等离子体的材料(聚变反应堆中的PFM)。北京科技大学核材料研究所(USTB)采用功能梯度材料(FGM)的概念来制造涂层,以有效减轻在高热通量负载下涂层与基底材料之间产生的热应力( 5〜20 MW / m〜2)。在过去的几年中,通过大气等离子喷涂(APS)成功地制造了功能分级的涂层,包括B4C / CU,W / Cu和Mo / Cu系统。为了评估FGM涂层的微观结构,机械性能和高热通量性能,进行了涂层的表征。此外,通过APS在铜-铬-锆(Cu,Cr,Zr)合金基底上制备了4 mm的高厚度钨涂层。涂层的孔隙率小于2%,而涂层的平均拉伸强度为约7MPa。然而,通过能量色散光谱(EDS)分析,涂层中的氧含量为约6重量%,因此需要进一步优化。

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