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A study of plasma facing tungsten components with electrical discharge machined surface exposed to cyclic thermal loads

机译:放电加工表面暴露于循环热负荷下的面向等离子体的钨部件的研究

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Through R&D for a plasma facing units (PFUs) in an outer vertical target of an ITER full-tungsten (W) divertor, Japan Atomic Energy Agency succeeded in demonstrating the durability of the W divertor shaped by an electrical discharge machining (EDM). To prevent melting of W armors in the PFUs, an adequate technology to meet requirements of a geometrical shape and a tolerance is one of the most important key issues in a manufacturing process. From the necessity, the EDM has been evaluated to control the final shape of the W armor. Though the EDM was known to be advantages such as an easy workability, a potential disadvantage of presence of micro-cracks on the W surface appeared. In order to examine a potential effect of the micro-crack on a heat removal durability, a high heat flux testing was carried out for the W divertor mock-up with the polish and the EDM. As the result, all of the W armors endured the repetitive heat load of 1000 cycles at an absorbed heat flux of more than 20 MW/m(2), which strongly encourages the realization of the PFUs of the ITER full-W divertor with the various geometrical shape and the high accuracy tolerance. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过对ITER全钨(W)偏滤器外部垂直靶上的等离子面对单元(PFU)进行研发,日本原子能机构成功展示了通过放电加工(EDM)成型的W偏滤器的耐用性。为了防止W装甲在PFU中融化,一种满足几何形状和公差要求的适当技术是制造过程中最重要的关键问题之一。根据需要,已经对EDM进行了评估,以控制W装甲的最终形状。尽管已知EDM具有诸如易于加工的优点,但是在W表面上存在微裂纹的潜在缺点出现了。为了检查微裂纹对散热耐久性的潜在影响,对使用抛光剂和EDM的W分流器模型进行了高热通量测试。结果,所有W装甲在吸收的热通量超过20 MW / m(2)的情况下都承受了1000次循环的重复热负荷,这极大地促进了ITER全W转向器的PFU的实现。各种几何形状和高精度公差。 (C)2016 Elsevier B.V.保留所有权利。

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