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Application of the Advanced Multi-Step Brazing for fabrication of the high heat flux component

机译:先进的多步钎焊在高温通量组件制造中的应用

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A novel fabrication method for a divertor heat removal component with tungsten (W) armour and copper alloy heat sink was newly developed and named as the "Advanced Multi-Step Brazing (AMSB). The basic principle of multi-step brazing is to apply the "advanced brazing technique" repeatedly during the manufacturing process of the single divertor heat removal component. The advanced brazing technique was originally developed by our previous work for joining between oxide dispersion strengthened copper alloy (ODS-Cu) and W with BNi-6 (Ni-11%P) filler material. The applied ODS-Cu was GlidCop (R) (Cu-0.3wt%Al2O3). One of the possible examples of the AMSB fabrication process can be considered as follows. First, an appropriate cooling flow path channel is processed into a GlidCop (R) heat sink. Then, the flow path channel is sealed in a leak tightness condition with a lid made by GlidCop (R). The leak tightness joint between GlidCop (R) (GlidCop (R)/GlidCop (R)) can be realized by application of the "advanced brazing technique." Second, in order to facilitate the weldability to connect the other cooling pipe system, the sleeves made by stainless steel (SUS) are jointed on the interface edge of the flow path channel of the GlidCop (R) heat sink with a leak tightness condition by the "advanced brazing technique." Finally, Warmour is jointed on the GlidCop (R) heat sink also by the "advanced brazing technique." In this study, the mechanical strength of the SUS/GlidCop (R) joint was confirmed by the three-point bending test. Then, AMSB divertor mock-up with leak tightness condition was successfully produced. (c) 2020 Elsevier B.V. All rights reserved.
机译:具有钨(W)铠装和铜合金散热器的二级散热部件的新型制造方法新开发并被命名为“先进的多步钎焊(AMSB)。多步钎焊的基本原理是应用单位式散热部件的制造过程中的“高级钎焊技术”。先进的钎焊技术最初是由我们以前的作品开发的,用于在氧化物分散体之间加强铜合金(ODS-Cu)和Bni-6(Ni -11%p)填料。应用的ODS-Cu是Glidcop(R)(Cu-0.3wt%Al2O3)。AMSB制造过程的可能实例之一可以如下认为。首先,适当的冷却流动路径通道被加工到Glidcop(R)散热器中。然后,流动路径通道密封在漏极紧密状态,盖子用Glidcop(R)制成的盖子。Glidcop(R)之间的泄漏紧密关节(Glidcop(R)/ Glidcop(R))可以通过应用o实现f“先进的钎焊技术”。第二,为了便于连接其他冷却管系统的可焊性,通过不锈钢(SUS)制造的套管在Glidcop(R)的流路通道的界面边缘上。通过“先进的钎焊技术”,散热器泄漏紧张的紧张条件。最后,通过“先进的钎焊技术”,温鲁在GLIDCOP(R)散热器上联合在本研究中,SUS / GLIDCOP的机械强度( R)接头通过三点弯曲试验证实。然后,成功地生产了具有泄漏密封性条件的AMSB Ververtor模拟。 (c)2020 Elsevier B.v.保留所有权利。

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