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Fabrication of TBMs cooling structures demonstrators using additive manufacturing (AM) technology and HIP

机译:使用增材制造(AM)技术和HIP来制造TBM冷却结构演示器

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Several mock-ups, each of them consisting of six rectangular channels with dimensions according to the EU Test Blanket Modules (TBMs) specifications, were manufactured by selective laser melting (SLM) technology using P91, a ferritic-martensitic 9%Cr-1%Mo-V steel with a metallurgical behavior similar to EUROFER, the reference structural material for DEMO blanket concepts. SLM parameters led to an as-built density of 99.35% Theoretical Density (TD) that increased up to 99.74% after hot isostatic pressing (HIP). Dimensional control showed that the differences between the original design and the component are below 100 pm. By the appropriate selection of normalization and tempering parameters it was possible to obtain a material fulfilling P91 specification. The microstructure was investigated after SLM, HIP and normalizing and tempering treatments. In all cases, it consisted of thin martensitic laths. Subsize tensile samples were extracted from the mock-ups to measure the mechanical tensile properties after each step of the manufacturing process. The effect of thermal treatments on hardness was also evaluated. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用P91(铁素体马氏体9%Cr-1%)P91通过选择性激光熔化(SLM)技术制造了几个模型,每个模型由六个矩形通道组成,尺寸均符合EU测试毯模块(TBM)规格。 Mo-V钢的冶金性能类似于EUROFER,DEMO橡皮布概念的参考结构材料。 SLM参数产生的竣工密度为99.35%理论密度(TD),在热等静压(HIP)后增加至99.74%。尺寸控制表明,原始设计和组件之间的差异在100 pm以下。通过适当选择正火和回火参数,可以获得符合P91规格的材料。经过SLM,HIP以及正火和回火处理后,对显微组织进行了研究。在所有情况下,它都由薄薄的马氏体板条组成。从模型中提取较小尺寸的拉伸样品,以在制造过程的每个步骤之后测量机械拉伸性能。还评估了热处理对硬度的影响。 (C)2015 Elsevier B.V.保留所有权利。

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