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IFMIF lithium target backplate design integration and thermo-mechanical analysis

机译:IFMIF锂靶背板设计集成和热机械分析

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In the framework of the IFMIF R&D program, a design-integration and a thermo-mechanical analysis of the Li target backplate has been carried out. The stress and displacement fields, due to the heating induced by the neutron flux, have been computed with the aim to check if the stress remains below the material's allowable values and the induced displacement field leads to an acceptable deformation of the surface where the lithium flows, so that no flux instabilities are induced in the lithium jet. The analysis has been performed for two different backplate geometries, namely a thick and a thin option, for two different thermal and mechanical constraint cases and for different materials: austenitic steel 316L, IEA F82H steel and Mod 9CrlMo steel (T91). The results, obtained by means of ABAQUS code, show that AISI 316L steel might be not suitable as black-plate material, conversely, both the F82H and the T91 steels satisfy ASME requirements. The thin plate solution appears preferable in order to reduce the stress field.
机译:在IFMIF研发计划的框架内,对Li靶背板进行了设计集成和热力学分析。计算了由于中子通量引起的加热而产生的应力和位移场,目的是检查应力是否保持在材料的允许值以下,并且所产生的位移场导致锂流过的表面发生可接受的变形,因此不会在锂射流中引起磁通量不稳定性。已针对两种不同的背板几何形状(即厚和薄选项),两种不同的热和机械约束情况以及不同的材料(奥氏体钢316L,IEA F82H钢和Mod 9CrlMo钢(T91))进行了分析。通过ABAQUS编码获得的结果表明,AISI 316L钢可能不适合用作黑板材料,相反,F82H和T91钢均满足ASME要求。为了减小应力场,薄板溶液似乎是优选的。

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