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High temperature strength and inelastic behavior of plate-fin structures for HTGR

机译:HTGR板翅结构的高温强度和非弹性行为

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In this paper, both high temperature strength and inelastic behavior of plate-fin structures were discussed for applying these structures to the compact heat exchangers such as recuperative and intermediate heat exchangers for high-temperature gas-cooled reactors (HTGR). Firstly tensile, creep and fatigue tests of the brazed plate-fin model of small size were carried out to obtain the rupture strength and inelastic behavior. The influence of the braze filler metal thickness on the tensile strength was experimentally studied and a possibility of predicting both the tensile and creep strength was discussed using the data of base material of plates and fins. Secondly, we demonstrated the fabrication of large-size core with a dimension of 1000 mm, and also demonstrated that the bonding ratio in this core was improved up to almost 100% by adopting the pressurized tank system in the brazing process. Finally, we proposed the stress analysis method of plate-fin structures on the basis of the equivalent-homogeneous-solid concept, and carried out the elastic-plastic analysis of recuperative heat exchanger for HTGR. Characteristics of stress-strain behavior were discussed together with a possibility of predicting the fatigue life of the structure.
机译:在本文中,讨论了板翅式结构的高温强度和非弹性行为,以将这些结构应用于紧凑型换热器,例如用于高温气冷堆(HTGR)的换热器和中间换热器。首先,对小尺寸的钎焊板翅模型进行了拉伸,蠕变和疲劳试验,以获得断裂强度和非弹性行为。实验研究了钎料厚度对抗拉强度的影响,并利用板和鳍片的基础材料讨论了预测抗拉强度和蠕变强度的可能性。其次,我们演示了尺寸为1000 mm的大尺寸磁芯的制造,并且还证明了通过在钎焊过程中采用加压槽式系统,该磁芯中的粘结率提高了近100%。最后,基于等效均质固体概念,提出了板翅结构的应力分析方法,并对HTGR换热器进行了弹塑性分析。讨论了应力-应变行为的特征以及预测结构疲劳寿命的可能性。

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