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Experimental study of the interaction of ceramic breeder pebble beds with structural materials under thermo-mechanical loads

机译:热力作用下陶瓷种卵石床与结构材料相互作用的实验研究

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This paper presents the first results obtained in a facility constructed at the University of California, Los Angeles to study the interaction of ceramic breeder pebble beds with structural materials in conditions relevant to fusion energy power plant blanket operations. The experiments study the thermo-mechanical performance of lithium meta-titanate oxide (Li_2TiO_3) pebbles and silicon carbide clad constrained by a low thermal expansion alloy in vacuum and He atmosphere. The results show that large deformations due to induced thermal stresses are present during the first heat cycle but afterward are accommodated by a combination of pebble re-arrangement within the bed and thermally induced creep deformation. Initial results of a numerical simulation of the experiments using a finite element code that includes creep deformation is also presented. Planned operation of the UCLA thermo-mechanics test facility is summarized to conclude the paper.
机译:本文介绍了在加利福尼亚大学洛杉矶分校建造的一个设施中获得的第一个结果,该设施用于研究与聚变能源电厂毯子运行相关的条件下陶瓷育种卵石床与结构材料的相互作用。实验研究了低热膨胀合金在真空和He气氛下约束的钛酸锂(Li_2TiO_3)卵石和包覆的碳化硅的热机械性能。结果表明,在第一个热循环过程中由于感应热应力而存在较大的变形,但随后通过床体内卵石的重新排列和热感应蠕变变形的组合来适应这种变形。还给出了使用包括蠕变变形的有限元代码进行的实验数值模拟的初步结果。总结了UCLA热力学测试设备的计划运行情况,以得出结论。

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