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Design Methodologies for High Temperature Reactor Structural Components Cladded with Noncompliant Materials

机译:高温反应器结构部件的设计方法与不合规材料包覆的

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The existing Class A metallic materials qualified for ASME Section Ⅲ, Division 5 rules for high temperature nuclear reactors, are not optimized for corrosion resistance when exposed to corrosive reactor coolants such as molten salts, and molten lead and lead-bismuth eutectic. Introducing new corrosion-resistant materials into the Code would be a lengthy and expensive process for long design lifetimes, requiring long-term creep test data. A near-term alternative solution might be to allow designers to clad the existing Class A materials with thin layer of some corrosion-resistant material. However, the current ASME Section Ⅲ, Division 5 rules provide no guidance on evaluating cladded components against the Code creep-fatigue or strain limits requirements. This necessitates the development of design rules for cladded components that do not require long-term testing of clad materials. Depending on the difference in mechanical properties, the influence of clad on the long term response of the structural system can be significant or negligible. This work focuses on developing design rules for cladded components with a clad material that does not accumulate significant inelastic deformation compared to the base material. This work proposes to treat such clad materials as linear elastic. Sample calculations including finite element analyses of a representative molten salt reactor heat exchanger tube without and with clad were performed to verify the proposed approach. Finally, a complete set of design rules for components with noncompliant clad material is proposed.
机译:胜任ASME第现有的一类金属材料Ⅲ,用于高温核反应堆5分部规则,都没有对耐腐蚀性当暴露于腐蚀性的反应器冷却剂的优化,如熔融的盐,以及熔融铅和铅铋共晶体。引入新的耐腐蚀材料进代码将是长寿命设计,需要长期蠕变试验的数据的冗长和昂贵的过程。近期的替代解决方案可能是,使设计者能够与一些耐腐蚀材料的薄层包覆在现有的一类材料。然而,目前的ASME第Ⅲ,司5规则提供评估针对代码蠕变疲劳或应变极限要求包覆部件没有指导。这就需要设计规则对于不熔覆组件的发展需要长期复合材料的测试。根据在机械性能差,包层对结构系统的长期响应的影响可以被显著或可忽略不计。这项工作的重点是开发设计规则与包覆材料包覆的组件,相比于基材不会累积显著非弹性变形。这项工作提出了治疗这种复合材料的线弹性。样品计算,包括不具有和具有包层的代表性熔盐反应器的热交换管的有限元分析来验证所提出的方法。最后,对于使用不符合复合材料部件一套完整的设计规则建议。

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