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Evaluation of Strength on Dissimilar Metal Joints for ITER First Wall Components

机译:浸泡第一壁部件不同金属关节强度的评价

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The first wall (FW) of ITER blanket includes beryllium (Be) armor tiles joined to CuCrZr heat sink with stainless steel cooling tube and backing plate in order to improve plasma performance and reduce thermal stress. Therefore dissimilar materials joints are indispensable for fabricating the high heat flux components. Since these joints must withstand thermal and mechanical loads caused by the plasma and electromagnetic force, it is important to evaluate the strength and thermal fatigue life of dissimilar materials joints. When the dissimilar materials joints are subjected by external force and thermal loading, the stress of the joint may indicate singularity at the interface edge. Since the stress singularity may lower the strength of joints, the singularity is evaluated numerically for the various materials combinations and joint configuration to be used in high heat flux components of fusion reactors in this investigation. Moreover, tensile test and elasto-plastic FEM analysis are performed to investigate the fracture behavior of Be/Cu alloy and stainless steel/Cu alloy obtained the FW mock-up. The results reveal two singular solutions of type r~(p_j-1) for a half-plane bonded to a quarter-plane joint and the singularity is larger than that of a bonded quarter-planes joint. From the viewpoint of stress singularity, the configuration of bonded quarter-planes joint is better than the half-plane bonded to a quarter-plane joint. The singularity for W/Cu alloy combination is large compared to other combination of materials. Especially the singularity of stainless steel/Cu alloy is very small. Tensile specimen of Be/CuCrZr joint fractured at the bonding interface due to the stress singularity. For the stainless steel/Cu alloy, however, the specimens fractured at the Cu alloy region apart from the interface.
机译:浸泡毯的第一墙(FW)包括与不锈钢冷却管和背板连接到CucrZR散热器的铍(BE)铠装瓦,以提高等离子体性能并降低热应力。因此,不同的材料接头对于制造高热量组件是必不可少的。由于这些接头必须承受由等离子体和电磁力引起的热和机械负载,因此评估不同材料接头的强度和热疲劳寿命是重要的。当不同材料接头受到外力和热负荷时,关节的应力可以在界面边缘处表示奇点。由于应力奇异性可能降低关节的强度,因此在该研究中以各种材料组合和关节构型进行数值评价奇异性,以便在该研究中用于熔融反应器的高热通量组分。此外,进行拉伸试验和弹性塑料有限元分析以研究Be / Cu合金和不锈钢/ Cu合金的裂缝行为获得FW模拟。结果揭示了与四分之一平面接头粘合的半平面类型R〜(P_J-1)的两个奇异溶液,奇点大于键合的四分飞机关节。从应力奇异性的观点来看,粘合四分飞机接头的构造优于与四分之一平面接头的半平面更好。与其他材料组合相比,W / Cu合金组合的奇异性大。特别是不锈钢/ Cu合金的奇异性非常小。由于应力奇异性,在粘合界面处于粘接界面断裂的抗拉标本。然而,对于不锈钢/ Cu合金,该试样在Cu合金区域与界面分开。

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