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Solid state bonding of CuCrZr to 316L stainless steel for ITER applications

机译:用于ITER应用的CuCrZr与316L不锈钢的固态结合

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Dissimilar metal bonds between CuCrZr and 316L stainless steel were prepared using two different solid state joining techniques. In the first instance, hot isostatic pressing, a high temperature diffusion bonding process was used to join the copper alloy to the stainless steel substrate at temperatures near 1000℃. In the second instance, explosion bonding at ambient temperature was employed. These two techniques both yielded mechanically robust joints, where the strength of the interface exceeded that of the copper alloy, the weaker of the two substrates. However, the two bonding techniques produced near-joint microstructures that were very different. The microstructure and mechanical performance of CuCrZr/316L stainless steel joints prepared via both techniques are compared. Microstructural analysis of the joints included scanning electron microscopy, electron microprobe analysis and Auger spectroscopy techniques. The bulk mechanical properties of the substrate alloys were very different as well and are described. Particular emphasis is placed on the residual mechanical properties of the CuCrZr after thermal processing that simulate beryllium tile bonding since once the Be tiles are in place, the copper alloy cannot be solutionized and age-hardened to return it to full strength.
机译:使用两种不同的固态连接技术制备了CuCrZr和316L不锈钢之间的不同金属键。首先,在热等静压下,采用高温扩散键合工艺在接近1000℃的温度下将铜合金连接到不锈钢基板上。在第二种情况下,采用环境温度下的爆炸粘合。这两种技术都产生了机械坚固的接头,其中界面的强度超过了铜合金的强度,而铜合金是两种基材中较弱的一种。但是,两种键合技术产生的近接头微结构差异很大。比较了通过两种技术制备的CuCrZr / 316L不锈钢接头的组织和力学性能。关节的微观结构分析包括扫描电子显微镜,电子显微探针分析和俄歇光谱技术。基体合金的整体机械性能也有很大不同,对此进行了描述。尤其要强调的是,在模拟铍瓷砖粘合的热处理之后,CuCrZr的残余机械性能,因为一旦放置Be瓷砖,铜合金就无法固溶和时效硬化,无法使其恢复到完全强度。

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