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Metallic Hollow Sphere Structures Manufacturing Process

机译:金属空心球结构制造工艺

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This paper focuses on manufacturing process of regular Metallic Hollow Sphere Structures (MHSS) through brazing technique. As a large stress level is generally confined into the necks formed by brazed spheres, the influence of the filler material on mechanical behavior of cellular metal has been studied. The microstructures of joints resulting from nickel hollow spheres brazing with different commercial fillers "MBF 30" and "MBF 1006" were compared by Scanning Electron Microscopy (SEM) and microhardness testing. These studies revealed a wide boron diffusion into nickel shells through grain boundaries for "MBF 30" brazing, with the formation of borides in a fine brittle eutectic structure. Conversely it was observed that the eutectic structure concentrates at the necks for "MBF 1006" and can be completely eliminated by diffusion-brazing, despite of the shells thinness. The uniaxial compressive tests of HSP specimens have shown two different strain mechanisms depending on brazing process.
机译:本文侧重于通过钎焊技术制造规则金属空心球结构(MHSS)的制造过程。随着大的应力水平通常被限制在由钎焊球形成的颈部中,研究了填充材料对细胞金属的力学行为的影响。通过扫描电子显微镜(SEM)和显微硬度测试,比较由镍中空球产生的镍中空球体钎焊和“MBF 1006”的关节微观结构。这些研究揭示了硼扩散到镍壳中,通过晶界为“MBF 30”钎焊,以细细的脆性结构形成硼化物。相反,虽然壳薄,所以观察到颈部的颈部浓缩,并且可以通过扩散钎焊来完全消除。根据钎焊过程,HSP样本的单轴压缩试验示出了两种不同的应变机制。

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