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The effects of the heat treatment on the microstructure of Inconel 625/steel bimetal joint obtained by explosive welding

机译:热处理对爆炸焊接Inconel 625 /钢双金属接头组织的影响

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摘要

In this investigation steel P355NH was successfully clad with Inconel 625 through the method of explosive welding. Explosively welded bimetal was subjected to the two separated heat treatment processes: stress relief annealing (at 620oC for 90 minutes) and normalizing (at 910oC for 30 minutes). In order to identify the microstructure of the joint and to investigate the influence of the heat treatment on it, the light and scanning electron microscope observations and microhardness analysis have been performed. In order to investigate the diffusion zone microstructure the scanning transmission electron microscope observation have been performed. It was stated that obtained joint has characteristic wavy-shape geometry with the presence of the melted zones and severe deformed grains of both joined materials. Strengthening of materials in joint zone was established with microhardness analysis. In both of the heat treatments the changes in the grain structure have been observed. The normalizing heat treatment has the most significant impact on the microstructure of the joint as well as the concentration of the chemical elements in the joint zone. It was reported that due to normalizing the diffusion zone has been formed together with precipitates in the joint zone.
机译:在这项研究中,P355NH钢通过爆炸焊接成功地被Inconel 625包覆。爆炸焊接双金属经受两个分开的热处理工艺:应力消除退火(在620oC下持续90分钟)和正火(在910oC下持续30分钟)。为了确定接头的微观结构并研究热处理对其的影响,已进行了光学和扫描电子显微镜观察以及显微硬度分析。为了研究扩散区的微观结构,已经进行了扫描透射电子显微镜观察。据称,所获得的接头具有特征性的波浪形几何形状,同时存在两种结合材料的熔融区和严重变形的晶粒。通过显微硬度分析确定了接头区材料的强度。在两种热处理中,都观察到晶粒结构的变化。正火热处理对接头的微观结构以及接头区域中化学元素的浓度影响最大。据报道由于归一化,扩散区已经与结合区中的沉淀物一起形成。

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