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Chemical elements diffusion in the stainless steel components brazed with Cu-Ag alloy

机译:化学元素在钎焊与Cu-Ag合金钎焊的不锈钢组分中的扩散

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The paper presents the study of diffusion of chemical elements through a brazing joint, between two thin components (0.5mm) made of stainless steel 304. An experimental brazing filler material has been used for brazing stainless steel component and then the diffusion phenomenon has been studied, in terms of chemical element displacement from the brazed separation interface. The filler material is in the form of a metal rod coated with ceramic slurry mixture of minerals, containing precursors and metallic powders, which can contribute to the formation of deposit brazed. In determining the distance of diffusion of chemical elements, on both sides of the fusion line, were performed measurements of the chemical composition using electron microscopy SEM and EDX spectrometry. Metallographic analysis of cross sections was performed with the aim of highlight the microstructural characteristics of brazed joints, for estimate the wetting capacity, adherence of filler metal and highlight any imperfections. Analyzes performed showed the penetration of alloying elements from the solder (Ag, Cu, Zn and Sn) towards the base material (stainless steel), over distances up to 60 microns.
机译:本文介绍了304的实验钎料材料已经用于钎焊不锈钢组件通过钎焊接合部的化学元素的扩散的研究中,由不锈钢制成的两个薄部件(0.5mm)的之间,然后将扩散现象进行了研究中,从钎焊分离界面化学元素的位移计。填充材料是在涂覆有矿物陶瓷浆料混合物,含前体和金属粉末的金属杆,其可以向存款的钎焊形成的形式。在确定化学元素的扩散距离,在熔接线的两侧,进行使用电子显微镜SEM和EDX光谱法的化学成分的测量。用高光的目的钎焊接头的微观结构特征进行横截面的金相分析,对于估计的润湿能力,填充金属的粘附性和突出的任何缺陷。分析所执行显示从焊料(银,铜,Zn和Sn)朝向所述基体材料(不锈钢)的合金元素的渗透,在距离可达60微米。

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