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Intercrystalline cracking of austenitic steel during brazing

机译:钎焊过程中奥氏体钢的晶间开裂

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During brazing of austenitic stainless steel with copper based brazing material a common failure occurs, namely that the brazing material solutes along grain boundaries, which look like cracks. This unfortunate effect occurred when AISI 304 steel is brazed. To avoid this unwanted effect - since the cracks propagate mainly on high angle grain boundaries - our goal was to enhance the number of special coincident site lattice type grain boundaries with thermomechanical treatment. Experiments were performed for 1, 48 and 72 hour heat treatments at different level of cold rolled materials. After the thermomechanical treatment significant decrease in the crack size was found in depth and width, respectively. The grain boundaries were investigated on electro polished samples in an electron microscope with electron backscattered diffraction technique. The brazing was made with Boehler SG-CuSi3 brazing material.
机译:用铜基钎焊材料钎焊奥氏体不锈钢时,会发生常见故障,即钎焊材料沿晶界溶化,看起来像裂纹。钎焊AISI 304钢时会发生这种不幸的效果。为了避免这种不良影响-由于裂纹主要在高角度晶界上扩展-我们的目标是通过热机械处理增加特殊重合点晶格型晶界的数量。在不同水平的冷轧材料上进行了1、48和72小时热处理的实验。在热机械处理之后,在深度和宽度上分别发现了裂纹尺寸的显着减小。使用电子背散射衍射技术在电子显微镜下的电抛光样品上研究了晶界。钎焊是用Boehler SG-CuSi3钎焊材料制成的。

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