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Investigation of micro-crack occurrence conditions in diffusion bonded Cu-304 stainless steel couple

机译:扩散结合Cu-304不锈钢对中微裂纹发生条件的研究

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Kirkendall effect has been used for calculation of intrinsic diffusion coefficients at the interface of diffusion bonded 304 stainless steel and electrolytic copper. Welding conditions have been chosen at temperatures in the range 700-900 deg C for times of up to 30 min and pressures of up to 12 MPa. Microstructure of samples has been assessed using metallography, tensile testing, and scanning electron microscopy (SEM). Diffusion distance, and concentration distribution have been detected by using SEM and EDS analysis. Moreover, Heumann and Darken methods have been used in calculations of intrinsic and chemical diffusion coefficients. Under optimum bonding conditions, it was observed that the conditions giving the quotient (D_(Cu)/D_(Fe + Cr + Ni)) is different than unit propagated micro-voids at copper side in grain boundaries.
机译:Kirkendall效应已用于计算扩散结合的304不锈钢和电解铜界面处的固有扩散系数。已在700-900℃的温度范围内选择了长达30分钟的焊接条件,并选择了最高12 MPa的压力。样品的微观结构已使用金相,拉伸测试和扫描电子显微镜(SEM)进行了评估。通过使用SEM和EDS分析检测了扩散距离和浓度分布。此外,Heumann和Darken方法已用于计算本征和化学扩散系数。在最佳结合条件下,观察到商数(D_(Cu)/ D_(Fe + Cr + Ni))的产生条件不同于晶界中铜侧的单位传播微孔。

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