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Effect of Heat-Treatment on the Interface Microstructure of Explosively Welded Stainless Steel - Bronze Composite

机译:热处理对爆炸焊接不锈钢界面微观结构的影响 - 青铜复合材料

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Analysis of structural variations taking place at the stainless steel (09Cr18Ni10Ti) - bronze (CuBe2Ni) interface obtained by explosive welding was conducted in the current work. The produced weld joint was post heat-treated in the temperature range from 500 to 800°C. Microstructural characterizations were carried out using optical and scanning electron microscopy. The results of the analysis revealed the presence of 2 zones at the interface: mixing zone of bronze and stainless steel and a diffusion zone. The diffusion processes in the weld joint during heating were studied by the energy-dispersive analysis (EDX). EDX studies revealed that at 800°C copper contained in bronze completely migrated from the diffusion layer to the mixing zone whereas iron concentration, on the contrary, increased in the diffusion layer. Voids appeared in the mixing zone of stainless steel and bronze due to the difference of diffusion coefficients of basic elements in the composite.
机译:在当前工作中进行了在不锈钢(09Cr18Ni10Ti) - 青铜(立方体2NI)界面处进行的结构变化分析。所产生的焊接接头在500至800℃的温度范围内进行热处理。使用光学和扫描电子显微镜进行微观结构表征。分析结果显示了界面处存在2个区域:青铜和不锈钢和扩散区的混合区。通过能量分散分析(EDX)研究了加热过程中焊接接头中的扩散过程。 EDX的研究表明,在800℃的铜中,在青铜中完全从扩散层迁移到混合区,而相反,在扩散层中的铁浓度增加。由于复合材料中基本元素的扩散系数差异,空隙出现在不锈钢和青铜的混合区中。

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