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Microstructure characterization in the weld metals of HQ130 + QJ63 high strength steels

机译:HQ130 + QJ63高强度钢的焊接金属的显微组织表征

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Microstructural characterization of the weld metals of HQ130 + QJ63 high strength steels, welded under 80% Ar + 20% CO2 gas shielded metal arc welding and different weld heat inputs, was carried out by means of scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The relative contents of acicular ferrite (AF) and pro-eutectic ferrites (PF) in the weld metals were evaluated by means of XQF-2000 micro-image analyser. The experimental results indicate that there is acicular ferrite in the grain and some pro-eutectic ferrite on the boundary of original austenite grains when the weld heat input is small (e??? = 9.6 kJ/cm), but the main microstructure is ferrite side plate (FSP) when the heat input is larger (e??? = 22.3 kJ/cm). So the weld heat input should be strictly controlled in the range 10 a?? 20 kJ/cm and then the content of pro-eutectic ferrite is limited to $lt$ 25%. Thus weld metals of HQ130 + QJ63 high strength steels with high toughness and excellent resistance to cracking can be ensured.
机译:通过扫描电子对HQ130 + QJ63高强度钢在80%Ar + 20%CO 2 气体保护金属电弧焊和不同焊接热量输入下焊接的焊接金属进行了显微组织表征。显微镜(SEM)和透射电子显微镜(TEM)。利用XQF-2000显微图像分析仪对焊缝金属中针状铁素体(AF)和共晶铁素体(PF)的相对含量进行了评估。实验结果表明,当焊接热输入较小时(e ??? = 9.6 kJ / cm),晶粒中存在针状铁素体,原始奥氏体晶界上存在一些共晶铁素体,但主要组织为铁素体。热量输入较大时(e ??? = 22.3 kJ / cm)侧板(FSP)。因此,焊接热输入应严格控制在10 a? 20 kJ / cm,然后将共晶铁素体的含量限制在25%以内。因此,可以确保具有高韧性和优异的抗开裂性的HQ130 + QJ63高强度钢的焊接金属。

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