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Quantitative Analysis of Microstructural Constituents in Welded Transformation-Induced-Plasticity Steels

机译:焊接相变诱导塑性钢中显微组织成分的定量分析

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摘要

A quantitative analysis of retained austenite and nonmetallic inclusions in gas tungsten arc (GTA)–welded aluminum-containing transformation-induced-plasticity (TRIP) steels is presented. The amount of retained austenite in the heat-affected and fusion zones of welded aluminum-containing TRIP steel with different base metal austenite fractions has been measured by magnetic saturation measurements, to study the effect of weld thermal cycles on the stabilization of austenite. It is found that for base metals containing 3 to 14 pct of austenite, 4 to 13 pct of austenite is found in the heat-affected zones and 6 to 10 pct in the fusion zones. The decomposition kinetics of retained austenite in the base metal and welded samples was also studied by thermomagnetic measurements. The decomposition kinetics of the austenite in the fusion zone is found to be slower compared to that in the base metal. Thermomagnetic measurements indicated the formation of ferromagnetic ? carbides above 290 °C and paramagnetic ?(??) transient iron carbides at approximately 400 °C due to the decomposition of austenite during heating.
机译:给出了钨极氩弧焊(GTA)焊接的含铝相变诱发塑性(TRIP)钢中残留奥氏体和非金属夹杂物的定量分析。通过磁饱和测量法测量了具有不同贱金属奥氏体含量的含铝TRIP焊接钢的热影响区和熔合区中的残留奥氏体量,以研究焊接热循环对奥氏体稳定化的影响。发现对于包含3至14pct奥氏体的贱金属,在热影响区域中发现4至13pct奥氏体,并且在熔融区中发现6至10pct。还通过热磁测量研究了残留奥氏体在母材和焊接样品中的分解动力学。与在贱金属中相比,发现奥氏体在熔融区中的分解动力学较慢。热磁测量表明形成了铁磁?由于加热过程中奥氏体的分解,高于290°C的碳化物和顺磁性的α(δ)瞬态碳化铁处于约400°C的状态。

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