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Effect of weld metal chemistry on stress corrosion cracking behavior of AISI 444 ferritic stainless steel weldments in boiling chloride solution

机译:氯化物溶液中焊接金属化学成分对AISI 444铁素体不锈钢焊件应力腐蚀开裂行为的影响

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摘要

The influence of the weld metal chemistry on the susceptibility of AISI 444 ferritic stainless steel (FSS) weldment to stress corrosion cracking (SCC) in hot chloride was investigated by constant load tests and metallographic examination. Two types of filler metal of austenitic stainless steel (E316L and E309L) were used in order to produce fusion zones of different chemical compositions. The SCC test results showed that the interface between the fusion zone (FZ) and the heat affected zone (HAZ) was the most susceptible region to SCC. Results also showed that the AISI 444 stainless steel weldment with E309L weld metal presented the best SSC resistance. Microstructural examinations indicated that the cracks initiated in the weld metal and propagated to the HAZ of the AISI 444 FSS, where the fracture occurred and it was observed a considerable amount of precipitates. Additionally, the higher SCC resistance of the AISI 444 FSS weldment with E309L weld metal may be attributed to the presence of a discontinuous delta-ferrite network in its microstructure, which acted as a barrier to cracks propagation from the fusion zone to the HAZ/fusion zone interface of AISI 444 FSS. Fractrography analyses showed that the transgranular quasi-cleavage fracture mode was predominant in the AISI 444 weldment with E316L weld metal and the mixed fracture mode was the predominant in the AISI 444 weldment with E309L weld metal.
机译:通过恒定载荷试验和金相检验,研究了焊接金属化学成分对AISI 444铁素体不锈钢(FSS)焊件在热氯化物中的应力腐蚀开裂(SCC)敏感性的影响。为了产生不同化学成分的熔合区,使用了两种类型的奥氏体不锈钢填充金属(E316L和E309L)。 SCC测试结果表明,融合区(FZ)与热影响区(HAZ)之间的界面是最容易受到SCC影响的区域。结果还表明,采用E309L焊接金属的AISI 444不锈钢焊件具有最佳的抗SSC性能。显微组织检查表明,裂纹始于焊缝金属,并蔓延到AISI 444 FSS的热影响区,在该处发生断裂,并观察到大量沉淀。此外,使用E309L焊缝金属的AISI 444 FSS焊件具有更高的SCC抵抗力,可能是由于其微观结构中存在不连续的δ铁素体网络,从而阻碍了裂纹从熔合区到HAZ /熔合的传播。 AISI 444 FSS的区域接口。断口分析表明,在AI316焊件中使用E316L焊缝金属时,主要是沿晶准断裂断裂模式,而在使用E309L焊剂的AISI 444焊件中,主要是混合断裂模式。

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