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Stress Corrosion Cracking Behaviour of Dissimilar Welding of AISI 310S Austenitic Stainless Steel to 2304 Duplex Stainless Steel

机译:AISI 310S奥氏体不锈钢不同焊接的应力腐蚀开裂行为,2304双相不锈钢

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摘要

The influence of the weld metal chemistry on the stress corrosion cracking (SCC) susceptibility of dissimilar weldments between 310S austenitic stainless steel and 2304 duplex steels was investigated by constant load tests and microstructural examination. Two filler metals (E309L and E2209) were used to produce fusion zones of different chemical compositions. The SCC results showed that the heat affected zone (HAZ) on the 2304 base metal side of the weldments was the most susceptible region to SCC for both filler metals tested. The SCC results also showed that the weldments with 2209 duplex steel filler metal presented the best SCC resistance when compared to the weldments with E309L filler metal. The lower SCC resistance of the dissimilar joint with 309L austenitic steel filler metal may be attributed to (1) the presence of brittle chi/sigma phase in the HAZ on the 2304 base metal, which produced SC cracks in this region and (2) the presence of a semi-continuous delta-ferrite network in the fusion zone which favored the nucleation and propagation of SC cracks from the fusion zone to HAZ of the 2304 stainless steel. Thus, the SC cracks from the fusion zone associated with the SC cracks of 2304 HAZ decreased considerably the time-of-fracture on this region, where the fracture occurred. Although the dissimilar weldment with E2209 filler metal also presented SC cracks in the HAZ on the 2304 side, it did not present the delta ferrite network in the fusion zone due to its chemical composition. Fractography analyses showed that the mixed fracture mode was predominant for both filler metals used.
机译:对应力腐蚀开裂之间310S奥氏体不锈钢和2304个双相钢异种焊件(SCC)的易感性的焊接金属化学的影响是由恒载荷试验和微观检查调查。两种填料金属(E309L和E2209)用于不同的化学组合物的生产融合区。所述SCC结果表明,在焊件2304母材侧的热影响区(HAZ)是最敏感区域SCC对于测试的两种填料金属。所述SCC结果还表明,与用E309L填充金属焊件当与2209双相钢填充金属焊件呈现最好的耐SCC性。用309L奥氏体钢填料金属的相异材料接头的下耐SCC性可以归因于(1)中的2304基底金属,其产生在这个区域SC裂纹和(2)的HAZ的脆化志/σ相的存在下在这有利于形核和SC龟裂的传播从熔融部到HAZ的2304不锈钢的熔合区半连续δ铁素体网络的存在。因此,从熔融部与2304 HAZ的裂纹SC相关联的SC裂纹显着降低在该区域中,断裂发生的位置时的断裂。虽然与在2304侧的HAZ E2209填充金属还提出SC裂纹异种焊件,它不存在于熔融部的δ铁素体网络由于其化学组成。断口分析表明,该混合断裂模式是主要用于同时使用填充金属。

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