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Hydrogen Cracking in Gas Tungsten Arc Welding of an AISI Type 321 Stainless Steel

机译:AISI Type 321不锈钢煤气钨弧焊中的氢气开裂

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The effects of in situ cathodic charging on the tensile properties and susceptibility to cracking of an AISI type 321 stainless steel, welded by the gas tungsten arc welding (GTAW) process, was studied by various treatments. Appearance of delta-ferrite phase in the as-welded steels in our tested conditions was observed with discontinuous grain boundaries (M_(23)C_6) and a dense distribution of metal carbides MC ((Ti, Nb)C), which precipitated in the matrix. Shielding gas rates changes the mechanical properties of the welds. Ultimate tensile strength and ductility are increases with the resistance to the environments related the increase of the supplied shielding inert gas rates. Charged specimens, caused mainly in decreases in the ductility of welded specimens. However, more severe decrease in ductility was obtained after post weld heat treatment (PWHT). The fracture of sensitized specimens was predominantly intergranular, whereas the as-welded specimens exhibited massive transgranular regions. Both types of specimen demonstrated narrow brittle zones at the sides of the fracture surface and ductile micro-void coalescences in the middle. Ferrite δ was form after welding with high density of dislocation structures and stacking faults formation and the thin stacking fault plates with ε-martensite phase were typically found in the austenitic matrix after the cathodical charging process.
机译:通过各种处理研究了由气体钨弧焊(GTAW)工艺焊接的AISI型321不锈钢的拉伸性能和易感性的抗拉性性能和易感性的影响。用不连续的晶粒边界观察到在我们的测试条件下的AS焊接钢中δ-铁素体相的外观(M_(23)C_6)和金属碳化物MC((TI,NB)C)的密集分布,这沉淀矩阵。屏蔽气体速率会改变焊缝的机械性能。最终拉伸强度和延展性随着环境的抗性而增加,相关的屏蔽惰性气体速率的增加。带电标本,主要导致焊接标本的延展性降低。然而,在焊接后热处理(PWHT)后,获得了延展性的更严重降低。致敏样品的骨折主要是晶间晶间,而AS焊接标本表现出大规模的响组晶区域。两种类型的样本在中间的骨折表面和延性微空隙聚合的侧面上显示出窄脆性区域。在具有高密度的位错结构和堆叠故障的焊接之后形成铁氧体δ,并且在阴极充电过程之后通常在奥氏体基质中发现具有ε-马氏体相的薄堆叠故障板。

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