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Microstructural behavior of SAF 2205 Duplex Stainless Steel Welded by Friction Hydro Pillar Processing

机译:摩擦水柱加工焊接的SAF 2205双相不锈钢的显微组织行为

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摘要

The Friction Hydro-Pillar Process (FHPP) is an innovative process that has been recently studied regarding its possible in situ repair applications. There is still no literature about usage of the FHPP on duplex stainless steel (DSS) base materials to smaller forces than 25 kN. The investigation on DSS processing is crucial due his wide variety of critical uses in pipes and storage structures applied in chemical industry plants, where usual welding processes may lead to safety concerns. The aim of this study is to qualify the processing of SAF 2205 (UNS 31803) duplex stainless steel welded joints using FHPP as feasible repair procedure. For this, the studied samples were welded applying a range of axial forces. The welded joints were characterized by, ?±/?3 phase ratio, intermetallic quantification, austenite spacing measurement, microhardness profile and microstructural qualitative studies. The results showed the efficiency in repair of the FHPP process on the production of DSS joints according with the material recommendations from the standard DNV-RP-F112.
机译:摩擦水柱过程(FHPP)是一种创新过程,最近对其可能的原位修复应用进行了研究。尚无关于在小于25 kN的力下在双相不锈钢(DSS)基材上使用FHPP的文献。 DSS工艺的研究至关重要,因为他在化学工厂的管道和存储结构中广泛使用各种关键用途,而在这些工厂中,通常的焊接工艺可能会引发安全隐患。这项研究的目的是使使用FHPP作为可行维修程序的SAF 2205(UNS 31803)双相不锈钢焊接接头的加工合格。为此,在一定范围的轴向力下将研究样品焊接在一起。焊接接头的特征在于:α±/β3相比,金属间定量,奥氏体间距测量,显微硬度分布和显微组织定性研究。结果表明,按照标准DNV-RP-F112的材料推荐,FHPP工艺在DSS接头生产中的修复效率很高。

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