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首页> 外文期刊>Sodagem & inspecao >Propriedades mec?¢nicas e microestruturais de juntas soldadas do a?§o HY-80 pelos processos eletrodo revestido e GMAW
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Propriedades mec?¢nicas e microestruturais de juntas soldadas do a?§o HY-80 pelos processos eletrodo revestido e GMAW

机译:涂覆电极和GMAW工艺对HY-80钢焊接接头的力学和微观结构性能

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The welding of high strength steels represents a continuous challenge taking into account the great variety of alloys systems, which present stringent requirements of high strength and toughness. Into this context the HY-80 steels largely employed in the Naval Industry are still welded preferentially by the SMAW process, despite its limitations when compared with other welding processes. In order to promote an improvement on productivity, the present work presents a comparative analysis between the mechanical properties of the HY-80 welded joints performed by the GMAW and SMAW processes. Multipass welding by shielded metal(SMAW) arc and gas metal arc welding (GMAW) processes were performed with preheating and inter-pass temperatures of 90?°C and 150?°C respectively in plates of dimensions 850X150X30 mm in HY-80 steel, in the flat position and average energy welding of 1.29 for SMAW and 1.36kJ/mm for GMAW process. After welding a post weld heat treatment at 600?°C for 1 hour was performed, this condition being compared with the as welded condition. Tensile, Charpy-V notch and hardness tests and metallographic examination by scanning electron microscopy were performed for mechanical and microstructural characterization. Additionally, it was carried out a comparative analysis between processes. The results show that it is possible to achieve adequate mechanical properties for all analyzed conditions. Furthermore, it was observed that the productivity provided by the gas metal arc welding process was greater than shield metal arc welding.
机译:考虑到合金系统的多样性,高强度钢的焊接是一个持续的挑战,合金系统对高强度和韧性提出了严格的要求。在这种情况下,尽管与其他焊接工艺相比存在局限性,但在海军工业中广泛使用的HY-80钢仍优先采用SMAW工艺进行焊接。为了促进生产率的提高,本工作对通过GMAW和SMAW工艺进行的HY-80焊接接头的机械性能进行了比较分析。在HY-80钢中,在尺寸为850X150X30 mm的钢板中,分别采用90℃和150℃的预热和道间温度,通过屏蔽金属(SMAW)电弧和气体金属电弧焊(GMAW)进行多道焊接,在平焊和平焊平均能量焊接中,SMAW为1.29,GMAW工艺为1.36kJ / mm。焊接后,在600℃下进行1小时的焊接后热处理,将该条件与焊接条件进行比较。进行了拉伸,夏比-V缺口和硬度测试以及通过扫描电子显微镜进行的金相检查,以进行机械和微观结构表征。此外,还进行了过程之间的比较分析。结果表明,在所有分析条件下都可以获得足够的机械性能。此外,已经观察到,由气体金属电弧焊工艺提供的生产率大于保护金属电弧焊。

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