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Weld overlay cladding of high strength low alloy steel with austenitic stainless steel - Structure and properties

机译:高强度低合金钢与奥氏体不锈钢的堆焊层-组织和性能

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摘要

The present work aims at studying structure-property correlations in a weld overlay clad high strength low alloy steel with austenitic stainless steel of American Institute for Steel and Iron (AISI) 347 grade. Optical microscopy studies revealed that the interface between the two steels was nearly flat. The base plate had ferrite plus bainite microstructure adjacent to the interface and tempered bainite/martensite structure away from the interface. Grain coarsening and decarburization were observed near the interface. The stainless steel exhibited austenite dendritic structure. Tensile strength, notch-tensile strength and charpy impact energy of the base plate were found to be higher than those for the interface. The microhardness was observed to be maximum on the clad layer near interface. The shear bond strength of the weld overlay-interface was higher than the shear strength of the base plate. Fractography was carried out using scanning electron microscope on tensile, notch-tensile and shear bond test specimens of the interface as well as shear test specimens of the base plate. It revealed the presence of predominantly dimpled rupture. Charpy impact specimens of the interface failed in mixed mode while impact specimens of the base plate failed in ductile mode. Electron probe microanalysis across the bond interface indicated linear change in concentrations of Cr, Ni, Mn, Cu, Mo, Nb and Si between the levels appropriate to the clad layer and base metal.
机译:本工作旨在研究美国钢铁协会(AISI)347级奥氏体不锈钢堆焊高强度低合金钢堆焊层中的结构性能相关性。光学显微镜研究表明,两种钢之间的界面几乎是平坦的。基板在靠近界面处具有铁素体加贝氏体组织,并且远离界面处具有回火贝氏体/马氏体组织。在界面附近观察到晶粒粗化和脱碳。不锈钢表现出奥氏体树枝状结构。发现基板的拉伸强度,缺口拉伸强度和夏比冲击能高于界面的。观察到在界面附近的包覆层上的显微硬度最大。堆焊层界面的抗剪粘结强度高于基板的抗剪强度。使用扫描电子显微镜对界面的拉伸,缺口-拉伸和剪切粘结测试样品以及基板的剪切测试样品进行断口扫描。它显示出主要是凹窝破裂。界面的夏比冲击试样在混合模式下失效,而基板的冲击试样在延性模式下失效。跨键界面的电子探针显微分析表明,在适合于覆层和贱金属的含量之间,Cr,Ni,Mn,Cu,Mo,Nb和Si的浓度呈线性变化。

著录项

  • 来源
    《Materials & design》 |2011年第4期|p.2496-2506|共11页
  • 作者单位

    Defence Metallurgical Research Laboratory, Hyderabad, India;

    Defence Metallurgical Research Laboratory, Hyderabad, India;

    Defence Metallurgical Research Laboratory, Hyderabad, India;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:17:43

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