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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Development of Microstructure and Crystallographic Texture in a Double-Sided Friction Stir Welded Microalloyed Steel
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Development of Microstructure and Crystallographic Texture in a Double-Sided Friction Stir Welded Microalloyed Steel

机译:双面摩擦搅拌焊接微合金钢微观结构和晶体纹理的研制

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The evolution of microstructure and crystallographic texture has been investigated in double-sided friction stir welded microalloyed steel, using electron backscatter diffraction (EBSD). The microstructure analyses show that the center of stirred zone reached a temperature between Ac-1 and Ac-3 during FSW, resulting in a dual-phase austenitic/ ferritic microstructure. The temperatures in the thermo-mechanically affected zone and the overlapped area between the first and second weld pass did not exceed the Ac-1. The shear generated by the rotation probe occurs in austenitic/ferritic phase field where the austenite portion of the microstructure is transformed to a bainitic ferrite, on cooling. Analysis of crystallographic textures with regard to shear flow lines generated by the probe tool shows the dominance of simple shear components across the whole weld. The austenite texture at Ac-1 - Ac-3 is dominated by the B and simple shear texture components, where the bainite phase textures formed on cooling were inherited from the shear textures of the austenite phase with relatively strong variant selection. The ferrite portion of the stirred zone and the ferrites in the thermo-mechanically affected zones and the overlapped area underwent shear deformation with textures dominated by the D-1 and D-2 simple shear texture components. The formation of ultrafine equiaxed ferrite with submicron grain size has been observed in the overlapped area between the first and second weld pass. This is due to continuous dynamic strain-induced recrystallization as a result of simultaneous severe shear deformation and drastic undercooling. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:采用电子背散射衍射(EBSD),研究了在双面摩擦搅拌焊接微合金钢中进行了微观结构和晶体纹理的演化。微观结构分析表明,搅拌区的中心在FSW期间AC-1和AC-3之间达到温度,导致双相奥氏体/铁素体微结构。热机械受影响区的温度和第一和第二焊接通过之间的重叠区域不超过AC-1。由旋转探针产生的剪切发生在奥氏体/铁素体相区域中,其中微观结构的奥氏体部分被转化为贝氏体铁氧体,冷却。关于探针工具产生的剪切流量的晶体纹理分析显示了整个焊缝上的简单剪切组分的优势。 AC-1 - AC-3的奥氏体纹理由B和简单的剪切纹理组分主导,其中在冷却上形成的贝氏体相纹理与奥氏体相的剪切纹理相对,具有相对强烈的变体选择。搅拌区的铁氧体部分和热机组受影响的区域中的铁氧体和重叠的区域接受了由D-1和D-2简单剪切纹理组件主导的纹理的剪切变形。在第一和第二焊接通过的重叠区域中,已经观察到具有亚微米粒度的超细等式铁氧体的形成。这是由于同时严重剪切变形和急性过冷的结果连续动态应变诱导的再结晶。 (c)2016年矿物质,金属和材料协会和ASM国际

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