首页> 外文期刊>Journal of Materials Engineering and Performance >Estimation of Residual Stresses by Nanoindentation in an Experimental High Strength Microalloyed Steel Subjected to Rapid Thermal Cycles
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Estimation of Residual Stresses by Nanoindentation in an Experimental High Strength Microalloyed Steel Subjected to Rapid Thermal Cycles

机译:经实验高强度微合金钢中的纳米indentation估算对快速热循环的估计

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摘要

The effect of welding thermal cycles on the microstructure and residual stresses was studied in the welding zone of an experimental high strength microalloyed steel with an acicular ferrite and quasi-polygonal ferrite microstructure. Autogenous gas tungsten arc welding was performed on a plate of microalloyed steel to produce a weld bead neglecting the weld joint design and the selection of filler material. To obtain a high welding quality, the welding speed and distance between the electrode and plate was controlled with a small vehicle. To determine the residual stresses, nanoindentation tests were performed in each one of the welding zones and subzones of the heat-affected zone (HAZ). These results showed that all of the nanoindentations presented pile-up and sink-in, and thus, a modification was proposed to calculate the actual contact area and determine the residual stresses. Tensile residual stresses were presented in the coarse-grained HAZ (grain boundary ferrite, acicular ferrite, and bainite); fine-grained HAZ (polygonal ferrite); subcritical HAZ (acicular ferrite and quasi-polygonal ferrite); and base material (acicular ferrite and quasi-polygonal ferrite). The fusion zone (acicular ferrite and bainite) and intercritical HAZ (quasi-polygonal ferrite) had compressive residual stresses.
机译:用针状铁氧体和准多晶硅醚微观结构研究了实验高强度微合金钢的焊接区的焊接热循环对微观结构和残余应力的影响。在微合金钢板上进行自动气体钨电弧焊接,以产生忽略焊接接头设计的焊缝和填充材料的选择。为了获得高焊接质量,用小型车辆控制电极和板之间的焊接速度和距离。为了确定残留应力,在热影响区(HAZ)的每一个焊接区和子区域中进行纳米肾脏测试。这些结果表明,所有纳米茚都要出现堆叠和沉入,因此提出了一种修改以计算实际接触面积并确定残余应力。粗粒HAZ(晶界铁氧体,针状铁氧体和贝氏体)中提出拉伸残余应力;细粒度HAZ(多边形铁氧体);亚临界HAZ(针状铁氧体和准多晶硅纹);和基础材料(针状铁氧体和准多晶硅纹)。融合区(针状铁氧体和贝氏体)和跨临界HAZ(准多晶铁氧体)具有压缩残余应力。

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