首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Correlating weld process conditions, residual strain and stress, microstructure and mechanical properties for high strength steel- the role of neutron diffraction strain scanning
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Correlating weld process conditions, residual strain and stress, microstructure and mechanical properties for high strength steel- the role of neutron diffraction strain scanning

机译:关联焊接工艺条件,残余应变和应力,高强度钢的显微组织和力学性能-中子衍射应变扫描的作用

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摘要

This paper presents the results of neutron strain scanning for a series of welds in high strength steel. Residual strains transverse to the weld were measured at a series of points on planes perpendicular to the weld run, along lines either 1 mm below the plate surface or at the mid-depth. Welds were made using three types of filler metal (undermatched (UM), matched (M) and overmatched (OM) compared with parent plate tensile strength), two heat input values and two plate thicknesses. This work forms part of a programme whose objective of the work was to correlate residual strain and hardness gradients, and their position relative to the weld toe, with the process parameters and with fatigue performance in bending at lives of 10~5 cycles and 2 x 10~6 cycles. Fatigue performance was assessed via nominal applied stress, hot spot stress at the weld toe and hot spot strain. The overall aim is to better understand the underlying reasons for fatigue life variability often observed with high strength steels. This will enable development of better life prediction methodologies. Neutron diffraction results show that tensile stresses close to the proof strength of the parent material can occur in the weld and that tensile peaks in the strain profiles correlate with the weld zone width.
机译:本文介绍了高强度钢中一系列焊缝的中子应变扫描结果。在垂直于焊缝的平面上的一系列点上,沿着板表面以下1mm的线或在中深度处,测量横向于焊缝的残余应变。使用三种类型的填充金属(与母板抗拉强度相比,不匹配(UM),匹配(M)和匹配(OM)),两个热输入值和两个板厚度进行焊接。该工作是程序的一部分,该程序的目标是将残余应变和硬度梯度及其相对于焊趾的位置与过程参数和寿命10〜5个周期和2 x弯曲时的疲劳性能相关联。 10〜6个周期。通过标称外加应力,焊趾处的热点应力和热点应变评估疲劳性能。总体目标是更好地了解高强度钢经常观察到的疲劳寿命变化的根本原因。这将有助于开发更好的寿命预测方法。中子衍射结果表明,在焊缝中可能出现接近母体强度的拉伸应力,应变曲线中的拉伸峰与焊缝宽度相关。

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