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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Influence of the optical measurement technique and evaluation approach on the determination of local weld geometry parameters for different weld types
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Influence of the optical measurement technique and evaluation approach on the determination of local weld geometry parameters for different weld types

机译:光学测量技术对不同焊接类型局部焊接几何参数测定的影响

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The joining by welding processes of components is usually related to the creation of additional notches and geometrical peculiarities. Multiple investigations have shown that a clear correlation between the local weld geometry and the fatigue life of welded joints exist. Thereby, the local increase of the local stress can be expressed by a stress concentration factor at the transition from the base material to the filler material, the so-called weld toe. The stress concentration factor can be determined for the most weld types if the geometric parameters such as plate thickness weld toe radius and flank angle are known. However, no standardized method for the determination of these parameters exists. Beside the well-established 2D-measurement methods on cross sections with weld impression analysis, new 3D-methods based on contactless, optical measurement were applied in the last years for the geometrical analysis of welded joints. With these methods, long length of welds can be analyzed in a very short time and with low effort. However, the influence of the measurement system (geometrical accuracy, lateral resolution) was not quantified yet. Additionally, in all known cases of application different evaluation algorithms were used. This does not allow for a straightforward comparison of the investigated parameters and results. In this round robin study, the determination of weld toe radii and flank angles by different evaluation algorithms and 3D-measurement systems and by different institutes are compared. Furthermore, an approach for the direct determination of the stress concentration factors of fillet welds by translating the complex weld shape in a 2D-finite element simulation was implemented. The results of this direct approach are compared to the stress concentration factors determined indirectly using the geometric parameters and those calculated by established approximation formulas.
机译:通过组件的焊接过程的连接通常与额外的凹口和几何特性的产生有关。多次研究表明,存在局部焊接几何形状与焊接接头的疲劳寿命之间的明显相关性。由此,局部应力的局部增加可以通过从基材到填充材料的过渡到填充材料的应力集中因子表示,所谓的焊接脚趾。如果诸如板厚度焊接脚趾半径和侧面角度的几何参数,则可以为大多数焊接类型确定应力集中因子。然而,没有存在用于确定这些参数的标准化方法。除了焊接印象分析的横截面上的良好的2D测量方法外,在焊接接头的几何分析的最后几年内应用了基于非接触式,光学测量的新型3D方法。利用这些方法,可以在很短的时间内分析长长的焊缝,并且努力很低。然而,测量系统(几何精度,横向分辨率)的影响尚未量化。另外,在所有已知的应用情况中使用不同的评估算法。这不允许进行调查参数和结果的直接比较。在该循环研究中,比较了不同评估算法和3D测量系统的焊接脚趾半径和侧角的确定,并通过不同的研究。此外,实施了通过在2D型元件模拟中平铺复杂的焊接形状来直接确定圆角焊缝应力集中因子的方法。将这种直接方法的结果与使用几何参数间接测定的应力集中因子进行比较,以及由建立的近似公式计算的那些。

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