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首页> 外文期刊>International journal of structural integrity >Fatigue life assessment of welded structures based on fracture mechanics
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Fatigue life assessment of welded structures based on fracture mechanics

机译:基于断裂力学的焊接结构疲劳寿命评估

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摘要

Purpose - Even though modern welding technology has improved, initial defects on weld notches cannot be avoided. Assuming the existence of crack-like flaws after the welding process, the stage of a fatigue crack nucleation becomes insignificant and the threshold for the initial crack propagation can be used as a criterion for very high cycle fatigue whereas crack growth analysis can be applied for the lifetime estimation at lower number of cycles. The purpose of this paper is to present a mechanism based approach for lifetime estimation of welded joints, subjected to a multiaxial non-proportional loading. Design/methodology/approach - The proposed method, which is based on the welding process simulation, thermophysical material modeling and fracture mechanics, considers the most important aspects for fatigue of welds. Applying worst-case assumptions, fatigue limits derived by the weight function method can be then used for the fatigue assessment of complex welded structures. Findings - An accurate mechanism based method for the fatigue life assessment of welded joints has been presented and validated. Originality/value - Compared to the fatigue limits provided by design codes, the proposed method offers more accurate lifetime estimation, a better understanding of interactions between welding process and fatigue behavior. It gives more possibilities to optimize the welding process specifically for the considered material, weld type and loading in order to achieve the full cost and weight optimization potential for industrial applications.
机译:目的-即使改进了现代焊接技术,也无法避免焊接缺口的初期缺陷。假设在焊接过程之后存在裂纹状缺陷,疲劳裂纹成核的阶段就变得微不足道了,初始裂纹扩展的阈值可以用作极高周期疲劳的判据,而裂纹扩展分析可以用于裂纹扩展。循环次数越少的寿命估算。本文的目的是提出一种基于机制的方法,以估计承受多轴非比例载荷的焊接接头的寿命。设计/方法/方法-所提出的方法基于焊接过程模拟,热物理材料建模和断裂力学,考虑了焊接疲劳的最重要方面。应用最坏情况的假设,可以将通过权函数法得出的疲劳极限用于复杂焊接结构的疲劳评估。研究结果-提出并验证了一种基于精确机理的焊接接头疲劳寿命评估方法。原创性/价值-与设计规范提供的疲劳极限相比,所提出的方法可提供更准确的寿命估算,并能更好地理解焊接过程与疲劳行为之间的相互作用。它为针对所考虑的材料,焊缝类型和负荷优化焊接工艺提供了更多的可能性,以实现工业应用的全部成本和重量优化潜力。

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