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Fatigue behavior of 590MPa Tensile Strength galvanneal coated sheet steel laser welded blanks

机译:590MPA拉伸强度镀锌钢板激光焊接坯料的疲劳行为

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The use of Laser Welded Blanks (LWBs) with different grade/gauge combinations in automotive body structures is well established; however, the acceptance of LWBs in fatigue critical chassis and underbody components has been slower because of lack of reliable models for durability assessment of laser welded joints (LWJ). Most prior fatigue studies of LWBs are carried out in tension - tension loading mode, making it difficult to relate it to the cyclic deformation and fatigue behaviors of the substrate steel grade. In contrast, in this study, LWJ is conceptualized as a "notch" to estimate the local stresses from the strain - life data of the parent grade and the fatigue notch concentration factor (K_(f)) is estimated from the nominal stress values of LWJ. The method is illustrated with strain controlled fatigue data for 1.4 mm galvanneal coated 590 MPa steel and fully reversed, fatigue data for homogeneous and heterogeneous LWB combinations. The results indicate that for both homogeneous and heterogeneous LWJ configurations, K_(f)increases with fatigue life, but tends to saturate at life levels greater than about million cycles. Considering 10~(5)cycles to failure as an example, K_(f)is estimated as 1.07 for the homogeneous and 1.25 for the heterogeneous combinations.
机译:在汽车体结构中使用具有不同等级/仪表组合的激光焊接坯料(LWB)是很好的建立;然而,由于激光焊接接头(LWJ)缺乏可靠的模型,LWB在疲劳关键底盘和底层组件中的接受速度较慢。 LWB的大多数现有疲劳研究在张紧张力加载模式下进行,使其难以将其与基板钢级的循环变形和疲劳行为相关。相反,在该研究中,LWJ被概念化为“凹口”,以估计母级的菌株 - 寿命的局部应力,并且估计疲劳Notch浓度因子(K_(F))估计来自标称应力值lwj。该方法用应变控制的疲劳数据进行了1.4 mm Galvanneal涂覆的590MPa钢,并完全反转,均匀疲劳数据,用于均匀和异构LWB组合。结果表明,对于均匀和异质的LWJ配置,K_(F)随着疲劳寿命的增加而增加,但在寿命水平大于大约百万周期的寿命趋于饱和。考虑到10〜(5)个循环作为示例的失效,K_(F)估计为均匀组合的均匀和1.25的1.07。

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