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The reliability of test results from simple test samples in predicting the fatigue performance of automotive components

机译:来自简单测试样品的测试结果在预测汽车部件疲劳性能方面的可靠性

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摘要

The use of high strength steels (HSS) in automotive components is steadily increasing as automotive designers use modern steel grades to improve structural performance, reduce vehicle weight and enhance crash performance. Weight reduction can be achieved by substituting mild steel with a thinner gauge HSS, however, it must be ensured that no deterioration in performance including fatigue capability occurs. In this study, tests have been carried out to determine the effects that gauge and material strength have on the fatigue performance of a fusion welded automotive suspension arm. Current finite element (FE) modelling and fatigue prediction techniques have been evaluated to determine their reliability when used for thin strip steels. Results have shown the fatigue performance of welded components to be independent of the strength of the parent material for the steel grades studied, with material thickness and joining process the key features determining the fatigue performance. The correlation between the fatigue performance of simple welded samples under uniaxial, constant amplitude loading and complex components under biaxial in service road load data, has been shown to be unreliable. This study also indicates that with the application of modern technologies, such as tailor-welded blanks (TWB), significant weight savings can be achieved. This is demonstrated by a 19 percent weight reduction with no detrimental effect on the fatigue performance.
机译:随着汽车设计人员使用现代钢种来改善结构性能,减轻车辆重量并增强碰撞性能,高强度钢(HSS)在汽车部件中的使用正在稳步增加。可以通过用较薄的HSS代替低碳钢来减轻重量,但是,必须确保不会发生包括疲劳性能在内的性能下降。在这项研究中,进行了测试以确定规格和材料强度对熔焊汽车悬架臂的疲劳性能的影响。目前已经对当前的有限元(FE)建模和疲劳预测技术进行了评估,以确定它们在用于薄带钢时的可靠性。结果表明,对于所研究的钢种,焊接部件的疲劳性能与母材的强度无关,而材料厚度和连接工艺是决定疲劳性能的关键特征。在工作道路载荷数据中,单轴,恒定振幅载荷下的简单焊接样品的疲劳性能与双轴载荷下的复杂部件之间的相关性已被证明是不可靠的。该研究还表明,随着现代技术的应用,例如拼焊板(TWB),可以显着减轻重量。重量减轻了19%,对疲劳性能没有不利影响,就证明了这一点。

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