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Progress in fatigue assessment of welded hollow-section aluminium structures

机译:焊接空心型材铝结构疲劳评估的进展

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Recent developments in light-weight automotive structures have included the use of aluminium alloys, particularly extruded sections. The fatigue strenght properties of the resulting welded structures are not completely understood and consequently explicit design procedures not yet available. Therefore, generally applicable fatigue design methods for welded aluminium joints are reveiewed, as are the various approaches to fatigue life estimation currently adopted in design codes across a wide range of industrial applications. The applicability of these established methodologies to the fatigue design of automotive space frame structures is critically assessed. Of the many approaches available, the hot spot stress method is identified as the most promising in terms of providing a coherent and comprehensive approach to design, embracing the many uncertainties present in the design input parameters associated with weldments. Particular problems related to implementation are considered such as failure sites and determination of appropriate stress concentration factors from physical models, finite element calucations or parametric equations. Some preliminary numerical stress analysis (finite element) and experimental fatigue test results are also presented for a T-joint configuration. Recommendations are made for a design methodology for welded rectangular hollow-section joints in aluminium space frames, including a selection of hot spot S-N curves.
机译:轻型汽车结构的最新发展包括使用铝合金,尤其是挤压型材。尚不能完全理解所得焊接结构的疲劳强度特性,因此尚无明确的设计程序。因此,提出了普遍适用的焊接铝接头的疲劳设计方法,以及目前在广泛的工业应用中的设计规范中采用的各种疲劳寿命估算方法。这些已建立的方法论在汽车空间框架结构疲劳设计中的适用性得到了严格的评估。在提供一种连贯而全面的设计方法方面,热点应力方法被认为是最有前途的方法,其中包括与焊件相关的设计输入参数中存在的许多不确定性。考虑与实施相关的特定问题,例如失效部位以及根据物理模型,有限元计算或参数方程式确定适当的应力集中系数。还为T型接头配置提供了一些初步的数值应力分析(有限元)和实验疲劳测试结果。针对铝制空间框架中焊接矩形中空截面接头的设计方法提出了建议,其中包括热点S-N曲线的选择。

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