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Application of CAE nonlinear crash analysis to aluminum automotive crashworthiness design

机译:CAE非线性碰撞分析对铝汽车耐火材料设计的应用

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After establishing the performance requirements and initial design assumptions, CAE concept models are used to set targets for major structural components to achieve desirable crash performance. When the designs of these major components become available they are analyzed in detail using nonlinear crash finite element models to evaluate their performance. All these components are assembled together later in a full car model to predict the overall vehicle crash performance. If the analysis shows that the targets are met, the design drawings are released for prototype fabrication. When CAE tools are effectively used, it will reduce product development cycle time and the number of prototypes. Crash analysis methodology has been validated and applied for steel automotive product development. Recently, aluminum is replacing steel for lighter and more fuel efficient automobiles. In general aluminum has quite different performance from steel, in particular with lower ductility. Therefore, crash analysis tools developed for steel need modifications. Such modifications have been implemented in leading crash analysis codes by different methods. One such code was used to analyze and predict the crash performance of aluminum front end structural components and the results are later verified with static and dynamic tests. This paper presents the process, analyses, test results and significant findings.
机译:在建立性能要求和初始设计假设之后,CAE概念模型用于设置主要结构部件的目标,以实现所需的碰撞性能。当这些主要部件的设计变得可用时,使用非线性碰撞有限元模型详细分析它们,以评估其性能。所有这些组件后来都会在全车模型中组装在一起,以预测整体车辆碰撞性能。如果分析表明符合目标,则设计图是用于原型制造的设计图。当有效地使用CAE工具时,它将减少产品开发循环时间和原型的数量。崩溃分析方法已被验证并应用于钢制汽车产品开发。最近,铝正在更换钢的钢材,以更轻,更省油的汽车。在一般铝中,钢具有相当不同的性能,特别是延展性较低。因此,为钢材开发的崩溃分析工具需要修改。通过不同方法在领先的崩溃分析代码中实现了这种修改。使用一种这样的代码用于分析和预测铝前端结构部件的碰撞性能,并且稍后用静态和动态测试验证结果。本文介绍了过程,分析,测试结果和重要发现。

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