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Stiffness Simulation Techniques and Test Correlations in Automotive Interior Cockpit Systems (IP, Door Trim and Floor Console Assembly)

机译:汽车内部驾驶舱系统(IP,门装饰和地板控制台组件中的刚度仿真技术和测试相关性

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An automotive cockpit module is a complex assembly, which consists of components and sub-systems. The critical systems in the cockpit module are the instrument panel (IP), the floor console, and door trim assemblies, which consist of many plastic trims. Stiffness is one of the most important parameters for the plastic trims' design, and it should be optimum to meet all the three functional requirements of safety, vibration and durability. This paper presents how the CAE application and various other techniques are used efficiently to predict the stiffness, and the strength of automotive cockpit systems, which will reduce the product development cycle time and cost. The implicit solver is used for the most of the stiffness analysis, and the explicit techniques are used in highly non-linear situations. This paper also shows the correlations of the CAE results and the physical test results, which will give more confidence in product design and reduce the cost of prototype testing.
机译:汽车驾驶舱模块是一个复杂的组装,由组件和子系统组成。驾驶舱模块中的关键系统是仪表板(IP),地板控制台和门饰组件,包括许多塑料装饰。刚度是塑料装饰设计最重要的参数之一,它应该最佳,以满足安全性,振动和耐用性的所有三种功能要求。本文提出了如何有效地使用CAE应用和各种其他技术来预测刚度,以及汽车驾驶舱系统的强度,这将降低产品开发循环时间和成本。隐式求解器用于大多数刚度分析,并且显式技术用于高度非线性情况。本文还显示了CAE结果和物理测试结果的相关性,这将对产品设计提供更多的信心并降低原型测试的成本。

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