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THE POTENTIAL OF PARAMETRIC DESIGN METHODS IN AUTOMOTIVE DOOR DEVELOPMENT

机译:汽车门开发中参数设计方法的潜力

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Time- and cost efficient development processes in the automotive industry are often based on the application of modern IT-supported engineering tools. Computer aided three-dimensional design and calculation methods are widespread and well introduced in component development and digital mock-up processes. The early stage in automotive door design is characterized by variant changes, alternating definitions, requirements and iterative actions, which are influenced by legislation boundaries and ergonomic tasks as well as interior, exterior and styling requirements, crash and safety standards, customer demands and specific functionalities. An important factor for a successful development states an optimized interaction between the styling process and technical engineering operations based on efficient computer aided methods and strategies. The present publication treats the creation of integrated 3D-CAD design methods for initial automotive door development processes. A basis for the application of enhanced design methods is the parametric generation of body components and assembled configurations. An integrated virtual door model includes several independent modules, which are combined in a framework. All modules entirely utilize the capabilities of the applied CAD platform. Within these modules, different calculation and geometry creation procedures are combined to enable multidisciplinary optimization processes during the entire concept phase. The modules of the virtual door model can be divided into two areas, the technology concept development and the geometry creation process. The technology concept treats the definition of technological and functional characteristics under consideration of technical specifications, kinematic viewpoints and production related aspects. The development of a geometry concept includes the generation of a parametric associative 3D-CAD model. During conceptual development, the geometry model has to fulfill the requirements of both, a high flexibility in view of modification and optimization cycles as well as a high degree of geometrical details, enabling efficient creation and evaluation processes. A smart combination of the technological and the geometrical development states the basis for an efficient conceptual door development. Combining the requirements of styling, design and simulation, the presented methods and strategies support an improvement of data quality as well as a reduction of cost and time effort in engineering based automotive development processes.
机译:汽车行业的时间和成本高效的开发过程通常基于现代IT支持的工程工具的应用。计算机辅助三维设计和计算方法是在组件开发和数字模拟过程中引入的广泛和良好的。汽车门设计的早期阶段的特点是变化变化,交替定义,要求和迭代动作,这些行动受法律边界和人体工程学任务以及内部,外部和造型要求,崩溃和安全标准,客户需求和特定功能。成功开发的一个重要因素在于基于高效计算机辅助方法和策略的造型过程和技术工程运算之间的优化交互。本出版物对初始汽车门开发过程的集成3D-CAD设计方法进行了创建。应用增强设计方法的应用是主体部件和组装配置的参数产生。集成虚拟门模型包括若干独立模块,该模块在框架中组合。所有模块完全利用所应用的CAD平台的功能。在这些模块中,组合不同的计算和几何创建过程以在整个概念阶段启用多学科优化过程。虚拟门模型的模块可分为两个区域,技术概念开发和几何创作过程。技术概念在考虑技术规范,运动观点和生产相关方面的考虑下对技术和功能特征的定义。几何概念的发展包括生成参数缔合3D-CAD模型。在概念性发展中,几何模型必须满足两者的要求,考虑到修改和优化周期以及高度的几何细节,实现了高效的创建和评估过程。技术和几何发展的智能组合地说明了有效的概念门开发的基础。结合造型,设计和仿真的要求,所提出的方法和策略支持提高数据质量,以及基于工程的汽车开发过程中的成本和时间努力的降低。

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