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Automation of flexible components virtual prototyping: methodology, tools and validation

机译:灵活组件虚拟原型的自动化:方法论,工具和验证

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摘要

3D CAD systems are powerful tools for modelling rigid bodies but they are not adequate in order to model flexible material components, especially if a realistic simulation of physical behaviour is required as in virtual prototyping. This paper describes the methodology used to develop a knowledge-based system in order to automatically create virtual prototypes of uniaxial flexible components like cables, pipes and wires. The method has been translated in an operative design software system for metallic-reinforced elastomer hoses. The resulting VP tool integrates the 3D CAD technology and suitable structural simulation methods. The robustness of software system has been verified and errors are assessed. A dedicated experimental set-up has been realised in order to compare the virtual results with the real component behaviour. The system has been applied in the design of multifunctional agricultural machines showing reduction of physical prototypes and the lead-time due.
机译:3D CAD系统是用于对刚体进行建模的强大工具,但它们不足以对柔性材料组件进行建模,尤其是在如虚拟样机中需要对物理行为进行逼真的仿真时。本文介绍了用于开发基于知识的系统的方法,以便自动创建单轴柔性组件(如电缆,管道和电线)的虚拟原型。该方法已翻译成用于金属增强的弹性体软管的操作设计软件系统。最终的VP工具集成了3D CAD技术和合适的结构仿真方法。软件系统的健壮性已得到验证,并且评估了错误。为了将虚拟结果与真实组件行为进行比较,已经实现了专用的实验设置。该系统已应用于多功能农业机械的设计中,显示出减少了物理原型并减少了交货时间。

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