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Tools for Occupant Protection Analysis

机译:乘员保护分析的工具

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摘要

The design of occupant restraint systems in the automotive industry has shifted from an empirical approach to a computer-aided analysis approach for many years now. Various finite element software programs have been applied in crash safety analysis, and multi-body dynamics codes have been successfully used where quick system response times were required. Most new vehicle programs are analyzed by the use of finite element tools that were used for previous program projects. Software that has specific occupant protection features may be coupled with these finite element tools, or new vehicle programs may be developed from scratch by using one tool that does all, i.e., a tool where the multibody dynamics are integrated into the finite element method. Both these approaches will be elaborated as valid tools for occupant protection analysis. At first, the coupling between the finite element crash program LS-DYNA and the F.E./multibody program MADYMO will be addressed by a frontal impact application. Secondly, this same example will be worked out in the F.E./multibody program MADYMO only. It will be shown that in case the LS-DYNA vehicle model is already available, the coupling with MADYMO is a very efficient way to get occupant analysis results. The alternative method to work out the vehicle and occupant analysis in one and the same crash code, i.e., MADYMO, has some advantages too. A decision tree as to what method is to be preferred in a specific stage of a vehicle program is suggested. In this way, the crash safety analyst is supported to make the right choice between the various tools for occupant protection analysis.
机译:在汽车行业的乘员约束系统的设计已经从实证的方法,现在转移到计算机辅助分析方法多年。各种有限元软件项目在碰撞安全性分析中得到应用,并多体动力学代码已被成功地使用,若必须快速的系统响应时间。大多数新汽车项目通过利用有限元工具被用于之前的计划预测,分析。具有特定乘员保护功能的软件可以通过使用一个工具,做要加上这些有限元工具,或新的车辆程序可以从头开发的所有的,即,其中该多体动力学集成在有限元方法的工具。这两种方法作详细说明为乘员保护分析有效工具。首先,有限元程序崩溃LS-DYNA和F.E./multibody程序MADYMO之间的联接通过将正面碰撞应用来解决。其次,同样的例子,将仅在F.E./multibody程序MADYMO制定。这将是表明,在情况下,LS-DYNA的车型已经提供,MADYMO耦合是一种非常有效的方式来获得乘员的分析结果。另一种方法制定出在一个车辆乘员和分析,并且在同一碰撞代码,即,MADYMO,具有一定的优点了。决策树,以什么方法是在车辆中的程序的特定阶段是优选的,建议。通过这种方式,碰撞安全分析师的支持,以使对乘员保护分析的各种工具之间的正确选择。

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