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An integrated approach for validating micro mechanical systems based on simulation and test

机译:一种基于仿真和测试的集成微机械系统验证方法

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摘要

Miniaturization of macroscopic mechanical systems enables the opening of new areas of application for micro technological systems. Because of technological restrictions, especially when applying miniaturized conventional manufacturing techniques, shape and material deviations cannot be scaled down in the same dimension like micro parts. Thus, the long-term objective is to ensure the functioning by appropriate design measures. In doing so, determination of the transfer behavior by modeling and simulation is required. This work presents two ways for ensuring the required properties of micro gears and describes how the results do correlate. The experimental way uses the radial composite inspection as it is used in the macroscopic world. The simulative way deploys a rolling simulation by utilization of finite element analysis. The virtual prototypes are originated on measured real test gears. When comparing experiment and simulation of the rolling behavior, in some short and long wave areas deviations can be recognized. These can be ascribed to the reduction from three to two dimensions when modeling. Other deviations might be based on inaccuracies when mounting into the test rig. In other areas quite good correlations of test and simulation could be ascertained.
机译:宏观机械系统的小型化为微技术系统打开了新的应用领域。由于技术限制,尤其是在应用小型化常规制造技术时,形状和材料偏差无法像微型零件一样按相同的尺寸缩小。因此,长期目标是通过适当的设计措施来确保功能。为此,需要通过建模和仿真确定转移行为。这项工作提出了两种方法来确保所需的微齿轮性能,并描述了结果如何相互关联。实验方法使用了在宏观世界中使用的径向复合检查。仿真方法利用有限元分析进行滚动仿真。虚拟原型源自测量的真实测试装置。在对滚动行为的实验和仿真进行比较时,可以识别出在某些短波和长波区域中的偏差。这些可以归因于建模时从三个维度减少到两个维度。其他偏差可能是由于安装到测试台时的不准确性所致。在其他领域,可以确定测试与仿真之间的良好关联。

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