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Methodology using IPS for creation and installation of flexible components in stationary vehicles

机译:使用IPS在固定车辆中创建和安装灵活组件的方法

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Through dynamic computational simulations it is possible to achieve a high reliability index in the development of automotive components, thus reducing the time and cost of the component can generate considerable levels of competitiveness and quality. This work suggests the validation of a methodology to create the virtual routes to find the best design of the flexible components influenced by force of gravity, thermal expansion or even the static balance between the anchor points and used to be designed and installed in the vehicle always in the nominal condition which in many cases diverge from the physical. With the difficulty of predicting mathematically the nonlinear relations of deformation and motion under the effect of forces and moments, we use the NX9 software in the creation of the dynamic movement motion to the motor and transmission assembly imposes on the flexible components through a routine mapped by Cartesian coordinates, simulating the characteristic movements of the vehicle in normal working situations. Using the software IPS - Industrial Path Solution, for the construction of the flexible model to be simulated, the mechanical and geometrical properties were assigned for each component, as well as its static deformation experimentally captured, in order to obtain the real deformations in a steady state, making the virtual static model accurately represent the experimental model validating its effectiveness. Finally, it is established to the model the dynamic routine of some flexible components to make a comparison of the efficiency in the elaboration of routes using the installation by the software IPS meeting the requirements of package, avoiding unwanted dynamic interferences and the early degradation of the flexible element.
机译:通过动态计算模拟有可能在汽车零部件的发展,实现了高可靠性的指标,从而降低了组件的时间和成本可以生成竞争力和质量的相当大的水平。这项工作提出了一种方法来创建虚拟路由发现通过重力,热膨胀,甚至静平衡的锚点之间的力的影响,并用弹性元件的最佳设计的验证,设计和安装在车辆总在名义条件在许多情况下从物理发散。用的力和力矩的影响下预测数学变形和运动的非线性关系的困难,我们使用在创建动态运动运动到在所述柔性部件的马达和变速器组件强加的NX9软件通过映射的例程笛卡尔坐标,在正常工作情况下,模拟车辆的特征动作。使用软件IPS - 工业路径解决方案,为将被仿真的灵活的模式的结构,机械和几何特性被分配用于实验捕获的每个部件,以及其静态变形,以便获得在稳定的实际变形状态,使得虚拟静态模型准确地表示实验模型验证其有效性。最后,建立模型的一些柔性的组成部分的动态程序,使在使用安装该软件IPS满足包装的要求路线的制定效率的比较,避免无用的动态干扰和的早期退化弹性元件。

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