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Dynamic correlation of diesel engine exhaust system containing rubber hose using component mode synthesis

机译:柴油机排气系统使用组件模式合成橡胶软管的动态相关性

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Diesel engine operates on higher temperature and pressure compare to gasoline engine system. Owing to its operating principle, exhaust system of diesel engine contains rubber hoses which are composed of various hyper-elastic materials. First, metal parts of exhaust system are modelled and correlated using modal test. Also, metal and rubber parts are assembled on finite element (FE) and validated through experiments. Furthermore, the non-linearity and hyper-elastic properties of rubbers are modelled using various strain energy models from the tensile test of rubbers. Due to non-linear property and comparably small elastic modulus of rubber components, we found out that exhaust assembly consisting rubber appears to have high number of modal densities in general frequency range. This phenomenon increases complexity on FE model and result computational cost. Therefore, we applied component mode synthesis (CMS) on rubber parts to reduce computing time. Moreover, bellows and inside of EGR cooler are simply modelled by shell elements. Reduced models turn up to be highly efficient than original model while solving vibrational problems. The reduced models are validated by vibrational experiments (Natural frequency, mode shape, frequency response function) and we obtained highly correlated FE models.
机译:柴油发动机与汽油发动机系统相比的更高温度和压力工作。由于其运行原理,柴油发动机的排气系统包含由各种超弹性材料构成的橡胶软管。首先,使用模态测试建模和相关的排气系统的金属部件。此外,金属和橡胶零件在有限元(Fe)上组装并通过实验验证。此外,橡胶的非线性和超弹性性能使用来自橡胶的拉伸试验的各种应变能量模型进行建模。由于非线性特性和橡胶部件的相对小弹性模量,我们发现将橡胶组成的排气组件似乎具有大量的一般频率范围内的模态密度。这种现象对FE模型的复杂性提高了复杂性和结果计算成本。因此,我们在橡胶部件上应用了组件模式合成(CMS)以减少计算时间。此外,波纹管和EGR冷却器内部只是由壳体元件建模的。在解决振动问题的同时,减少模型比原始模型高效。通过振动实验(自然频率,模式,频率响应功能)验证减少的模型,我们获得了高度相关的FE模型。

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