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Influence of a Powertrain Mounting Method on Powertrain Vibration

机译:动力系安装方法对动力总成振动的影响

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The mounting system of a vehicle powertrain has to meet many demands on durability, powertrain weight support and support of the powertrain torque, good isolation of high-frequency vibrations originating in the powertrain, damping of road induced vibrations and also crash performance. Therefore, experimental studies still have an irreplaceable role in design process of the mounting system, especially because it is a component involving rubber-like materials with many sorts of difficulties for computational simulation due to its nonlinear complex static and dynamic characteristics. But physical prototyping and testing is highly time-consuming and expensive process, so using of simplifying and accelerating testing methods is highly required. This article describes influence of two cases of the powertrain mounting method on vibration of both sides of powertrain mounting system (in front of the mount – the engine side (active side), and behind the mount – the chassis side (passive side)), whereas first case is powertrain assembly in a test rig (powertrain dynamometer) and second one is powertrain mounted in a car (chassis dynamometer). The experiment was carried out on a small passenger car powertrain with three-cylinder sparkignition engine.
机译:车辆动力传动系的装配系统必须满足耐用性,动力总成的重量拥护和支持动力系统扭矩,高频率振动对原产于动力系统的良好隔离的许多要求,阻尼路面引起的振动,也碰撞性能的。因此,实验研究仍然在安装系统的设计过程中具有不可替代的作用,特别是因为它是涉及橡胶状材料的组件,其由于其非线性复杂的静态和动态特性而具有许多难以计算模拟的困难。但物理原型设计和测试是高度耗时和昂贵的过程,因此使用简化和加速测试方法非常需要。本文介绍了动力总成安装方法对动力总成安装系统两侧的振动的影响(在安装前 - 发动机侧(有源侧),以及安装在安装后面 - 底盘侧(被动侧)),尽管第一次案例是测试钻机(动力系测功机)中的动力总成组件,第二个是安装在汽车(机箱测功机)中的动力总成。该实验是在具有三缸启动引擎的小型客车动力总成。

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