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Charge Air Cooler Decoupling Using Short Rubber Hoses

机译:使用短橡胶软管对空气冷却器脱耦

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Due to environmental concerns, car manufacturers tend to generalize turbocharged engines. To increase the engine efficiency a charge air cooler is often added. When the charge air cooler is attached to the car body, static displacement and dynamic vibrations of the engine have to be isolated by using rubber hoses. For diesel engines, especially, higher static and dynamic pressures are observed inside these hoses which tend to decrease their decoupling efficiency. When long hoses are used, flexible loops easily provide efficient vibration reduction. When packaging constrains only allow short hoses, a large increase of the vibrations of the cooler is generally observed. This paper will focus on the optimization of the cooler decoupling in the case of short rubber hoses. First, the static and dynamic loads applied to the charge air cooler through the hoses are investigated. Second, an alternate concept of the cooler decoupling system is proposed, such that short hoses and high air pressure do not generate large pre-loads on the elastic mounts of the cooler.
机译:由于环境问题,汽车制造商倾向于透过涡轮增压发动机。为了增加发动机效率,通常添加充电空气冷却器。当充电空气冷却器附接到车身时,必须通过使用橡胶软管来分离发动机的静态位移和动态振动。对于柴油发动机,特别是在这些软管内观察到更高的静态和动态压力,这往往会降低其去耦效率。当使用长软管时,柔性环容易提供有效的减振。当包装约束仅允许短软管时,通常观察到大幅增加冷却器的振动。本文将专注于在短橡胶软管的情况下优化冷却器去耦。首先,研究了施加到电荷空气冷却器通过软管的静态和动态载荷。其次,提出了一种较冷的去耦系统的替代概念,使得短软管和高空气压力不会在冷却器的弹性支架上产生大的载荷。

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