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Idle Sound Quality Development for Diesel V6 Engine

机译:柴油v6发动机的空闲音质开发

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A comprehensive investigation was carried out in order to develop the idle sound quality for diesel V6 engine when the engine development process is applied to power-train system, which included new 8 speed automatic transmission for breaking down the noise contribution between the mechanical excitation and the combustion excitation. First of all, the improvement of dynamic characteristic can be achieved during the early stages of the engine development process using experimental modal analysis (EMA) & the robust design of each engine functional system. In addition, the engine structural attenuation (SA) is enhanced such that the radiated combustion noise of the engine can be maintained at a target level even with an increased combustion excitation. It was found that the engine system has better parts and worse parts in frequency range throughout the SA analysis. It is important that weak points in the system should be optimized. In this study, the chain cover was adopted by using the passive constrained layer damping treatments (PCLDT) for the front side of 2~3kHz range and the 3 rd generation common rail system with piezoelectric injector that has a maximum injection pressure of 180MPa was applied by using the forming cover and controlling of charging time/discharging time. Additionally, in order to reach the Euro5 standard for this engine, it is also important to adopt the low emission combustion concept with new injection strategy. However, this kind of combustion mode can give high frequency in roughness noise and worse stability in idle condition related to modulation noise. So the control of the pilot & post injection for reducing and optimizing combustion excitation in the chambers should be optimized. Therefore it has been shown that the engine development process gives the best results with respect to interior sound quality as well as to the engine radiating noise. Moreover the emotional quality of interior sound for passenger vehicle has been guaranteed.
机译:进行全面调查,以便在发动机开发过程应用于动力传动系统的动力传动系统时开发柴油V6发动机的空闲音质,其中包括新的8速度自动变速器,用于打破机械激发和噪音之间的噪声贡献燃烧激励。首先,在发动机开发过程的早期使用实验模态分析(EMA)和每个发动机功能系统的鲁棒设计期间,可以实现动态特性的改善。另外,发动机结构衰减(SA)得到增强,使得即使具有增加的燃烧激发,也可以保持发动机的辐射燃烧噪声在目标水平上。发现发动机系统在整个SA分析过程中具有更好的频率范围内的零件和较差的零件。重要的是系统中的弱点应优化。在本研究中,通过使用2〜3kHz范围的前侧的被动约束层阻尼处理(PCLDT)采用链盖,并施加了具有180MPa的最大注射压力的压电喷射器的3 RD生成公共导轨系统通过使用成形盖和控制充电时间/放电时间。此外,为了达到该发动机的EURO5标准,采用新型注射策略采用低排放燃烧概念也很重要。然而,这种燃烧模式可以在与调制噪声相关的空闲状态下给出高频粗糙度和更糟糕的稳定性。因此,应优化用于减少和优化腔室中的燃烧激发的试验和后喷射的控制。因此,已经表明发动机开发过程对内部音质以及发动机辐射噪声提供最佳结果。此外,还保证了乘用车内部声音的情绪质量。

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