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TURBULENT PE CATALYST - A EU5 INNOVATIVE SOLUTION FOR A MASERATI HIGH DISPLACEMENT V8 POWERTRAIN

机译:湍流PE催化剂-大型高排量V8动力总成的EU5创新解决方案

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One of the main challenges represented by the upcoming EUS limits for gasoline engines is the compliance to an increase of NOx conversion efficiency that must be granted in an extended lifetime.Starting from the EU4 exhaust after-treatment system designed for a V8 engine, the application has been re-engineered to achieve EU5 compliance. During this development program the further reduction of tailpipe NOx represented the main engineering challenge. It has been previously reported that turbulent-like substrates for catalytic converters can significantly improve the overall conversion efficiency. The development target has been achieved by applying a PE-Design metallic substrate, which enabled advanced wash-coat technology to face the demanding durability targets of a EUS application. This solution has been applied with an innovative engineering design that minimized the exhaust system hardware modification. A cost effective solution, compliant with the demanding engine under-hood packaging constraints, has been designed starting from the production EU4 elliptical metallic substrates. A further development of substrate internal architecture led to enhanced mechanical durability driven by EU5 lifetime requirements. The present paper describes the development process with specific details on the technical solution, with particular focus on emission performance measurements, vibrational characterization carried out by means of transient signal acquisition, thermal cycling and micro graphical analysis of end-of-life components.
机译:即将到来的汽油发动机EUS限制所代表的主要挑战之一是必须延长使用寿命才能满足提高NOx转化效率的要求。 从为V8发动机设计的EU4排气后处理系统开始,对应用程序进行了重新设计,以达到EU5要求。在该开发计划中,进一步减少尾气NOx代表了主要的工程挑战。先前已经报道过,用于催化转化器的湍流状基材可以显着提高总转化效率。通过使用PE-Design金属基材实现了开发目标,该金属基材使先进的修补涂料技术能够应对EUS应用中苛刻的耐用性目标。该解决方案已应用到创新的工程设计中,该设计可最大程度地减少排气系统的硬件改动。从生产EU4椭圆形金属基材开始,就已经设计出了一种符合成本效益的解决方案,该方案符合苛刻的发动机引擎盖下的包装限制。基板内部结构的进一步发展导致了EU5寿命要求的提高,从而提高了机械耐久性。本文介绍了技术解决方案的开发过程,其中包含具体的技术细节,尤其着重于发射性能测量,通过瞬态信号采集进行的振动表征,热循环和寿命终止组件的显微图形分析。

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