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Thermal reliability and performance improvement of close-coupled catalytic converter

机译:近耦合催化转化器的热可靠性和性能改进

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This paper proposes a high temperature catalytic converter design using a ceramic substrate and intumescent matting. It also describes the improvement of converter performance using an advanced thin-wall ceramic substrate. Due to future tightening of emission regulations and improvement of fuel economy, higher exhaust gas temperatures are suggested. Therefore, reduction of thermal reliability of an intumescent mat will be a concern because the catalytic converter will be exposed to high temperatures. For this reason, a new design converter has been developed using a dual cone structure for both the inlet and outlet cones. This minimizes heat conduction through the cone and decreases the temperature affecting the mat area. This design converter, without the use of a heat shield, reduces the converter surface temperature to 441°C despite a catalyst bed temperature of 1050°C. The long-term durability of the converter is demonstrated by the hot vibration test. Since the new design converter does not need a heat shield, the catalyst diameter can be enlarged by the width of the air gap used in the current design converter. By using an advanced thin-wall ceramic substrate, such as 0.11 mm/620 kcpsm {4 mil/400 cpsi}, it is possible to improve emission performance and pressure drop compared with the conventional 0.16 mm/620 kcpsm {6 mil/400 cpsi} ceramic substrate.
机译:本文采用陶瓷基材和膨胀焊接的高温催化转化器设计。它还描述了使用先进的薄壁陶瓷基板改善转换器性能。由于未来的排放法规紧缩和燃油经济性的提高,提出了较高的废气温度。因此,降低膨胀垫的热可靠性将是一个问题,因为催化转化器将暴露于高温。因此,已经使用了用于入口和出口锥体的双锥形结构开发了新的设计转换器。这最大限度地减少了通过锥体的热传导,并降低影响垫子区域的温度。尽管催化剂床温度为1050℃,但这种设计转换器在不使用隔热罩的情况下将转换器表面温度降低至441°C。通过热振动试验证明了转换器的长期耐久性。由于新设计转换器不需要隔热罩,因此催化剂直径可以通过电流设计转换器中使用的气隙的宽度来扩大。通过使用先进的薄壁陶瓷基板,例如0.11mm / 620 kcpsm {4 mil / 400cpsi},可以提高与传统0.16mm / 620 kcpsm {6 mil / 400cpsi相比的发射性能和压降陶瓷衬底。

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