基于稳健设计的PGM优化

George C. Mitchell, M. Zammit, Douglas J. Ball
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引用次数: 5

摘要

为了确定PGM加载和放置对一辆4缸2.4L和两辆8缸4.7L汽车FTP排放的影响,进行了一项鲁棒工程试验。采用1.3L催化转化器,前后各装一个等体积催化剂。实验由田口L-8阵列定义。对8种不同的催化剂PGM负载组合进行了老化和评估。结果表明,nmHC和NOx排放主要受前端催化剂PGM负载的影响。后催化剂对Pt或Pd不敏感,可以在低浓度下使用。结果还比较了Pd和Rh在减少排放方面的好处。确认运行表明,PGM成本可以在基线设计基础上显著降低。
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PGM Optimization by Robust Design
A Robust Engineering experiment was performed to determine the effects PGM loading and placement on the FTP emissions of a 4 cylinder 2.4L and two 8 cylinder 4.7L vehicles. 1.3L catalytic converters were used containing a front and rear catalyst of equal volume. The experiment is defined by a Taguchi L-8 array. Eight different combinations of catalyst PGM loadings were aged and evaluated. Results show that nmHC and NOx emissions are predominately affected by the PGM loading of the front catalyst. The rear catalyst is insensitive to either Pt or Pd which can be used at low concentrations. Results also compare the benefits of Pd and Rh to reduce emissions. Confirmation runs suggest that significant reductions in PGM cost can be achieved over baseline designs.
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