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A Study on Regeneration Strategies of Cordierite-DPF Applied to a Diesel Vehicle

机译:堇青石-DPF再生策略应用于柴油车辆

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Diesel Particulate Filter (DPF) system is considered as the most effective method to reduce particulate mater (PM) out of diesel exhaust. In general, silicon carbide (SiC) has been employed as the base materials for DPF substrate in diesel vehicles. Currently, a material, called cordierite (Cd), has been adopted for the DPF in a modern SUV with 2-liter CRDI diesel engine, complying EURO-5 emission regulation. Instead of its lower cost, Cd-based substrate was disadvantageous on thermal conductivity and heat capacity relative to SiC. In this work, the problems (i.e., face crack), initiated by the thermal drawbacks, were investigated as it applied into the DPF substrate. As the countermeasures to overcome, a control optimization of regeneration temperature elevation and an introduction of ingenious multiple regeneration strategy at problematic conditions were proposed and verified through real-road endurance tests.
机译:柴油颗粒过滤器(DPF)系统被认为是将颗粒物(PM)从柴油排气中减少的最有效方法。通常,碳化硅(SiC)被用作柴油车辆中DPF衬底的基础材料。目前,一种称为堇青石(CD)的材料,已在现代SUV中采用2升CRDI柴油发动机,符合欧元5欧元排放调控。而不是其较低的成本,Cd基衬底对相对于SiC的导热率和热容量是不利的。在这项工作中,在施加到DPF底物中,研究了由热缺点发起的问题(即面部裂缝)。作为克服的对策,提出了通过实际公路耐久性测试在有问题条件下进行再生温度升高和引入巧妙多再生策略的控制优化。

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