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Microstructural Characterization, Mechanical, Physical and Thermal Properties of a Diesel Particulate Filter

机译:柴油机微粒过滤器的微观结构表征,力学,物理和热学性质

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摘要

In the literature, limited studies are available due to the challenges of the detailed microstructural characterization and determination of properties of diesel particulate filters (DPFs). For this reason, the characterization of a commercial DPF was carried out with different techniques with the aim to identify the manufacturing processes, the chemical composition, the microstructure and the mechanical, physical and thermal properties. Scanning electron microscopy (energy-dispersive X-ray spectroscopy, back-scattered electron, secondary electron detectors), X-ray diffraction, universal mechanical testing, Archimedes technique, dilatometer and C-therm thermal conductivity analysis tools were used for the characterization. During DPF regeneration, the tailoring of these properties has crucial effect on the reliability and durability of the filter. The value of the thermal shock resistance parameter group was calculated to be 426 K, while thermal conductivity (k) was determined as 1.95 W/mK. When compared to the literature values for dense SiC, the value indicated a better thermal shock resistance; however, thermal conductivity was on the limits of an order of magnitude worsening the thermal shock resistance. Therefore, to improve the thermal shock resistance of the filter material, the thermal conductivity value has to be increased to the maximum allowed by the required porosity. The study may lead to tailoring of an optimized SiC DPF material.
机译:在文献中,由于详细的微观结构表征和确定柴油机微粒过滤器(DPF)的性能方面的挑战,因此只能进行有限的研究。由于这个原因,使用不同的技术对商用DPF进行了表征,目的是确定制造工艺,化学成分,微观结构以及机械,物理和热性能。表征使用了扫描电子显微镜(能量分散型X射线光谱,反向散射电子,二次电子检测器),X射线衍射,通用机械测试,阿基米德技术,膨胀计和C型热导率分析工具。在DPF再生期间,这些属性的调整对过滤器的可靠性和耐用性具有至关重要的影响。计算出的抗热震性参数组的值为426 K,而热导率(k)被确定为1.95 W / mK。与致密SiC的文献值相比,该值表明具有更好的抗热震性;然而,热导率处于使耐热冲击性恶化的一个数量级的极限上。因此,为了提高过滤材料的抗热震性,必须将热导率值增加到所需孔隙率所允许的最大值。该研究可能导致定制优化的SiC DPF材料。

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