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Thermal Aging Behavior of SiC Substrate in the Presence of Ash Materials and Alkali Metals

机译:灰材料和碱金属存在下SiC衬底的热老化行为

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The objective of the study is to clarify the effect of ash materials and alkali metals deposition on SiC-DPF substrate damage with high temperatures on simulated uncontrolled regeneration. The ash materials are selected from engine oil compounds. The alkali metals used for additive catalysts are also examined on the reaction at high temperature. The ash materials used in the experiment were CaCO{sub}3, Fe{sub}2O{sub}3, MgO and SrCO{sub}3 to the substance, and the reaction temperature between SiC and the ash materials were observed. The effects of alkali metals (such as Na, K and Cs) on the substrate damage were observed. Additionally the mixture of the alkali metals and the ash materials were examined. The results were observed by the naked eye, SEM, and XRD. When the individual ash material exists on the surface alone, the SiC surface did not change at a temperature of 1300°. However, in the presence of ash materials together on the SiC surface, the SiC substrate melting temperature dropped to 1020°. In the case of alkali metals, Cs shows moderate staining at 1200°. However when the alkali metals are mixed together, the reaction between the alkali metals and the SiC started from 900°. The melting temperature of SiC with mixture of all kinds of the ash materials and the alkali metals was observed at 800°.
机译:该研究的目的是阐明灰材料和碱金属沉积对SiC-DPF底物损伤的影响,具有高温模拟的不受控制再生。灰材料选自发动机油化合物。用于添加剂催化剂的碱金属也在高温下进行反应。实验中使用的灰分材料是CaCO {亚} 3,Fe {亚} 2O {sub} 3,MgO和Srco {sub} 3,并且观察到SiC和灰材料之间的反应温度。观察到碱金属(例如Na,K和Cs)对底物损伤的影响。另外,检查碱金属和灰分材料的混合物。肉眼,SEM和XRD观察结果。当单独存在各个灰分材料时,SiC表面在1300°的温度下没有变化。然而,在SiC表面上一起在灰质材料的存在下,SiC衬底熔化温度降至1020°。在碱金属的情况下,Cs显示在1200°处的中度染色。然而,当碱金属混合在一起时,碱金属和SiC之间的反应开始于900°。在800°观察到具有各种灰分材料和碱金属的混合物的SiC的熔化温度。

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