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Effect of Metallic GPF on the Micro Characteristics of Soot Particles of GDI Engine

机译:金属GPF对GDI发动机烟尘颗粒微观特性的影响

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摘要

High-resolution transmission electron microscopy (HRTEM) was used to observe the soot particles emitted from gasoline direct injection (GDI) engine equipped with metallic particulate filter (GPF). The changes of microscopic morphology and structure of the soot particles at pre-GPF and post-GPF were studied at a fixed speed of 1500 r/min and 25 , 50 75 and 100 load, respectively. Furthermore, the micro-parameters of the primary particles that make up the soot particles were analyzed. The results show that the primary particles are approximately spherical, and agglomerate to form irregular shapes such as chains, branches and rings. The load and GPF have no significant influence on the microscopic morphology of the soot particles, the fractal dimension of soot particles at both ends of the GPF increases with the increase of load. Under the experimental conditions of the engine, most primary particles consisting of the soot particles are "shell-core" structure; The fringe length, tortuosity and interlayer spacing of the primary particles at pre- and post-GPF are monomodal. Among them, the average fringe length increases with the increase of load, while both the average tortuosity and average interlayer spacing change the opposite. These indicated that the degree of graphitization of the soot particle increases with the increasing load. Load and GPF only affect the micro-structure parameters of the primary particles and have no effect on its distribution.
机译:采用高分辨透射电子显微镜(HRTEM)对装有金属颗粒过滤器(GPF)的汽油直喷(GDI)发动机排放的烟尘颗粒进行了观察。分别在1500 r/min和25 %、50 %、75 %和100 %负载的固定转速下研究了GPF前和GPF后烟尘颗粒的微观形貌和结构变化。此外,还分析了构成烟尘颗粒的初级颗粒的微观参数。结果表明:初级颗粒近似球形,并团聚形成链状、分支状和环状等不规则形状;负荷和GPF对烟尘颗粒的微观形貌没有显著影响,GPF两端烟尘颗粒的分形维数随着负荷的增加而增大。在发动机的实验条件下,由烟尘颗粒组成的初级颗粒大多为“壳芯”结构;在GPF前后,初级颗粒的条纹长度、迂曲度和层间间距是单峰的。其中,平均条纹长度随荷载的增加而增加,而平均迂曲度和平均层间距则相反。结果表明,随着负荷的增加,烟尘颗粒的石墨化程度增加。载荷和GPF仅影响初级颗粒的微观结构参数,对其分布没有影响。

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