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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Morphology Analysis of Wall-Deposited Diesel Soot Particles via Transmission Electron Microscope
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Morphology Analysis of Wall-Deposited Diesel Soot Particles via Transmission Electron Microscope

机译:透射电子显微镜分析壁沉积式柴油烟尘颗粒的形态

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Wall-deposition of soot particles occurs due to the interaction between spray flame and cylinder liner wall/piston surface, which can potentially affect soot morphology after the in-flame formation/oxidation processes and before the exit from engine cylinder. In order to investigate these effects, flame wall impingement was simulated in a constant volume combustion vessel and thermophoretic soot sampling was conducted for Transmission Electron Microscopic analysis. A TEM grid for the sampling was exposed to a single-shot diesel spray flame multiple times and the variation of soot morphology (concentration, primary particle diameter and aggregate gyration radius) among the multiple exposures was compared. Furthermore, a newly designed impingement-type sampler vertically exposed the grid to the spray flame and sampled soot particles under different boundary condition from that of conventionally used skim-type sampler. The morphology of soot particles sampled by the impingement- and skim-type samplers were compared. The results showed that the multiple exposures increased both concentration and aggregate size but did not affect the primary particle size. On the other hand, flame wall impingement decreased both aggregate and primary particle sizes. It is suggested that cycle-to-cycle flame exposures to the wall cause soot coaggregation on wall surface but do not promote soot surface growth.
机译:由于喷雾火焰与汽缸套壁/活塞表面之间的相互作用,会发生烟尘颗粒的壁沉积,这可能会在火焰形成/氧化过程之后以及从发动机汽缸退出之前影响烟尘的形态。为了研究这些影响,在恒定容积的燃烧容器中模拟了火焰壁的撞击,并进行了热泳烟灰采样以进行透射电子显微镜分析。将用于采样的TEM网格多次暴露于单次柴油机喷雾火焰中,并比较多次暴露之间烟灰形态的变化(浓度,一次粒径和聚集回转半径)。此外,新设计的冲击式采样器使格栅垂直暴露在喷洒的火焰中,并在与传统脱脂型采样器不同的边界条件下采样了烟灰颗粒。比较了撞击型和脱脂型采样器采样的烟尘颗粒形态。结果表明,多次接触增加了浓度和聚集体尺寸,但不影​​响初级粒径。另一方面,火焰壁撞击减少了聚集体和初级颗粒尺寸。建议循环到循环的火焰暴露在壁上会导致烟灰在壁表面聚集,但不会促进烟灰表面生长。

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