Exhaust gas treating device and manufacturing method of honeycomb structure
一种废气处理装置、蜂窝结构体的技术,应用在排气装置、消音装置、气体通道等方向,能够解决废气温度降低等问题,达到缩小大小、难以速冷、容易升温的效果
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Embodiment 1
[0111] 13 parts by mass of a pore-forming material, 35 parts by mass of a dispersion medium, 6 parts by mass of an organic binder, and 0.5 parts by mass of a dispersant were added to 100 parts by mass of a cordierite chemical raw material, mixed and kneaded to prepare a base earth. As cordierite-forming raw materials, alumina, aluminum hydroxide, kaolin, talc, and silica are used. Water was used as a dispersion medium, coke with an average particle diameter of 1 to 10 μm was used as a pore-forming material, hydroxypropylmethylcellulose was used as an organic binder, and ethylene glycol was used as a dispersant. The particle diameter and amount of the pore-forming material are controlled, thereby controlling the pore diameter and porosity of the partition wall.
[0112] Next, in order to obtain a formed honeycomb body having partition walls and partition walls, the kneaded clay is extruded using a predetermined mold to obtain a cylindrical formed honeycomb body.
[0113] Next...
Embodiment 2~9、 comparative example 1~5
[0136] Except for the case where it was changed as shown in Table 1, it carried out similarly to Example 1, and evaluated "system total length", "purification rate", and "PM capture|collection". The results are shown in Table 1.
[0137] From Table 1, it is clear that the exhaust gas treatment devices of Examples 1 to 9 can be reduced in overall size compared with the exhaust gas treatment devices of Comparative Examples 1 to 5, are easy to heat up, and are difficult to rapidly cool.
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