IP Library Granted Patent US 11,759,740
Granted Patent B2
US 11,759,740 · App. 17/151,255 · Granted Sep 19, 2023

Honeycomb filter

Inventors: Fumihiko Yoshioka (Nagoya, JP); Yuji Sasaki (Nagoya, JP); Kimiko Kishine (Nagoya, JP); Sachiko Ishida (Nagoya, JP); Kyohei Kato (Nagoya, JP)
Assignee: NGK INSULATORS, LTD.
B01D46/2429B01D39/2068B01D46/2476B01D46/24491B01D46/24492B01D53/9413B01J21/04B01J35/04B01J35/1076F01N3/0222F01N3/2803B01D2255/2092B01D2255/9155B01D2279/30F01N2330/02F01N2330/30F01N2370/02
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Quick Facts
Patent No.
US 11,759,740
App. No.
17/151,255
Granted
Sep 19, 2023
Kind
B2
Abstract

A honeycomb filter includes a pillar-shaped honeycomb structure body having a porous partition wall disposed to surround a plurality of cells and a plugging portion, wherein the partition wall is composed of a material containing cordierite as a main component thereof, porosity of the partition wall measured by a mercury press-in method is 60 to 68%, an average pore diameter of the partition wall measured by a mercury press-in method is 8 to 12 and in a pore diameter distribution which indicates a cumulative pore volume of the partition wall measured by a mercury press-in method, with a pore diameter (μm) on an abscissa axis and a log differential pore volume (cm 3 /g) on an ordinate axis, a first peak that includes a maximum value of the log differential pore volume has a pore diameter value of 10 μm or less, the pore diameter value corresponding to a ⅓ value width of the maximum value.

Claims (13)

1. A honeycomb filter comprising:

a pillar-shaped honeycomb structure body having a porous partition wall disposed to surround a plurality of cells which serve as fluid through channels extending from a first end face to a second end face; and

a plugging portion provided at an open end on the first end face side or the second end face side of each of the cells,

wherein the partition wall is composed of a material containing cordierite as a main component thereof,

porosity of the partition wall measured by a mercury press-in method is 60 to 68%,

an average pore diameter of the partition wall measured by a mercury press-in method is 8 to 12 μm, and

in a pore diameter distribution which indicates a cumulative pore volume of the partition wall measured by a mercury press-in method, with a pore diameter (μm) on an abscissa axis and a log differential pore volume (cm 3 /g) on an ordinate axis, a first peak that includes a maximum value of the log differential pore volume has a pore diameter value of 10 μm or less, the pore diameter value corresponding to a ⅓ value width of a maximum value of the log differential pore volume.

2. The honeycomb filter according to claim 1 ,

wherein a ratio of the volume of pores that have pore diameters exceeding 20 μm with respect to a total pore volume of the partition wall is below 20% in the pore diameter distribution.

3. The honeycomb filter according to claim 1 ,

wherein a ratio of the volume of pores that have pore diameters below 5 μm with respect to a total pore volume of the partition wall is below 15% in the pore diameter distribution.

4. The honeycomb filter according to claim 1 ,

wherein a surface of the partition wall is loaded with an exhaust gas purifying catalyst.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2021
From: YOSHIOKA, FUMIHIKO; SASAKI, YUJI; KISHINE, KIMIKO; ISHIDA, SACHIKO; KATO, KYOHEI
To: NGK INSULATORS, LTD.
Reel/Frame 054942/0912 →
Priority Claims (1)
JP 2020-034881 · Mar 2, 2020 · national
Continuity (1)
Related Publication 20210268423A1 · Sep 2, 2021
Cited By (1)
US 12,521,698