IP Library Granted Patent US 9,085,091
Granted Patent B2
US 9,085,091 · App. 13/816,845 · Granted Jul 21, 2015

Production method of ceramic honeycomb structure

Inventor: Shunji Okazaki (Miyako-gun, JP)
Assignee: HITACHI METALS, LTD.
B28B11/241B01D46/2474C04B35/195C04B38/0006C04B38/0645B01D46/2429B01D46/2466B01D2046/2433C04B2111/00793C04B2235/3206C04B2235/3217C04B2235/349C04B2235/3418C04B2235/606C04B2235/6562C04B2235/6565C04B2235/96F01N2330/06F01N2330/30
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Quick Facts
Patent No.
US 9,085,091
App. No.
13/816,845
Granted
Jul 21, 2015
Kind
B2
Abstract

A method for producing a ceramic honeycomb structure having a large number of paths partitioned by porous cell walls, the cell walls having thickness of 0.17-0.45 mm and porosity of 40% or more, comprising the steps of preparing a moldable material comprising a ceramic material powder, a binder, a pore-forming material and water, extruding the moldable material to form a honeycomb-shaped green body, and drying and sintering the green body, the pore-forming material having a melting point of 40-110° C., being solid in the moldable material, and being melted in the drying step so that 25% or more thereof is removed from the green body in the drying step.

Claims (17)

1. A method for producing a ceramic honeycomb structure having a large number of paths partitioned by porous cell walls, said cell walls having a thickness of 0.17-0.45 mm and porosity of 40% or more, comprising the steps of

preparing a moldable material comprising a ceramic material powder, a binder, a pore-forming material and water;

extruding said moldable material to form a honeycomb-shaped green body; and

drying and sintering said green body,

said pore-forming material having a melting point of 40-110° C., being solid in said moldable material, and being melted in said drying step, so that 25-65% of said pore-forming material added is removed from said green body in said drying step, and

said ceramic honeycomb structure having an outer diameter of 150 mm or more and a length of 150 mm or more.

2. The method for producing a ceramic honeycomb structure according to claim 1 , wherein said pore-forming material is a powdery polyalcohol fatty acid ester.

3. The method for producing a ceramic honeycomb structure according to claim 1 , wherein said pore-forming material has a median diameter D50 of 10-200 μm, the value of the formula of (D90−D10)/D50, wherein D10 and D90 respectively represent the diameters of particles whose cumulative volumes (cumulative values of the volumes of particles up to particular diameters) correspond to 10% and 90% of the total volume of said particles, being 1-1.5; and wherein the amount of said pore-forming material added is more than 6% and 30% or less by mass, based on said ceramic material powder.

4. The method for producing a ceramic honeycomb structure according to claim 1 , wherein said drying step is conducted with microwaves and/or hot air applied to said green body.

5. The method for producing a ceramic honeycomb structure according to claim 1 , wherein the molten pore-forming material is removed by air blow in said drying step.

6. The method for producing a ceramic honeycomb structure according to claim 1 , wherein said green body is subject to a centrifugal force to remove said molten pore-forming material during or after drying.

7. A method for producing a ceramic honeycomb structure having a large number of paths partitioned by porous cell walls, said cell walls having a thickness of 0.17-0.45 mm and porosity of 40% or more comprising the steps of

preparing a moldable material comprising a ceramic material powder, a binder, a pore-forming material and water;

extruding said moldable material to form a honeycomb-shaped green body; and

drying and sintering said green body,

said pore-forming material having a melting point of 40-110° C., being solid in said moldable material, and being melted in said drying step, so that 25% or more of said pore-forming material added is removed from said green body in said drying step,

wherein said green body is subject to a centrifugal force to remove said molten pore-forming material during or after drying.

Assignments (4)
CHANGE OF ADDRESS Recorded Dec 9, 2025
From: HITACHI METALS, LTD.
To: HITACHI METALS, LTD.
Reel/Frame 073917/0124 →
CHANGE OF NAME Recorded Dec 9, 2025
From: HITACHI METALS, LTD.
To: PROTERIAL, LTD.
Reel/Frame 073917/0160 →
CHANGE OF ADDRESS Recorded Nov 20, 2025
From: HITACHI METALS, LTD.
To: HITACHI METALS, LTD.
Reel/Frame 073636/0806 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2013
From: OKAZAKI, SHUNJI
To: HITACHI METALS, LTD.
Reel/Frame 029807/0560 →
Priority Claims (1)
JP 2010-183685 · Aug 19, 2010 · national
Continuity (1)
Related Publication 20130140742A1 · Jun 6, 2013