Ceramic honeycomb filter and its production method
A ceramic honeycomb filter comprising a honeycomb structure having large numbers of flow paths partitioned by porous cell walls, and plugs alternately formed in the flow paths on the exhaust-gas-inlet and outlet sides, the outlet-side plugs having porosity of 65% or less, and the upstream-side end surfaces of the outlet-side plugs having surface roughness Ra of 13-50 μm.
1. A ceramic honeycomb filter comprising a honeycomb structure having large numbers of flow paths partitioned by porous cell walls, and plugs alternately formed in said flow paths on the exhaust-gas-inlet and outlet sides, said outlet-side plugs having porosity of 65% or less, and the upstream-side end surfaces of said outlet-side plugs having surface roughness Ra of 13-50 μm.
2. The ceramic honeycomb filter according to claim 1 , wherein said outlet-side plugs having porosity of 45% or less.
3. The ceramic honeycomb filter according to claim 1 , wherein the flow-path-direction length of said outlet-side plugs is 6-30 times the width of said outlet-side plugs.
4. The ceramic honeycomb filter according to claim 1 , wherein the flow-path-direction length of said outlet-side plugs is larger in a center portion than in a peripheral portion in a cross section perpendicular to the flow paths.
5. A method for producing a ceramic honeycomb filter comprising a honeycomb structure having large numbers of flow paths partitioned by porous cell walls, and plugs alternately formed in said flow paths on the exhaust-gas-inlet and outlet sides, said outlet-side plugs having porosity of 65% or less, and the upstream-side end surfaces of said outlet-side plugs having surface roughness Ra of 13 μm or more, comprising the steps of forming the outlet-side plugs with slurry containing ceramic powder having an average particle size of 5 μm or less, accumulating ceramic powder having an average particle size of 10-200 μm on the upstream-side end surfaces of the plugs, and integrally sintering them.