Honeycomb formed body extruding die
US-9486794-B2 · Nov 8, 2016 · US
US2019099917A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019099917-A1 |
| Application number | US-201716082997-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 12, 2017 |
| Priority date | Mar 9, 2016 |
| Publication date | Apr 4, 2019 |
| Grant date | — |
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A metal mold for manufacturing a honeycomb structure having a plurality of cell density regions and an annular boundary wall includes a honeycomb-like slit part, which is opened to an extrusion surface of a single metal mold body, that is formed of a plurality of cell slits for forming the plurality of cell density regions and an annular boundary slit for forming the boundary wall. Out of the plurality of cell slits, adjacent cell slits adjacent to the boundary slit have all corner portions formed in a round shape by the adjacent cell slits and the boundary slit.
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1 .- 8 . (canceled) 9 . A metal mold used for manufacturing by extrusion molding a ceramic honeycomb structure that includes cells partitioned by cell walls and has a plurality of cell density regions different in cell density and an annular boundary wall separating the plurality of cell density regions, the metal mold comprising: a single metal mold body; a plurality of material supply holes that extends from a material supply surface of the metal mold body in a material extrusion direction; and a honeycomb-like slit part that communicates with the plurality of material supply holes in the metal mold body and is opened to an extrusion surface opposite to the material supply surface, wherein the slit part has a plurality of cell slits that forms the cell walls corresponding to the plurality of cell density regions and an annular boundary slit that forms the boundary wall, the cell slits have some adjacent cell slits that are adjacent to the boundary slit, on the extrusion surface, cell shapes formed by surrounded by the adjacent cell slits and the boundary slit include incomplete cell shapes having smaller opening areas than those of unit cell shapes formed by the cell slits including the adjacent cell slits, and all corner portions adjacent to the boundary slit have a round shape. 10 . The metal mold for manufacturing a honeycomb structure according to claim 9 , wherein the slit part has the boundary slit and at least some of the adjacent cell slits larger in slit width than the plurality of cell slits except for the adjacent cell slits. 11 . The metal mold for manufacturing a honeycomb structure according to claim 9 , wherein the honeycomb structure has a cell density of 300 to 900 cpsi, and the slip part in the metal mold body is formed by electrical discharge machining. 12 . An apparatus for producing a metal mold used for manufacturing by extrusion molding a ceramic honeycomb structure that includes cells partitioned by cell walls and has a plurality of cell density regions different in cell density and an annular boundary wall separating the plurality of cell density regions, the metal mold comprising: a single metal mold body; a plurality of material supply holes that extends from a material supply surface of the metal mold body in a material extrusion direction; and a honeycomb-like slit part that communicates with the plurality of material supply holes in the metal mold body and is opened to an extrusion surface opposite to the material supply surface, wherein the slit part has a plurality of cell slits that forms the cell walls corresponding to the plurality of cell density regions and an annular boundary slit that forms the boundary wall the cell slits have some adjacent cell slits that are adjacent to the boundary slit, and all corner portions formed by the adjacent cell slits and the boundary slit have a round shape, and the apparatus comprises: a support base that supports the metal mold body; a plurality of discharge electrodes for electrical discharge machining of the slit part in the metal mold body; a holding portion that holds one of the plurality of discharge electrodes in a position opposed to the metal mold body; and a control unit that controls electrical discharge machining of the metal mold body by the discharge electrodes, wherein the plurality of discharge electrodes include a boundary electrode part for processing the boundary slit and an adjacent electrode part for processing the adjacent cell slits, and has two discharge electrodes with partially overlapping processing regions, and each of the two discharge electrodes has a non-processed portion where the boundary slit and some of the adjacent cell slits are not processed in the partial processing region, and the respective non-processed portions are different from each other. 13 . The apparatus for producing the metal mold according to claim 12 , wherein respective processing regions of the two discharge electrodes are combined to process the entire regions of the boundary slit and the adjacent cell slits including portions corresponding to the non-processed portions. 14 . The apparatus for producing the metal mold according to claim 12 , wherein, in the two discharge electrodes, widths of the boundary electrode parts and the adjacent electrode parts are larger than widths of electrode parts for processing the plurality of cell slits except for the adjacent electrode parts. 15 . The apparatus for producing the metal mold according to claim 12 , wherein the slit part has a rotationally symmetrical shape and at least one of the plurality of discharge electrodes has a shape of a piece divided from the slit part to be processed in a rotational direction. 16 . A method for manufacturing a honeycomb structure, comprising: using the metal mold produced by the apparatus for producing the metal mold according to claim 12 ; and supplying a ceramic material to the material supply surface side of the metal mold body and letting the ceramic material pass through the material supply holes and the slit part to extrude the honeycomb structure to the extrusion surface side.
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