Gaseous emissions treatment components and methods for manufacturing thereof
A gaseous emissions treatment component is made by extruding a green ceramic mix through a die to form an extrusion having a honeycomb substrate with elongate cells extending its length and with the cells bounded by walls dividing adjacent cells from one another. Molten metal for use in induction heating of the component is placed in selected cells and is solidified by cooling.
1. A method of making a gaseous emissions treatment component, comprising extruding green ceramic mix through a die to form an extrusion having a honeycomb substrate having a plurality of elongate cells extending along the extrusion, the cells bounded by walls dividing adjacent cells from one another, cutting off a length of the extrusion, placing molten metal for use in induction heating of the component in at least a part of at least some of the cells in said length, and solidifying the molten metal by cooling, wherein said cooling acts to cool and solidify the molten metal to cause first shrinkage of the metal and acts to cool the substrate to cause second shrinkage of the substrate less than the first shrinkage, whereby at solidification of the molten metal, a space is established at at least some of an interface between the solidified metal and adjacent walls of said at least some of the cells.
2. The method of claim 1 , wherein metal is initially introduced in solid form into said at least some of the cells and the introduced metal is heated to melt the introduced metal whereby it becomes the placed molten metal.
3. The method of claim 2 , wherein the introduced metal in solid form is particulate metal.
4. The method of claim 2 , wherein the introduced metal in solid form is a metal wire.
5. The method of claim 1 , further comprising firing the length of honeycomb substrate before the molten metal is placed.
6. The method of claim 5 , wherein the molten metal is injected at high pressure into said at least some of the cells.
7. The method of claim 1 , further comprising heating the length of honeycomb substrate prior to placing the molten metal in said at least a part of said at least some of the cells.
8. The method of claim 1 , wherein the metal of the solidified metal, a material of the substrate and dimensions of the at least some of the cells are selected such that when the component is being used in emissions treatment and operating temperature of the component increases from an expected lowest temperature operation to an expected highest temperature operation, differential expansion between the solidified metal and the substrate does not fully close said space.
9. The method of claim 1 , further comprising texturing surfaces of the walls of said at least some of the cells during formation of the extrusion.
10. The method of claim 1 , wherein a catalyst metal washcoat is applied to walls of open cells of the substrate after placing said molten metal in said at least some of the cells.