US 12,420,469 B2
Method for manufacturing cylindrical honeycomb fired body
Yasunori Yamazaki, Nagoya (JP); Kazuya Kageyama, Nagoya (JP); and Yusuke Hayakawa, Nagoya (JP)
Assigned to NGK INSULATORS, LTD., Nagoya (JP)
Filed by NGK Insulators, Ltd., Nagoya (JP)
Filed on Feb. 10, 2023, as Appl. No. 18/167,241.
Claims priority of application No. 2022-060620 (JP), filed on Mar. 31, 2022.
Prior Publication US 2023/0311398 A1, Oct. 5, 2023
Int. Cl. B29C 48/11 (2019.01); B29C 48/92 (2019.01); B29D 99/00 (2010.01); B29L 31/60 (2006.01)
CPC B29C 48/11 (2019.02) [B29C 48/92 (2019.02); B29D 99/0089 (2013.01); B29C 2948/92666 (2019.02); B29L 2031/608 (2013.01)] 18 Claims
OG exemplary drawing
 
1. A method for manufacturing a cylindrical honeycomb fired body, the cylindrical honeycomb fired body comprising an outer peripheral side surface, and partition walls disposed on an inner peripheral side of the outer peripheral side surface and partitioning a plurality of cells forming flow paths from a first end surface to a second end surface, the method comprising:
a step A of preparing a cylindrical honeycomb formed body by extrusion molding a green body comprising a ceramic raw material, a pore-forming material, a binder and a dispersion medium through a die defining an opening shape of the plurality of cells and an annular mask located downstream of the die and having an inner peripheral contour for defining an outer peripheral contour of the first end surface and the second end surface, such that a direction in which the cells extend is horizontal and a front side in a traveling direction of the extrusion molding is the first end surface, and a rear side is the second end surface, and then by cutting to a predetermined length;
a step B of obtaining a cylindrical honeycomb dried body by drying the cylindrical honeycomb formed body;
a step C of calculating:
(D1AVE+D4AVE+D6AVE)−(D2AVE+D5AVE+D8AVE)=EAVE1,
(D3AVE+D6AVE+D8AVE)−(D2AVE+D4AVE+D7AVE)=EAVE2,
(D2AVE+D5AVE+D8AVE)−(D1AVE+D4AVE+D6AVE)=EAVE3, and
(D2AVE+D4AVE+D7AVE)−(D3AVE+D6AVE+D8AVE)=EAVE4,
in which, assuming that a cross-section perpendicular to the direction in which the cells of the cylindrical honeycomb dried body extend is observed from the front side in the traveling direction of the extrusion molding of the step A, and a location on the outer peripheral side surface located at a vertex during the extrusion molding in the step A is 0 rad, with a clockwise direction as a + direction, D1AVE is defined as an average value of distance between a center of gravity position O and an outer peripheral contour of the cross-section in a central angle (rad) from −⅛π to +⅛π, D2AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +⅛π to +⅜π, D3AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +⅜π to +⅝π, D4AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +⅝π to +⅞π, D5AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +⅞π to +9/8π, D6AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +9/8π to +11/8π, D7AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +11/8π to +13/8π, and D8AVE is defined as an average value of distance between the center of gravity position O and the outer peripheral contour of the cross-section in a central angle (rad) from +13/8π to +15/8π;
a step D of specifying a minimum value among EAVE1, EAVE2, EAVE3, and EAVE4 calculated in the step C;
a step E of obtaining the cylindrical honeycomb fired body by placing the cylindrical honeycomb dried body on a shelf plate and firing the cylindrical honeycomb dried body while passing it through a continuous firing furnace, such that the direction in which the cells of the cylindrical honeycomb dried body extend is parallel to a vertical direction and:
when the minimum value is EAVE1, a location on the outer peripheral side surface corresponding to 0 rad is positioned at the front side in the traveling direction of the extrusion molding,
when the minimum value is EAVE2, a location on the outer peripheral side surface corresponding to 4/8 π rad is positioned at the front side in the traveling direction of the extrusion molding,
when the minimum value is EAVE3, a location on the outer peripheral side surface corresponding to 8/8 π rad is positioned at the front side in the traveling direction of the extrusion molding, and
when the minimum value is EAVE4, a location on the outer peripheral side surface corresponding to 12/8 π rad is positioned at the front side in the traveling direction of the extrusion molding.