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HONEYCOMB STRUCTURE AND MANUFACTURING METHOD THEREFOR
PROBLEM TO BE SOLVED: To enhance conductivity of a honeycomb structure having an electrode.SOLUTION: The honeycomb structure 40 has a partition wall 48 formed from a porous ceramic partition forming a plurality of cell 47 extending from an edge face to another edge face which becomes a flow pass of fluid and an outer peripheral wall 49 formed on an outermost peripheral and is formed from ceramic oxide containing Fe and an FeOphase by solidifying a solid solution component capable of forming spinel type oxide.SELECTED DRAWING: Figure 1
【課題】電極を有するハニカム構造体の導電性をより高める。【解決手段】本発明のハニカム構造体40は、流体の流路となる一方の端面から他方の端面まで延びる複数のセル47を区画形成する多孔質セラミックスで形成された隔壁48と、最外周に形成された外周壁49とを備えたハニカム構造体であって、Feとスピネル型酸化物を形成可能な固溶成分を固溶したFe3O4相を含有する酸化物セラミックスが形成されたものである。【選択図】図1
HONEYCOMB STRUCTURE AND MANUFACTURING METHOD THEREFOR
PROBLEM TO BE SOLVED: To enhance conductivity of a honeycomb structure having an electrode.SOLUTION: The honeycomb structure 40 has a partition wall 48 formed from a porous ceramic partition forming a plurality of cell 47 extending from an edge face to another edge face which becomes a flow pass of fluid and an outer peripheral wall 49 formed on an outermost peripheral and is formed from ceramic oxide containing Fe and an FeOphase by solidifying a solid solution component capable of forming spinel type oxide.SELECTED DRAWING: Figure 1
【課題】電極を有するハニカム構造体の導電性をより高める。【解決手段】本発明のハニカム構造体40は、流体の流路となる一方の端面から他方の端面まで延びる複数のセル47を区画形成する多孔質セラミックスで形成された隔壁48と、最外周に形成された外周壁49とを備えたハニカム構造体であって、Feとスピネル型酸化物を形成可能な固溶成分を固溶したFe3O4相を含有する酸化物セラミックスが形成されたものである。【選択図】図1
HONEYCOMB STRUCTURE AND MANUFACTURING METHOD THEREFOR
ハニカム構造体及びその製造方法
IZUMI YUNIE (author) / KOBAYASHI YOSHIMASA (author)
2016-05-12
Patent
Electronic Resource
Japanese
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