Ceramic composition and cutting tool
In a ceramic composition mainly composed of alumina (Al 2 O 3 ), tungsten carbide (WC) and zirconia (ZrO 2 ), zirconium (Zr) is distributed in a first grain boundary as an interface where an alumina (Al 2 O 3 ) crystal grain is adjacent to a tungsten carbide (WC) crystal grain and in a second grain boundary as an interface where two alumina (Al 2 O 3 ) crystal grains are adjacent to each other.
1. A ceramic composition mainly composed of alumina (Al 2 O 3 ), tungsten carbide (WC) and at least one compound selected from the group consisting of compounds of transition metals (except tungsten (W)) belonging to groups 4 to 6 in a periodic table, yttrium compounds, scandium compounds and lanthanide compounds,
wherein at least one element selected from the group consisting of transition metals (except tungsten (W)) belonging to the groups 4 to 6 in the periodic table, yttrium (Y), scandium (Sc) and lanthanide series is distributed in a first grain boundary as an interface where an alumina (Al 2 O 3 ) crystal grain is adjacent to a tungsten carbide (WC) crystal grain and in a second grain boundary as an interface where two alumina (Al 2 O 3 ) crystal grains are adjacent to each other.
2. The ceramic composition according to claim 1 , wherein on a cross section of the ceramic composition, a relationship between a cross sectional area A of a tungsten carbide (WC) crystal grain which is not adjacent to another tungsten carbide (WC) crystal grain but is surrounded by at least one type of crystal grain selected from the group consisting of alumina (Al 2 O 3 ), the compounds of transition metals belonging to the groups 4 to 6 (except tungsten (W)) in the periodic table, the yttrium compounds, the scandium compounds and the lanthanide compounds and a cross sectional area B of a tungsten carbide (WC) crystal grain adjacent to another tungsten carbide (WC) crystal grain satisfies 1.5≦A/(A+B)×100≦50.0.
3. The ceramic composition according to claim 1 , wherein
tungsten carbide (WC) occupies a part of not lower than 20.0% by volume and not higher than 50.0% by volume,
a zirconium compound occupies a part of not lower than 0.1% by volume and not higher than 18.0% by volume, and
alumina (Al 2 O 3 ) occupies a residual part.
4. The ceramic composition according to claim 1 , wherein
tungsten carbide (WC) occupies a part of not lower than 20.0% by volume and not higher than 50.0% by volume,
a zirconium compound occupies a part of not lower than 0.1% by volume and not higher than 18.0% by volume,
any of the compounds of transition metals belonging to the groups 4 to 6 (except zirconium (Zr) and tungsten (W)) in the periodic table, the yttrium compounds, the scandium compounds and the lanthanide compounds occupies a part of not lower than 0.1% by volume and not higher than 1.0% by volume, and
alumina (Al 2 O 3 ) occupies a residual part.
5. The ceramic composition according to claim 1 , wherein
tungsten carbide (WC) occupies a part of not lower than 20.0% by volume and not higher than 50.0% by volume,
any of the compounds of transition metals belonging to the groups 4 to 6 (except zirconium (Zr) and tungsten (W)) in the periodic table, the yttrium compounds, the scandium compounds and the lanthanide compounds occupies a part of not lower than 0.1% by volume and not higher than 1.0% by volume, and
alumina (Al 2 O 3 ) occupies a residual part.
6. A cutting tool made of the ceramic composition according to claim 1 .