Hard film and hard film-coated tool
A hard coating film to be applied to the surface of a tool, said hard coating film having a composition represented by the formula Al 1-a-b-c Si a Mg b M c (B x C y N z ), where M denotes at least one species of elements selected from Nb, V, Zr, Cr, Ti, Cu, and Y, and a, b, c, x, y, and z represent atomic ratios such that 0≦a≦0.35, 0≦b≦0.2, 0.03≦a+b≦0.5, 0≦c≦0.1, 0.9≦Al+Si+Mg, 0≦x≦0.2, 0≦y≦0.4, 0.5≦z≦1, and x+y+z=1. A tool coated with the hard coating film defined above. The hard coating film has excellent wear resistance owing to its improved hardness, oxidation resistance, and toughness. It is used for coating on a tool to improve wear resistance.
1. A hard coating film to be applied to the surface of a tool, said hard coating film comprising layers A and layers B which are placed alternately one over another, wherein
each of said layers A has a composition represented by the formula Al 1-a-b Si a Mg b (B x C y N Z ), where a, b, x, y, and z represent atomic ratios such that 0≦a≦0.35, 0≦b≦0.2, 0.03≦a+b≦0.5, 0≦x≦0.2, 0≦y≦0.4, 0.5≦z≦1, and x+y+z=1;
each of said layers B has a composition represented by the formula Ti 1-m-n Cr m Al n (B o C p N q ), where m, n, o, p, and q represent atomic ratios such that 0≦m≦0.5, 0.5≦n≦0.75, 0≦1-m-n ≦0.5, and o+p+q=1; and
each of said layers A and layers B has a thickness not smaller than 2 nm and not larger than 200 nm.
2. A tool coated with the hard coating film defined in claim 1 .
3. The hard coating film according to claim 1 , wherein 0≦a≦0.3.
4. The hard coating film according to claim 1 , wherein 0≦a≦0.2.
5. The hard coating film according to claim 1 , wherein 0≦b≦0.1.
6. The hard coating film according to claim 1 , wherein 0≦x≦0.15.
7. The hard coating film according to claim 1 , wherein 0≦y≦0.2.
8. The hard coating film according to claim 1 , wherein 0.6≦n≦0.75.
9. The hard coating film according to claim 1 , wherein 0.5≦n≦0.7.