Magnetic recording medium and method for manufacturing the same
The present invention provides a magnetic recording medium comprising: a non-magnetic substrate; and one or more magnetic layers formed on the non-magnetic substrate, wherein the magnetic recording medium has a loss modulus at 0.5 Hz at a temperature of 130° C. of 0.18 to 0.39 GPa, in order to improve dimensional stability and running stability of a tape, particularly in a high-temperature environment, and thereby improve reliability in recording and reproduction of data, and to provide a method for manufacturing the same. Also, the magnetic recording medium of the present invention attains the object to solve the problem that tension for driving generates nonuniform elongation in the medium, resulting in reduction of running stability because of a thin magnetic recording medium which is reduced the total thickness to increase the capacity of the backup tape per reel by increasing a tape length and increase.
1 . A magnetic recording medium comprising:
a non-magnetic substrate; and
one or more magnetic layers formed on the non-magnetic substrate, wherein
the magnetic recording medium has a loss modulus at 0.5 Hz at a temperature of 130° C. of 0.18 to 0.39 GPa.
2 . A magnetic recording medium comprising:
a non-magnetic substrate; and
one or more magnetic layers formed on the non-magnetic substrate, wherein
the non-magnetic substrate is composed of polyethylene naphthalate and has a loss modulus at 0.5 Hz at a temperature of 130° C. of 0.15 to 0.37 GPa.
3 . The magnetic recording medium according to claim 1 , further comprising a magnetic or non-magnetic intermediate layer between the non-magnetic substrate and the magnetic layer.
4 . The magnetic recording medium according to claim 2 , further comprising a magnetic or non-magnetic intermediate layer between the non-magnetic substrate and the magnetic layer.
5 . A method for manufacturing a magnetic recording medium comprising the step of:
forming one or more magnetic layers and/or non-magnetic layers on a non-magnetic substrate, wherein
the non-magnetic substrate is subjected to heat treatment at temperatures 1 to 25° C. lower than the glass transition temperature Tg of the substrate before forming the magnetic layers and/or the non-magnetic layers; and
the heat treatment temperatures for the substrate in a manufacturing step after the heat treatment are maintained at temperatures lower than the glass transition temperature Tg of the substrate.