MACHINE INTERFACE, DRIVE AND VERTICAL GRINDING MILL
The invention concerns a machine interface ( 1 ) between a grinding pan ( 2 ) of a vertical grinding mill ( 3 ) and a drive ( 4 ) of the grinding pan ( 2 ). The machine interface ( 1 ) is designed such that the grinding pan ( 2 ) and the drive ( 4 ) are thermally decoupled.
1 .- 4 . (canceled)
5 . A machine interface between a grinding pan of a vertical grinding mill and a drive of the grinding pan, said machine interface being configured to thermally decouple the grinding pan and the drive.
6 . The machine interface of claim 5 , wherein the machine interface thermally decouples the grinding pan and the drive by a heat-insulating layer providing heat insulation with respect to metal and arranged between the grinding pan and the drive.
7 . The machine interface of claim 6 , wherein the heat-insulating layer is made of a material sufficient to maintain a predetermined loading capacity and having a thermal conductivity in a range of 0.18 to 0.3 W/(mK).
8 . The machine interface of claim 5 , wherein the machine interface thermally decouples the grinding pan and the drive by configuring a contact surface between the grinding pan and the drive of a size sufficient to maintain a predetermined loading capacity.
9 . The machine interface of claim 8 , wherein the contact surface is structured to include cutouts to reduce the size of the contact surface.
10 . A drive, comprising a flange configured for attachment of a grinding pan of a vertical grinding mill, said flange being configured to form a machine interface to thermally decouple the grinding pan and the drive.
11 . The drive of claim 10 , constructed in the form of a gearing mechanism.
12 . The drive of claim 10 , further comprising a heat-insulating layer providing heat insulation with respect to metal and arranged between the grinding pan and the drive to form the machine interface to thermally decouple the grinding pan and the drive.
13 . The drive of claim 12 , wherein the heat-insulating layer is made of a material sufficient to maintain a predetermined loading capacity and having a thermal conductivity in a range of 0.18 to 0.3 W/(mK).
14 . The drive of claim 10 , wherein the machine interface thermally decouples the grinding pan and the drive by configuring a contact surface between the grinding pan and the drive of a size sufficient to maintain a predetermined loading capacity.
15 . The drive of claim 14 , wherein the contact surface is structured to include cutouts to reduce the size of the contact surface.
16 . A vertical grinding mill, comprising:
a grinding pan;
a drive operably connected to the grinding pan; and
a machine interface configured to thermally decouple the grinding pan and the drive.
17 . The vertical grinding mill of claim 16 , further comprising a heat-insulating layer providing heat insulation with respect to metal and arranged between the grinding pan and the drive to form the machine interface to thermally decouple the grinding pan and the drive.
18 . The vertical grinding mill of claim 17 , wherein the heat-insulating layer is made of a material sufficient to maintain a predetermined loading capacity and having a thermal conductivity in a range of 0.18 to 0.3 W/(mK).
19 . The vertical grinding mill of claim 16 , wherein the machine interface thermally decouples the grinding pan and the drive by configuring a contact surface between the grinding pan and the drive of a size sufficient to maintain a predetermined loading capacity.
20 . The vertical grinding mill of claim 19 , wherein the contact surface is structured to include cutouts to reduce the size of the contact surface.
21 . The vertical grinding mill of claim 16 , wherein the drive includes a flange configured for attachment of the grinding pan, said flange being configured to form the machine interface to thermally decouple the grinding pan and the drive.