The invention relates to a roller mill having two roller units which are disposed in a machine frame and which have in each case one grinding roller which is rotatably mounted in two bearing jewels, wherein the two grinding rollers are disposed so as to be mutually opposite and for mutually counter-rotating driving of the grinding rollers are in each case linked to a drive.
A force-application system for generating a grinding force is provided between the machine frame and at least one roller unit wherein the grinding force is transmitted via the machine frame composed of a plurality of frame parts, and the bearing jewels to the grinding rollers. Here, for transmitting the grinding force a releasable and positive locking connection to two mutually compressed connection faces is provided between at least two interconnected frame parts, and/or between a frame part and one of the bearing jewels.
Since the grinding rollers are subject to wear during operation, scheduled replacement of the rollers is required wherein the roller units are removed from the machine frame once the connection between the grinding roller and the drive has been released. This roller replacement in the case of material-bed type roller mills is required about 3 times per year and is in each case associated with a significant investment in time, such that possibilities for accelerating roller replacement have been sought, such as disclosed in DE 10 2010 048 214 A1, for example.
Typically, positive locking connections in the form of round or planar fitting-key connections or else bolt connections are used in the connection of the frame parts of the machine frame. During disassembly the connection between the pressure beams and an upper frame part (which is also referred to as the top boom) and a lower frame part is released, such that the upper frame part may be raised and the pressure beams and the roller unit(s) be removed. This disassembly operation remains complex and time consuming.
The invention is thus based on the object of enabling more rapid disassembly and assembly of a roller unit.
According to the invention, this object is achieved by a roller mill having two roller units which are disposed in a machine frame and which have in each case one grinding roller which is rotatably mounted in two bearing jewels, wherein
The coating which generates a micro positive lock has the advantage that the connection faces need to be raised by only a few millimeters in order to enable removal of the roller unit. On account of the coating which generates a micro positive lock the force which can be transmitted between the two connection faces is significantly increased, such that high grinding forces of 16 000 kN or more, for example, such as arise, for example, in the case of material-bed type roller mills or roller presses in the cement and minerals industry, respectively, may also be transmitted.
Further design embodiments of the invention are the subject matter of the dependent claims.
According to one further design embodiment of the invention, tensioning means, for example in the form of a multiplicity of screw connections, are provided for mutually compressing the two connection faces. The coating, which generates a micro positive lock, of the interconnected frame parts, and/or of the frame part and the bearing jewel, is preferably configured such that the connection is completely cancelled by raising the two connection faces apart by at maximum 4 mm.
The connection faces are preferably configured so as to be planar, and the coating which generates a micro positive lock may be formed in particular by a hard-material particle coating, wherein the hard-material particles preferably have a hardness according to Mohs of 6 to 10.
According to one preferred design embodiment of the invention, the roller mill is configured such that one roller unit is mounted as a floating roller and the other roller unit is mounted as a fixed roller in the machine frame, wherein the force-application system is disposed between the machine frame and the roller unit which functions as a floating roller.
The machine frame is preferably formed by at least one lower frame part, at least one upper frame part, and a plurality of pressure beams which connect the upper and lower frame part. The bearing jewels here on the upper and lower frame part may be guided in a sliding and displaceable manner. The connection faces are either configured on parts of the machine frame, or the coating which generates a micro positive lock is applied onto an intermediate element which is fixedly connected to the parts of the machine frame which are to be connected.
According to a first preferred design embodiment of the roller mill, four pressure beams are provided, wherein two pressure beams serve as counter-bearings of the one roller unit and the two other pressure beams serve as counter-bearings of the other roller unit, and the upper and lower frame parts are connected to the four pressure beams by in each case one releasable and positive locking connection to two mutually compressed connection faces, wherein at least two of the mutually compressed connection faces have the coating which generates a micro positive lock.
According to a second design embodiment of the invention, only two pressure beams which are connected to the upper and the lower frame parts and which serve as counter-bearings for the roller unit which functions as a floating roller are provided. The roller unit which functions as a fixed roller, by way of the bearing jewels thereof, then is connected to the upper and lower frame parts via the releasable and positive locking connection to two mutually compressed connection faces, wherein again at least one of the two mutually compressed connection faces has the coating which generates a micro positive lock.
The invention will be explained in more detail hereunder by means of the following description of two exemplary embodiments and by the drawing.
In the drawing:
The roller mill illustrated in
In the illustrated exemplary embodiment the roller unit 2 is mounted as a fixed roller in the machine frame 1 and is supported by way of the bearing jewels 22, 23 thereof on the pressure beams 15, 17. By contrast, the roller unit 3 is configured as a floating roller. A force-application system 50 for generating a grinding force is provided between the machine frame 1 and the roller unit 3, wherein the grinding force is transmitted via the machine frame 1 and the bearing jewels 22, 23 and 32, 33 to the grinding rollers 20, 30, wherein a grinding gap is maintained between the two grinding rollers. In particular, pressures of 50 MPa or more may be generated here in the grinding gap.
The positive locking connection of the lower and upper frame parts to the pressure beams of the machine frame 1 will be explained in more detail hereunder by means of
Disassembly of a roller unit is evident by means of
The two pressure beams 15, 17 may be pulled out by way of the guide rails 18, 19, once the screw connections 6, 7 have been released. It may optionally be expedient for the two upper frame parts 12, 13 to be raised by a chain lift by a few millimeters, or at least held in place, for this purpose. Following on from there, the roller unit 2 is then also completely pulled out. If necessary, the other roller unit 3 is also pulled out, once the connection thereof to the drive 5 has been released. Installation is performed in the reverse sequence.
In
The interconnected regions of the first and second connection faces are preferably covered by at least 50%, most preferably by at least 90%, by the coating which generates a micro positive lock. The individual particles of the coating preferably have a longest average extent of <2 mm. The coating may be selectively applied by adhesive bonding, sintering, varnishing, chemical methods, galvanic methods, suspension or flame-spraying methods. It is also conceivable for the coating which generates a micro positive lock not to be directly applied onto the pressure beams or the lower or upper frame parts, respectively, but rather onto intermediate elements which are in each case fixedly connected to the pressure beams or frame parts.
The great advantage of the coating which generates a micro positive lock lies above all in that already slight raising of the two connection faces by a few millimeters is entirely sufficient for the pressure beams or the roller units, respectively, to be pulled out. This coating nevertheless ensures adequate transmission of the grinding forces via the machine frame. Furthermore, on account of the omission of the previously commonplace face joints, the investment in production is significantly lower and a more compact constructive configuration results therefrom. Assembly of the machine frame is also facilitated on account of the reduced alignment effort, since there is in particular no requirement for seating wedges to be made at the erection site.
Number | Date | Country | Kind |
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10 2013 104 097.7 | Apr 2013 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/058099 | 4/22/2014 | WO | 00 |